Developed for professionals in the field. For typical industrial and commercial applications as well as facility management. State-of-the-art, easy-to-use technology. Features IR image/real image display options. Included SuperResolution Technology enhances image quality to 320 x 240.
Developed for professionals in the field. For typical industrial and commercial applications as well as facility management. State-of-the-art, easy-to-use technology. Features IR image/real image display options. Included SuperResolution Technology enhances image quality to 320 x 240.
Discontinued!
This product has been discontinued and is no longer available.
This is the direct replacement:
Designed and developed together with professionals in the fields of HVAC, construction, maintenance and Facility Management. The target we set was to build an IR camera that is so easy to use it allows you to work faster and more efficiently while providing professional thermal images. What we came up with is the Testo 870-2
Features
State-of-the-art technology inside an easy-to-use professional thermal imaging camera. Plus a long list of features with the professional in mind
Applications
Designed for applications that are a part of day-to-day maintenance and installation tasks in industry and the commercial sector and for fast and safe production and quality control.
Infrared Resolution | 160 x 120 |
Spectral Range | 7.5 um; 14 um |
Focus | Fixed Focus |
Image Refresh Rate | 9 Hz |
SuperResolution (IFOV) | 2.3 mrad |
SuperResolution (Pixel) | 320 x 240 pixels |
Geometric Resolution (IFOV) | 3.68 mrad |
Field of View | 34° x 26° |
Thermal Sensitivity | 100mK |
Storage Temperature | -22 to 140°F |
Operating Temperature | 5 to 122°F |
Battery Type | Fast charging, li-ion battery |
Battery Life | 4 Hours |
Dimensions | 219 x 96 x 95 mm |
Housing material | PC - ABS |
The patent-pending SuperResolution technology improves the thermal image quality of your Testo imagers with the included software upgrade. With SuperResolution, images have a higher resolution, and are therefore more detailed.
The important thing is that SuperResolution technology always records genuine temperature measuring values. There are no artificial intermediate values projected! This means that this technology offers the possibility of recording more temperature measuring values without using larger, more expensive detectors.
SuperResolution in Building Thermography
In building thermography, SuperResolution technology is ideally suited to fast and effective detection of building damage. Energy losses in buildings’ heating or air conditioning systems can also be analyzed with the help of the high-resolution thermal images. The high level of detail in the image makes inadequate insulation, resulting heat losses or construction defects clearly visible. Leakages can also be displayed precisely in the thermal image using SuperResolution technology.
SuperResolution in Industrial Thermography
SuperResolution technology also plays an important role in industrial maintenance – above all in the detailed early detection of imminent damage in production-related plant components. In the case of mechanical components too, thermal irregularities (e.g. due to friction or incorrect adjustment) can indicate an elevated level of stress. In the field of research and development, the geometric resolution of the thermal image is of great significance. This is improved by a factor of 1.6 by SuperResolution technology. This means that even smaller objects can be recorded, which enables the measurement of the smallest possible structures.
Click on a category to view a selection of compatible accessories with the Testo 870-2 Thermal Imaging Camera, 160 x 120 FPA, NETD < 100mK w/3.1 MP Camera.
Infrared Resolution | 160 x 120 |
Spectral Range | 7.5 um; 14 um |
Focus | Fixed Focus |
Image Refresh Rate | 9 Hz |
SuperResolution (IFOV) | 2.3 mrad |
SuperResolution (Pixel) | 320 x 240 pixels |
Geometric Resolution (IFOV) | 3.68 mrad |
Field of View | 34° x 26° |
Thermal Sensitivity | 100mK |
Storage Temperature | -22 to 140°F |
Operating Temperature | 5 to 122°F |
Battery Type | Fast charging, li-ion battery |
Battery Life | 4 Hours |
Dimensions | 219 x 96 x 95 mm |
Housing material | PC - ABS |
The patent-pending SuperResolution technology improves the thermal image quality of your Testo imagers with the included software upgrade. With SuperResolution, images have a higher resolution, and are therefore more detailed.
The important thing is that SuperResolution technology always records genuine temperature measuring values. There are no artificial intermediate values projected! This means that this technology offers the possibility of recording more temperature measuring values without using larger, more expensive detectors.
SuperResolution in Building Thermography
In building thermography, SuperResolution technology is ideally suited to fast and effective detection of building damage. Energy losses in buildings’ heating or air conditioning systems can also be analyzed with the help of the high-resolution thermal images. The high level of detail in the image makes inadequate insulation, resulting heat losses or construction defects clearly visible. Leakages can also be displayed precisely in the thermal image using SuperResolution technology.
SuperResolution in Industrial Thermography
SuperResolution technology also plays an important role in industrial maintenance – above all in the detailed early detection of imminent damage in production-related plant components. In the case of mechanical components too, thermal irregularities (e.g. due to friction or incorrect adjustment) can indicate an elevated level of stress. In the field of research and development, the geometric resolution of the thermal image is of great significance. This is improved by a factor of 1.6 by SuperResolution technology. This means that even smaller objects can be recorded, which enables the measurement of the smallest possible structures.
Click on a category to view a selection of compatible accessories with the Testo 870-2 Thermal Imaging Camera, 160 x 120 FPA, NETD < 100mK w/3.1 MP Camera.