Cooled Thermal Module With 640x512 / 15μm MCT MWIR Infrared Detector

Place of Origin Wuhan, Hubei Province, China
Brand Name SensorMicro
Certification ISO9001:2015; RoHS; Reach
Model Number GAVIN615B
Minimum Order Quantity 1 Piece
Price Negotiable
Payment Terms L/C,T/T
Product Details
Resolution 640x512 / 15μm NETD ≤20mK
Spectral Range 3.7~4.8μm MW Frame Rate 50Hz/100Hz
Size 125x92x67mm Weight ≤650g
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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 Thermal Module With 640x512 / 15μM MCT MWIR Infrared Detector 

GAVIN615B Cooled MWIR Camera Module


GAVIN615B Compact Low Power Consumption 640x512 / 15μm MCT MWIR Cooled Camera Module


Product Description


GAVIN615B is a cooled mid wave thermal imaging module developed by SensorMicro. It consists of a 640x512 / 15µm HgCdTe MWIR IR detector with RS046 cryocooler, hardware electronics and various image processing algorithms are also embedded already to present sharp and clear thermal images.


Configured with RS046 cryocooler, the GAVIN615B is very compact in size, measuring 125x92x67mm in dimension and weighing less than 650g in weight. It’s stable power consumption is as low as 12w. With industrial standard cameralink interface, infrared camera or system integrator can design or integrate their own complete camera easily based on the GAVIN615B thermal imaging module.


Main Features


- High Sensitivity, NETD≤20mK

- Long Range Detection

- Adjustable Frame Rate

- Easy Integration into the System


Product Specifications


Model GAVIN615B
IR Detector Performance
Resolution 640x512
Pixel Pitch 15μm
Cryocooler RS046
Spectral Range 3.7μm~4.8μm MW
Cooling Time (20°C) ≤7min
NETD (20°C) ≤20mK
Image Processing
Frame Rate 50Hz/100Hz
Dimming Mode Linear/Histogram/Mixed
Digital Zoom ×1/×2/×4
Image Direction Horizontally/Vertically/Diagonally Flip
Image Algorithm NUC/AGC/IDE
Electrical Specification
Standard External Interface J30JZ 25pin
Analog Video PAL
Digital Video 16bit RAW/YUV: 16bit DVP/Cameralink Output
External Sync Frame External Sync: RS422 Level
Communication RS422, 115200bps
Power Supply 20~28VDC
Stable Power Consumption 12W
Dimension (mm) 125×92×67
Weight ≤650g
Operation Temperature -40°C ~ +60°C
Vibration Magnitude Vibration: GJB Vehicle-mounted High Speed Transport
Shock: Half-sine Wave, 40g 11 ms, 3 Axis 6 Direction 3 Times Each
Optical Lens
Optional Lens Continuous Zoom
60~240mm/F4
15~300mm/F4
21~420mm/F4
35~690mm/F4


Industrial Applications


The GAVIN615B thermal infrared camera module is widely used many areas such as Remote Monitoring System, Flight Vision Enhancement System, Multi-sensor Payload etc.


Cooled Thermal Module With 640x512 / 15μm MCT MWIR Infrared Detector 0


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.


FAQs


1. What is thermal sensiivity?

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.


2. 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, UAV payloads, industrial inspection, firefighting, predictive maintenance, ADAS, epidemic prevention, AIoT etc.