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Uncooled Thermal Imaging Camera Module with 256x192 Resolution and 12μm Pixel Pitch for Easy Integration

Categories Thermal Camera Core
Brand Name: SensorMicro
Model Number: Mini212G2
Certification: ISO9001:2015; RoHS; Reach
Place of Origin: Wuhan, Hubei Province, China
MOQ: 1 Piece
Price: Negotiable
Payment Terms: T/T
Resolution: 256x192
Pixel Pitch: 12μm
Temperature Measurement Range: -20℃~+550℃
Power Consumption: 330mW
Temperature Measurement Accuracy: Greater of ±2℃ / ±2%
Operating Voltage: 3.3V±0.1V
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Uncooled Thermal Imaging Camera Module with 256x192 Resolution and 12μm Pixel Pitch for Easy Integration

Uncooled Thermal Imaging Camera Module Core 256x192 / 12μm Easy Integrated
Product Overview

The Mini212G2 miniature infrared camera module integrates a wafer-level packaged 256x192/12μm uncooled infrared detector, specifically designed for emerging markets including AIoT, Machine Vision, Industrial Vision, Security Monitoring, and Night Observation.

Built on SensorMicro's self-developed TIMO212 infrared module, the Mini212G2 features an integrated infrared ISP processing board that enables direct output of temperature matrices and thermal images, significantly reducing customer development workload. With compact size, low power consumption, and cost efficiency, it supports multiple field-of-view configurations and integrates universal control interfaces for broad industrial applicability.

Main Features
  • Miniature Module with Direct Thermal Imaging Output
    • Self-developed 256*192/12μm wafer-level infrared detector with significant cost advantages
    • Ultra-compact design: 17*17mm (PCBA) size, weighing as low as 4g
    • Integrated ISP processing board and advanced image algorithms for clear thermal images
  • Precise Detection & Flexible Configuration
    • High-precision temperature measurement with accuracy up to ±2℃
    • Supports spot, area, and full-frame measurement
    • Multiple field-of-view lens options available
  • Rich Interfaces for Easy Integration
    • Digital video interfaces: USB2.0, MIPI, DVP, BT.656, LVDS
    • Fully compatible with industry-standard interfaces
Product Specifications
ModelMini212G2
Resolution256*192
Pixel Size12μm
Spectral Response8~14μm
NETD≤50mK
Output Data14bit Raw
Frame RateThermography: 25Hz, Imaging: 50Hz
Focus ModeFocus Free
Lens (HFOV/FL)17.5°/10mm | 25°/7mm | 56°/3.2mm | 90°/2.1mm
Weight (g)7.1 | 6.4 | 4 | 6.8
PCBA Size (mm)17*17
Digital Video InterfaceUSB2.0 / MIPI / DVP / BT.656 / LVDS
Analog Video InterfaceCVBS (PAL/NTSC)
Operating Voltage3.3V±0.1V
Typical Power Consumption330mW
Temperature Measurement Range-20℃~+550℃ (-20℃~+150℃ | +100℃~550℃)
Temperature Measurement AccuracyGreater of ±2℃ / ±2%
Operating Temperature-40℃~+70℃
Humidity5%~85%
Storage Temperature-45℃~+85℃
CertificationRoHS 2.0 / Reach
Industrial Applications

This product is positioned for AIoT, Machine Vision, Industrial Vision, Security Monitoring, and Night Observation applications:

  • AIoT: Integration into compact AIoT devices including smart home appliances, wearable devices, and intelligent environmental monitors
  • Industrial Vision: Real-time monitoring of industrial equipment, laser processing and welding scenarios, semiconductor detection
  • Security Monitoring: Detection of illegal intruders and real-time alarm triggering
Our Product Line
  • High sensitivity and excellent performance
  • World-leading technology in infrared industry
  • Various infrared detectors available (both uncooled and cooled IR detectors in different formats and pixel sizes)
  • Volume production with annual capacity up to millions of detectors
Frequently Asked Questions
What is infrared thermal imaging?

In nature, all objects with temperatures above absolute zero (-273℃) radiate infrared rays. Using infrared camera detectors to measure the infrared radiation temperature difference between targets and background produces different infrared images, also called thermal images.

How do infrared detectors work?

Infrared radiation emitted by targets enters the thermal detector's sensing range. The infrared detector converts radiation signals of varying intensity into corresponding electrical signals, which are then amplified and processed to form infrared images visible to the naked eye.

What are the advantages of cooled infrared detectors?

Cooled infrared focal plane detectors operate at low temperatures provided by detector dewar coolers (DDC). They offer higher sensitivity for distinguishing subtle temperature differences compared to uncooled detectors, enabling detection, identification, and recognition of objects over distances exceeding ten kilometers. Their complex structure results in relatively higher costs than uncooled detectors.

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