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    • 5. 发明授权
    • Driving circuit for a microcomputer that enables sleep control using a
small-scale timer
    • 用于使用小型定时器进行睡眠控制的微型计算机的驱动电路
    • US5737588A
    • 1998-04-07
    • US499174
    • 1995-07-07
    • Kouichi MaedaHideaki IshiharaAkihiro Sasaki
    • Kouichi MaedaHideaki IshiharaAkihiro Sasaki
    • G06F1/04G06F1/32
    • G06F1/3237G06F1/3203Y02B60/1221
    • For a system which receives a sleep command to terminate the application of machine clock signals to a microprocessor and which clocks control execution time and stabilization time after the return from sleep control and resumes the supply of the machine clock signal, the clocking device for each of the time durations is implemented using a small-scale timing device. Following a sleep command from a microprocessor, sleep control, which terminates the operation of the main oscillator and the machine clock generation circuit that generates the machine clock signal based on the oscillation of the main oscillator, is started. Then, counting the oscillation signal from an RC oscillator used for clocking using an RC timer, the lapse time after starting sleep control is started and if the clocked time reaches a predetermined time, the main oscillator is reactivated. After reactivating the main oscillator, the RC timer is reset so that it begins to count the time thereafter starting from "0" and if the clocked time reaches the time needed for the oscillation of the main oscillator to stabilize, the machine clock generation circuit resumes its operations.
    • 对于接收休眠命令以终止对微处理器的机器时钟信号的应用的系统,以及在从睡眠控制返回之后控制执行时间和稳定时间的时钟,并且恢复提供机器时钟信号的时钟控制装置, 使用小规模定时装置实现持续时间。 在从微处理器执行睡眠命令之后,开始基于主振荡器的振荡而终止主振荡器和产生机器时钟信号的机器时钟产生电路的操作的睡眠控制。 然后,使用RC定时器对用于定时的RC振荡器进行振荡信号的计数,开始睡眠控制后的经过时间开始,如果时钟时间达到预定时间,则主振荡器被重新激活。 在重新激活主振荡器之后,RC定时器复位,使其开始计数其后从“0”开始的时间,如果时钟时间达到主振荡器稳定所需的时间,则机器时钟产生电路恢复 其业务。
    • 10. 发明授权
    • Method for the preparation of laminated inductor device
    • 层压电感器件的制备方法
    • US06413340B1
    • 2002-07-02
    • US09421012
    • 1999-10-20
    • Toshiyuki AnboFumio UchikobaToshihiro AbeAkihiro Sasaki
    • Toshiyuki AnboFumio UchikobaToshihiro AbeAkihiro Sasaki
    • B32B3126
    • H01F17/0013H01F41/046Y10T29/49163Y10T156/1064
    • In the method for the preparation of a laminated ferrite inductor device comprising the steps of: laminating a ferrite green sheet lined with and supported by a substrate film of, for example, polyethylene terephthalate provided with a penetrating through-hole and a coil pattern to a second ferrite green sheet followed by removal of the substrate film by peeling to form a laminate of ferrite green sheets to be subjected to sintering, peelability of the substrate film from the ferrite green sheet can be improved to prevent the ferrite green sheet from occurrence of defects such as breaking, crease formation and stretching by providing a snap groove of an adequate incision depth having a rectangular profile of a frame and, along the outer periphery of the snap groove, a peel-facilitating reinforcement pattern by printing with a printing paste to have a specified line width and printing thickness.
    • 在制备叠层铁氧体电感器的方法中,包括以下步骤:将由衬里膜衬垫并由例如设置有贯通孔的聚对苯二甲酸乙二醇酯和线圈图案支撑的铁素体生片层压到 第二铁素体生片,然后通过剥离除去基材膜,形成要进行烧结的铁素体生片的层叠体,可以提高基材膜与铁素体生片的剥离性,防止铁素体生片发生缺陷 通过提供具有框架的矩形轮廓的适当的切口深度的卡槽,并且沿着卡槽的外周,通过用印刷浆印刷来具有剥离强化图案,从而具有断裂,折痕形成和拉伸 指定的线宽和印刷厚度。