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    • 83. 发明授权
    • Clock signal transmitting system, digital signal transmitting system, clock signal transmitting method, and digital signal transmitting method
    • 时钟信号发送系统,数字信号发送系统,时钟信号发送方式和数字信号发送方式
    • US06912246B1
    • 2005-06-28
    • US09712921
    • 2000-11-16
    • Masahiro Arai
    • Masahiro Arai
    • H03L7/06H04B1/38H04L7/00H04L7/033H04L25/06H04L25/38
    • H04L7/0008H04L25/061
    • A clock signal transmitting system is disclosed, which comprises a controlling circuit for generating a first control signal and a second control signal which contains synchronization information of the first control signal, a first reference voltage generating circuit for generating a first reference voltage which periodically varies corresponding to the first control signal, a second reference voltage generating circuit for generating a second reference voltage which periodically varies corresponding to the second control signal, a first comparator for comparing a source clock signal with the first reference voltage and generating a transmission clock signal, and a second comparator for comparing the transmission clock signal with the second reference voltage and generating a reproduced clock signal.
    • 公开了一种时钟信号传输系统,其包括用于产生第一控制信号的控制电路和包含第一控制信号的同步信息的第二控制信号,第一参考电压产生电路,用于产生周期性变化的第一参考电压 第一参考电压产生电路,用于产生对应于第二控制信号周期性变化的第二参考电压;第一比较器,用于将源时钟信号与第一参考电压进行比较并产生传输时钟信号;以及 第二比较器,用于将传输时钟信号与第二参考电压进行比较并产生再现的时钟信号。
    • 85. 发明授权
    • Unthrottled intake air control with partial delay for requested engine response performance
    • 无节制的进气控制,部分延迟要求发动机响应性能
    • US06513490B2
    • 2003-02-04
    • US09727787
    • 2000-12-04
    • Takao KawasakiMasahiro AraiHatsuo Nagaishi
    • Takao KawasakiMasahiro AraiHatsuo Nagaishi
    • F02D4100
    • F02D13/0234F01L9/04F01L2201/00F02D13/0203F02D13/0253F02D41/0002F02D41/083F02D43/00F02D45/00F02D2041/001F02D2041/002Y02T10/18Y02T10/42
    • A system and method for unthrottled intake air control for an internal combustion engine. The engine has at least one combustion chamber provided with electromagnetic intake means. The opening and closing times of the intake means are adjustable entirely independently from the crankshaft position to control intake air supplied to the combustion chamber. A control unit is used to implement instructions for determining a first portion of requested intake airflow, which first portion requests a first engine response performance, and instructions for determining a second portion of requested intake airflow, which second portion requests a second engine response performance. The control unit implements instructions for processing the first and second airflow portions to make contributions to the first and second engine response performances, respectively, instructions for determining an intake means activation command, and instructions for providing the intake means activation command to the intake means to provide an engine response performance combining the first engine response performance with the second engine response performance.
    • 一种用于内燃机的无节流进气调节的系统和方法。 发动机具有设置有电磁进气装置的至少一个燃烧室。 进气装置的打开和关闭时间可以完全独立于曲轴位置进行调节,以控制供给燃烧室的进气。 控制单元用于实现用于确定所请求的进气量的第一部分的指令,该第一部分请求第一发动机响应性能,以及用于确定所请求的进气流的第二部分的指令,该第二部分请求第二发动机响应性能。 控制单元执行用于处理第一和第二气流部分以分别对第一和第二发动机响应性能做出贡献的指令,分别用于确定进气装置启动命令的指令和用于将进气装置启动命令提供给进气装置的指令 提供将第一发动机响应性能与第二发动机响应性能相结合的发动机响应性能。
    • 87. 发明授权
    • Radio control device having crystal high frequency module and high
frequency phase lockloop for selective use, modules detachably mounted
    • 具有晶体高频模块和高频锁相环的无线电控制装置,用于选择性使用,模块可拆卸地安装
    • US5608758A
    • 1997-03-04
    • US91267
    • 1993-07-15
    • Susumu SakumaSatoshi InokoshiAkira AnehaMasahiro AraiMasashi Tokita
    • Susumu SakumaSatoshi InokoshiAkira AnehaMasahiro AraiMasashi Tokita
    • A63H30/04G05D1/00G08C19/00H03J1/00H03K7/04H04B14/02H03K7/08
    • G05D1/0022A63H30/04H03J1/005H04B14/026
    • A radio control device includes a transmitter, in which a crystal type high frequency module equipped with a high frequency circuit corresponding to a frequency band of a carrier and a PLL high frequency module equipped with the high frequency circuit and a PLL circuit for controlling a frequency of the carrier depending on a phase difference between the carrier and a reference signal of oscillator are detachably mounted. Such construction permits the crystal type high frequency module and PLL high frequency module to be selectively used as desired and transmission data to be output by means of the carrier of a desired frequency set depending on the high frequency module. Also, the radio control device includes a receiver which employs a frequency synthesizer system in which a PLL circuit for controlling an oscillation frequency depending on a phase difference between a reference signal and the oscillation frequency is used and includes a frequency selecting means for selecting a required frequency from a plurality of predetermined frequency data and a frequency setting means for fixedly setting a receive frequency on the frequency selected by the frequency selecting means when a power supply is turned on.
    • 无线电控制装置包括发射机,其中配备有对应于载波的频带的高频电路的晶体型高频模块和配备有高频电路的PLL高频模块和用于控制频率的PLL电路 根据载波和振荡器的参考信号之间的相位差可以拆卸地安装载波。 这种结构允许根据期望有选择地使用晶体型高频模块和PLL高频模块,并且通过根据高频模块设置的期望频率的载波来输出发送数据。 此外,无线电控制装置还包括采用频率合成器系统的接收机,其中使用用于根据参考信号和振荡频率之间的相位差控制振荡频率的PLL电路,并且包括频率选择装置,用于选择所需的 来自多个预定频率数据的频率;以及频率设定装置,用于当电源接通时,固定地设置由频率选择装置选择的频率上的接收频率。
    • 90. 发明授权
    • Storage system with multiple controllers and multiple processing paths
    • 具有多个控制器和多个处理路径的存储系统
    • US08321622B2
    • 2012-11-27
    • US12668721
    • 2009-11-10
    • Shuji NakamuraEmi Nakamura, legal representativeMasahiro AraiHideaki FukudaNobuyuki Minowa
    • Shuji NakamuraMasahiro AraiHideaki FukudaNobuyuki Minowa
    • H04L12/50
    • G06F12/0813G06F12/0868G06F2212/284G06F2212/286
    • The first controller includes a first relay circuit which is a circuit that controls data transfer, and a first processor coupled to the first relay circuit via a first second path. The second controller includes a second relay circuit which is a circuit that controls data transfer, and is coupled to the first relay circuit via the first path, and a second processor coupled to the second relay circuit via a second second path. The first processor is coupled to the second relay circuit not via the first relay circuit but via a first third path, and accesses the second relay circuit via the first third path during an I/O process. The second processor is coupled to the first relay circuit not via the second relay circuit but via a second third path, and accesses the first relay circuit via the second third path during an I/O process.
    • 第一控制器包括作为控制数据传输的电路的第一继电器电路和经由第一第二路径耦合到第一继电器电路的第一处理器。 第二控制器包括第二继电器电路,其是控制数据传输并且经由第一路径耦合到第一继电器电路的电路,以及经由第二第二路径耦合到第二继电器电路的第二处理器。 第一处理器不是经由第一继电器电路而是经由第一第三路径耦合到第二继电器电路,并且在I / O过程期间经由第一第三路径访问第二继电器电路。 第二处理器不经由第二继电器电路而经由第二第三路径耦合到第一继电器电路,并且在I / O过程期间经由第二第三路径访问第一继电器电路。