Advanced Multi-NIR Spectral Image Sensor with Optimized Vision Sensing System and Its Impact on Innovative Applications

H. Sumi, H. Takehara, J. Ohta, M. Ishikawa
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Abstract

Innovative applications with multiple near-infrared (multi-NIR) spectral CMOS image sensors (CIS) and camera systems have recently been developed. The multi-NIR filter is an indispensably key technology in practical of using the multi-NIR camera system in consumer camera. Advanced processing technology for multi-NIR signals has been developed using a Fabry-Perot structure. Three types of NIR wavelength filters are formed as a Bayer pattern with 2-x-2μm2 pixel size on a 5-M pixel BSI-CIS. The thickness differences of the three types of bandpass filters are suppressed to less than 75 nm. To enable applications in surveillance, automobiles, and fundus cameras for health management, signal processing technology has also been developed that processes and mixes each signal of a multi-NIR signal with low-intensity visible light images. This provides good image SNR (Signal-to-Noise Ratio) under low lighting conditions of 0.1 lux or less allowing changes of state to be easily identified.
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具有优化视觉传感系统的先进多近红外光谱图像传感器及其对创新应用的影响
最近,多个近红外(multi-NIR)光谱CMOS图像传感器(CIS)和相机系统的创新应用得到了发展。多近红外滤光片是多近红外相机系统在实际应用中不可缺少的关键技术。利用法布里-珀罗结构开发了多近红外信号的先进处理技术。在5 m像元BSI-CIS上形成了3种像元尺寸为2-x-2μm2的拜耳模式的近红外滤光片。三种带通滤波器的厚度差被抑制在75 nm以下。为了实现监控、汽车和眼底摄像机的健康管理应用,还开发了信号处理技术,该技术可以处理和混合多近红外信号和低强度可见光图像的每个信号。这在0.1勒克斯或更低的低光照条件下提供了良好的图像信噪比(信噪比),使状态的变化易于识别。
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