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OS210-150-300-800

Fixed Infrared Temperature Transmitters with a Selection of Fields of View

Models In Stock
  • Temperature Range: -20 to 500°C (-4 to 932ºF)
  • Emissivity Setting: Fixed at 0.95
  • 2-Wire 4 to 20 mA Output or 4-Wire Voltage/Thermocouple Output
  • 4-Wire Unit Provides Internal Sensor Temperature
OS210-150-300-800
From  144,56
Models In Stock
Fixed Infrared Temperature Transmitters with a Selection of Fields of View OS210-150-300-800 OS210-150-300-800
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Product Overview
  • Cable Length Note 1 m (3.3') (included) longer lengths available to order
  • Emissivity, Max 0.95
  • Enclosure Ratings IP65
  • Housing Height 18 mm
  • Housing Length 103 mm
  • Impedance 900 Ω
  • Impedance Output 56 Ω
  • Impedance Output Note 56 Ω (voltage/thermocouple output)
  • Operating Temperature, Max 70 °C
  • Operating Temperature, Min 0 °C
  • Relative Humidity, Max 0.95
  • Repeatability ± 0.5%
  • Repeatability Note ± 0.5% of reading or ± 0.5ºC whichever is greater
  • Response Time 240 ms
  • Response Time Note 240 ms (90% response)
  • Sensing head Mounting 16 mm
  • Sensor Voltage 6 Vdc
  • Spectral Response, Max 14 μm
  • Spectral Response, Min 8 μm
  • Supply Voltage 24 to 28 Vdc
  • Weight 95 g
The OS210-150-300-800 Series is a range of high quality, low cost, compact sensors which measure the temperature of inaccessible or moving objects and materials. They measure temperatures from -20 to 500°C (-4 to 932ºF), accurately and consistently, with an outstanding response time of 240 ms. Infrared (IR) sensors are available as either 2- or 4-wire units. Two wire IR sensors transmit the target temperature as a 4 to 20 mA output and offer a simple solution for most non-contact temperature measurement applications. Four-wire IR sensors transmit the target temperature as a 0 to 50 mV or thermocouple output (Type J, K or T) plus the internal sensor temperature as a 4 to 20 mA output. This second output can be used to ensure that the sensor is being operated within the correct ambient temperature limits and prevent damage caused by overheating or over-cooling. It can also be used to give an approximate indication of the air temperature surrounding the sensor. IR sensors are fitted with precision germanium lenses for accurate optics.
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