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Payment Terms : T/T
Resolution : 640x512 / 12μm
Spectral Range : 8~14μm
Brand Name : SensorMicro
Typical Power Consumption : 0.65W
Frame Rate : 25/30/50Hz
NETD : ≤25mK
Model Number : iTL612 PLUS
Certification : ISO9001:2015; RoHS; Reach
Place of Origin : Wuhan, Hubei Province, China
MOQ : 1 Piece
Price : Negotiable
Supply Voltage : 4.2-5.5V
The iTL612 PLUS is a state-of-the-art ultra-miniature infrared camera core that integrates the premium ApexCore 640×512/12μm wafer-level detector to deliver outstanding thermal imaging performance in a minimized form factor. Redefining global industry SWaP standards, it features a tiny 17.3×17.3×24.2mm footprint, ultra-light 13.7±0.5g weight and industry-leading 0.65W low power operation.
Boasting ultra-high thermal sensitivity of ≤25mK and advanced image processing algorithm enhancement, it produces sharper, more detailed and more accurate thermal images. Designed for global developer convenience, it offers versatile lens options, comprehensive interface compatibility including DVP8, LVDS, MIPI, USB 2.0 and BT.656, as well as flexible multi-format data output.
This camera core is an ideal component for lightweight thermal imaging device development, covering security surveillance, industrial inspection, reconnaissance and portable night vision applications.
| Model | iTL612PLUS |
|---|---|
| IR Detectors Indicators | |
| Sensitive Material | VOx |
| Resolution | 640×512 |
| Pixel Size | 12μm |
| Spectral Response | 8μm ~ 14μm |
| Typical NETD | ≤25mK |
| Image Processing | |
| Digital Frame Rate | 25/30Hz/50Hz |
| Start-up Time | ≤6s |
| Digital Video | RAW/YUV/Matrix-TEMP |
| Image Algorithm | NUC/3DNR/DNS/DRC/EE |
| Image Display | 10(Black Hot/White Hot/Pseudo Color) |
| PC Software | |
| Infrared Module | Module Control & Video Display |
| Electrical | |
| Standard External Interface | 30Pin_HRS interface: DF40C-30DP-0.4V(51) |
| MIPI External Interface | 34Pin_Panasonic Connector Interface: AXE634124 |
| Communication Interface | TTL-232/USB2.0 |
| Digital Video Interface | DVP8/LVDS/MIPI/USB2.0/BT.656 |
| Supply Voltage | 4.2-5.5V |
| Typical Power Consumption | 0.65W |
| Mechanical | |
| Size (including lens) | 17.3×17.3×24.2 (9.1mm lens) 17.3×17.3×30.2 (13mm lens) 17.3×17.3×38 (24mm lens) 17.3×17.3×54 (45mm lens) |
| Weight (including lens) | 13.7±0.5g (9.1mm lens) 17.9±0.5g (13mm lens) 27.3±0.5g (24mm lens) 51±0.5g (45mm lens) |
| Environmental Adaptability | |
| Operating Temperature | -40℃~+70℃ |
| Storage Temperature | -45℃~+85℃ |
| Humidity | 5%~95%, non-condensing |
| Vibration | 5.35g, Random Vibration, 3-axis |
| Impact | Half Sine Wave, 30g/11ms, Impact Direction X Axis, 3 times |
| Certification | ROHS2.0/REACH |
| Optical Lens | Fixed Focus Athermal: 9.1/13/24/45mm |
The iTL612 PLUS thermal camera module can be used in the fields of Forest Firefighting, Power Maintenance, Photovoltaic Inspection, Security Monitoring, Wearable Devices, Portable Devices, and more.
Infrared thermal imaging is a method of using infrared radiation and thermal energy to gather information about objects, in order to formulate images of them, or get temperature information of the objects, even in low visibility environments.
Infrared thermal imaging system is a passive non-contact detection and identification of infrared technology. It focuses the infrared radiation of the scene on the focal plane array infrared detector through the infrared optical system that can pass through infrared radiation. The thermal detector converts the radiation signal of different intensity into the corresponding electrical signal, and then through amplification and video processing, forms the infrared image that can be observed by the naked eyes.
Thermal Sensitivity, also named NETD (Noise Equivalent Temperature Difference), is a key parameter for evaluating medium wave (MWIR) and long wave (LWIR) thermal imaging cameras. It is directly related to the clarity measured by the thermal imager. It is a numerical value representing the signal-to-noise ratio of the temperature difference and measured in milliKelvins (mK). The smaller the thermal sensitivity value, the higher the sensitivity and the clearer the image.
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640×512 Resolution 12μm Pixel Size ≤25mK NETD Thermal Camera Module LWIR Camera Core Images |