Product Introduction:
This is a 1080P 60FPS external trigger monochrome/color CMOS sensor USB camera module from SincereFirst, a compact optical solution specifically designed for industrial inspection and machine vision applications—leverageing the brand’s over 30 years of expertise in optical devices and camera modules. It offers optional monochrome or color CMOS image sensors, equipped with 2MP resolution (1920×1080) and supporting 60FPS high-frame-rate output. Combined with a 1/2.6-inch sensor and 3μm×3μm large pixel size, it achieves low-noise and high dynamic range imaging. Core features include global shutter and global exposure technologies, which effectively reduce rolling shutter artifacts during dynamic shooting and accurately capture fast-moving objects without blur. The external trigger function supports synchronous control of shooting timing via external signals, ensuring timing consistency for multi-device collaborative operations. Output formats are compatible with MJPG/YUY2, meeting the encoding requirements of different software platforms. Physically, it adopts a USB Type-C interface, supports USB3.0 high-speed transmission (5Gbps), and is compliant with the UVC protocol, enabling plug-and-play compatibility with mainstream operating systems such as Windows, Linux, and macOS. The module integrates a housing with 4 built-in high-brightness LED beads and features manual focus with a focus range of 1cm~Infinity, adapting to flexible shooting scenarios from macro to long-distance. Manufactured using SMT and AA (Active Alignment) processes—backed by SincereFirst’s Class 10/100 COB dust-free workshops—the product has passed international certifications including FCC, CE, Reach, and RoHS, ensuring industrial-grade quality and global compliance—a testament to quality recognized by Fortune Top 500 partners.
In practical applications, the 4 LED beads integrated in the module’s housing form technical complementarity with the external trigger function: external trigger signals can synchronously control the on/off and brightness of the LED light source, avoiding ambient light interference while precisely matching the camera’s exposure time, achieving “trigger-to-illumination” millisecond-level response. It supplements uniform illumination while capturing moving objects, ensuring sharp and shadow-free image edges. In low-light environments, the LED can be activated for local fill light on demand via preset trigger rules, avoiding glare caused by global strong light and enhancing image contrast and detail restoration. This design not only optimizes imaging quality in complex lighting scenarios but also reduces the processing pressure on software algorithms through hardware-level synergy, providing a stable and reliable underlying data acquisition solution for industrial vision, smart devices, and other fields.
Product Advantages & Features
- Precise Synchronized Imaging Control: The combination of global shutter and external trigger function enables image capture with millisecond-level response accuracy. When an external sensor sends a signal, it synchronously triggers 4 LEDs for fill light during exposure, completely eliminating motion blur when capturing high-speed moving objects.
- Adaptive Lighting Solution: The 4 built-in LED beads support external trigger-synchronized dimming. By adjusting the trigger pulse width, the fill light duration can be precisely controlled, avoiding overexposure while reducing reliance on ambient light by 60%.
- Industrial-Grade Reliability: The AA process ensures strict alignment between the optical center and the sensor, and the SMT process makes the module resistant to vibration environments. The USB3.0 interface provides 5Gbps transmission bandwidth, guaranteeing stable transmission of 1080P@60FPS video streams without frame loss.
- Cross-Platform Compatibility: Following the UVC protocol for driver-free design, it supports plug-and-play functionality. Combined with the Type-C interface, it can be quickly deployed on industrial computers, embedded devices, and mobile terminals, significantly reducing system integration time.
Product Application
- Drone Mapping: During autonomous flight operations, periodic shooting is triggered by GPS signals. The LED fill light module automatically compensates for details in shadowed areas, and the global exposure technology effectively suppresses motion blur in aerial images.
- Intelligent License Plate Recognition: When installed in toll stations or checkpoint systems, license plate shooting is triggered by ground loops. The adaptive fill light of the LED array eliminates glare interference from vehicle lights at night, improving the license plate recognition rate.
- High-Speed Assembly Line Quality Inspection: On electronic product assembly lines, photoelectric sensors trigger the camera to capture images of components on the conveyor belt. The synchronous flash of LEDs freezes the moment of motion, enabling real-time detection of micron-level component misalignment or welding defects.
- Scientific Experiment Recording: Suitable for scenarios such as blasting analysis and fluid dynamics research, it captures transient phenomena using the external trigger function. The collaborative work of LED pulse fill light and high-speed photography can clearly record microsecond-level processes such as droplet collision and material fracture.
Brand Value Empowerment by SincereFirst
As a trusted partner of Fortune Top 500 companies with more than three decades of industry leadership, SincereFirst combines deep optical expertise with world-class manufacturing to deliver one-stop OEM/customization solutions. Our commitment to excellence extends from Class 10/100 dust-free production environments to comprehensive after-sales protection, ensuring each camera module represents not just cutting-edge technology, but the peace of mind that comes from working with an industry pioneer dedicated to your long-term success.
If you are looking for a endoscope camera module solution that combines performance, quality, and comprehensive support, contact SincereFirst today—let’s explore new possibilities in precision imaging together.

