发明名称 Solid-state imaging apparatus with each pixel including a photoelectric conversion portion and plural holding portions
摘要 A solid-state imaging apparatus including a plurality of pixels each including: a first holding portion for holding signal carriers from a photoelectric conversion portion; an amplifying portion for amplifying and reading a signal based on the signal carriers generated in the photoelectric conversion portion; and a carrier discharging control portion for discharging charge carriers in the photoelectric conversion portion to an OFD region, and having a carrier path between the photoelectric conversion portion and the first carrier holding portion, in which the solid-state imaging apparatus further includes a second carrier holding portion electrically connected with the first carrier portion in parallel through a first transfer unit, when viewed from an output node of the photoelectric conversion portion, thereby smoothing an movie imaging without causing discontinuous frame while suppressing generation of noise mixing into the charge carrier holding portion.
申请公布号 US9083908(B2) 申请公布日期 2015.07.14
申请号 US201313832283 申请日期 2013.03.15
申请人 Canon Kabushiki Kaisha 发明人 Yamashita Yuichiro;Kobayashi Masahiro;Watanabe Takanori;Kojima Shinsuke;Ichikawa Takeshi;Onuki Yusuke
分类号 H01L27/146;H04N5/378;H04N5/359;H04N5/3745 主分类号 H01L27/146
代理机构 Fitzpatrick, Cella, Harper & Scinto 代理人 Fitzpatrick, Cella, Harper & Scinto
主权项 1. A solid-state imaging apparatus comprising a plurality of pixels each including a first photoelectric conversion portion; a first holding portion for holding signal carriers from the first photoelectric conversion element; a second photoelectric conversion portion; a second holding portion for holding signal carriers from the second photoelectric conversion element; a first transfer portion for controlling an electrical connection between the first holding portion and the second charge holding portion an amplifying portion for amplifying and reading a signal based on the signal carriers held in at least one of the first and second holding portions; and a carrier discharging control portion for controlling an electrical connection between the first and second photoelectric conversion portions and an overflow drain region, wherein a carrier path between the first photoelectric conversion portion and the first holding portion, and a carrier path between the second photoelectric conversion portion and the second holding portion are formed in a buried channel structure.
地址 Tokyo JP
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