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    • 5. 发明授权
    • Charge transfer device
    • 电荷转移装置
    • US5612739A
    • 1997-03-18
    • US610577
    • 1996-03-07
    • Yasuhito MakiMaki SatoTadakuni Narabu
    • Yasuhito MakiMaki SatoTadakuni Narabu
    • H01L29/762H01L21/339H01L27/148H04N5/335H04N5/341H04N5/357H04N5/361H04N5/363H04N5/369H04N5/372H04N5/3728H04N5/378
    • H04N5/361H04N5/37213H04N5/3728
    • A charge transfer device including a charge input portion for inputting a reference charge, a charge transfer portion for receiving and transferring the reference charge, and a conversion portion converting the reference charge outputted from the charge transfer portion into a reference voltage. The reference charge input portion may be arranged to generate a reference charge. Alternatively, the reference charge may be externally generated. The charge transfer device may further include a signal charge input portion for inputting signal charges to the charge transfer portion. The signal charge input portion may be arranged to generate signal charges corresponding to incident light. Signal charges externally generated may be inputted to the signal charge input portion. The charge transfer device enables a charge-output voltage characteristic to be accurately detected at all times without any problem. It is also possible to accurately control the charge-output voltage characteristic.
    • 一种电荷转移装置,包括用于输入参考电荷的电荷输入部分,用于接收和转移参考电荷的电荷转移部分,以及将从电荷转移部分输出的参考电荷转换为参考电压的转换部分。 参考电荷输入部分可以被布置成产生参考电荷。 或者,可以从外部产生参考电荷。 电荷转移装置还可以包括用于向电荷转移部分输入信号电荷的信号电荷输入部分。 信号电荷输入部分可以被布置成产生对应于入射光的信号电荷。 外部产生的信号电荷可以被输入到信号电荷输入部分。 电荷转移装置能够始终没有任何问题地一直准确地检测电荷输出电压特性。 也可以精确地控制充放电电压特性。
    • 7. 发明授权
    • Charge transfer device
    • 电荷转移装置
    • US5818075A
    • 1998-10-06
    • US697178
    • 1996-08-20
    • Seiichi KawamotoYasuhito MakiTadakuni NarabuMasahide Hirama
    • Seiichi KawamotoYasuhito MakiTadakuni NarabuMasahide Hirama
    • H01L29/423H01L29/768H01L27/148
    • H01L29/42396H01L29/76816
    • A charge transfer device comprising charge transfer means for transferring charges, a floating diffusion layer for accumulating the charges transferred from said charge transfer means, a floating gate electrode formed on said floating diffusion layer via an insulating layer, charge detection means connected to the floating gate electrode for outputting a voltage corresponding to an amount of charges accumulated in the floating diffusion layer, first precharge means connected to the floating gate electrode, the first precharge means starting precharging of the floating gate electrode responsive to transition of a first pulse voltage from a first state to a second state, the first precharge means terminating precharging of the floating gate electrode responsive to transition of the first pulse voltage from the second state to the first state, second precharge means connected to the floating diffusion layer, the second precharge means starting precharging of the floating diffusion layer responsive to transition of a second pulse voltage from a third state to a fourth state, the second precharge means terminating precharging of the floating diffusion layer responsive to transition of the second pulse voltage from the fourth state to the third state, first pulse supply means for supplying the first pulse voltage to the first precharge means, and second pulse supply means for supplying the second pulse voltage to the second precharge means, transition of the second pulse voltage from the third state to the fourth state being produced following transition of the first pulse voltage from the first state to the second state. In a preferred embodiment, transition of the first pulse voltage from the second state to the first state is produced following transition of the second pulse voltage from the fourth state to the third state.
    • 一种电荷转移装置,包括用于转移电荷的电荷转移装置,用于累积从所述电荷转移装置转移的电荷的浮动扩散层,经由绝缘层形成在所述浮动扩散层上的浮栅,电荷检测装置,连接到浮置栅极 电极,用于输出对应于在浮动扩散层中累积的电荷量的电压,第一预充电装置连接到浮动栅电极,第一预充电装置响应于来自第一个的第一脉冲电压的第一脉冲电压的转变而开始对浮栅的预充电 状态到第二状态,第一预充电装置响应于第一脉冲电压从第二状态转变到第一状态来终止浮栅的预充电,连接到浮动扩散层的第二预充电装置,第二预充电装置开始预充电 的浮动扩散层r 响应于第二脉冲电压从第四状态转换到第三状态,第二预充电装置响应于第二脉冲电压从第四状态转换到第三状态来终止浮动扩散层的预充电,第一脉冲供应装置 将第一脉冲电压提供给第一预充电装置;以及第二脉冲供给装置,用于将第二脉冲电压提供给第二预充电装置,第二脉冲电压从第三状态到第四状态的转变在第一脉冲转变之后产生 电压从第一状态到第二状态。 在优选实施例中,第二脉冲电压从第四状态转换到第三状态之后产生从第二状态到第一状态的第一脉冲电压的转变。