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    • 52. 发明授权
    • Signal detection circuit and signal detection method
    • 信号检测电路和信号检测方法
    • US07358776B2
    • 2008-04-15
    • US10948568
    • 2004-09-24
    • Yuji Matsumoto
    • Yuji Matsumoto
    • G01R19/00H03K5/19
    • H03K5/19
    • It is intended to provide a signal detection circuit and a signal detection method capable of preventing influences of variations in transistor characteristics, occurrence of yield degradations of the signal detection circuit and capable of detecting differential input signals at high speed. The signal detection circuit 4 comprises an amplifier section 1, a comparator section 2, and an output section 3. Differential input signals and differential reference voltages are differential-amplified by differential amplifiers 10, 11 of identical circuit structure provided in the amplifier section 1. The relationship of degree between differential input signals and differential reference voltages after differential amplification are compared in comparators 12 and 13 of the comparator section 2. High level comparison result signals CPH are output from the comparator 12 through node N6 during period in which at least one of amplified data plus signals GDP and amplified data minus signals GDM is higher than amplified high reference voltages GRH. In an integration circuit 21, integration of comparison signals COMP is performed for performing noise eliminating operations and for outputting detection signals HS_ENV_OUT.
    • 旨在提供能够防止晶体管特性变化,信号检测电路的产量劣化的发生的影响以及能够高速检测差分输入信号的信号检测电路和信号检测方法。 信号检测电路4包括放大器部分1,比较部分2和输出部分3。 差分输入信号和差分参考电压由放大器部分1中提供的相同电路结构的差分放大器10,11进行差分放大。 在比较器部分2的比较器12和13中比较差分放大后的差分输入信号与差分参考电压之间的关系。 在其中放大数据加信号GDP和放大数据减去信号GDM中的至少一个高于放大的高参考电压GRH的期间,高电平比较结果信号CPH从比较器12通过节点N 6输出。 在积分电路21中,执行比较信号COMP的集成以执行噪声消除操作并输出检测信号HS_ENV_OUT。
    • 53. 发明申请
    • Communications apparatus
    • 通讯设备
    • US20080002644A1
    • 2008-01-03
    • US11598023
    • 2006-11-13
    • Yuji MatsumotoHajime Hasegawa
    • Yuji MatsumotoHajime Hasegawa
    • H04Q7/24
    • H04L67/1008H04L67/1002H04L67/1012H04L67/1029H04L69/16H04L69/163
    • To provide a communications apparatus for preventing degradation in data quality, which is caused by the missing of reception data at the time of a data communication, an application processing unit comprises a load monitor processing unit for monitoring a load imposed at the time of a reception data process, and a reception response processing unit for issuing a reception response instruction to a protocol processing unit, and the protocol processing unit comprises a first data notifying unit for transmitting a reception response to reception data, and a second data notifying unit for transmitting a reception response according to an instruction from the reception response processing unit.
    • 为了提供一种用于防止在数据通信时由于接收数据丢失而导致的数据质量下降的通信装置,应用处理单元包括用于监视接收时施加的负载的负载监视处理单元 数据处理和接收响应处理单元,用于向协议处理单元发出接收响应指令,并且协议处理单元包括用于向接收数据发送接收响应的第一数据通知单元和用于发送接收响应指令的第二数据通知单元 接收响应根据来自接收响应处理单元的指令。
    • 54. 发明授权
    • Image sensor and method for forming isolation structure for photodiode
    • 用于形成光电二极管隔离结构的图像传感器和方法
    • US07187017B2
    • 2007-03-06
    • US10544903
    • 2004-06-30
    • Kensuke SawaseYuji MatsumotoKiyotaka Sawa
    • Kensuke SawaseYuji MatsumotoKiyotaka Sawa
    • H01L27/148H01L29/768
    • H01L27/1463H01L27/14643H01L27/14687
    • An image sensor provided with: a plurality of photodiodes arranged on a surface of a semiconductor substrate, the photodiodes each including a first region of a first conductivity type provided on the semiconductor substrate, a second region of a second conductivity type provided on the first region, the second conductivity type being different from the first conductivity type, and a signal extraction region of the second conductivity type provided on the second region; and an isolation region which electrically isolates the second regions of each adjacent pair of photodiodes from each other, the isolation region including a first trench provided between the second regions of the adjacent photodiodes and an oxide film provided on the first trench in the vicinity of surfaces of the second regions and having a greater width than the first trench.
    • 一种图像传感器,具备:设置在半导体基板的表面上的多个光电二极管,所述光电二极管各自包括设置在所述半导体基板上的第一导电类型的第一区域,设置在所述第一区域上的第二导电类型的第二区域 所述第二导电类型与所述第一导电类型不同,所述第二导电类型的信号提取区域设置在所述第二区域上; 以及隔离区,其将每个相邻的一对光电二极管的第二区域彼此电隔离,所述隔离区域包括设置在相邻的光电二极管的第二区域之间的第一沟槽和设置在表面附近的第一沟槽上的氧化膜 并且具有比第一沟槽更大的宽度。
    • 55. 发明申请
    • Image sensor and method for forming isolation structure for photodiode
    • 用于形成光电二极管隔离结构的图像传感器和方法
    • US20060145202A1
    • 2006-07-06
    • US10544903
    • 2004-06-30
    • Kensuke SawaseYuji MatsumotoKiyotaka Sawa
    • Kensuke SawaseYuji MatsumotoKiyotaka Sawa
    • H01L31/113H01L21/00
    • H01L27/1463H01L27/14643H01L27/14687
    • An image sensor provided with: a plurality of photodiodes arranged on a surface of a semiconductor substrate, the photodiodes each including a first region of a first conductivity type provided on the semiconductor substrate, a second region of a second conductivity type provided on the first region, the second conductivity type being different from the first conductivity type, and a signal extraction region of the second conductivity type provided on the second region; and an isolation region which electrically isolates the second regions of each adjacent pair of photodiodes from each other, the isolation region including a first trench provided between the second regions of the adjacent photodiodes and an oxide film provided on the first trench in the vicinity of surfaces of the second regions and having a greater width than the first trench.
    • 一种图像传感器,具备:设置在半导体基板的表面上的多个光电二极管,所述光电二极管各自包括设置在所述半导体基板上的第一导电类型的第一区域,设置在所述第一区域上的第二导电类型的第二区域 所述第二导电类型与所述第一导电类型不同,所述第二导电类型的信号提取区域设置在所述第二区域上; 以及隔离区,其将每个相邻的一对光电二极管的第二区域彼此电隔离,所述隔离区域包括设置在相邻的光电二极管的第二区域之间的第一沟槽和设置在表面附近的第一沟槽上的氧化膜 并且具有比第一沟槽更大的宽度。
    • 59. 发明申请
    • Fuel cell system and method of controlling same
    • 燃料电池系统及其控制方法
    • US20050196655A1
    • 2005-09-08
    • US11076364
    • 2005-03-07
    • Kenichiro UedaYosuke FujiiYoshikazu MurakamiYuji Matsumoto
    • Kenichiro UedaYosuke FujiiYoshikazu MurakamiYuji Matsumoto
    • H01M8/10H01M8/04
    • H01M8/04231H01M8/04544
    • A fuel cell system has a fuel cell, a fuel supply device, a gas discharge valve, a voltage detecting device and a control device. The fuel supply device supplies a fuel gas to the fuel cell. The gas discharge valve discharges the fuel gas into an external environment. The voltage detecting device detects an output voltage of the fuel cell. The control device controls a discharging process when a request for starting the fuel cell is given. The discharging process includes introducing the fuel gas from the fuel supply device into a predetermined passage, opening the gas discharge valve and discharging residuals staying in the passage into the external environment. When the control device receives the request and determines that the output voltage has reached a first threshold before the discharging process has not been completed, the control device starts power generation irrespective of completion of the discharging process.
    • 燃料电池系统具有燃料电池,燃料供给装置,排气阀,电压检测装置和控制装置。 燃料供给装置向燃料电池供给燃料气体。 排气阀将燃料气体排放到外部环境中。 电压检测装置检测燃料电池的输出电压。 当给出启动燃料电池的请求时,控制装置控制放电过程。 排放过程包括将来自燃料供应装置的燃料气体引入预定的通道中,打开气体排出阀并排出留在通道中的残留物进入外部环境。 当控制装置接收到请求并且在放电处理尚未完成之前确定输出电压已经达到第一阈值时,控制装置开始发电而不管放电过程是否完成。