MLX90640 IR Thermal Camera Breakout 110° FOV I2C Interface - 7Semi
Unlock professional-grade thermal imaging with the 7Semi MLX90640 IR Thermal Camera Breakout (110° FOV, I2C Interface). Featuring a high-resolution 32×24-pixel IR sensor array and an expansive 110-degree field of view, this compact module delivers accurate real-time thermal mapping over large areas in a single snapshot.
Engineered for precision and reliability, the MLX90640 covers a temperature detection range of -40°C to 300°C, with an accuracy of ±2°C. Its factory-calibrated sensor ensures reliable performance right out of the box.
Designed for seamless integration, the module operates via a standard I2C digital interface, making it compatible with a variety of microcontrollers and embedded platforms.
With ultra-low current consumption under 23mA, this breakout is ideal for battery-powered and portable applications. Whether you're working on industrial diagnostics, research, IoT projects, or embedded systems, the MLX90640 110° FOV Thermal Camera provides a robust and versatile thermal sensing solution in a lightweight, easy-to-use form factor.
MLX90640 Thermal Camera Breakout Captured Image

Camera Connection with Raspberry PI Circuit Diagram

7Semi MLX90641 and MLX90640 Thermal Camera Breakout Comparison Table

Features:
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High-Resolution IR Sensor Array: 32×24-pixel thermal grid for detailed heat mapping.
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Wide Field of View: 110° × 75° FOV covers expansive areas without repositioning.
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Accurate Temperature Sensing: Measures from -40°C to 300°C with ±2°C precision.
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Low Power Consumption: Efficient performance with current draw under 23mA.
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Compact and Lightweight Design: Easy to mount and integrate into space-limited projects.
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Factory Calibrated: Ready-to-use accuracy with no additional calibration required.
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Digital I2C Interface: Seamless communication with 3.3V or 5V microcontrollers.
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Programmable Refresh Rate: Adjustable from 0.5Hz to 64Hz for flexible performance.
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Robust Operating Range: Functions reliably in ambient temperatures from -40°C to 85°C.
- Low NETD Performance: 0.1K RMS at 1Hz enables detection of small temperature differences.