IS640-17 LWIR Camera

https://www.optotherm.com/web/image/product.template/2002/image_1920?unique=a6688e9

Long Wavelength Infrared (LWIR) radiometric Camera, 640x480p, 17-micron detector pitch
Includes IS640-17 camera, storage case, calibration certificate, and 5m USB3.0 cable.
Product Information: https://www.optotherm.com/shop/2002

*This product is export controlled and requires documentation and/or an export license prior to exporting*

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    Overview

    The IS640-17 LWIR camera (Infrasight 640-17) was designed for applications requiring high sensitivity, resolution, and accuracy. The design based on uncooled microbolometer technology to provide high performance and reliability at an affordable price point. A solid aluminum chassis improves thermal uniformity within the camera detector, optics, and electronics and facilitates optimum calibration accuracy over the ambient temperature operating range.

    Infrasight cameras contain an infrared detector called a microbolometer. A microbolometer is an array of tiny heat detecting sensors that are sensitive to infrared radiation from approximately 7 to 14µm in wavelength. Each array element is approximately 17 x 17µm in dimension.

    As infrared energy strikes an individual bolometer element, the element increases in temperature, and its electrical resistance changes. This resistance change is measured and then processed into temperature values which can be represented graphically in a thermal image.

    A microbolometer is an uncooled infrared sensor; the detector array does not need to be cooled in order to produce highly sensitive thermal images. Photon detectors, such as InSb (Indium Antimonide) and MCT (Mercury Cadmium Telluride) infrared detectors, can improve thermal sensitivity but require the detector to be cooled to cryogenic temperatures utilizing cooling methods such as Stirling cycle engines and liquid nitrogen. The use of photon detectors increases the cost of infrared cameras, decreases ease-of-use, and leads to more frequent and expensive maintenance.

    Applications

    • Semiconductor device failure analysis
    • Circuit board failure analysis
    • Microscopic temperature measurement and analysis of materials

    Features

    Comprehensive Calibration

    Each camera undergoes a rigorous calibration procedure over the span of several days to precisely correlate detector response to temperature measurement.

    Specifications

    Detector

    Infrared Detector

    uncooled vanadium oxide microbolometer

    Array Size

    640 x 480 pixels

    NETD* (f/# 1 optics)

    < 30 mK (< 12 mK with ≤9 Hz option †)

    Detector Pitch

    17 µm

    Spectral Response

    7-14 µm

    Thermal Time Constant

    < 11 ms

    Camera Control and Image Output

    Frame Rate

    60 Hz (≤9 Hz option †)

    Camera Control

    USB3 ‡

    Thermal Image Output

    USB3 ‡

    Time to First Image

    < 4 seconds

    Power

    Input Voltage

    +5V over USB3

    Power Consumption

    < 1.4 Watts


    Physical

    Ambient Operating Range

    15 to 35°C

    Ambient Storage

    -45 to 70°C

    Camera Dimensions

    75 x 90 x 77.5 mm

    Camera Weight

    0.75 kg

    Camera Mounting

    2 x M6 on 25 mm centers with quick mount

    Moving Parts

    None, Software fixed-pattern noise reduction

    * Noise Equivalent Temperature Difference (NETD) specifies the smallest temperature difference that can be detected. The value stated is NETD at 60 Hz frame rate.

    † Optotherm thermal imaging cameras with frame rate of 9Hz or lower may be exported to many countries without an export license under ECCN 6A993.a NLR (no license required).

    ‡ Camera models using Camera Link are only compatible with Windows 10 Operating System. Camera models using USB are compatible with both Windows 10 and Windows 11 Operating System.

    Troubleshooting

    Click the link below to view the Support Forum posts for this topic.

    https://www.optotherm.com/forum/support-1/tag/is640-17-33/questions?filters=tag