TM02-SOLO T 6 TOPS UAV AI Tracking Module with 640 Thermal Camera
Dual-spectrum 6 TOPS UAV AI module with 1080p 120 Hz EO imaging and a 640 x 512 at 50 Hz uncooled VOx thermal camera. CRSF with BetaFlight or ArduPilot support; request a quote.
Description
TM02-SOLO T dual-spectrum UAV AI tracking module
EO and 640 thermal imaging on a 6 TOPS onboard tracking platform.
TM02-SOLO T adds a 640 x 512 uncooled VOx thermal camera to the TM02-SOLO EO tracking configuration. It is designed for UAV OEMs and integrators that need person and vehicle tracking across daylight, low-light, and heat-contrast scenes while keeping inference onboard.
Buyer Summary
Dual-spectrum tracking for low-light and thermal-contrast operation
TM02-SOLO T combines the same 6 TOPS processing platform and 120 Hz EO camera as TM02-SOLO with a 640 x 512 thermal imaging channel. PIP and mixed visible-thermal workflows support observation when visible contrast is limited.
The thermal channel is presented as an imaging and AI-tracking input. Current documentation does not specify calibrated radiometric temperature measurement, so this product should not be selected as a temperature-measurement module without separate written confirmation.
Key Specifications
Technical parameters for UAV integration
| AI and Tracking | |
|---|---|
| Product model | TM02-SOLO T |
| Target types | Person and vehicle |
| Distance reference | Vehicle 400 m; person 170 m |
| Minimum target size | 10 x 10 pixels |
| Processing latency reference | 8 ms supplier table reference; confirm end-to-end test definition |
| Dynamic speed reference | Up to 450 km/h |
| Tracking modes | Reticle locking, close-to-lock, route pre-map, lost-target recall, and PIP |
| Maximum targets | Up to 120 tracks; output depends on firmware and AI model |
| Compute and Flight Control | |
| AI compute | 6 TOPS |
| CPU | Arm Cortex-A76 2.4 GHz plus Cortex-A55 1.8 GHz |
| Control protocol | CRSF |
| Flight-controller support | BetaFlight and ArduPilot |
| Recommended input | Regulated 9-16 V DC |
| Board size | 45 x 45 x 26 mm |
| Mounting pattern | 42.5 x 42.5 mm |
| EO Camera | |
| Sensor | 1/1.8-inch |
| Focal length | 8.45 mm |
| Field of view | D 66.3 deg / H 57.1 deg / V 30.4 deg |
| Minimum illumination | 0.001 lux reference |
| Resolution and frame rate | 1920 x 1080 at 120 Hz |
| Camera size | 25.5 x 19.5 x 19.5 mm |
| Thermal Camera | |
| Detector | Uncooled VOx |
| Spectral range | 8-14 um |
| Pixel pitch | 12 um |
| Focal length | 9.1 mm |
| Field of view | D 61.8 deg / H 47.7 deg / V 38.2 deg |
| Resolution and frame rate | 640 x 512 at 50 Hz |
| Board connection | MIPI supplier reference; confirm connector revision |
Application Fit
Where this module fits
Hardware Configuration
6 TOPS processing board with EO and 640 thermal cameras

Integration Notes
Checks to complete before flight testing
- Use a regulated supply and validate inrush, ripple, grounding, and thermal conditions on the aircraft.
- Confirm the exact hardware revision, connector orientation, pinout, and cable set before designing the airframe harness.
- Validate BetaFlight or ArduPilot firmware compatibility and CRSF channel mapping on the intended flight controller.
- Treat range, latency, speed, and target-count figures as supplier test references; flight results depend on optics, target size, weather, vibration, firmware, and installation.
- Complete bench, vibration, thermal, EMI, failsafe, and controlled flight tests before operational deployment.
- Validate thermal-camera placement, heat shielding, lens clearance, and MIPI cable routing away from hot or noisy aircraft components.
Supply Boundary
Module supply, not a complete UAV solution
Camcuda supplies the module configuration only. The UAV, airframe, flight controller, receiver, ESC, motors, radio, video transmitter, display, ground station, enclosure, integration service, and final application software are not included unless explicitly listed in the quotation.
RFQ Checklist
Information to provide for model and revision confirmation
- UAV platform, flight controller, firmware version, and CRSF wiring plan.
- Target type, expected working distance, scene conditions, and tracking workflow.
- Prototype quantity, forecast quantity, destination country, and required delivery schedule.
- Required cables, connector pinout, mechanical drawing, SDK, and integration documents.
- Compliance, export, procurement, and packaging documents required by your project.
- Confirm whether the project needs thermal imaging only or calibrated radiometric temperature data; radiometry is not specified in the current document.
Product FAQ
Questions for OEM and engineering buyers
Does TM02-SOLO T measure temperature?
The current document specifies a 640 x 512 uncooled VOx thermal imaging channel but does not specify calibrated radiometric output. Treat it as an imaging and tracking module unless radiometry is separately confirmed in writing.
Can the EO and thermal channels be viewed together?
The supplier document lists PIP and mixed visible-thermal operation. Confirm the exact output workflow, interface, and firmware revision during RFQ.
Is it a complete UAV solution?
No. It is a module configuration for OEM integration. The aircraft, power system, flight controller, communication link, software integration, and validation remain outside the standard module supply.
What should be confirmed before ordering?
Confirm the board and camera revisions, MIPI and EO cabling, connector pinout, mechanical drawings, firmware, output format, quantity, and documentation package.
Next Steps


Reviews
There are no reviews yet.