Optical Flame Detectors
Showing 46–90 of 148 results
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Oldham Simtronics DF-TV7-XTA0-0XC-0N 3IR DF-TV7, Standard range, Configurable output
What is the Oldham Simtronics DF-TV7-XTA0-0XC-0N?The Oldham Simtronics DF-TV7-XTA0-0XC-0N is: 3IR DF-TV7, Standard range, Configurable output. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XTA0-0XC-0N on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XTA0-0XH-00 3IR DF-TV7, Standard range, HART protocol
What is the Oldham Simtronics DF-TV7-XTA0-0XH-00?The Oldham Simtronics DF-TV7-XTA0-0XH-00 is: 3IR DF-TV7, Standard range, HART protocol. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XTA0-0XH-00 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XTA0-0XH-0N 3IR DF-TV7, Standard range, HART protocol
What is the Oldham Simtronics DF-TV7-XTA0-0XH-0N?The Oldham Simtronics DF-TV7-XTA0-0XH-0N is: 3IR DF-TV7, Standard range, HART protocol. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XTA0-0XH-0N on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XTB0-0XC-00 3IR DF-TV7, Long range, Configurable output
What is the Oldham Simtronics DF-TV7-XTB0-0XC-00?The Oldham Simtronics DF-TV7-XTB0-0XC-00 is: 3IR DF-TV7, Long range, Configurable output. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XTB0-0XC-00 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XTB0-0XC-0N 3IR DF-TV7, Long range, Configurable output
What is the Oldham Simtronics DF-TV7-XTB0-0XC-0N?The Oldham Simtronics DF-TV7-XTB0-0XC-0N is: 3IR DF-TV7, Long range, Configurable output. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XTB0-0XC-0N on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XTB0-0XH-00 3IR DF-TV7, Long range, HART protocol
What is the Oldham Simtronics DF-TV7-XTB0-0XH-00?The Oldham Simtronics DF-TV7-XTB0-0XH-00 is: 3IR DF-TV7, Long range, HART protocol. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XTB0-0XH-00 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XTB0-0XH-0N 3IR DF-TV7, Long range, HART protocol
What is the Oldham Simtronics DF-TV7-XTB0-0XH-0N?The Oldham Simtronics DF-TV7-XTB0-0XH-0N is: 3IR DF-TV7, Long range, HART protocol. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XTB0-0XH-0N on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XVA0-0XC-00 UV2IR DF-TV7, Standard range, Configurable output
What is the Oldham Simtronics DF-TV7-XVA0-0XC-00?The Oldham Simtronics DF-TV7-XVA0-0XC-00 is: UV2IR DF-TV7, Standard range, Configurable output. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XVA0-0XC-00 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XVA0-0XC-0N UV2IR DF-TV7, Standard range, Configurable output
What is the Oldham Simtronics DF-TV7-XVA0-0XC-0N?The Oldham Simtronics DF-TV7-XVA0-0XC-0N is: UV2IR DF-TV7, Standard range, Configurable output. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XVA0-0XC-0N on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XVA0-0XH-00 UV2IR DF-TV7, Standard range, HART protocol
What is the Oldham Simtronics DF-TV7-XVA0-0XH-00?The Oldham Simtronics DF-TV7-XVA0-0XH-00 is: UV2IR DF-TV7, Standard range, HART protocol. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XVA0-0XH-00 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics DF-TV7-XVA0-0XH-0N UV2IR DF-TV7, Standard range, HART protocol
What is the Oldham Simtronics DF-TV7-XVA0-0XH-0N?The Oldham Simtronics DF-TV7-XVA0-0XH-0N is: UV2IR DF-TV7, Standard range, HART protocol. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics DF-TV7-XVA0-0XH-0N on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the MultiFlame DF-TV7 optical flame detector line already in our catalogue. -

Oldham Simtronics MultiFlame DF-TV7 Optical Flame Detector
What is the Oldham Simtronics MultiFlame DF-TV7 Flame Detectors?The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, built around false alarm immunity and an intelligent optical self-test, in triple infrared and ultraviolet with double infrared versions. The MultiFlame DF-TV7 is an optical flame detector for hydrocarbon fires, designed around minimising false alarms and fitted with an intelligent optical self-test. The family has two detection technologies: the DF-TV7-T reads three separate infrared wavelengths and detects hydrocarbon fires up to 80 metres away, and the DF-TV7-V combines ultraviolet with double infrared for higher immunity to false alarms and a shorter response time, detecting hydrocarbon fires up to 45 metres away. The detector connects directly to conventional fire controllers or to a PLC, and a DF-RV7 variant exists for the addressable SYNTEL network. Configuration, including time delay, sensitivity and output behaviour, is done with the TLU600 hazardous area remote terminal or over HART with a TLH710 or TLH720.What are the specifications of the MultiFlame DF-TV7 Flame Detectors?Detection technologies: triple infrared (DF-TV7-T) and ultraviolet with double infrared (DF-TV7-V)Detection distance: up to 80 m for the triple IR version, up to 45 m for the UV/2IR versionField of view up to 120 degrees, per the vendor product overviewOutputs: 4-20 mA, relays, HART as an option, and LonWorks for the SYNTEL systemPower supply 24 V DC (18 to 35 V DC on DF-T#7 versions, 18 to 30 V DC on DF-R#7)Typical power consumption 1.4 W for IR3 and 1.5 W for UV2IR, 5 W maximumOperating and storage temperature: -40 C to +65 CHumidity 95% RH non condensing, protection rating IP66Explosion proof housing in 316 L stainless steel, weight 5.1 kgPerformance certified to EN 54-10/A1, RFI and EMI to EN 50130-4, SIL 2 capableWhat should you check before ordering?The two technologies in this family are not interchangeable and the difference is measurable rather than a matter of preference: the triple IR version reaches 80 metres and is aimed at smoky hydrocarbon fires that are hard to see optically, while the UV/2IR version trades reach for speed and false alarm immunity and reaches 45 metres. Published MTBF also separates them, at 172,000 hours for the DF-TV7-T against 115,000 hours for the DF-TV7-V. One exception is worth catching at specification time: the manual states that reference DF-V7-XT0-0-0-0---1 is neither EN 54-10 compliant nor SIL compliant, so a site with an EN 54-10 requirement cannot take that particular reference.How do the part numbers differ?Part numbers separate the detection technology (XT for triple infrared, XV for ultraviolet with double infrared), the range (A standard, B long), the output (C configurable, H HART, L LON for the SYNTEL network), and the DF-RV7 prefix marks the addressable SYNTEL variant. Published detection distances are test figures: sensitivity in the field also depends on fuel type, fire size, atmospheric conditions such as wind, rain and fog, and the angle between the fire and the detector.PE Energy lists 23 orderable part numbers from this family, each fixed at order for detection technology, approval scope and cable entry.Where is it used?Typical service: Refineries and chemical plants; Drilling and production platforms, and FPSO vessels; Fuel loading facilities and compressor stations; LNG and LPG processing and storage; Gas turbines and aircraft hangars; Stadia and gymnasia.How do I order or get a quote?PE Energy supplies the Oldham Simtronics MultiFlame DF-TV7 Flame Detectors on a quote basis: tell us the fire type, the area classification and the mounting, and we return the right part number with pricing and lead time. Every reference in this family is configured at order, so the part number carries the detection technology, the approval scope, the output and the cable entry. -

Oldham Simtronics SG50-F-IR3-AS10 Triple IR (IR3) SG50-F, for Hydrocarbon Fire, M25
What is the Oldham Simtronics SG50-F-IR3-AS10?The Oldham Simtronics SG50-F-IR3-AS10 is: Triple IR (IR3) SG50-F, for Hydrocarbon Fire, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS10 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-AS11 Triple IR (IR3) SG50-F, for Hydrocarbon Fire, HART, SIL2, M25
What is the Oldham Simtronics SG50-F-IR3-AS11?The Oldham Simtronics SG50-F-IR3-AS11 is: Triple IR (IR3) SG50-F, for Hydrocarbon Fire, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS11 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-AS13 Triple IR (IR3) SG50-F, for Hydrocarbon Fire where exhaust gases may
What is the Oldham Simtronics SG50-F-IR3-AS13?The Oldham Simtronics SG50-F-IR3-AS13 is: Triple IR (IR3) SG50-F, for Hydrocarbon Fire where exhaust gases may be present, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS13 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-AS15 Triple IR (IR3) SG50-F for Hydrocarbon Fire. Complied with NFPA 33
What is the Oldham Simtronics SG50-F-IR3-AS15?The Oldham Simtronics SG50-F-IR3-AS15 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire. Complied with NFPA 33, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS15 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-AS20 Triple IR (IR3) SG50-F, for Hydrocarbon Fire, 3/4NPT
What is the Oldham Simtronics SG50-F-IR3-AS20?The Oldham Simtronics SG50-F-IR3-AS20 is: Triple IR (IR3) SG50-F, for Hydrocarbon Fire, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS20 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-AS21 Triple IR (IR3) SG50-F, for Hydrocarbon Fire, HART, SIL2, 3/4NPT
What is the Oldham Simtronics SG50-F-IR3-AS21?The Oldham Simtronics SG50-F-IR3-AS21 is: Triple IR (IR3) SG50-F, for Hydrocarbon Fire, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS21 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-AS23 Triple IR (IR3) SG50-F, for Hydrocarbon Fire where exhaust gases may
What is the Oldham Simtronics SG50-F-IR3-AS23?The Oldham Simtronics SG50-F-IR3-AS23 is: Triple IR (IR3) SG50-F, for Hydrocarbon Fire where exhaust gases may be present, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS23 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-AS25 Triple IR (IR3) SG50-F, for Hydrocarbon Fire. Complied with NFPA 33
What is the Oldham Simtronics SG50-F-IR3-AS25?The Oldham Simtronics SG50-F-IR3-AS25 is: Triple IR (IR3) SG50-F, for Hydrocarbon Fire. Complied with NFPA 33, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-AS25 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS10 Triple IR (IR3) SG50-F for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-AS10?The Oldham Simtronics SG50-F-IR3-H2-AS10 is: Triple IR (IR3) SG50-F for Energy Transition Fires - e.g. Hydrogen. 4-20mA / RS485 outputs. M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS10 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS11 Triple IR (IR3) SG50-F for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-AS11?The Oldham Simtronics SG50-F-IR3-H2-AS11 is: Triple IR (IR3) SG50-F for Energy Transition Fires - e.g. Hydrogen, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS11 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS13 Xtend Triple IR (IR3) SG50-F for Energy Transition Fires
What is the Oldham Simtronics SG50-F-IR3-H2-AS13?The Oldham Simtronics SG50-F-IR3-H2-AS13 is: Xtend Triple IR (IR3) SG50-F for Energy Transition Fires - HC & Hydrogen, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS13 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS15 Triple IR (IR3) SG50-F for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-AS15?The Oldham Simtronics SG50-F-IR3-H2-AS15 is: Triple IR (IR3) SG50-F for Energy Transition Fires - e.g. Hydrogen. Complied with NFPA 33, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS15 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS20 Triple IR (IR3) SG50-F for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-AS20?The Oldham Simtronics SG50-F-IR3-H2-AS20 is: Triple IR (IR3) SG50-F for Energy Transition Fires - e.g. Hydrogen. 4-20mA / RS485 outputs. 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS20 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS21 Triple IR (IR3) SG50-F for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-AS21?The Oldham Simtronics SG50-F-IR3-H2-AS21 is: Triple IR (IR3) SG50-F for Energy Transition Fires - e.g. Hydrogen, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS21 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS23 Xtend Triple IR (IR3) SG50-F for Energy Transition Fires
What is the Oldham Simtronics SG50-F-IR3-H2-AS23?The Oldham Simtronics SG50-F-IR3-H2-AS23 is: Xtend Triple IR (IR3) SG50-F for Energy Transition Fires - HC & Hydrogen, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS23 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-AS25 Triple IR (IR3) SG50-F for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-AS25?The Oldham Simtronics SG50-F-IR3-H2-AS25 is: Triple IR (IR3) SG50-F for Energy Transition Fires - e.g. Hydrogen. Complied with NFPA 33, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-AS25 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS10 Triple IR (IR3) for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS10?The Oldham Simtronics SG50-F-IR3-H2-V-AS10 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hydrogen, with Near IR HD camera, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS10 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS11 Triple IR (IR3) for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS11?The Oldham Simtronics SG50-F-IR3-H2-V-AS11 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hydrogen, with Near IR HD camera, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS11 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS12 Triple IR (IR3) for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS12?The Oldham Simtronics SG50-F-IR3-H2-V-AS12 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hydrogen, with color camera, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS12 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS13 Xtend Triple IR (IR3) SG50-F for Energy Transition Fires
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS13?The Oldham Simtronics SG50-F-IR3-H2-V-AS13 is: Xtend Triple IR (IR3) SG50-F for Energy Transition Fires - HC & Hydrogen, with Near IR HD camera, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS13 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS15 Triple IR (IR3) for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS15?The Oldham Simtronics SG50-F-IR3-H2-V-AS15 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hydrogen, with Near IR HD camera. Complied with NFPA 33, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS15 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS20 Triple IR (IR3) for Energy Transition Fires – e.g. Hhydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS20?The Oldham Simtronics SG50-F-IR3-H2-V-AS20 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hhydrogen, with Near IR HD camera, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS20 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS21 Triple IR (IR3) for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS21?The Oldham Simtronics SG50-F-IR3-H2-V-AS21 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hydrogen, with Near IR HD camera, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS21 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS22 Triple IR (IR3) for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS22?The Oldham Simtronics SG50-F-IR3-H2-V-AS22 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hydrogen, with color camera, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS22 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS23 Xtend Triple IR (IR3) SG50-F for Energy Transition Fires
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS23?The Oldham Simtronics SG50-F-IR3-H2-V-AS23 is: Xtend Triple IR (IR3) SG50-F for Energy Transition Fires - HC & Hydrogen, with Near IR HD camera, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS23 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-H2-V-AS25 Triple IR (IR3) for Energy Transition Fires – e.g. Hydrogen
What is the Oldham Simtronics SG50-F-IR3-H2-V-AS25?The Oldham Simtronics SG50-F-IR3-H2-V-AS25 is: Triple IR (IR3) for Energy Transition Fires - e.g. Hydrogen, with Near IR HD camera. Complied with NFPA 33, HART, SIL2, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-H2-V-AS25 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-V-AS10 Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera, M25
What is the Oldham Simtronics SG50-F-IR3-V-AS10?The Oldham Simtronics SG50-F-IR3-V-AS10 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-V-AS10 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-V-AS11 Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera, HART
What is the Oldham Simtronics SG50-F-IR3-V-AS11?The Oldham Simtronics SG50-F-IR3-V-AS11 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-V-AS11 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-V-AS12 Triple IR (IR3) SG50-F for Hydrocarbon Fire, with Near IR HD camera
What is the Oldham Simtronics SG50-F-IR3-V-AS12?The Oldham Simtronics SG50-F-IR3-V-AS12 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire, with Near IR HD camera, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-V-AS12 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-V-AS13 Triple IR (IR3) SG50-F for Hydrocarbon Fire where exhaust gases may
What is the Oldham Simtronics SG50-F-IR3-V-AS13?The Oldham Simtronics SG50-F-IR3-V-AS13 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire where exhaust gases may be present, with color camera, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-V-AS13 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-V-AS14 Triple IR (IR3) SG50-F for Hydrocarbon Fire where exhaust gases may
What is the Oldham Simtronics SG50-F-IR3-V-AS14?The Oldham Simtronics SG50-F-IR3-V-AS14 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire where exhaust gases may be present, with Near Ir camera, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-V-AS14 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-V-AS15 Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera
What is the Oldham Simtronics SG50-F-IR3-V-AS15?The Oldham Simtronics SG50-F-IR3-V-AS15 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera. Complied with NFPA 33, HART, SIL2, M25. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-V-AS15 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue. -

Oldham Simtronics SG50-F-IR3-V-AS20 Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera, 3/4NPT
What is the Oldham Simtronics SG50-F-IR3-V-AS20?The Oldham Simtronics SG50-F-IR3-V-AS20 is: Triple IR (IR3) SG50-F for Hydrocarbon Fire, with color camera, 3/4NPT. The Spyglass SG50-F family covers a wide variety of fire types in a stainless steel housing, and is offered in triple infrared (IR3) and ultraviolet with infrared (UV-IR) technologies, including versions for hydrogen and other alternate energy fuel fires. An on-board video option lets a fire be viewed in real time or reviewed after an incident without anyone being at the scene. An ultra fast detection mode is available for spark and NFPA 33 applications, and the family covers arcs and sparks in windmills, munitions, and hot engine exhaust such as helipads.What are the specifications of the Spyglass SG50-F Flame Detectors?Detection technologies: triple infrared (IR3) and ultraviolet with infrared (UV-IR), plus hydrogen fire versionsField of view: 90 degrees horizontal, 80 degrees verticalSG50-F-UV-IR detection time: 5 ms for a fast fire burst or explosion, 1 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 2 s at 15 to 30 mSG50-F-UV-IR-F detection time: 5 ms for a fast fire burst or explosion, 1.5 s for a 0.1 m2 n-heptane pan fire at 0 to 15 m, under 3 s at 15 to 30 mAdjustable time delay 0 to 30 seconds, with automatic and manual built-in testOperating voltage 24 V DC nominal (18 to 32 V DC); 120 mA standby, 180 mA maximum with all systems including the window heaterOutputs: 0-20 mA, HART, Modbus and 3 relaysCable entries: two conduit entries, 3/4 inch NPT or M25 x 1.5, one plugged with a certified stopperExplosion proof approvals: ATEX, UKCA, IECEx, PESO, INMETRO, FM and FMC; performance to ANSI FM 3260 and EN 54-10Functional safety: certified SIL 2 per IEC 61508What should you check before ordering?Response figures here are test results against a defined fire, not marketing rounding: a 0.1 m2 n-heptane pan fire, measured at two distance bands. That matters when comparing the two UV-IR variants, because the F version is consistently the slower of the pair on the same fire (1.5 s against 1 s at 0 to 15 m, and under 3 s against under 2 s at 15 to 30 m), while both hit 5 ms on a fast burst or explosion. The temperature ceiling also moves with the temperature class ordered: T5 approval runs to 75 C ambient while T4 runs to 85 C, so the class chosen on the order limits where the detector can be mounted.How do the part numbers differ?Part numbers separate the detection technology (UV-IR or IR3, with H2 versions for hydrogen), the presence of HART and SIL 2, NFPA 33 compliance, and the cable entry thread (M25 or 3/4 inch NPT), so two references that look alike can differ on approval scope rather than on the sensor.Where is it used?Typical service: Hydrocarbon fire detection in process and storage areas; Hydrogen and alternate energy fuel fires; Arc and spark detection, including windmills and NFPA 33 spray application areas; Munitions handling and storage; Helipads and other areas with hot engine exhaust; Incident review where the on-board video option is fitted.How do I order or get a quote?PE Energy supplies the Oldham Simtronics SG50-F-IR3-V-AS20 on a quote basis: send the part number with your application details and we return pricing and lead time. Fixed gas and flame detection is quoted rather than listed because most references ship configured for target gas, range, approval scope and cable entry, and those choices are fixed at the part number. This part belongs to the same product line as the Spyglass SG50-F flame detector line already in our catalogue.