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    • 61. 发明申请
    • PIEZOELECTRIC DEVICES AND METHODS FOR MANUFACTURING SAME
    • 压电元件及其制造方法
    • US20090085431A1
    • 2009-04-02
    • US12237301
    • 2008-09-24
    • Kozo OnoTakahiro Inoue
    • Kozo OnoTakahiro Inoue
    • H01L41/04H01L41/047H01L41/053H01L41/22
    • H03H9/1035H01L2224/43848H01L2924/00011H03H9/0595Y10T29/42H01L2924/01005
    • Devices are disclosed that include a piezoelectric vibrating piece; a glass base and lid form a package enclosing the piezoelectric vibrating piece. The piece has first and second electrodes. The base has first and second opposing surfaces. The base mounts the piezoelectric vibrating piece, and the lid seals the piezoelectric vibrating piece in the package. The base includes first and second metal wires, extending therethrough, whose ends are denuded to the first and second surfaces and connected to the first and second electrodes, respectively. In disclosed methods for making the packaged devices, such as piezoelectric oscillators, multiple packaged devices are made simultaneously by stacking and simultaneously bonding respective wafers on which glass bases, piezoelectric vibrating pieces, and lids have been formed.
    • 公开了包括压电振动片的装置; 玻璃基座和盖子形成封装压电振动片的封装。 该件具有第一和第二电极。 基座具有第一和第二相对表面。 基座安装压电振动片,盖将压电振动片密封在封装中。 底座包括延伸穿过其中的第一和第二金属线,其末端被剥离到第一和第二表面并分别连接到第一和第二电极。 在制造诸如压电振荡器的封装器件的所公开的方法中,通过堆叠并同时粘合已经形成有玻璃基底,压电振动片和盖的各个晶片来同时制造多个封装器件。
    • 62. 发明授权
    • Angular velocity sensor and method of fabrication thereof
    • 角速度传感器及其制造方法
    • US07456555B2
    • 2008-11-25
    • US11338345
    • 2006-01-24
    • Hideryo MatsudoMasahiro YoshimatsuTakahiro InoueKenichi Kikuchi
    • Hideryo MatsudoMasahiro YoshimatsuTakahiro InoueKenichi Kikuchi
    • H03H9/21
    • G01C19/5628G01C19/5621
    • The present invention provides an angular velocity sensor and a method of fabrication thereof that facilitates the work of affixing a tuning-fork-type crystal element and adjusting the same, preventing waste caused by scrapping defective products and also encouraging miniaturization of components. The angular velocity sensor comprises: a tuning-fork-type crystal element which is provided with a drive electrode for exciting the vibration of the tuning fork and a sensor electrode for detecting an electrical charge that is generated in response to an angular velocity that is being detected; an independent pedestal to which a main surface of a tuning-fork base portion of the tuning-fork-type crystal element is previously affixed to form an integrated unit; a main package for surface mounting, in which the tuning-fork-type crystal element is hermetically sealed and which has a cavity with an inner base surface to which the pedestal integrated with the tuning-fork-type crystal element is affixed; and an IC having an oscillation circuit for driving the tuning-fork-type crystal element and a signal processing circuit for creating a signal in correspondence to the angular velocity corresponding to the electrical charge, and which is also disposed either inside or outside the package. The pedestal has a weight and/or shape that ensures that the center of gravity of the tuning-fork-type crystal element that is integrated therewith moves towards the tuning-fork base portion side, maintaining the horizontal alignment of the tuning-fork-type crystal element.
    • 本发明提供了一种角速度传感器及其制造方法,其有利于固定音叉型晶体元件并进行调节,从而防止由于废品而产生的废弃物,并且也促进了部件的小型化。 角速度传感器包括:音叉型晶体元件,其设置有用于激发音叉的振动的驱动电极和用于检测响应于正在进行的角速度而产生的电荷的传感器电极 检测到 预先固定音叉型晶体元件的音叉基部的主表面的独立基座,以形成一体的单元; 用于表面安装的主要包装件,其中音叉型晶体元件被气密地密封,并且具有一个具有内基座表面的空腔,与该音叉型晶体元件集成的基座固定到该内表面; 以及IC,其具有用于驱动音叉型晶体元件的振荡电路和用于根据与电荷对应的角速度产生信号的信号处理电路,并且还配置在封装的内部或外部。 基座具有重量和/或形状,其确保与其一体的音叉型晶体元件的重心朝向音叉基座部分侧移动,保持音叉型的水平对准 水晶元素。
    • 63. 发明申请
    • Oscillator circuit and infrared receiver
    • 振荡电路和红外接收器
    • US20070081083A1
    • 2007-04-12
    • US11545580
    • 2006-10-11
    • Takahiro Inoue
    • Takahiro Inoue
    • H04N5/228
    • G08C23/04
    • An oscillator circuit includes: a charge and discharge circuit for charging or discharging a capacitor; and a signal generating circuit for generating a signal in which (i) an interval time period indicative of a cycle on which cycle a receiving device performs a periodical intermittent operation and (ii) a watch time period indicative of a time period during which the receiving device performing the periodical intermittent operation is in an ON state are set based on a charge and discharge signal which varies according to charging and discharging of the charge and discharge circuit with respect to the capacitor. Further, the signal generating circuit sets in the signal (i) the interval time period based on a difference between first and second voltages and (ii) the watch time period based on a difference between third and fourth voltages. The third and fourth voltages fall in a range between the first and second voltages. With the interval time period and the watch time period thus set in the signal, the periodical intermittent operation of the receiving device is realized.
    • 振荡器电路包括:用于对电容器充电或放电的充电和放电电路; 以及信号发生电路,用于产生信号,其中(i)指示接收设备执行周期性间歇操作的周期的周期的间隔时间段,以及指示接收时间段的监视时间段 基于根据充放电电路相对于电容器的充放电而变化的充放电信号来设定进行周期性间歇动作的器件为ON状态。 此外,信号发生电路基于第一和第二电压之间的差异设定信号(i)的间隔时间段,以及(ii)基于第三和第四电压之间的差的监视时间段。 第三和第四电压落在第一和第二电压之间的范围内。 利用信号中设定的间隔时间和监视时间周期,实现接收装置的周期性间歇操作。
    • 64. 发明授权
    • Semiconductor device
    • 半导体器件
    • US07049862B2
    • 2006-05-23
    • US10851314
    • 2004-05-24
    • Takahiro Inoue
    • Takahiro Inoue
    • H03B1/10
    • H03K17/163H03K4/00H03K17/166H03K17/168H03K17/785
    • A semiconductor device includes a power device, and a driver which drives the power device. The driver includes a capacitor which is charged or discharged in correspondence to an external control signal, a first comparator which compares a voltage of the capacitor with a first reference voltage, and outputs a first signal based on a result of the comparison, a drive controller which outputs a drive signal in correspondence to the first signal to the power device; and a capacitor charger which detects the voltage of the capacitor, and supplies a current to the capacitor to charge the capacitor when the voltage of the capacitor is increasing within a given range.
    • 半导体器件包括功率器件和驱动器的驱动器。 驱动器包括对应于外部控制信号进行充电或放电的电容器,将电容器的电压与第一参考电压进行比较的第一比较器,并且基于比较结果输出第一信号;驱动控制器 其向所述功率器件输出与所述第一信号相对应的驱动信号; 以及电容器充电器,其检测电容器的电压,并且当电容器的电压在给定范围内增加时,向电容器提供电流以对电容器充电。
    • 65. 发明申请
    • Exposure apparatus and exposure method
    • 曝光装置和曝光方法
    • US20060103829A1
    • 2006-05-18
    • US11274963
    • 2005-11-15
    • Takahiro InoueHiroaki Samizu
    • Takahiro InoueHiroaki Samizu
    • G03B27/72
    • G03F7/70558G03F7/70291G03F7/70475
    • An exposure apparatus for performing direct exposure on a relatively moving exposure target substrate comprises: a plurality of exposure heads arranged so that an overlapping exposed area occurs between exposed areas formed on the exposure target substrate as a result of exposure by the exposure heads; and light adjusting means for adjusting the amount of light to be projected from two adjacent exposure heads onto the overlapping exposed area so that the amount of the projected light becomes equal to the amount of light that a single exposure head would project onto an exposure area if the exposure area were to be exposed through the same pattern by the single exposure head alone.
    • 用于在相对移动的曝光目标基板上进行直接曝光的曝光装置包括:多个曝光头,其布置成使得由于曝光头的曝光而在形成在曝光目标基板上的曝光区域之间发生重叠的曝光区域; 以及调光装置,用于将从两个相邻的曝光头投影的光量调整到重叠的曝光区域上,使得投影光的量变得等于单个曝光头投射到曝光区域上的光量,如果 曝光区域仅通过单个曝光头通过相同的图案曝光。
    • 66. 发明授权
    • Drum type washing and drying machine
    • 鼓式洗衣机
    • US07020986B1
    • 2006-04-04
    • US11090390
    • 2005-03-28
    • Koji NakaiTakahiro InoueYoshitomo Kato
    • Koji NakaiTakahiro InoueYoshitomo Kato
    • F26B11/02
    • D06F58/22
    • A drum type washing and drying machine includes a cylindrical rotary drum provided with multiple drum perforations on the cylindrical surface thereof and having a rotating shaft in a horizontal or a slanted direction, a water tub, supported in a main body of the machine, for accommodating the rotary drum therein; an air circulation channel for re-circulating air exhausted from the rotary drum back into the rotary drum via a dehumidification unit and a heating unit; and a lint trap device, installed in the air circulation channel, for filtering lint generated from laundry. The lint trap device at least includes a first and a second filter member capable of being detachably attached to each other, and the assembly of the first and the second filter member is freely attachably and detachably installed on a front upper portion of the main body in an approximately horizontal direction.
    • 滚筒式洗衣机包括:圆柱形旋转滚筒,其圆柱形表面上具有多个滚筒穿孔,并且具有水平或倾斜方向的旋转轴,支撑在机器主体中的水桶,用于容纳 其中的转鼓; 用于经由除湿单元和加热单元将从旋转鼓排出的空气再循环回到旋转滚筒中的空气循环通道; 以及安装在空气循环通道中的棉绒收集装置,用于过滤从衣物产生的棉绒。 绒毛收集装置至少包括能够可拆卸地彼此连接的第一和第二过滤构件,并且第一和第二过滤构件的组件可自由地可拆卸地安装在主体的前部上部 大致水平方向。
    • 67. 发明申请
    • Semiconductor apparatus
    • 半导体装置
    • US20050017788A1
    • 2005-01-27
    • US10791825
    • 2004-03-04
    • Takahiro Inoue
    • Takahiro Inoue
    • H02M1/08H01L29/74H03K17/04H03K17/0412H03K17/06H03K17/16H03K17/56H03K19/00H03K19/01
    • H03K17/0406H03K17/04123H03K17/04206H03K17/164H03K17/167
    • Disclosed is a semiconductor apparatus having an IGBT, which includes a switch SWon 1 for supplying a gate current during an operation for turning on the gate of the IGBT, a switch SWoff 1 for discharging a gate capacitance during an operation for turning off the gate, a switch SWon 2 for increasing the gate current, a timer 14 for turning on the switch SWon 2 in conjunction with the turn-on of the switch SWon 1 and then maintaining the turn-on of the switch SWon 2 only for a first predetermined time, a switch SWoff 2 for increasing the discharge current during the gate turn-off operation, and a timer 15 for turning on the switch SWoff 2 in conjunction with the turn-on of the switch SWoff 1 and then maintaining the turn-on of the switch SWoff 2 only for a second predetermined time.
    • 公开了一种具有IGBT的半导体装置,其包括用于在用于接通IGBT的栅极的操作期间提供栅极电流的开关SWon 1,用于在关闭栅极的操作期间对栅极电容进行放电的开关SWoff 1, 用于增加栅极电流的开关SWon 2,与开关SWon 1的接通一起接通开关SWon2的定时器14,然后仅将开关SWon 2的导通保持在第一预定时间 ,用于在栅极关断操作期间增加放电电流的开关SWoff 2,以及与开关SWoff 1的导通相关联地接通开关SWoff2的定时器15,然后保持开关SWoff 2的导通 开关SWoff 2只有第二个预定时间。
    • 68. 发明授权
    • Component mounting method and component mounting apparatus
    • 部件安装方法和部件安装装置
    • US06842974B1
    • 2005-01-18
    • US10088759
    • 2000-09-26
    • Yasuhiro MaenishiTakahiro InoueIkuo Yoshida
    • Yasuhiro MaenishiTakahiro InoueIkuo Yoshida
    • H05K13/04H05K3/30
    • H05K13/0478H05K13/0409H05K13/041H05K13/0452Y10T29/4913Y10T29/49131Y10T29/49144Y10T29/53174Y10T29/53178
    • An electronic component mounting method for placing electronic components successively to component placing positions on a board by component holding devices equipped with a plurality of removable suction nozzles which is operable to hold the electronic components. The method, as an example of its various manners, includes: in placing the electronic components onto a multiple board composed of a plurality of sub-boards, applying a placement step to all the sub-boards, the placement step being a step of placing onto the board all of electronic components that are holdable by an identical suction nozzle; and after completion of the placement step, changing the suction nozzle to another and moving to a next placement step, whereby electronic-component mounting for the individual sub-boards is carried out. In another aspect, component array intervals (M) of component feed sections or intervals (N) of component placing positions on the board are made coincident with array intervals (L) of the component holding devices.
    • 一种电子部件安装方法,用于通过具有可操作以保持电子部件的多个可移除的吸嘴的部件保持装置将电子部件连续地放置在板上的部件放置位置。 该方法作为其各种方式的示例,包括:将电子部件放置在由多个子板构成的多个板上,向所有子板施加放置步骤,放置步骤是放置步骤 在板上所有可由相同吸嘴保持的电子部件; 并且在完成放置步骤之后,将吸嘴改变为另一个并移动到下一个放置步骤,由此执行用于各个子板的电子部件安装。 在另一方面,组件馈送部分的组件阵列间隔(M)或板上的组件放置位置的间隔(N)与组件保持装置的阵列间隔(L)一致。
    • 69. 发明授权
    • Charge and/or discharge circuit, and carrier detector circuit using same
    • 充电和/或放电电路,以及使用其的载波检测器电路
    • US06677732B1
    • 2004-01-13
    • US10189396
    • 2002-07-08
    • Takahiro InoueNaruichi YokogawaTakeshi Nishino
    • Takahiro InoueNaruichi YokogawaTakeshi Nishino
    • H01M1046
    • H04B10/69H04L27/06
    • A charge/discharge circuit creates a carrier detection level based on a received signal in a carrier detector circuit for detecting the presence or absence of a carrier in such applications as a receiver for an IR remote controller. The charge/discharge circuit operates to amplify a current, that is produced in n-type transistors QN1, QN2, QN3 and a reference current source, in a p-type transistor QP1. The amplified current is mirrored by a current mirror circuit to be supplied as an emitter current of a p-type transistor QP2. The charge/discharge circuit charges a capacitor with a small current, i.e., a base current of the p-type transistor QP2. The charge/discharge circuit includes a bias voltage source which produces such a bias voltage that the emitter-collector voltage of the p-type transistor QP1 becomes substantially equal to the emitter-collector voltage of the p-type transistor QP2. As a result, it is possible to limit an error of a charge current charged into the capacitor, which is caused by the emitter-collector voltage dependent change of the collector current and thus the base current, known as the Early effect.
    • 充电/放电电路基于载波检测器电路中的接收信号创建载波检测电平,用于在诸如用于IR遥控器的接收机的应用中检测载波的存在或不存在。 充电/放电电路用于在p型晶体管QP1中放大在n型晶体管QN1,QN2,QN3和参考电流源中产生的电流。 放大的电流由电流镜电路镜像,以作为p型晶体管QP2的发射极电流提供。 充电/放电电路以小电流(即p型晶体管QP2的基极电流)对电容器充电。 充电/放电电路包括偏置电压源,其产生这样的偏置电压,使得p型晶体管QP1的发射极 - 集电极电压变得基本上等于p型晶体管QP2的发射极 - 集电极电压。 结果,可以限制由集电极电流的发射极 - 集电极电压依赖的变化引起的充电到电容器中的充电电流的误差,从而限制被称为早期效应的基极电流。