私たちのニュースレター
ニュースレターを購読して、割引などを入手してください。
IR-Compatible Optical Lens Elements for Night Driving and Automotive Vision Systems In automotive night driving systems, performance degradation is often incorrectly attributed to image sensors or ISP algorithms. In real vehicle deployment, however, most night vision issues originate from instability in IR optical transmission and material mismatch within the lens system. Common field issues reported by automotive camera OEMs include: Reduced visibility distance in low-light
Precision Surveillance Camera Lenses For CCTV / IP And AI Security Imaging Systems Most CCTV and IP camera manufacturers do not lose performance in lab testing. They lose performance when moving into mass production and real-world deployment. Typical problems that trigger supplier replacement include: Sample image quality is acceptable, but mass production shows inconsistent sharpness Wide-angle cameras show edge blur after module assembly alignment Night vision performance
Precision Spherical & Aspherical Lens Elements for CCTV Modules In CCTV module design, optical performance is fundamentally determined by two factors: lens geometry and optical material selection. While spherical and aspherical structures define image correction capability, the optical glass material directly determines light transmission efficiency, infrared compatibility, thermal stability, and long-term imaging consistency. Our precision spherical and aspherical lens
Precision Spherical & Aspherical Lens Elements for CCTV Modules In CCTV module design, optical performance is fundamentally determined by two factors: lens geometry and optical material selection. While spherical and aspherical structures define image correction capability, the optical glass material directly determines light transmission efficiency, infrared compatibility, thermal stability, and long-term imaging consistency. Our precision spherical and aspherical lens
Vehicle Camera Lenses for Driver Monitoring and In-Cabin Vision Systems In driver monitoring systems (DMS) and in-cabin vision applications, performance issues are frequently attributed to AI recognition models or ISP tuning. However, in real automotive validation and mass production, many failures originate from the optical lens system used in the cabin camera module. Common field issues observed in OEM in-cabin programs include: Inconsistent face and eye detection accuracy
Custom Optical Design Surveillance Camera Lenses For Low Light And Wide-Angle Imaging Systems In surveillance camera manufacturing, many OEM buyers face the same situation: Sample images look acceptable, but mass production shows inconsistent clarity Wide-angle cameras suffer from edge blur and distortion after assembly Night vision performance drops significantly in real outdoor deployment AI recognition accuracy decreases due to unstable optical quality In most cases, these