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    • 1. 发明授权
    • Test tray for handler
    • 托盘处理程序
    • US07208938B2
    • 2007-04-24
    • US11362291
    • 2006-02-23
    • Yeon-Gyu Song
    • Yeon-Gyu Song
    • G01R31/28
    • G01R1/04G01R31/2893
    • A test tray includes a rectangular shaped frame and a plurality of transport modules to receive a plurality of semiconductor devices. A precise location-determining unit mounted on both sides of the frame to precisely determines and fixes the test tray location. According to one embodiments, the precise location-determining unit includes a locking hole to receive a positioner, a bushing to prevent locking hole wear, a protection bar to cover the frame and the bushing. The test tray prevents yield reduction and handler malfunction, e.g., sudden stopping of the handler, by precisely fixing tray and semiconductor device position during loading, unloading, and testing. The test tray can be extensively without repair or replacement because locking hole, with protective bushing therein, enjoys little or no wear.
    • 测试托盘包括矩形框架和用于接收多个半导体器件的多个传输模块。 安装在框架两侧的精确定位单元精确地确定和固定测试托盘位置。 根据一个实施例,精确位置确定单元包括用于接收定位器的锁定孔,用于防止锁定孔磨损的衬套,覆盖框架和衬套的保护杆。 通过在装载,卸载和测试期间精确地固定托盘和半导体装置的位置,测试托架防止产量降低和处理器故障,例如处理器的突然停止。 测试托盘可以广泛地进行维修或更换,因为带有保护套管的锁定孔很少或没有磨损。
    • 4. 发明授权
    • Cochlear implants with a stimulus in the human ultrasonic range and method for stimulating a cochlea
    • 耳蜗植入物在人体超声波范围内具有刺激作用,刺激耳蜗的方法
    • US07266209B1
    • 2007-09-04
    • US09478136
    • 2000-01-05
    • David William House
    • David William House
    • H04R25/00
    • A61N1/36036
    • A cochlear implant system for a patient's cochlea includes an external processor and an implanted internal unit. The internal unit includes one electrode for inserting in the patient's cochlea, and an internal coil for driving the electrode. The external processor includes a microphone for outputting electrical sound signals in response to ambient or other sounds, an oscillator for generating an electrical analog carrier signal, and a modulator for modulating the carrier signal with the sound signals to generate a modulated signal. An external coil couples magnetically the modulated signal to the internal coil. The analog carrier signal has a frequency in the ultrasonic human range, i.e. greater than 20 kHz, such as 32 kHz or 80 kHz. This sampling at higher frequency results in clearer rendering of sounds, and a higher frequency range of rendered sounds.
    • 用于患者耳蜗的人工耳蜗植入系统包括外部处理器和植入的内部单元。 内部单元包括用于插入患者耳蜗的一个电极和用于驱动电极的内部线圈。 外部处理器包括用于响应于环境或其他声音输出电声信号的麦克风,用于产生电模拟载波信号的振荡器,以及用声音信号调制载波信号以产生调制信号的调制器。 外部线圈将调制信号磁耦合到内部线圈。 模拟载波信号具有超声波人体范围内的频率,即大于20kHz,例如32kHz或80kHz。 在较高频率下的采样会导致更清晰的声音渲染,以及较高的渲染声音频率范围。
    • 7. 发明授权
    • Method, system, terminal and network side for triggering terminal response
    • 方法,系统,终端和网络端触发终端响应
    • US08761767B2
    • 2014-06-24
    • US13636999
    • 2011-11-18
    • Hao Wu
    • Hao Wu
    • H04W60/04
    • H04W60/04H04W4/70H04W68/00H04W68/005H04W74/008H04W76/10
    • The present invention discloses a method for triggering terminal response, including: after receiving a trigger message sent by a network side, a terminal sending an access request message to the network side; wherein, the access request message includes a trigger identification. The present invention discloses a system for triggering terminal response which realizes the above-mentioned method for triggering terminal response, a terminal and a network side at the same time. In the present invention, when the network side receives the access request message sent by the terminal, because the access request message carries the trigger identification, the network side can determine which trigger message is responded by the access request message according to the trigger identification carried in the access request message, thus deleting this trigger message stored by itself after the terminal accesses the server, and does not need to send the trigger for the terminal repeatedly.
    • 本发明公开了一种用于触发终端响应的方法,包括:在接收到由网络侧发送的触发消息之后,终端向网络侧发送接入请求消息; 其中,所述访问请求消息包括触发标识。 本发明公开了一种用于触发终端响应的系统,其实现了上述触发终端响应的方法,终端和网络侧的同时。 在本发明中,当网络侧接收到终端发送的接入请求消息时,由于接入请求消息携带了触发标识,网络侧可以根据携带的触发标识来确定哪个触发消息被接入请求消息所响应 在访问请求消息中,因此在终端访问服务器之后,删除自身存储的触发消息,并且不需要重复发送终端的触发。
    • 8. 发明授权
    • Method and device for separating acoustic signals
    • 用于分离声信号的方法和装置
    • US07327852B2
    • 2008-02-05
    • US10557754
    • 2005-01-31
    • Dietmar Ruwisch
    • Dietmar Ruwisch
    • H04R25/00
    • G10L21/02G10L2021/02165G10L2021/02166
    • In a method of separating acoustic signals from a plurality of sound sources comprising the following steps: disposing two microphones (MIK1, MIK2) at a predefined distance (d) from one another; picking up the acoustic signals with both microphones (MIK1, MIK2) and generating associated microphone signals (m1, m2); and separating the acoustic signal of one of the sound sources (SI) from the acoustic signals of the other sound sources (S2) on the basis of the microphone output signals (m1, m2), the proposed separation step comprises the following steps: applying a Fourier transform to the microphone output signals in order to determine their frequency spectra (M1, M2); determining the phase difference between the two microphone output signals (m1, m2) for every frequency component of their frequency spectra (M1 , M2); determining the angle of incidence of every acoustic signal allocated to a frequency of the frequency spectra (M1, M2) on the basis of the relative phase angle and the frequency; generating a signal spectrum (5) of a signal to be output by correlating one of the two frequency spectra (M1, M2) with a filter function which is selected so that acoustic signals from an area around a preferred angle of incidence are amplified relative to acoustic signals from outside this area; and applying an inverse Fourier transform to the resultant signal spectrum.
    • 在分离来自多个声源的声信号的方法中,包括以下步骤:将预定距离(d)的两个麦克风(MIK1,MIK2)彼此放置; 用两个麦克风(MIK 1,MIK 2)拾取声信号并产生相关的麦克风信号(m 1,m 2); 并根据麦克风输出信号(m 1,m 2)将声源(SI)中的一个的声信号与其他声源(S 2)的声信号分开,所提出的分离步骤包括以下 步骤:对麦克风输出信号进行傅里叶变换,以确定它们的频谱(M 1,M 2); 确定其频谱(M 1,M 2)的每个频率分量的两个麦克风输出信号(m 1,m 2)之间的相位差; 基于相对相位角和频率来确定分配给频谱频率(M 1,M 2)的每个声信号的入射角; 通过将两个频谱(M 1,M 2)中的一个与选择的滤波器函数相关联来产生要输出的信号的信号频谱(5),使得来自来自优选入射角的区域的声学信号被放大 相对于来自该区域外部的声学信号; 以及对所得信号频谱应用逆傅里叶变换。