Sensor
CMOS / global shutter / TOF selection matched to scene lighting, frame rate, and size constraints.
Optics · sensor · mechanics · calibration — mass-production imaging front ends
For smart home, robotics, industrial inspection, and medical-related scenarios, Shunter provides camera module customization: sensor and lens selection, mechanical tooling, sync calibration, and small-batch delivery—turning “it captures an image” into a mass-production front-end module.
Combines with visual PCBA, edge AI, and full product solutions for a complete sensor–module–board–algorithm delivery chain.
A camera module engineering path split into six coordinated stages from optics through mass production.
FOV / resolution
Form factor and interface constraints
OV / OX and others
Mono / stereo / TOF
Lens / filter
Bracket and sealing design
AA / active focus
Module consistency control
Intrinsics / extrinsics / sync
ISP / SoC integration
Functional test
Small batch to volume
CMOS / global shutter / TOF selection matched to scene lighting, frame rate, and size constraints.
Lens, IR-Cut, filters, and distortion control for FOV and imaging baseline.
Bracket, baseline, sealing, and thermal design for doorbells, robots, and industrial mounts.
Mono / stereo intrinsics and extrinsics, multi-camera sync, and ISP bring-up for downstream algorithms.
Typical module projects advance by phase to reduce risk from split optics, mechanics, and board teams.
Define application (doorbell / IPC / robot / industrial), FOV, resolution, form factor, and connector.
Evaluate OV / OX with lens combinations; add stereo baseline or TOF when needed.
Module structure, bonding process, DFM; fixtures reserved for mass production.
First-sample AA / focus, sharpness and consistency checks, mainboard ISP integration.
Stereo / multi-camera calibration, sync triggers, edge algorithms or full product firmware.
Small batch, frozen test specs, and ongoing engineering change management.
The customization chain applied to a synchronously capturing, tunable stereo module for depth and tracking front ends.
Common doorbell / IPC front end—low light, HDR, compact mechanics.
Distance and motion estimation front end for robot navigation and follow modes.
Small diameter, reliable connection—combinable with endoscope system delivery.
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