JOURNAL ARTICLE

An Area-Efficient up/down Double-Sampling Circuit for a LOFIC CMOS Image Sensor

Ai OtaniHiroaki OgawaK. MiyauchiSang-Man HanHideki OwadaIsao TakayanagiShunsuke Okura

Year: 2023 Journal:   Sensors Vol: 23 (9)Pages: 4478-4478   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

A lateral overflow integration capacitor (LOFIC) complementary metal oxide semiconductor (CMOS) image sensor can realize high-dynamic-range (HDR) imaging with combination of a low-conversion-gain (LCG) signal for large maximum signal electrons and a high-conversion-gain (HCG) signal for electron-referred noise floor. However, LOFIC-CMOS image sensor requires a two-channel read-out chain for LCG and HCG signals whose polarities are inverted. In order to provide an area-efficient LOFIC-CMOS image sensor, a one-channel read-out chain that can process both HCG and LCG signals is presented in this paper. An up/down double-sampling circuit composed of an inverting amplifier for HCG signals and a non-inverting attenuator for LCG signals can reduce the area of the read-out chain by half compared to the conventional two-channel read-out chain. A test chip is fabricated in a 0.18 μm CMOS process with a metal–insulator–metal (MIM) capacitor, achieving a readout noise of 130 μVrms for the HCG signal and 1.19 V for the LCG input window. The performance is equivalent to 103 dB of the dynamic range with our previous LOFIC pixel in which HCG and LCG conversion gains are, respectively, 160 μV/e− and 10 μV/e−.

Keywords:
CMOS Capacitor Image sensor Correlated double sampling Dynamic range Electrical engineering SIGNAL (programming language) Amplifier Electronic engineering Materials science Optoelectronics Physics Computer science Engineering Optics Voltage

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Topics

CCD and CMOS Imaging Sensors
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Optical Sensing Technologies
Physical Sciences →  Physics and Astronomy →  Instrumentation
Analytical Chemistry and Sensors
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