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Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz

    Buy cheap Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz from wholesalers
     
    Buy cheap Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz from wholesalers
    • Buy cheap Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz from wholesalers

    Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz

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    Brand Name : GST
    Model Number : PLUG417R
    Certification : ISO9001:2015; RoHS; Reach
    Price : Negotiable
    Payment Terms : L/C, T/T
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    Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz

    PLUG417R Uncooled Thermal Module

    LWIR 400x300 / 17μm Uncooled Thermal Imaging Camera Core with Industrial Thermography


    Product Description

    PLUG417R thermal camera core uses the 400x300 / 17μm uncooled LWIR infrared detctor with an optional temperature measurement function with measurement range from -20℃~150 ℃ for industrial or body temperature measurement. This infrared thermal module can not only measures the value of temperature around you but also display the thermal imaging figure. So it must be your best choice to monitor the temperature change.


    This small infrared camera module can be widely used in infrared thermal imaging applications such as Thermography, Electricity Power Inspection, Building Inspection etc. It is beneficial to OEM customers for secondary development and integration in all kinds of thermal imagers and infrared thermographic cameras.


    Main Features


    - NETD<30mk, High Sensitivity
    - Stable Performance
    - Easy Integration
    - Clear Image Quality & Details
    - Customizable Temperature Range
    - Strong Environmental Adaptability


    Product Specifications

    ModelPLUG417R
    IR Detector Performance
    Resolution400x300
    Pixel Pitch17μm
    Spectral Range8~14μm
    NETD<30mk
    Image Processing
    Frame Rate25Hz/30Hz/50Hz/60Hz
    Start-up Time<15s
    Analog VideoPAL/NTSC
    Digital VideoRAW/YUV/BT656/LVDS
    Extension ComponentUSB/Camerlink
    Dimming ModeLinear/Histogram/Mixed
    Digital Zoom1~8X Continual Zoom, Step Size 1/8
    Image DisplayBlack Hot/White Hot/Pseudo Color
    Image DirectionHorizontally/Vertically/Diagonally Flip
    Image AlgorithmNUC/AGC/IDE
    Electrical Specification
    Standard External Interface50pin_HRS Interface
    Communication ModeRS232-TTL, 115200bps
    Supply Voltage4.5~6V
    Temperature Measurement
    Operating Temperature Range-10°C~50°C
    Temperature Range-20°C~150°C, 100°C~550°C
    Temperature Accuracy±2°C or ±2% (Take the Maximum Value)
    SDKARM/Windows/Linux SDK, Full Screen Thermography
    Physical Characteristics
    Dimension (mm)44.5x44.5x36.6
    Weight≤77g
    Environmental Adaptation
    Operation Temperature-40°C ~ +70°C
    Storage Temperature-45°C ~ +85°C
    Humidity5%~95%, Non-condensing
    VibrationRandom Vibration 5.35grms, 3 Axis
    ShockHalf-sine Wave, 40g/11ms, 3 Axis 6 Direction
    Optics
    Optional LensFixed Focus Athermal: 7.5mm/13mm/19mm/25mm/35mm

    Industrial Applications

    The PLUG417R thermal camera core is widely used in Electric Power Inspection, Machine Vision, Building HVAC Security & Monitoring, Outdoors, Firefighting & Rescue, Law Enforcement & Rescue, ADAS, UAV Payloads etc.


    Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz


    Praises from Customers

    Linear LWIR Thermal Camera Core Uncooled 400x300 50Hz


    FAQs

    1. What is DRI Range?


    It is a means of measuring the distance at which an infrared detector can produce an image of specific target and can be divided into detection range, recognition range, identification range.

    D (Detection): ability to distinguish an object from the background
    R (Recognition): ability to classify the object class (animal, human, vehicle, boat …)
    I (Identification): ability to describe the object in details (a man with a hat, a deer, a Jeep …)

    According to Johnson's criteria, when the probability of target detail visible at the DRI distance is 50%, the minimum number line pairs of the target is 1:3:6 (or 1:4:8), and the corresponding minimum number of pixels is 2:6:12 (or 2:8:16).

    Assuming that the target diameter is H, the focal length is f, the pixel size is d, and the number of line pairs is n, then the view distance L=H×f/(2n×d)

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