Cooled Thermal Module with 1024×768/10μm MWIR Infrared Detector Featuring HOT High-Temperature Operation and Compact Lightweight Design

Place of Origin Wuhan, Hubei Province, China
Brand Name SensorMicro
Certification ISO9001:2015; RoHS; Reach
Model Number GAVIN GC1010HMG
Minimum Order Quantity 1 Piece
Price Negotiable
Payment Terms T/T
Product Details
Resolution 1024×768/10μm IR Detector NETD (23℃) 20mK (F2); 25mK (F4)
Spectral Range 3.7~4.8μm MW Frame Rate 50Hz
Size 87×94×54.5mm Weight ≤460g
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MCT MWIR Infrared Detector

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15um Cooled Thermal Module

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MCT Cooled Thermal Module 640x512

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Product Description
Cooled HOT Thermal Module with 1024×768/10μm MWIR Infrared Detector
Product Overview

Meet the GAVIN GC1010HMG HOT MWIR cooled infrared camera core. Built around a high-resolution 1024×768/10μm detector, it outperforms previous models with enhanced detail reproduction thanks to its expanded array and miniaturized pixels. Integrated cutting-edge algorithms such as DRC, 2D/3D noise reduction and edge enhancement ensure exceptional thermal image quality.

Its HOT high-temperature operation technology drives remarkable SWaP optimization, enabling a compact, lightweight form factor and low power consumption. Supporting CameraLink, USB3.0, GigE, HDMI and multiple other interfaces with selectable RAW/YUV output, the GC1010HMG is the optimal thermal imaging solution for handheld equipment, mobile payload platforms and long-duration surveillance requiring long-range detection within limited installation space.

Main Features
Superior Quality with Larger FPA and Smaller Pixel Size
  • Developed based on a 1024×768/10μm large-format HOT MWIR cooled infrared detector, delivering clear images and wide field of view
  • Equipped with next-generation image processing algorithms including DRC, 2D/3D noise reduction, and EE edge enhancement for superior image quality
  • Smaller 10μm pixel size provides higher spatial resolution and better signal-to-noise ratio
SWaP Optimization Leading by HOT Technology
  • Supports 150K high-temperature operation, with cooling time ≤ 4min
  • Compact size: 87×94×54.5mm, lightweight: 460g
Rich Interfaces, Easy Integration
  • Supports CameraLink/USB3.0/GigE/HDMI/SDI/MIPI/Fiber optic interfaces
  • Flexible RAW/YUV image output
Product Specifications
Model GAVIN GC1010HMG
Indicators
Resolution 1024×768
Pixel Size 10μm
Spectral Response 3.7μm±0.2μm~4.8μm±0.2μm
IR Detector NETD (23℃) 20mK (F2); 25mK (F4)
Image Processing
Frame Rate 50Hz
Digital Zoom 1× to 8× continuous digital zoom
Image Direction Horizontally/Vertically/Diagonally Flip
Image Algorithm DRC, 2D/3D Image Noise Reduction, EE
Electrical
Analog Video PAL/NTSC
Digital Video Standard: DVP/LVDS/USB2.0
Option: Cameralink/USB3.0/GigE/SDI/HDMI/MIPI/Single-mode Optical Fiber/Multi-mode Optical Fiber
External Sync Standard: LV-TTL
Option: RS422/LVDS
Communication Standard: USB2.0/LV-TTL
Option: RS422/CAN/USB3.0/GigE
Power Supply 12V±1V
Steady Power Consumption (23℃) ≤8W
Cooling Time (23℃) ≤4min
Size(mm) 87×94×54.5
Weight(g) ≤460
Operating Temperature -40℃~+71℃
Optical Lens
Lens Options Fixed focus: 25mm/F2
Industrial Applications
  • NDT (Non-Destructive Testing)
  • Environmental Monitoring
  • Long-Range Surveillance
  • Scientific Research
Product Portfolio Benefits
Diverse Product Portfolio

A wide range of product formats including infrared detectors, camera cores, and modules to meet various integration requirements.

Rich Product Variety

Multiple array resolutions, pixel sizes, wavebands, and lens options combinations provide greater flexibility for diverse applications.

Outstanding Performance

Clear imaging, compact size, low power consumption, high sensitivity, and strong reliability—designed to perform under a wide range of environmental challenges.

Easy Integration

Multiple interface options make integration straightforward and enable rapid development across multiple application fields.

Frequently Asked Questions
What is thermal sensitivity?

Thermal Sensitivity, also named NETD (Noise Equivalent Temperature Difference), is a key parameter for evaluating medium wave (MWIR) and long wave (LWIR) thermal imaging cameras. It is directly related to the clarity measured by the thermal imager. It is a numerical value representing the signal-to-noise ratio of the temperature difference and measured in milliKelvins (mK). The smaller the thermal sensitivity value, the higher the sensitivity and the clearer the image.

What are the applications of thermal imaging?

Temperature measurement and all-weather imaging are two basic functions of infrared thermal imaging technology. Products developed based on these two technologies are widely used in security & monitoring, industrial inspection, firefighting, predictive maintenance, ADAS, epidemic prevention, AIoT etc.