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Precise Thermal lmaging for Industrial Excellence

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HJK-CVBS

The HJK-CVBS series is a popular infrared module, which features lightweight design, compact size, and a variety of FOV and resolution options. It supports CVBS output for image transmission and is specially designed for integration into FPV drones. The series is compatible with mainstream image transmission modules and OSD modules, offering clear image quality.

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HJK-CVBS series is specifically designed for inte-

gration into FPV drones.


It provides real-time CVBS video output for seamless compatibility with mainstream image

transmission modules and OSD modules. With options for various resolutions

and FOVs, it delivers clear and adaptable images.

 

 

  • Detector
  • Image processing and display
  • Interface
  • Others
  • Lens
  • Technical Parameter
  • Certificates
  • IR resolution
    640 × 512, 384 × 288, 256 × 192
    NETD
    ≤50 mK (@25 °C, F#1.0)
    Pixel pitch
    12μm
    Frame rate
    25Hz / 50Hz
    Response band
    8~14 μm
    Output resolution
    720×576
    Minimum focus distance
    2m
    Maximum aperture value
    F1.0
  • Electronic zoom
    ×1, ×2, ×4, ×8
    Image denoising
    support
    Bad pixel correction
    support
    Contrast adjustment
    support
    Brightness adjustment
    support
    Color palette
    multiple color palettes, including white-hot, black-hot, iron red rainbow, etc.
    DDE
    support
    Contrast control
    support
  • Hardware interface
    CVBS
  • Storage humidity
    <90% RH
    Vibration
    sinusoidal vibration, 20 m/s², 3 axial directions
    Shock
    half sine wave, 30 g / 11 ms, 3 axes, 6 directions
    Power input
    DC 6V~17V
    Weight and Dimension
    256 resolution: ≤21 g, 38.58mm × 20mm × 20mm
    384 resolution: ≤23 g, 37.82mm × 20mm × 20mm
    640 resolution: ≤23 g, 37.82mm × 20mm × 20mm
  • Resolution Focal length(mm) Field of view
    256 × 192 9.7 18.1°(H) ×13.6°(V), 22.6°(D)
    384 × 288 9.7 26.46°(H) ×19.81°(V), 33.19°(D)
    640 × 512 9.1 48.3°(H)×38.6°(V), 62.4°(D)

     

Certificates

OEM / ODM

Customized Solution

Including Different Lenses, Sensors, Circuit Boards, and Interfaces

How Can We Help You?

We are committed to exceeding customer expectations and needs through excellent product quality and service quality.

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Our Factory and Equipment

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Related Products

HJK-UVC

The HJK-UVC series is widely used for integration into various handheld devices. It offers an SDK for data acquisition and function calls, enabling users to obtain clear images and basic data, based on which they can develop their own software. The all-in-one package and excellent optical pathway ensure reliable and accurate temperature measurement. With UVC protocol and driver-free operation, it saves development time.

HJK-LWIR-IP

The HJK-LWIR-IP series is integrated into security thermal cameras for perimeter intrusion detection and critical area monitoring. On-board analytics can be seamlessly integrated into the HJK-SC due to its open ARM-based system architecture. Its compressed video significantly saves storage space and can be transferred to mainstream NVRs. Cimage technology, along with an optimized optical pathway, ensures clear edges and low noise in the image.

HJK-LWIR

The HJK-LWIR series is a reliable and reputable line of thermal imaging device and imaging camera products widely used in various applications. Powered by Cimage technology, it ensures temperature measurement accuracy. With the SDK, users can easily access data and integrate the infrared camera into third-party systems. A wide selection of lenses and FOVs makes this thermal imaging camera suitable for capturing targets clearly, whether they're small and close or large and far away. As an ir thermal camera and infrared heat camera, it performs reliably across diverse scenarios.

HJK-SWIR

The HJK-SWIR series is ideal for high temperature measurement applications, such as molten metal monitoring, laser welding, 3D printing, etc. Its temperature measurement range varies from 600°C to 3500°C. Excellent temperature accuracy of ±1% can be achieved because of the short-wave sensor and Cimage technology.