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    • 3. 发明授权
    • Receiver circuit adapted to communication apparatuses operative with different power voltage range
    • 接收器电路适用于在不同功率电压范围内工作的通信设备
    • US08340624B2
    • 2012-12-25
    • US12927930
    • 2010-11-30
    • Ken AidaTomohisa Kishigami
    • Ken AidaTomohisa Kishigami
    • H04B1/16
    • H04L25/40H04L25/0292
    • A LIN receiver includes a voltage divider that divides an input voltage and outputs the divided voltage, and a peak hold circuit that outputs a peak voltage of the input voltage. The LIN receiver is configured to generate a threshold voltage to be used for determining a voltage signal of a communication bus. The threshold voltage is generated from a voltage signal of the communication bus such that the peak value of the voltage signal (i.e., equivalent to a battery voltage) is held by the peak hold circuit and divided by the voltage divider. Although the communication bus is connected to an on-vehicle battery of which voltage varies with time, by using the voltage signal of the communication bus, a 5V system ECU can generate a threshold voltage which varies responding to the variation of the battery voltage. Hence, the voltage signal can be determined correctly as either high or low level.
    • LIN接收机包括分压输入电压并输出分压的分压器,以及输出输入电压的峰值电压的峰值保持电路。 LIN接收器被配置为产生要用于确定通信总线的电压信号的阈值电压。 从通信总线的电压信号生成阈值电压,使得电压信号的峰值(即,等效于电池电压)由峰值保持电路保持并由分压器分压。 虽然通信总线连接到电压随时间变化的车载电池,但是通过使用通信总线的电压信号,5V系统ECU可以产生响应于电池电压的变化而变化的阈值电压。 因此,可以将电压信号正确地确定为高电平或低电平。
    • 5. 发明申请
    • Receiver circuit adapted to communication apparatuses operative with different power voltage range
    • 接收器电路适用于在不同功率电压范围内工作的通信设备
    • US20110130110A1
    • 2011-06-02
    • US12927930
    • 2010-11-30
    • Ken AidaTomohisa Kishigami
    • Ken AidaTomohisa Kishigami
    • H04B1/16
    • H04L25/40H04L25/0292
    • A LIN receiver includes a voltage divider that divides an input voltage and outputs the divided voltage, and a peak hold circuit that outputs a peak voltage of the input voltage. The LIN receiver is configured to generate a threshold voltage to be used for determining a voltage signal of a communication bus. The threshold voltage is generated from a voltage signal of the communication bus such that the peak value of the voltage signal (i.e., equivalent to a battery voltage) is held by the peak hold circuit and divided by the voltage divider. Although the communication bus is connected to an on-vehicle battery of which voltage varies with time, by using the voltage signal of the communication bus, a 5V system ECU can generate a threshold voltage which varies responding to the variation of the battery voltage. Hence, the voltage signal can be determined correctly as either high or low level.
    • LIN接收机包括分压输入电压并输出分压的分压器,以及输出输入电压的峰值电压的峰值保持电路。 LIN接收器被配置为产生要用于确定通信总线的电压信号的阈值电压。 从通信总线的电压信号生成阈值电压,使得电压信号的峰值(即,等效于电池电压)由峰值保持电路保持并由分压器分压。 虽然通信总线连接到电压随时间变化的车载电池,但是通过使用通信总线的电压信号,5V系统ECU可以产生响应于电池电压的变化而变化的阈值电压。 因此,可以将电压信号正确地确定为高电平或低电平。
    • 6. 发明授权
    • Antenna reflector
    • 天线反射器
    • US5670959A
    • 1997-09-23
    • US544764
    • 1995-10-18
    • Michinaga NaguraTomohisa Kishigami
    • Michinaga NaguraTomohisa Kishigami
    • H01L29/78G01S7/03G01S13/75G01S13/76G01S13/79H01L49/00H01Q3/46H01Q15/14H01Q15/18
    • G01S13/75H01Q15/18H01Q3/46
    • An antenna reflector, which can reflect incoming radio waves, is formed as a corner of a cube by orthogonally connecting three reflectors which can reflect incoming radio waves. The reflectors are formed from semiconductor layers, conductive sheets scattered on one surface of the semiconductor layers, insulator films formed on both sides of the semiconductor layers, conductor films provided on the opposite surface of each of the insulator films, and switching elements that are formed on the semiconductor layers and which connect the conductive sheets. As a result, if direct current voltage is applied between the resistor films, the reflectors reflect radio waves while radio waves are absorbed when no direct current voltage is applied, and thus, the reflected radio wave is modulated by the application and non-application of the direct current voltage.
    • 可以反射入射的无线电波的天线反射器通过正交连接三个能够反射入射的无线电波的反射器形成立方体的角。 反射器由半导体层,在半导体层的一个表面上散布的导电片,形成在半导体层两侧的绝缘膜,设置在每个绝缘膜的相对表面上的导体膜和形成的开关元件形成 并且连接导电片。 结果,如果在电阻膜之间施加直流电压,则当不施加直流电压时,反射器反射无线电波而无线电波被吸收,因此,反射的无线电波被应用和不应用 直流电压。
    • 7. 发明授权
    • Electric control system for photoelectric touch input apparatus
    • 光电触摸输入设备电控系统
    • US4904857A
    • 1990-02-27
    • US281875
    • 1988-12-08
    • Noriyoshi AndoHajime MikuniTomohisa Kishigami
    • Noriyoshi AndoHajime MikuniTomohisa Kishigami
    • G06F3/147H03K17/14H03K17/94
    • H03K17/943H03K17/14
    • An electric control system for a photoelectric touch input apparatus including a plurality of light-emitting elements arranged to produce a plurality of light beams in parallel on a common plane and a plurality of photosensitive elements opposed to and aligned with the light-emitting elements to receive the light beams so as to produce a plurality of light-receiving signals at each level of the light beams applied thereto. The control system is arranged to produce a plurality of drive signals respectively representative of a control valve for adjustment of each quantity of light of the light-emitting elements, to apply the drive signals to the light-emitting elements in sequence, to determine as to whether or not each level of the light-receiving signals is less than an optimum level, and if so, to adjust the control value in such a manner that each level of the light-receiving signals reaches the optimum level, and if not, to maintain the control value, to adjust each level of the drive signals in accordance with the control value, and to produce a switchover signal indicative of the position of an object such as an operator's finger when it interrupts one of the light beams. In this manner, relative differences in the quantity of light between the light-emitting elements and relative differences in the levels of the light-receiving signals may be compensated for, thereby maintaining the light-receiving signals of the photosensitive elements at an optimum level prior to use of the touch input apparatus.
    • 一种用于光电触摸输入装置的电气控制系统,包括:多个发光元件,被布置成在公共平面上平行地产生多个光束;以及多个感光元件,与所述发光元件相对并对齐,以接收 光束,以便在施加到其上的光束的每一级产生多个光接收信号。 该控制系统被配置为产生分别代表用于调节发光元件的每个光量的控制阀的多个驱动信号,以将驱动信号顺序地施加到发光元件,以便确定 光接收信号的每个电平是否小于最佳电平,如果是,则以使每个光接收信号的电平达到最佳电平的方式调整控制值,如果不是,则 保持控制值,根据控制值调整驱动信号的各个电平,并且当中断一个光束时产生表示诸如操作者手指的物体的位置的切换信号。 以这种方式,可以补偿发光元件之间的光量和光接收信号的电平的相对差异的相对差异,从而将感光元件的光接收信号保持在最佳水平之前 以使用触摸输入装置。
    • 9. 发明申请
    • Communication system, master node, and slave node
    • 通信系统,主节点和从节点
    • US20120084378A1
    • 2012-04-05
    • US13200738
    • 2011-09-29
    • Naoji KanekoTomohisa Kishigami
    • Naoji KanekoTomohisa Kishigami
    • G06F15/16
    • G06F15/16H04L12/40019H04L12/4035H04L2012/40234
    • A slave node communicably coupled to a master node via a bus determines determine whether an active communication mode or a passive communication mode is started based on a header transmitted from the master node. The slave node transmits the header and an ID subsequent to the header when it is determined that the active communication mode is started based on the received header. The ID requests active transmission of a response required to be transmitted in the active communication mode upon the slave node having the response. The slave node monitors arbitration on a bus, and transmits the response subsequent to the ID when the slave node wins the arbitration on the bus between the ID transmitted from the slave node and another information transmitted from another slave node communicably coupled to the master node via the bus based on a result of the monitor.
    • 经由总线可通信地耦合到主节点的从节点基于从主节点发送的报头确定是否启动主动通信模式或被动通信模式。 当确定基于接收的报头来启动主动通信模式时,从节点发送报头和报头之后的ID。 该ID请求在具有响应的从节点上以主动通信模式发送需要发送的响应的主动发送。 从节点监视总线上的仲裁,并且当从节点在从从节点发送的ID和从可通信地耦合到主节点的另一个从节点发送的另一个从节点通过总线上的仲裁赢得仲裁之后发送响应 总线基于显示器的结果。
    • 10. 发明授权
    • Voltage supply unit for diagnosing electrical disconnection occurring in communication system and apparatus using the voltage supply unit
    • 用于诊断通信系统和使用电压供应单元的装置发生电断线的电压供应单元
    • US08094688B2
    • 2012-01-10
    • US11943728
    • 2007-11-21
    • Tomohisa Kishigami
    • Tomohisa Kishigami
    • H04J99/00
    • H04L1/24
    • A voltage supply unit is provided for a communication system provided with a network including a transmission path that consists of a main line and plural branch lines, which are formed as a differential two-wire type of transmission line consisting of first and second communion lines. This unit comprises a DC voltage source and an application device. The DC voltage source outputs a specified voltage different from a reference voltage of the transmission path. The application device applies, to the transmission path, the specified voltage in response to a command to be given. The unit is provided in a fault diagnosis apparatus or a node connected to the communication system. The specified voltage disables communication of only a certain node and to allow the remaining nodes to communicate with each other. In the certain node, an electrical disconnection is caused in either the first and second communications.
    • 为具备网络的通信系统提供电压供给单元,该通信系统包括由主线和多条分支线组成的传输路径,该分支线形成为由第一和第二共线组成的差分两线式传输线。 该单元包括直流电压源和应用装置。 直流电压源输出与传输路径的参考电压不同的指定电压。 应用装置响应于要给出的命令向传输路径施加指定的电压。 该单元设置在与通信系统连接的故障诊断装置或节点中。 指定的电压禁止只有某个节点的通信,并允许剩余的节点相互通信。 在该特定节点中,在第一和第二通信中引起电断开。