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SF-SPU65-3A29
SINCEREFIRST
Selection Requirement | Standard Direction | Selection Note |
Viewing Requirement | Three-camera / multi-direction | Use this model when the inspection task needs more than one viewing direction in the same assembly. |
Image Output | 1280×720, up to 18fps | Suitable for general live inspection where multi-direction coverage matters more than high frame rate. |
Working Distance | Fixed-focus direction: 5cm | Confirm that the key inspection surfaces are positioned around the intended close-range distance. |
View Angle | 76° | Check whether each optical direction provides the required local coverage. |
Lighting | White LED illumination | Confirm target reflectivity and whether the standard lighting distribution suits all three viewing directions. |
Host Integration | USB2.0 | Verify host USB, power and application software during sample testing. |
· Three-Camera Viewing Architecture — captures multiple inspection directions within one endoscope assembly.
· 720P Image Output — provides practical image detail for general equipment and cavity inspection.
· 18fps Real-Time Preview — supports live multi-view observation without positioning the product as a high-frame-rate model.
· 76° View Angle — keeps each viewing direction focused on a defined inspection area.
· Integrated White LEDs — provide local illumination where external light cannot easily reach.
The main benefit of a three-camera design is coverage, not simply adding more cameras. In an inspection path with forward targets and surrounding side surfaces, multiple optical directions can reduce repeated probe rotation or withdrawal. If the device only needs one forward view, a simpler single-camera structure may be easier to integrate.
Product Name | 3.9mm Diameter USB2.0 Endoscope Camera Module |
F.NO | 4.8 |
| Focus Length | 1.35mm |
| Resolution | 720P |
| Sensor Type | OV9734 |
| Function | Support UVC Protocol IOS |
FOV(D) | 105°*90°*60° |
Waterproof | IP67 |
Focusing Range | 10mm~100mm |
Diameter | 3.9mm |
| Distortion | <-6% |
Output | USB2.0 UVC |
Connector Type | Type-C |
Output Format | YUV/MJPEG |
Brand | Sincerefirst |
· Multi-Direction Borescope — Three optical directions can help the operator inspect the path ahead and surrounding internal surfaces within one tool. Confirm the working distance of each target surface.
· Pipe Junction Inspection Device — Useful where forward passages and side-wall conditions both need visual confirmation around a junction or branch.
· Mechanical Cavity Survey Tool — The multi-view architecture can capture more than one internal surface without repeatedly changing the probe orientation.
· OEM Multi-View Inspection Terminal — Suitable for custom equipment designed around simultaneous or selectable multi-direction imaging; host display logic should be verified during integration.
· Camera orientation: If the standard three-camera directions do not match the target layout, the required viewing directions can be evaluated. Please provide a sketch of the target positions around the probe.
· Focus planning: If 5cm fixed focus does not match all target surfaces, provide the distance from each camera direction to its corresponding target.
· Lighting distribution: If one viewing direction receives too much or too little light, provide the surface reflectivity and illumination requirement for each direction.
· USB and mechanical integration: Provide the host position, cable route and available enclosure space so the multi-camera assembly can be reviewed for integration.
Final configuration should be confirmed through engineering review and sample verification before mass production.
When is a three-camera endoscope worth using?
When the inspection task needs multiple directions and repeated probe rotation would reduce efficiency or coverage.
Is 18fps a high-frame-rate configuration?
No. Its primary value is multi-direction coverage rather than maximum motion smoothness.
What focus distance should I design around?
The confirmed fixed-focus direction is 5cm; the actual target layout should be checked during sample testing.
Does USB2.0 guarantee compatibility with every host?
No. Host USB role, power and application software still need verification.
What should I provide before sample evaluation?
Target positions around the probe, working distances, required viewing directions, lighting condition, cable route and host information.
Please send the forward and side target positions, working distance for each direction, required viewing coverage, lighting condition, available assembly space and USB host information. We can then review whether the standard three-camera structure fits the project.