Fast Integration Cooled IR Camera Core EYAS1212 Mega Pixel 1280x1024 / 12μm

Place of Origin Wuhan, Hubei Province, China
Brand Name GST
Certification ISO9001:2015; RoHS; Reach
Model Number EYAS1212
Minimum Order Quantity 1 Piece
Price Negotiable
Payment Terms L/C, T/T

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Product Details
Resolution 1280x1024 Pixel Pitch 12μm
NETD ≤20mK Spectral Range 3.7~4.8μm MW
Size 149x58.5x71mm Frame Rate 1~100Hz Adjustable
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EYAS 1212 IR Camera Core


1280x1024 IR Camera Core


12um Integration Cooled Camera Modules

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Product Description
EYAS1212 Cooled Thermal Core


EYAS1212 Mega Pixel 1280x1024 / 12μm MCT MWIR Cooled Infrared Module for Fast Integration


Product Description


EYAS1212 is a high resolution analog-digital cooled infrared module based on 1280x1024 formats 12μm pitch IR FPA.


This AD module includes a proximity board that provides the FPA timing, and the sensitive power supplies. In addition, the Camera Link interface outputs 16bit raw data which highly simplifies the integration of the detector to the system.


Therefore, EYAS1212 AD module makes it easy for OEM customers to carry out fast acceptance test on GST C1212M 1280x1024 / 12μm cooled infrared detector, start rapid secondary development and shorten their development period of cooled infrared modules or complete infrared thermal cameras or systems based on cooled infrared detectors.


Global Sensor Technology is a supplier of infrared detectors sensors and OEM thermal camera cores. We have more than 10 years of experience in the infrared thermal imaging industries. We have professional after-sales service team to provide customers with professional reply. For any questions or problems, please contact us at any time, we will be in the first time for you to answer.


Main Features


- Easy to Develop & Integrate

- Cameralink Interface Output 16bit Raw Data, Serial Port Control

- Integrated Structure, Dimensions are Consistent with Detector

- 5V Single-supply

- Capable of Capturing High Speed Moving Target


Product Specifications


Model EYAS1212
IR Detector Performance
Resolution 1280x1024
Pixel Pitch 12μm
Cryocooler RS058F
Spectral Range 3.7μm~4.8μm MW
Cooling Time (25°C) ≤6min
Optimal NETD (20°C) ≤20mK
Working Mode
Frame Rate 1~100Hz Adjustable
Working Mode Snapshot; ITR/IWR Integration Mode; Windows Mode; Anti-blooming
Electrical Specification
Standard External Interface QSH 60pin
Digital Video Cameralink: Output 16bit Raw Data
External Sync CC1: INT/Frame External Sync; CC2: MC External Sync
Communication Cameralink Serial Port: TFG+/-, TC+/-; 9600bps
Power Supply 1 Channel Imaging Panel: 5V
1 Channel Cryocooler: 24V
Stable Power Consumption 9W
Dimension (mm) 149×58.5×71
Weight ≤680g
Working 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


Industrial Applications


The EYAS1212 thermal imaging module is widely used many areas such as Remote Monitoring System, Flight Vision Enhancement System, Multi-sensor Payload etc.


Fast Integration Cooled IR Camera Core EYAS1212 Mega Pixel 1280x1024 / 12μm 0


About GST Infrared Team


Fast Integration Cooled IR Camera Core EYAS1212 Mega Pixel 1280x1024 / 12μm 1




1. Classification of Infrared Focal Plane Arrays (FPA)


According to the cooling method, infrared focal plane array can be divided into cooled and uncooled thermal imaging detectors. The cooled FPA infrared detector mainly adopts Dewar bottle/quick start throttling refrigerator and Dewar bottle/Stirling cycle refrigerator at present. While the uncooled FPA thermal IR detector works at room temperature. It is the core of uncooled thermal imaging system. The most common heat-sensitive materials include vanadium oxide (Vox) and amorphous silicon (a-Si). Vanadium oxide material is the mainstream choice in the current market; it has a high temperature resistance coefficient, and high thermal sensitivity.


2. Working Principle of Infrared Focal Plane Array


An array of photosensitive elements is arranged on the focal plane array detector. Infrared rays emitted from infinity are imaged on these photosensitive elements of the focal plane array through the optical system. The detector converts the light signal into an electrical signal and performs integral amplification, sampling, output buffer and multiplexing system, and is finally sent to the monitoring system to form an image.