-
Thermal Camera Core
-
Thermal Security Camera
-
Drone Thermal Camera
-
Plug-in Thermal Camera
-
Cooled Infrared Detectors
-
Cooled Camera Modules
-
Optical Gas Imaging
-
Infrared Thermal Camera Module
-
High Resolution Thermal Camera Module
-
Thermal Camera For Fever Detection
-
Vehicle Mounted Thermal Camera
-
Integrated Dewar Cooler Assembly
-
Uncooled Infrared Detectors
Miniature VOx FPA Thermal Imaging Camera Core with 120x90 Resolution and 12μm Pixel Pitch for Ultra-Miniature SWaP-C Applications
| Spectral Range | 8~14μm | Frame Rate | 25Hz |
|---|---|---|---|
| Resolution | 120x90 | Pixel Pitch | 12μm |
| Temperature Range | -20℃~+550℃ | Lens(HFOV/FL) | 50°/ 1.6mm |
| Highlight | VOx FPA Thermal Imaging Camera,Miniature Thermal Imaging Camera Core,Thermal Camera Core 120x90 |
||
TIMO112 miniature infrared module integrates wafer-level optics, 120x90 / 12μm wafer level package (WLP) detector and basic image processing circuit to quickly obtain thermal images of the target area and heat distribution.
TIMO112 thermal imaging core is oriented for optimized size, weight, power, cost (SWaP-C) infrared imaging applications. Its super miniature structure and ultralow power consumption are convenient to be integrated into various smart devices, thermal imagers or mobile terminals with strict requirements on cost, size and weight.
- Ultra-Miniature Module with Ultimate SWaP-C Optimization
- Wafer-level packaged detector + wafer-level optics + micro-electromagnetic valve shutter
- The smallest infrared thermal module, enabling minimal thermal imaging functionality with maximum cost efficiency
- Compact size, lightweight, and low power consumption, ideal for integration into miniature devices
- Proven Performance and Rapid Response
- Ultra-low power design, consuming as little as 9mW
- Smooth imaging with a frame rate of 25Hz
- Flexible and Eco-friendly
- Supports SPI image interface, compatible with various embedded platforms
- Compliant with RoHS 2.0 environmental standards
| Model | TIMO112 |
|---|---|
| Resolution | 120×90 |
| Pixel Size | 12μm |
| Spectral Response | 8~14μm |
| Focus Mode | Focus Free |
| Lens (HFOV/FL) | 50°/ 1.6mm |
| Weight | 1.8g |
| Size (without FPC) | 12.6mm×12.6mm×8.8mm |
| Number of PINs | 40PIN |
| Output Data | 14bit Raw |
| Frame Rate | 25Hz |
| Temperature Measurement Range | -20℃~+550℃ (-20℃~+150℃ | +100℃~550℃) |
| Temperature Measurement Accuracy | Greater of ±2℃ / ±2% |
| Operating Temperature | -20℃~+60℃ |
| Humidity | 5%~85% |
| Storage Temperature | -45℃~+85℃ |
| Certification | RoHS 2.0 / Reach |
The TIMO112 infrared thermal camera core is widely used in many areas, such as Thermography, Intelligent Hardware, Smart Building, Smart Home, AIoT etc.
SensorMicro was founded with a simple but powerful belief: Innovation should serve real-world needs.
SensorMicro exists to empower people and systems to see beyond the surface—into the patterns, the problems, and the possibilities that lie beneath.
By turning invisible heat into visible truth, we help industries make smarter decisions, protect what matters most, and navigate complexity with clarity.
Heeding to our insistence on being self-made and customer-first has become a sure recipe for SensorMicro's momentum. As our business spans much of the globe, we've charged ahead on all fronts—from security, firefighting, industrial inspection, medical care, and machine vision, to environmental monitoring and key aspects of carbon neutrality—helping partners unlock the full potential of intelligent infrared sensing, and connecting the dots of life.
We are more than an infrared technology company. We are a community of people committed to building a sustainable, ethical, and human-centered future. Every pixel of innovation we create is a promise — a promise to protect, to empower, and to serve.
When talking about infrared thermal imaging, the first thing to think about is infrared radiation (IR). The wavelength of infrared radiation energy starts at about 700nm and extends to about 1mm. All objects emit a certain amount of heat in the form of infrared radiation, which is invisible to us, because in the entire electromagnetic spectrum, the naked eye can only see "visible light".
The core component of the infrared equipment is the infrared thermal detector, which can sensitively detect the tiny temperature difference of the surrounding objects. Then, it collects this radiation information from the object and outputs the temperature information for imaging, which is based on the temperature difference information. The hotter the object, the more infrared radiation it produces. If the intensity is too high, you can feel it like heat.

