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SF-SJYL0320-3D+SF-SJM73115
SINCEREFIRST
This 3.1mm 3D ES101 Wide-Angle Separated USB Endoscope Camera Module designed for compact inspection devices that need wide close-range scene coverage. Its D140° field of view gives this model a different role from narrow-view small-diameter modules, while six 0201 LEDs provide local illumination around the front-end section. The separated architecture uses a 1m Teflon cable to connect the compact imaging section to a board with MIPI input and USB output through a Type-C interface. Difference: This model is primarily selected when a compact 3.1mm structure and very wide D140° coverage are required together. | ![]() |
Selection Requirement | Standard Configuration | Selection Note |
Entry space | 3.1mm module direction | Confirm the complete front-end clearance and cable transition in the final device. |
Required coverage | D140° field of view | Use this model when wide scene coverage is more important than low geometric distortion. |
Device layout | Separated imaging section and USB board | Confirm where the board and 1m cable can be arranged inside the product. |
Lighting | 6 × 0201 LEDs | Confirm target reflectivity and whether front lighting is suitable for the expected distance. |
Host connection | Type-C board with USB output | Confirm the host-side USB architecture and connector position. |
1. 3.1mm Compact Diameter — supports inspection-device integration where front-end space is limited.
2. D140° Wide View — captures a broader close-range scene in one frame, reducing the need to reposition the device for coverage.
3. Six 0201 LEDs — provide integrated illumination around the compact front end.
4. Separated Architecture — allows the imaging section and USB processing board to be positioned apart.
5. 1m Teflon Cable — provides a defined routing length between the compact front section and the processing board.
A D140° field of view can be valuable when the device needs to see more of the surrounding cavity or channel in one frame. The trade-off is that ultra-wide optics are not the first choice for geometry-sensitive measurement. This model should therefore be selected for coverage and compact access, not for low-distortion dimensional inspection.
Product Name | Separate endoscope camera module |
Sensor | ES101 CMOS Sensor |
Sensor Size | 1/9 Inch |
Pixel | 1.4µm×1.4µm |
Resolution | 1000x1000 |
Interface | USB 2.0 |
Diameter | 3.1mm |
FOV | 140° |
Output Format | 10bit/8bit RAW |
LED | 6Pcs LED |
| Type | Separate Endoscope Camera Module |
1.Micro Pipeline 3D Endoscopy: It detects 3D morphology, defects and deformation of inner walls in pipelines with ≥3.1mm diameter, relying on its 3D imaging and micro probe.
2.Minimally Invasive Medical 3D Vision: It provides stereo vision for minimally invasive surgical instruments, clearly showing tissue depth to improve operation accuracy.
3.Industrial Precision 3D Measurement: It performs non-contact 3D measurement and quality judgment of micro-components and solder joints with its 3D measurement capability.
4.Scientific Research Micro Stereo Observation: It is used for 3D imaging and analysis of materials and microstructures, meeting high-precision basic research needs.
Yes, it uses a standard Type-C interface and USB2.0 UVC protocol for true plug-and-play connectivity with Windows, Android, and medical tablets—no driver installation required.
Six white LEDs are built into the 3.1mm diameter lens module, providing self-contained illumination. This eliminates external light guides and reduces invasiveness in narrow spaces.
The module supports both YUV (uncompressed) and MJPEG (compressed) video output formats, allowing users to choose based on their image quality and bandwidth requirements.
5. Has the product obtained international certifications?
Yes, it has passed multiple international tests and certifications such as CE, FCC, RoHS and Reach, meeting global market access requirements.
CTA
Please provide the available diameter, target size, working distance, required coverage, distortion tolerance, cable route and USB board location. We can then review whether the 3.1mm D140° separated structure fits the device.