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    • 1. 发明授权
    • Display control device
    • 显示控制装置
    • US4720708A
    • 1988-01-19
    • US686594
    • 1984-12-26
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • G09G5/18G09G5/12G09G1/00
    • G09G5/12
    • A CRT (cathode ray tube) controller for controlling one CRT device in an interlace mode has a synchronizing circuit of bi-directional construction, in order to make possible synchronous operation of the CRT controller with other circuits (other CRT controllers or a TV system). When the CRTC is used as a master circuit of a CRT display system, a synchronizing signal is derived from the synchronizing circuit in synchronization with a count signal of a vertical scanning counter and an output of an interlace controller of the CRTC, and is supplied to a synchronizing terminal of the other CRTCs. Scanning counters and a flip-flop for controlling an interlace operation of the other CRTCs are reset to their initial state in synchronization with the synchronizing signal. When the CRTC is used as a slave circuit, scanning counters and a flip-flop of the CRTC are reset to their initial state in synchronization with the external synchronizing signal.
    • 用于以隔行模式控制一个CRT器件的CRT(阴极射线管)控制器具有双向结构的同步电路,以便使CRT控制器与其他电路(其它CRT控制器或TV系统)可以同步操作, 。 当CRTC用作CRT显示系统的主电路时,与垂直扫描计数器的计数信号和CRTC的隔行控制器的输出同步地从同步电路导出同步信号,并将其提供给 其他CRTC的同步终端。 用于控制其它CRTC的隔行扫描的扫描计数器和触发器与同步信号同步地被复位到其初始状态。 当CRTC用作从电路时,与外部同步信号同步,将扫描计数器和CRTC的触发器复位到初始状态。
    • 3. 发明授权
    • Display control device
    • 显示控制装置
    • US5610622A
    • 1997-03-11
    • US309413
    • 1994-09-20
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • G09G5/18G09G5/12G09G1/08
    • G09G5/12
    • A CRT (cathode ray tube) controller for controlling one CRT device in an interlace mode has a synchronizing circuit of bi-directional construction, in order to make possible synchronous operation of the CRT controller with other circuits (other CRT controllers or a TV system). When the CRTC is used as a master circuit of a CRT display system, a synchronizing signal is derived from the synchronizing circuit in synchronization on with a count signal of a vertical scanning counter and an output of an interlace controller of the CRTC, and is supplied to a synchronizing terminal of the other CRTCs. Scanning counters and a flip-flop for controlling an interlace operation of the other CRTCs are reset to their initial state in synchronization with the synchronizing signal. When the CRTC is used as a slave circuit, scanning counters and a flip-flop of the CRTC are reset to their initial state in synchronization with the external synchronizing signal.
    • 用于以隔行模式控制一个CRT器件的CRT(阴极射线管)控制器具有双向结构的同步电路,以便使CRT控制器与其他电路(其它CRT控制器或TV系统)可以同步操作, 。 当CRTC用作CRT显示系统的主电路时,根据垂直扫描计数器的计数信号和CRTC的隔行控制器的输出,同步信号从同步电路得到,并被提供 到其他CRTC的同步终端。 用于控制其他CRTC的隔行扫描的扫描计数器和触发器与同步信号同步地被复位到其初始状态。 当CRTC用作从电路时,与外部同步信号同步,将扫描计数器和CRTC的触发器复位到初始状态。
    • 7. 发明授权
    • Display control device
    • 显示控制装置
    • US5606338A
    • 1997-02-25
    • US309411
    • 1994-09-20
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • G09G5/18G09G5/12G09G1/08
    • G09G5/12
    • A CRT (cathode ray tube) controller for controlling one CRT device in an interlace mode has a synchronizing circuit of bi-directional construction, in order to make possible synchronous operation of the CRT controller with other circuits (other CRT controllers or a TV system). When the CRTC is used as a master circuit of a CRT display system, a synchronizing signal is derived from the synchronizing circuit in synchronization with a count signal of a vertical scanning counter and an output of an interlace controller of the CRTC, and is supplied to a synchronizing terminal of the other CRTCs. Scanning counters and a flip-flop for controlling an interlace operation of the other CRTCs are reset to their initial state in synchronization with the synchronizing signal. When the CRTC is used as a slave circuit, scanning counters and a flip-flop of the CRTC are reset to their initial state in synchronization with the external synchronizing signal.
    • 用于以隔行模式控制一个CRT器件的CRT(阴极射线管)控制器具有双向结构的同步电路,以便使CRT控制器与其他电路(其它CRT控制器或TV系统)可以同步操作, 。 当CRTC用作CRT显示系统的主电路时,与垂直扫描计数器的计数信号和CRTC的隔行控制器的输出同步地从同步电路导出同步信号,并将其提供给 其他CRTC的同步终端。 用于控制其他CRTC的隔行扫描的扫描计数器和触发器与同步信号同步地被复位到其初始状态。 当CRTC用作从电路时,与外部同步信号同步,将扫描计数器和CRTC的触发器复位到初始状态。
    • 9. 发明授权
    • Method of testing analog/digital converter and structure of
analog/digital converter suited for the test
    • 测试模拟/数字转换器和模拟/数字转换器结构的测试方法
    • US4580126A
    • 1986-04-01
    • US669349
    • 1984-11-08
    • Kazuo KatoTakeshi HirayamaShigeaki YoshidaYoshinori Sato
    • Kazuo KatoTakeshi HirayamaShigeaki YoshidaYoshinori Sato
    • G01R31/00G01D21/00H03M1/00H03M1/10H03M1/48H03K13/09
    • H03M1/109H03M1/1047
    • A method of testing a successive comparison type analog/digital converter which incorporates a voltage comparator, a register for successive comparison and a digital/analog converter. A reference digital signal is inputted to the incorporated digital/analog comparator to be converted into an analog signal, while a digital signal corresponding to the reference digital signal is inputted to an externally provided reference digital/analog converter to be converted into an analog signal. Both analog signals thus produced are compared with each other through the incorporated voltage comparator to thereby determine conversion accuracy. A successive comparison type analog/digital converter suited for the test includes further a change-over switch for introducing the externally supplied digital signal to the incorporated digital/analog converter and a changeover switch for leading outwardly the output signal from the voltage comparator.
    • 一种测试连续比较型模拟/数字转换器的方法,其包括电压比较器,用于连续比较的寄存器和数字/模拟转换器。 参考数字信号被输入到并入的数字/模拟比较器,以转换为模拟信号,而与参考数字信号相对应的数字信号被输入到外部提供的参考数字/模拟转换器,以转换为模拟信号。 通过并入的电压比较器将由此产生的两个模拟信号彼此进行比较,从而确定转换精度。 适用于测试的连续比较型模/数转换器还包括用于将外部提供的数字信号引入到并入的数字/模拟转换器的转换开关和用于向外引导来自电压比较器的输出信号的转换开关。
    • 10. 发明授权
    • Method and apparatus for producing copper clad steel wire
    • 生产铜包钢线的方法和设备
    • US4156500A
    • 1979-05-29
    • US801978
    • 1977-05-31
    • Shigeaki YoshidaSusumu IharaKoichi Nishimune
    • Shigeaki YoshidaSusumu IharaKoichi Nishimune
    • H01B13/00B21C37/04B21F19/00H01B13/26B21D39/04H01B13/22
    • H01B13/2633B21C37/042B21F19/00
    • A method of producing a copper clad steel wire, which comprises the steps of preparing a 5 to 15 mm diameter steel rod and a 21 to 66.7 mm width copper tape; continuously supplying the steel rod and the copper tape separately and cleaning the surfaces thereof; forming the copper tape in tubular form such that the copper tape can cover the steel rod while supplying the steel rod and the copper tape in parallel, and welding the edges of the copper tape in a non-oxidizing atmosphere; sinking the tubular copper tape sufficiently for the copper tape to substantially come into contact with the steel rod to form a copper clad steel rod; cold-drawing the copper clad steel rod and/or hot working the clad rod at a temperature of 400.degree. to 800.degree. C. to reduce its cross-sectional area by more than 20%; and then annealing the copper clad steel rod at a temperature of 300.degree. to 1050.degree. C.
    • 一种铜包覆钢丝的制造方法,其特征在于,包括5〜15mm直径的钢棒和21〜66.7mm宽的铜带的制造工序。 分别连续供给钢棒和铜带,清洗其表面; 以管状形成铜带,使得铜带能够平行地供给钢棒和铜带而覆盖钢棒,并且将铜带的边缘焊接在非氧化性气氛中; 使铜管带充分沉入铜带大体上与钢棒接触以形成铜包钢棒; 冷拔铜包钢棒和/或在400〜800℃的温度下对复合棒进行热加工,将其横截面积减少20%以上; 然后在300〜1050℃的温度下退火铜包钢棒。