会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 12. 发明授权
    • Chip-type composite electronic component
    • 片式复合电子元件
    • US5734313A
    • 1998-03-31
    • US669399
    • 1996-06-27
    • Masato DoiHirotoshi InoueSeiji Mitsuno
    • Masato DoiHirotoshi InoueSeiji Mitsuno
    • H01C1/144H01C7/00H01C13/02H01C1/02H01C1/14
    • H01C13/02
    • A chip-type composite electronic component according to the present invention comprises an insulating substrate (1), a common electrode (2) formed on the substrate (1), a plurality of individual electrodes (3a-3h) formed on the substrate (1) to be spaced from the common electrode (2), and a plurality of electronic elements (4a-4e) each interposed between each of the individual electrodes (3a-3h) and the common electrode (2). Each of the common electrode (2) and individual electrodes (3a-3h) has a plated solder layer as an outermost layer. Each of the electronic elements (4a-4e) has a direct current resistance of no less than 47K .OMEGA., and the solder layer of the common electrode (2) has a layer thickness which is no more than 2.9 times as great as that of the solder layer of the individual electrodes (3a-3h).
    • PCT No.PCT / JP96 / 00002 Sec。 371日期1996年6月27日第 102(e)1996年6月27日PCT 1996年1月4日PCT PCT。 公开号WO96 / 21233 日本1996年7月11日根据本发明的芯片型复合电子部件包括绝缘基板(1),形成在基板(1)上的公共电极(2),形成有多个单独的电极(3a-3h) 在与所述公共电极(2)间隔开的所述基板(1)上,以及分别插入在各个电极(3a〜3h)和所述公共电极(2)之间的多个电子元件(4a〜4e)。 公共电极(2)和单独电极(3a-3h)中的每一个具有作为最外层的电镀焊料层。 每个电子元件(4a-4e)具有不小于47K欧姆的直流电阻,并且公共电极(2)的焊料层的层厚度不大于 各个电极(3a-3h)的焊料层。
    • 13. 发明授权
    • Circuit device and method of controlling circuit device
    • 电路装置及其控制方法
    • US08339162B2
    • 2012-12-25
    • US12770030
    • 2010-04-29
    • Toshihide TsuzukiHirotoshi Inoue
    • Toshihide TsuzukiHirotoshi Inoue
    • H03B1/00
    • H03K19/0005H03K19/018592
    • A circuit device has a first output buffer including a first adjustment circuit for adjusting a level of the first output signal, a first input buffer connected to the first output buffer, an adjustment controller for outputting a test signal to the first output buffer, outputting a control signal to the first adjustment circuit so that the level of the first output signal is adjusted on the basis of the control signal, monitoring an output of the first input buffer, and adjusting the control signal on the basis of the monitoring the output of the first input buffer, a second output buffer connected to the adjustment controller and operable to assume either an active or a non-active state, for outputting a second output signal when controlled to assume an active state, including a second adjustment circuit, and a second input buffer.
    • 电路装置具有第一输出缓冲器,包括用于调节第一输出信号的电平的第一调节电路,连接到第一输出缓冲器的第一输入缓冲器,用于向第一输出缓冲器输出测试信号的调整控制器, 控制信号到第一调整电路,使得基于控制信号调整第一输出信号的电平,监视第一输入缓冲器的输出,并且基于监视第一输入信号的输出来调整控制信号 第一输入缓冲器,连接到调节控制器的第二输出缓冲器,并且可操作以呈现有源或非有效状态,用于当被控制为呈现包括第二调整电路的有效状态时输出第二输出信号,以及第二输入缓冲器 输入缓冲区。
    • 14. 发明授权
    • Circuit system including first circuit sub-system, second circuit sub-system and bidirectional bus, circuit sub-system and method
    • 电路系统包括第一电路子系统,第二电路子系统和双向总线,电路子系统和方法
    • US08203361B2
    • 2012-06-19
    • US12719944
    • 2010-03-09
    • Atsushi UchidaHirotoshi Inoue
    • Atsushi UchidaHirotoshi Inoue
    • H03K19/0175H03K19/08
    • G06F13/4217
    • A circuit system has a first and a second circuit sub-system, and a bidirectional bus, the first circuit sub-system having a first control circuit that receives a control signal for controlling the direction of the bidirectional bus, and controls the first sub-system to be either of a transmitting or a receiving state based on a state of the control signal, a first sending unit that receives the control signal, and outputs as a first control signal, and a second sending unit that receives the control signal, and outputs as a second control signal, the second circuit sub-system having a first receiving unit that receives the first control signal, a second receiving unit that receives the second control signal, and a second control circuit that controls the second sub-system to assume either the transmitting or the receiving state on the basis of the first and the second control signal.
    • 电路系统具有第一和第二电路子系统和双向总线,第一电路子系统具有接收用于控制双向总线的方向的控制信号的第一控制电路,并且控制第一子系统, 系统基于控制信号的状态成为发送状态或接收状态,接收控制信号的第一发送单元,作为第一控制信号输出的第一发送单元和接收控制信号的第二发送单元,以及 输出作为第二控制信号,第二电路子系统具有接收第一控制信号的第一接收单元,接收第二控制信号的第二接收单元和控制第二子系统呈现的第二控制电路 基于第一和第二控制信号发送或接收状态。
    • 15. 发明申请
    • CIRCUIT DEVICE NAD METHOD OF CONTROLLING CIRCUIT DEVICE
    • 控制电路装置的电路装置NAD方法
    • US20100207668A1
    • 2010-08-19
    • US12770030
    • 2010-04-29
    • Toshihide TSUZUKIHirotoshi Inoue
    • Toshihide TSUZUKIHirotoshi Inoue
    • H03K3/00
    • H03K19/0005H03K19/018592
    • A circuit device has a first output buffer including a first adjustment circuit for adjusting a level of the first output signal, a first input buffer connected to the first output buffer, an adjustment controller for outputting a test signal to the first output buffer, outputting a control signal to the first adjustment circuit so that the level of the first output signal is adjusted on the basis of the control signal, monitoring an output of the first input buffer, and adjusting the control signal on the basis of the monitoring the output of the first input buffer, a second output buffer connected to the adjustment controller and operable to assume either an active or a non-active state, for outputting a second output signal when controlled to assume an active state, including a second adjustment circuit, and a second input buffer.
    • 电路装置具有第一输出缓冲器,包括用于调节第一输出信号的电平的第一调节电路,连接到第一输出缓冲器的第一输入缓冲器,用于向第一输出缓冲器输出测试信号的调整控制器, 控制信号到第一调整电路,使得基于控制信号调整第一输出信号的电平,监视第一输入缓冲器的输出,并且基于监视第一输入信号的输出来调整控制信号 第一输入缓冲器,连接到调节控制器的第二输出缓冲器,并且可操作以呈现有源或非有效状态,用于当被控制为呈现包括第二调整电路的有效状态时输出第二输出信号,以及第二输入缓冲器 输入缓冲区。
    • 18. 发明授权
    • Peaking capacitor layout
    • 峰值电容布局
    • US06377595B1
    • 2002-04-23
    • US09657993
    • 2000-09-08
    • Hirotoshi InoueYasufumi KawasujiTetsutarou TakanoTakashi Matsunaga
    • Hirotoshi InoueYasufumi KawasujiTetsutarou TakanoTakashi Matsunaga
    • H01S300
    • H01S3/0975
    • A peaking capacitor layout in which a discharge energy is not lowered even when peaking capacitors are decreased in their capacitance, increased in their number and disposed in a plurality of rows. The discharge energy is uniformly distributed to obtain a stable laser power. A peaking capacitor group in a first row formed of a plurality of peaking capacitors and a peaking capacitor group in a second row formed of a plurality of peaking capacitors are disposed in a plurality of rows (two rows) in a direction in which a length of a loop changes. The capacitance of the peaking capacitors forming the second row having a long loop is adjusted to be smaller than that of the peaking capacitors forming the first row having a short loop. And, the capacitance of the peaking capacitors in the first and second rows are adjusted so that the distribution of the capacitance of the peaking capacitors becomes uniform along the longitudinal direction of the discharge electrodes.
    • 其中即使峰值电容器的放电能量也不降低,其电容量减小,峰值电容布置增加并且以多行排列。 放电能量均匀分布,以获得稳定的激光功率。 由多个峰化电容器形成的第一行中的峰值电容器组和由多个峰值电容器形成的第二行中的峰值电容器组沿着长度方向的多个行(两行)设置, 一个循环改变了。 形成具有长环的第二行的峰化电容器的电容被调节为小于形成具有短循环的第一行的峰化电容器的电容。 并且,调整第一和第二行中的峰值电容器的电容,使得峰化电容器的电容分布沿着放电电极的纵向均匀。
    • 19. 发明授权
    • Wire electric discharge machining apparatus
    • 线放电加工机
    • US09254529B2
    • 2016-02-09
    • US14005826
    • 2012-03-23
    • Yuzo DohiHirotoshi Inoue
    • Yuzo DohiHirotoshi Inoue
    • B23H7/10B23H1/10B23H7/30
    • B23H1/10B23H7/102B23H7/30
    • A wire electric discharge machining apparatus is provided to equip with an automatic wire threader more reliably threading a wire electrode through an start hole. The wire electric discharge machining apparatus includes an automatic wire threader including: a feed roller disposed higher than the start hole and feeding a wire electrode toward the start hole; and a vertical drive device disposed between the feed roller and the start hole, and supplying compressed air in the upward and downward directions to vertically move the wire electrode slightly. The vertical drive device includes wire guides having guide holes through which the wire electrode is passed. The wire guides are constructed so that upward movement by the compressed air is possible.
    • 一种电线放电加工装置,其装配有一个更可靠地将线电极穿过启动孔的自动穿线机。 线材放电加工装置包括:自动线穿线器,包括:馈送辊,其设置在比起始孔高的位置,并将线电极朝向起始孔供电; 以及设置在进给辊和起动孔之间的垂直驱动装置,并且向上和向下方向供应压缩空气以稍微垂直移动线电极。 垂直驱动装置包括具有引导孔的线引导件,线电极通过该引导孔。 导线器的构造使得可以通过压缩空气向上运动。
    • 20. 发明授权
    • Control device used for a gas sensor
    • 用于气体传感器的控制装置
    • US07104110B2
    • 2006-09-12
    • US10938295
    • 2004-09-10
    • Hidetoshi OishiHirotoshi InoueTakashi SaitoTakashi Sasaki
    • Hidetoshi OishiHirotoshi InoueTakashi SaitoTakashi Sasaki
    • G01N21/00
    • H01M8/04089G01N27/16G01N33/005G01N33/007H01M8/04231
    • A control device determines whether or not the detected value of a unit conducting current output from a current sensor at least plural times is equal to or greater than a predetermined upper limit current at time of the start of the actuation of a gas sensor, and furthermore, determines that each of the units of the gas sensor is set in an abnormal state if a duration for a state in which it is determined that the detected value of the unit conducting current is equal to or greater than the predetermined upper limit current is equal to or longer than a predetermined upper limit time. On the other hand, if the duration for the state in which it is determined that the detected value of the unit conducting current is equal to or greater than the predetermined upper limit current is shorter than the predetermined upper limit time, it is determined that the detected value of the unit conducting current temporarily becomes equal to or greater than the predetermined upper limit current and each of the units is set in a normal state.
    • 控制装置确定在气体传感器的启动开始时至少多次从电流传感器输出的导通电流的单元的检测值是否等于或大于预定上限电流,此外 如果确定单元导通电流的检测值等于或大于预定上限电流的状态的持续时间相等,则确定气体传感器的每个单元被设置为异常状态 达到或超过预定的上限时间。 另一方面,如果确定单元导通电流的检测值等于或大于预定上限电流的状态的持续时间短于预定上限时间,则确定为 单位导通电流的检测值临时变为等于或大于预定上限电流,并且将每个单元设置为正常状态。