Far infrared thermal sensor array (32x24 RES) High SNR
The MLX90642 is a thermal imaging array featuring a 32x24 pixel matrix with a high Signal-to-Noise ratio (SNR). This sensor provides a total of 768 Far-Infrared (FIR) pixels that translate into detailed thermal images, allowing for precise temperature mapping of the observed environment. Whether it's detecting subtle temperature variations in a complex industrial process or capturing the thermal profile of a room for occupancy monitoring, the MLX90642 delivers the necessary clarity. To address the diverse needs of various applications, the sensor is offered with two distinct Field of View (FOV) options: 45°x35° and 110°x75°. This flexibility allows designers to select the optimal FOV for their specific use case.
The MLX90642 is a thermal imaging array featuring a 32x24 pixel matrix with a high Signal-to-Noise ratio (SNR). This sensor provides a total of 768 Far-Infrared (FIR) pixels that translate into detailed thermal images, allowing for precise temperature mapping of the observed environment. Whether it's detecting subtle temperature variations in a complex industrial process or |
capturing the thermal profile of a room for occupancy monitoring, the MLX90642 delivers the necessary clarity. To address the diverse needs of various applications, the sensor is offered with two distinct Field of View (FOV) options: 45°x35° and 110°x75°. This flexibility allows designers to select the optimal FOV for their specific use case. |
Key features MLX90642
- Best-in-class SNR
- Noise Equivalent Temperature Difference (NETD) 0.065K @2Hz refresh rate
- 2 FoV options
- 45°x35°
- 110°x75°
- Factory calibrated
- 32x24 pixels IR array
- Contactless
- Easy to integrate
- Global shutter readout
- Onboard temperature calculation
- I2C compatible digital interface
- Programmable refresh rate 2Hz…16Hz
- 3.3V supply voltage
- Ambient operating temperature range from -40°C to 85°C
- Object temperature -40°C…260°C
- Pin compatible with MLX90640
- Package TO39 (Industry-standard four lead)


