isotech R999
isotech R999
ci systems

Cavity Blackbody

ATG8000
The ATG8000 Blackbody Calibration Source allows for calibration of noncontact infrared thermometers over the temperature range Ta +5℃~660℃/1000℃.It is suitable for use as a radiation source for infrared thermometers.
Delivery
FOB
minimum order
1 unit
Country of Origin
Made In China
Quantity
Contact Now
Description 
The ATG8000 medium-temp cavity blackbody complies with GBT 19870-2018 industrial detection infrared thermal imagers and JJF 1187-2008 thermal imager calibration specifications, providing a set of reliable medium-temperature cavity blackbody radiation sources for scientific research and industry.
ATG8000 cavity blackbody has a temperature resolution of 0.01°C, a temperature stability of 0.01°C/30min (ATG8000-T660), ±0.5°C (ATG8000-T1000), and an emissivity of 0.99±0.01. The characteristics of high resolution and high stability make it very suitable for calibrating various radiation thermometers, such as non-contact infrared thermometers, optical thermometers, etc.
The emissivity of ATG8000 is as high as 0.99±0.01. The ultra-high emissivity is very useful as a light source to measure the surface emissivity of materials.
The ATG8000 cavity blackbody can communicate via RS485, Ethernet, and Wi-Fi. When paired with the Optosky blackbody controller, it can achieve high-precision temperature control.
 Features
  • Temperature range: Ta +5℃660℃/1000℃
  • High temperature resolution: 0.01℃
  • High stability: 0.01℃/30min, ±0.5 °C
  • Blackbody emissivity: 0.99 ± 0.01
  • Various aperture sizes available
  • Professional temperature control and calibration software
  • Multiple communication methods: RS485, Ethernet, Wi-Fi
Application
  • Radiation thermometer calibration
  • Infrared thermal imaging camera calibration
  • Calibrate the radiation intensity of the infrared radiation source
  • Calibrated response rate for radiation absorption
  • Study the thermal radiation properties of material surfaces
  • Measure material surface emissivity
  • Optical performance measurements