MCT MWIR Infrared Detector Cooled Thermal Module with 640x512 Resolution 15μm Pixel Size and 20mK NETD

Place of Origin China
Brand Name SensorMicro
Certification ISO9001:2015; RoHS; Reach
Model Number GAVIN GC615MB
Minimum Order Quantity 1 Piece
Price Negotiable
Payment Terms T/T
Product Details
Resolution 640x512 / 15μm IR Detector NETD (23℃) 20mK(F4); 25mK(F5.5)
Spectral Range 3.7~4.8μm MW Frame Rate 50Hz/100Hz
Size 120×84×60mm Weight ≤440g
Highlight

MWIR Detector Cooled Thermal Module

,

MWIR Infrared Cooled Thermal Module

Leave a Message
Product Description
MCT MWIR Infrared Detector Cooled Thermal Module 640x512 15μm
MCT MWIR Infrared Detector Cooled Thermal Module 640x512 15 μm

The GAVIN GC615MB MWIR cooled infrared core integrates a 640×512/15μm MWIR detector with an RS046 low-temperature Stirling cryocooler. It features built-in image processing algorithms and offers a comprehensive range of specifications with excellent consistency, fully meeting the demands of large-scale industrial applications.

Even in complete darkness or harsh weather conditions, the camera core delivers clear thermal images and accurate detection of both distant threats and close-range details. Ideal for security, surveillance, and monitoring scenarios, the GAVIN GC615MB infrared camera core provides reliable technological support across diverse environments.

Configured with RS046 cryocooler, the GAVIN GC615MB is very compact in size, measuring 120×84×60mm in dimension and weighing less than 440g. Its stable power consumption is as low as 10W. With industrial standard CameraLink interface, infrared camera or system integrators can design or integrate their own complete camera easily based on the GAVIN GC615MB thermal imaging module.

Main Features
Mainstream FPA, Broad Compatibility
  • Powered by a 640×512/15μm mid-wave cooled infrared detector for sharp, detailed thermal imaging
  • Integrates advanced image processing algorithms including DRC, 2D/3D noise reduction, and edge enhancement (EE) for superior clarity
High Reliability, Superior Sensitivity
  • MWIR cooled thermal imaging technology ensures excellent adaptability and consistency across applications
  • Outstanding thermal sensitivity with NETD ≤ 20mK
Easy Integration, Flexible Configuration
  • Supports CameraLink interface with RAW/YUV image data output
  • Multiple continuous zoom optical configurations available for different needs
Product Specifications
Model GAVIN GC615MB
Indicators
Resolution 640×512
Pixel Size 15μm
Cryocooler RS046
Spectral Response 3.7μm±0.2μm~4.8μm±0.2μm
IR Detector NETD(23℃) 20mK(F4)
25mK(F5.5)
Image Processing
Frame Rate 50Hz/100Hz
Dimming Mode Linear/Histogram/Mixed
Digital Zoom 1× to 8× continuous digital zoom
Image Direction Horizontally/Vertically/Diagonally Flip
Image Algorithm DRC, 2D/3D Image Noise Reduction, EE
Electrical
Standard External Interface J30JZ25 25PIN
Analog Video PAL/NTSC
Digital Video Standard: DVP/LVDS/USB2.0@50Hz
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 24V±4V
Steady Power Consumption(23℃) ≤10W
Cooling Time(23℃) ≤8min
Size(mm) 120×84×60
Weight(g) ≤440
Operating Temperature -40℃~+71℃
Vibration Vibration: High-speed transport intensity; Impact: Half Sine Wave, 40g/11ms, 3 Axis, 6 Direction, 3 Times/Direction
Optical Lens
Lens Options Fixed focus: 25mm/F2
Continuous zoom: 15~300mm/F4 23~450mm/F4
Industrial Applications

The GAVIN GC615MB infrared camera module is widely used in many areas such as NDT, Environmental Monitoring, Long-Range Surveillance, Scientific Research etc.

Your Trusted Partner in Infrared Sensing
Deep Technical Expertise

With many years of experience in the research, development, and application of infrared sensor technology, we have built strong capabilities across chip design, wafer fabrication, packaging and testing, as well as system integration. Our solid foundation enables us to continuously deliver innovative and reliable products that meet evolving market demands.

Focused on Innovation and Practical Implementation in Infrared Sensing

We are committed to driving technological breakthroughs in thermal imaging, constantly pushing the boundaries in NETD, SWaP, and operating temperature. Our products consistently lead in applications across security, industrial monitoring, intelligent systems, and more.

Diversified Product Portfolio

Backed by independent R&D and multiple technical pathways, we offer a comprehensive range of infrared detection components—both cooled and uncooled—providing tailored solutions for a wide variety of industries.

Rigorous Reliability Validation Ensures Quality Assurance

Supported by a robust quality management system, our products undergo multiple testing procedures throughout production to ensure long-term stability and reliability.

Professional Technical Support and Joint Development Services

Our engineering team works closely with customers' R&D and product teams to accelerate system integration, improve efficiency, and shorten time-to-market. Your success is our shared mission.

FAQs
1. Advantages of Optical Gas Imaging
  • Time-saving & Efficient: support large-scale real-time detection, rapid leak location, no need for interrupting production
  • Long Range Detection: away from dangerous and complex areas, non-contact non-destructive testing, without additional radiation source
  • Easy to Analyze: intuitive imaging, instant storage, convenient analysis
  • Multi-function Inspection: a variety of gases can be detected, with excellent remote temperature measurement function
2. Working Principle of Optical Gas Imaging

Optical gas imaging is a kind of infrared technology that could see invisible industrial gases. After absorbing infrared radiation at specific wavelengths, infrared radiation difference will cause between the gas and the background. The gas leak detection infrared detector with built-in narrowband filter only receives the infrared band near the gas infrared absorption peak, and can convert the gas into visible infrared images through the radiation difference between the gas and the background.