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    • 1. 发明授权
    • System and method for inspecting a semiconductor device with contact sections that slide over the terminals of the semiconductor device
    • 用于检查具有在半导体器件的端子上滑动的接触部分的半导体器件的系统和方法
    • US06621286B2
    • 2003-09-16
    • US09754203
    • 2001-01-05
    • Shigeru TakadaIsao AsakaMasahiro Tanaka
    • Shigeru TakadaIsao AsakaMasahiro Tanaka
    • G01R173
    • G01R1/0408
    • A system and method suitable for inspecting a semiconductor device whose terminals are formed from solder balls and protrude from a package is provided, thus enabling high-speed inspection of a semiconductor device having a plurality of pins. Metal protuberances corresponding to respective terminals projecting from the bottom of a package of a semiconductor device are provided on an interface substrate. Contact sections corresponding to the respective metal protuberances are provided within each of a plurality of slide sections. The semiconductor device is set on the slide section such that the terminals are disposed opposite the respective metal protuberances. The slide sections are slid over the interface substrate, thereby bringing the side surfaces of the terminals of the semiconductor device into contact with the contact sections. Each of the contact sections is formed from a conductive contact plate, an elastic film, and a slide guide having rigidity.
    • 提供了适用于检查端子由焊料球形成并从封装突出的半导体器件的系统和方法,从而能够高速检查具有多个引脚的半导体器件。 对应于从半导体器件的封装的底部突出的各个端子的金属突起设置在界面基板上。 对应于各个金属突起的接触部分设置在多个滑动部分的每一个内。 半导体器件设置在滑动部分上,使得端子与相应的金属突起相对设置。 滑动部分在界面基板上滑动,从而使半导体器件的端子的侧表面与接触部分接触。 每个接触部分由导电接触板,弹性膜和具有刚性的滑动导向件形成。
    • 5. 发明申请
    • Controlling Communication Device, Controlled Body Communication Device And Controlling Communication System
    • 控制通信设备,受控体通信设备和控制通信系统
    • US20130076494A1
    • 2013-03-28
    • US13612141
    • 2012-09-12
    • Takahiro IsonoKota ToyotomiYasutaka KoikeMasahiro Tanaka
    • Takahiro IsonoKota ToyotomiYasutaka KoikeMasahiro Tanaka
    • G05B11/01
    • A63H30/04G05B19/042
    • In a controlling communication device, parameter of a device mounted in an airframe is modified remotely from a transmitting side without a personal computer or a dedicated setting box. The communication device is operable to select an operation mode and a parameter mode, and includes a controlling communication device (a transmitter) having a display, a controlled body communication device (a receiver) connected to a device mounted in the airframe. In the parameter mode, the parameter signal is transmitted to the receiver by operation of the transmitter, and the parameter of the device is modified remotely by radio while seeing the display. The parameter signal by return from the receiver notifies results of the modification. Even if the device is made plurally in types or in number, it is unnecessary to detach the device from the controlled communication device, so as to readily modify the parameter.
    • 在控制通信设备中,安装在机身中的设备的参数在没有个人计算机或专用设置箱的情况下远离发送侧被修改。 通信装置可操作以选择操作模式和参数模式,并且包括具有显示器的控制通信设备(发射机),连接到安装在机身中的设备的被控体通信设备(接收机)。 在参数模式下,通过发射机的操作将参数信号发送给接收机,同时在看到显示器的同时通过无线电远程修改设备的参数。 从接收器返回的参数信号通知修改的结果。 即使该装置的数量多种多样,也不需要从受控通信装置中分离装置,从而容易地修改参数。
    • 6. 发明申请
    • Wireless Communication System
    • 无线通信系统
    • US20130038429A1
    • 2013-02-14
    • US13564801
    • 2012-08-02
    • Yasutaka KoikeMasahiro Tanaka
    • Yasutaka KoikeMasahiro Tanaka
    • G08C19/16
    • A63H30/04
    • A servo device 30 includes: a control portion 31 for driving and controlling a drive mechanism 32 by receiving a control signal from a transmitter 10, and by transforming the control signal into a drive signal corresponding to characteristic data previously stored in a memory portion 35. The control portion 31 includes: a signal processing portion 33 for discriminating whether the control signal is a maneuver signal or a characteristic data signal; and the memory portion for updating and storing the characteristic data based on the received characteristic data signal when the control signal is discriminated as the characteristic data signal.
    • 伺服装置30包括:控制部分31,用于通过接收来自发射器10的控制信号来驱动和控制驱动机构32,并且通过将控制信号变换成与先前存储在存储部分35中的特征数据相对应的驱动信号。 控制部分31包括:信号处理部分33,用于鉴别控制信号是操纵信号还是特征数据信号; 以及存储器部分,用于当控制信号被鉴别为特征数据信号时,基于接收到的特征数据信号来更新和存储特征数据。