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    • 81. 发明申请
    • Semiconductor memory
    • 半导体存储器
    • US20050105322A1
    • 2005-05-19
    • US10975852
    • 2004-10-29
    • Hiroyuki KobayashiTatsuya Kanda
    • Hiroyuki KobayashiTatsuya Kanda
    • G11C11/407G11C8/08G11C11/403G11C11/406G11C11/408G11C8/00
    • G11C11/4085G11C8/08G11C2207/2227G11C2211/4067
    • A boost voltage generator generates a boost voltage as a high-level voltage of word lines. First word decoders output a low-level voltage or the high-level voltage according to a first address signal in an active period, and outputs the high-level voltage in a standby period. A switch circuit connects a high-level voltage line for supplying the high-level voltage to the first word decoders, with a boost voltage line in the active period, and connects the same with an internal voltage line in the standby period. The internal voltage line is supplied with a voltage lower than the boost voltage. Word drivers supply the boost voltage to the word lines when the gates of their transistors receive the low-level voltage from the first word decoders, and output the low-level voltage to the word lines when the gates thereof receive the high-level voltage from the first word decoders.
    • 升压电压发生器产生升压电压作为字线的高电平电压。 第一字解码器在有效期内根据第一地址信号输出低电平电压或高电平电压,并在待机期间输出高电平电压。 开关电路将用于将高电平电压提供给第一字解码器的高电平电压线连接到有效期间的升压电压线,并且在待机期间将其连接到内部电压线。 内部电压线的电压低于升压电压。 当其晶体管的栅极接收来自第一字解码器的低电平电压时,字驱动器向字线提供升压电压,并且当其栅极从其接收高电平电压时,将低电平电压输出到字线 第一个字解码器。
    • 84. 发明授权
    • Electronic endoscope system
    • 电子内窥镜系统
    • US06778208B2
    • 2004-08-17
    • US09990302
    • 2001-11-23
    • Masaru TakeshigeHiroyuki Kobayashi
    • Masaru TakeshigeHiroyuki Kobayashi
    • H04N718
    • H04N1/603A61B1/045H04N7/183
    • An electronic endoscope system is provided with an outputting device specifying tool and a database having tables. In the tables, compensation data, for compensating image signals generated by the system in accordance with outputting devices, are recorded. When the model of outputting device is specified by the specifying tool, the tables are searched using the name of the specified model of outputting device as a search key, so that compensation data for compensating the image signals in accordance with the characteristics of the connected outputting device can be obtained. The image signals are output to the connected outputting device, after being compensated based on the compensation data.
    • 电子内窥镜系统具有输出装置指定工具和具有表格的数据库。 在表中,记录了用于根据输出装置对系统生成的图像信号进行补偿的补偿数据。 当通过指定工具指定输出装置的型号时,使用输出装置的指定型号的名称作为搜索关键字搜索表,从而根据连接的输出的特性来补偿图像信号的补偿数据 装置可以得到。 在基于补偿数据进行补偿之后,将图像信号输出到连接的输出装置。
    • 86. 发明授权
    • Semiconductor integrated circuit
    • 半导体集成电路
    • US06704242B2
    • 2004-03-09
    • US10279920
    • 2002-10-25
    • Hiroyuki Kobayashi
    • Hiroyuki Kobayashi
    • G11C800
    • G11C7/225G11C7/1072G11C7/1078G11C7/1087G11C7/22G11C8/06G11C11/4076G11C11/4082G11C11/4093G11C2207/2227
    • An input part and a feedback part are arranged in series between a second power supply line and input nodes of inverting circuits. The input part connects the second power supply line to one of the input nodes of the inverting circuits in accordance with an input signal. One of the inverting circuits operates so that a logical value corresponding to the input signal is latched into a latching part. The feedback part connects only one of the input nodes to the input part in accordance with an output level of the latching part, thereby fixing the latching state of the latching part. Since the number of stages of circuits from the input part to the latching part can be reduced, the input signal can be latched reliably even when the power supply voltages are low.
    • 输入部分和反馈部分串联布置在第二电源线和反相电路的输入节点之间。 输入部分根据输入信号将第二电源线连接到反相电路的输入节点之一。 反相电路中的一个工作,使得对应于输入信号的逻辑值被锁存到锁存部分中。 反馈部分根据闩锁部分的输出电平将输入节点中的一个输入部分连接到输入部分,从而固定闩锁部分的锁定状态。 由于可以减少从输入部分到锁存部分的电路的级数,即使当电源电压低时,也可以可靠地锁存输入信号。
    • 88. 发明授权
    • Semiconductor memory device
    • 半导体存储器件
    • US06667913B2
    • 2003-12-23
    • US10285425
    • 2002-11-01
    • Masaki OkudaHiroyuki Kobayashi
    • Masaki OkudaHiroyuki Kobayashi
    • G11C1604
    • G11C29/028G11C7/22G11C7/222G11C11/401G11C11/4076G11C29/02G11C29/50G11C29/56012
    • A phase adjustment circuit delays an external clock signal to generate an adjusted clock signal. A phase comparator compares phases of the external clock signal and the adjusted clock signal, and outputs a phase adjustment signal for adjusting a delay time of the phase adjustment circuit. A data output circuit outputs read data to a data terminal in synchronization with the adjusted clock signal. A data input circuit receives write data supplied to the data terminal, in synchronization with the adjusted clock signal. When performing input of the write data and output of the read data successively, switching control between the input operation of the write data and the output operation of the read data only has to be completed within one clock cycle. The clock cycle can thus be reduced to the time required for the switching control. Consequently, maximum frequency of the external clock signal can be increased.
    • 相位调整电路延迟外部时钟信号以产生经调整的时钟信号。 相位比较器比较外部时钟信号和调整后的时钟信号的相位,并输出用于调整相位调整电路的延迟时间的相位调整信号。 数据输出电路与被调整的时钟信号同步地将数据输出到数据终端。 数据输入电路与调整后的时钟信号同步地接收提供给数据终端的写入数据。 当连续执行写入数据的输入和读取数据的输出时,必须在一个时钟周期内完成写入数据的输入操作和读取数据的输出操作之间的切换控制。 因此,时钟周期可以减少到开关控制所需的时间。 因此,可以增加外部时钟信号的最大频率。