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    • 81. 发明申请
    • HYBRID CIRCUIT FOR VERY-HIGH-SPEED DIGITAL SUBSCRIBER LINE
    • 用于非常高速数字用户线的混合电路
    • US20120294341A1
    • 2012-11-22
    • US13170317
    • 2011-06-28
    • HSIANG-SHENG WENCHING-FENG HSIEH
    • HSIANG-SHENG WENCHING-FENG HSIEH
    • H04B1/38
    • H04B3/03
    • A hybrid circuit for a Very-High-Speed Digital Subscriber Line (VDSL) blocks noise and includes a transceiving unit, a voltage transformation module, a direct current (DC) blocking capacitor, a receiving unit, and a transmitting unit. The voltage transformation module blocks noise generated as a result of transmission of an upstream signal and a downstream signal at the transceiving unit, and includes a first voltage transformation unit and a second voltage transformation unit. The DC blocking capacitor is series-connected between primary coils of the first and second voltage transformation units for preventing the direct current in the VDSL from affecting the transmission of the upstream signal and the downstream signal. Accordingly, the hybrid circuit simplifies the circuit design of the VDSL, cuts costs incurred by electronic components, and reduces the area required for circuit layout.
    • 用于超高速数字用户线(VDSL)的混合电路阻塞噪声,并且包括收发单元,电压变换模块,直流(DC)阻塞电容器,接收单元和发送单元。 电压变换模块阻止作为发送单元的上行信号和下行信号的发送的结果而产生的噪声,并且包括第一电压变换单元和第二电压变换单元。 隔离电容器串联在第一和第二电压变换单元的初级线圈之间,用于防止VDSL中的直流电流影响上游信号和下游信号的传输。 因此,混合电路简化了VDSL的电路设计,降低了电子元件产生的成本,并减少了电路布局所需的面积。
    • 82. 发明申请
    • STATUS SIMULATION TESTING SYSTEM AND METHOD
    • 状态模拟测试系统和方法
    • US20120253737A1
    • 2012-10-04
    • US13090442
    • 2011-04-20
    • BING-CHENG OUTZU-HAOMR SHENGCHING-FENG HSIEH
    • BING-CHENG OUTZU-HAOMR SHENGCHING-FENG HSIEH
    • G01P15/00
    • G01P21/00G01C25/005
    • A status simulation testing method is for use in testing a portable device having at least one angular velocity sensor and includes positioning the portable device on an oblique plane; moving and flinging the portable device at an increasing velocity to enable the portable device to move at an acceleration and an angular velocity; generating a sensing value by the angular velocity sensor of the portable device; and determining whether a sensing operation of the angular velocity sensor of the portable device is functioning well according to the sensing value. Accordingly, the method not only simulates a usage status of the portable device, but also tests the sensor of the portable device quickly, consistently, and accurately. A status simulation testing system is further introduced.
    • 状态模拟测试方法用于测试具有至少一个角速度传感器的便携式设备,并且包括将便携式设备定位在倾斜平面上; 以增加的速度移动和移动便携式设备,以使便携式设备能够以加速度和角速度移动; 通过便携式设备的角速度传感器产生感测值; 以及根据感测值确定便携式设备的角速度传感器的感测操作是否正常工作。 因此,该方法不仅模拟便携式设备的使用状态,而且还快速,一致和准确地测试便携式设备的传感器。 进一步介绍了状态仿真测试系统。
    • 83. 发明申请
    • PRINTED CIRCUIT BOARD FOR USE IN GIGABIT-CAPABLE PASSIVE OPTICAL NETWORK AND METHOD FOR LAYING OUT THE PRINTED CIRCUIT BOARD
    • 印刷电路板,用于可插拔的被动光网络和打印出的电路板的方法
    • US20120147568A1
    • 2012-06-14
    • US12984691
    • 2011-01-05
    • HSIANG-SHENG WENCHING-FENG HSIEH
    • HSIANG-SHENG WENCHING-FENG HSIEH
    • H05K7/02H05K3/10
    • G06F17/5068Y10T29/49155
    • A method for laying out a printed circuit board for use in a gigabit-capable passive optical network includes the steps of providing a printed circuit board and laying out an analog circuit module, an analog-to-digital conversion module, a signal processing module, an optoelectronic transmitting and receiving module, and a power module on the printed circuit board. The printed circuit board has a first periphery and an opposing second periphery. The analog circuit module and the optoelectronic transmitting and receiving module are laid out at the first periphery of the printed circuit board. The power module is laid out at the second periphery of the printed circuit board. Electromagnetic wave generated by a power IC inserted in the power module does not interfere with data transmission taking place at the optoelectronic transmitting and receiving module. Furthermore, a printed circuit board for use with the method is proposed.
    • 布置用于千兆位无源光网络的印刷电路板的方法包括以下步骤:提供印刷电路板并布置模拟电路模块,模数转换模块,信号处理模块, 光电发射和接收模块,以及印刷电路板上的电源模块。 印刷电路板具有第一周边和相对的第二周边。 模拟电路模块和光电发射和接收模块布置在印刷电路板的第一个周边。 电源模块布置在印刷电路板的第二个周边。 由插入电源模块中的电源IC产生的电磁波不会干扰在光电发射和接收模块处发生的数据传输。 此外,提出了一种与该方法一起使用的印刷电路板。
    • 84. 发明申请
    • PRINTED CIRCUIT BOARD GROUNDING STRUCTURE FOR USE WITH COMMUNICATION APPARATUS
    • 印刷电路板接地结构,使用通讯设备
    • US20120145439A1
    • 2012-06-14
    • US12984655
    • 2011-01-05
    • HSIANG-SHENG WENCHING-FENG HSIEH
    • HSIANG-SHENG WENCHING-FENG HSIEH
    • H05K1/09
    • H05K1/0215H05K1/0216H05K3/4007H05K9/0039H05K2201/10371
    • A printed circuit board grounding structure for use with a communication apparatus is configured for use with a printed circuit board to contact a grounded casing and thereby form a grounded circuit capable of electromagnetic wave shielding. The printed circuit board ground structure includes a copper conductive layer and a plurality of solder contacts. The copper conductive layer is circumferentially disposed along the periphery of the printed circuit board. The solder contacts are disposed on the copper conductive layer and used for electrically contacting with the casing. The printed circuit board grounding structure prevents deterioration of electromagnetic wave shielding despite oxidation of the copper conductive layer. The circumferentially-disposed copper conductive layer blocks electromagnetic wave generated from inside the printed circuit board, prevents leakage of the electromagnetic wave, and ultimately prevents the electromagnetic wave from interfering with other electronic apparatuses.
    • 与通信装置一起使用的印刷电路板接地结构被配置为与印刷电路板一起使用以接触接地的壳体,从而形成能够进行电磁波屏蔽的接地电路。 印刷电路板接地结构包括铜导电层和多个焊接触点。 铜导电层沿着印刷电路板的周边周向设置。 焊接触点设置在铜导电层上并用于与壳体电接触。 印刷电路板接地结构防止了铜导电层氧化的电磁波屏蔽的劣化。 周向布置的铜导电层阻止从印刷电路板内部产生的电磁波,防止电磁波的泄漏,并最终防止电磁波干扰其他电子设备。
    • 85. 发明申请
    • WATERPROOFING METHOD AND STRUCTURE
    • 防水方法和结构
    • US20120097681A1
    • 2012-04-26
    • US12957515
    • 2010-12-01
    • HO-YUAN LINCHING-FENG HSIEH
    • HO-YUAN LINCHING-FENG HSIEH
    • B65D53/00H05K13/00
    • B65D53/02B65D2585/86H05K5/061Y10T29/49002
    • A waterproofing method and structure are applicable to an electronic device having a first casing and a second casing, the first casing having a first adjoining-brim peripherally disposed thereon, and the second casing having a peripheral second adjoining-brim for adjoining the first adjoining-brim. The method includes forming a convex portion circumferentially along the first adjoining-brim; forming a concave portion circumferentially along the second adjoining-brim, the concave portion corresponding in position to the convex portion; disposing a resilient unit in the concave portion, the resilient unit including a body and a soft interfering element protruding therefrom; coupling the first and second adjoining-brims together such that the convex portion presses against the soft interfering element to enable deformation thereof, thereby forming a first interfering structure. The waterproof effect achieved by coupling the first and second adjoining-brims together is not compromised by the stress resulting from the deformation of the soft interfering element.
    • 防水方法和结构适用于具有第一壳体和第二壳体的电子设备,第一壳体具有外围设置在其上的第一邻接边缘,并且第二壳体具有用于邻接第一邻接边缘的周边第二邻接边缘, 边缘 该方法包括沿着第一邻接边缘周向形成凸部; 沿着所述第二邻接边缘周向地形成凹部,所述凹部对应于所述凸部的位置; 将弹性单元设置在凹部中,弹性单元包括主体和从其突出的软干扰元件; 将第一和第二邻接边缘联接在一起,使得凸部按压软干扰元件以使其变形,从而形成第一干涉结构。 通过将第一和第二邻接边缘联接在一起而实现的防水效果不受软干扰元件的变形引起的应力的影响。
    • 86. 发明申请
    • ATTACHMENT-ENABLING JIG
    • 附件启用
    • US20120096699A1
    • 2012-04-26
    • US12958441
    • 2010-12-02
    • FLY HECHING-FENG HSIEH
    • FLY HECHING-FENG HSIEH
    • B23P19/04
    • B23P19/00Y10T29/49826
    • An attachment-enabling jig for attaching a soft strip to an attachment surface of an object quickly, precisely, and flatly includes a base; a first carrying unit disposed on the base and provided with a first roller oriented perpendicular to a first direction; a second carrying unit disposed on the base and provided with a second roller corresponding in position to the first roller, wherein the first and second carrying units carry the soft strip; a resilient unit connected to the first and second carrying units; and an actuating unit disposed on the base and configured to hold the object and controllably drive the attachment surface of the object to move to between the first roller and the second roller such that the first and second rollers attach the soft strip to the attachment surface. Accordingly, the attachment-enabling jig is effective in enhancing the efficiency of production lines.
    • 一种用于将软带快速,准确且平坦地附接到物体的附接表面的附接使能夹具包括基部; 第一承载单元,设置在所述基座上并且设置有垂直于第一方向定向的第一辊; 第二承载单元,设置在所述基座上并且设置有与所述第一辊对应的第二辊,其中所述第一和第二承载单元承载所述软带; 连接到第一和第二承载单元的弹性单元; 以及致动单元,其设置在所述基座上并且被配置为保持所述物体并且可控制地驱动所述物体的附接表面以移动到所述第一辊和所述第二辊之间,使得所述第一和第二辊将所述软带附接到所述附接表面。 因此,可附接使用夹具有效地提高生产线的效率。
    • 87. 发明申请
    • LATCH STRUCTURE AND ELECTRONIC DEVICE
    • 锁定结构和电子设备
    • US20120087071A1
    • 2012-04-12
    • US12955977
    • 2010-11-30
    • JUI-CHING YANGCHING-FENG HSIEH
    • JUI-CHING YANGCHING-FENG HSIEH
    • H05K7/00E05C1/08
    • E05C1/04H04M1/0262Y10T292/1001
    • A latch structure prevents separation of first and second bodies of an electronic device which might otherwise occur as a result of a fall, requires little force to operate, and serves to switch a coupling status of the first and second bodies of the electronic device. The first body has a receiving unit and a coupling unit. The second body has an L-shaped groove. A base of the latch structure has a casing slidable in the receiving unit and a resilient element for providing a resilient restoring force. The casing has a protruding member for coupling with the L-shaped groove. A resilient coupling unit of the latch structure is disposed on the base and configured to engage the coupling unit.
    • 闩锁结构防止由于下降而可能发生的电子设备的第一和第二主体的分离,需要很小的操作力,并且用于切换电子设备的第一和第二主体的联接状态。 第一主体具有接收单元和耦合单元。 第二主体具有L形凹槽。 闩锁结构的基座具有可在接收单元中滑动的壳体和用于提供弹性恢复力的弹性元件。 壳体具有用于与L形槽连接的突出构件。 闩锁结构的弹性联接单元设置在基座上并构造成与联接单元啮合。
    • 88. 发明申请
    • SOFT RING
    • 软环
    • US20120074153A1
    • 2012-03-29
    • US12955945
    • 2010-11-30
    • JUI-CHING YANGCHING-FENG HSIEH
    • JUI-CHING YANGCHING-FENG HSIEH
    • B65D90/00
    • H04M1/18
    • A soft ring addresses issues, such as casing deformation, waterproof capacity, and dust control. The soft ring is configured for use with a casing of an electronic device, and the casing has a first housing and a second housing coupled together. A ring-shaped receiving groove is disposed on the first housing for receiving the soft ring and a ring-shaped flange is disposed on the second housing for pressing the soft ring along the coupling portion of the first housing and the second housing. The soft ring is characterized in that a channel is disposed along the soft ring. The soft ring advantageously features a high compressed capacity and a low reaction force to thereby prevent the casing from deformation and improve the waterproof capacity and dust control of the casing.
    • 软环解决了套管变形,防水能力和灰尘控制等问题。 软环被配置为与电子设备的壳体一起使用,并且壳体具有联接在一起的第一壳体和第二壳体。 环形接收槽设置在第一壳体上用于接收软环,并且环形凸缘设置在第二壳体上,用于沿着第一壳体和第二壳体的联接部分按压软环。 软环的特征在于沿软环设置通道。 软环有利地具有高压缩能力和低反作用力,从而防止壳体变形,并提高套管的防水能力和防尘性能。
    • 89. 发明申请
    • DEVICE AND METHOD FOR LOCKING AND CALIBRATING FREQUENCY
    • 用于锁定和校准频率的装置和方法
    • US20110304402A1
    • 2011-12-15
    • US12876553
    • 2010-09-07
    • KUO-WEI HUNGSHUN-YA YANGCHING-FENG HSIEH
    • KUO-WEI HUNGSHUN-YA YANGCHING-FENG HSIEH
    • H03L7/00
    • H03L7/099G01S19/235H03L7/085H03L7/093
    • A device and a method for locking and calibrating a frequency is provided for receiving a precise external clock frequency to lock an adjustable oscillator that controls an oscillation frequency to a predetermined frequency. The device comprises a process unit and a frequency adjusting unit. The process unit is provided for comparing the oscillation frequency with a precise frequency to generate a frequency difference and a calibration signal according to the frequency difference. The frequency adjusting unit generates a locking voltage according to the comparison result of the calibration signal and the internal oscillation frequency for locking the oscillation frequency of the external adjustable oscillator to the predetermined frequency, so that the adjustable oscillator still can output a precise oscillation frequency without requiring a precise oscillator.
    • 提供了用于锁定和校准频率的装置和方法,用于接收精确的外部时钟频率以将控制振荡频率的可调节振荡器锁定到预定频率。 该装置包括处理单元和频率调节单元。 提供处理单元,用于将振荡频率与精确频率进行比较,以根据频率差产生频率差和校准信号。 频率调整单元根据校准信号和内部振荡频率的比较结果产生锁定电压,将外部可调振荡器的振荡频率锁定到预定频率,使得可调谐振荡器仍然能够输出精确的振荡频率而没有 需要一个精确的振荡器。
    • 90. 发明申请
    • CASING FOR OUTDOOR COMMUNICATION APPARATUS AND PROTECTIVE DEVICE FOR THE SAME
    • 用于室外通信设备及其保护设备
    • US20110147247A1
    • 2011-06-23
    • US12703411
    • 2010-02-10
    • YUNG-CHI CHENGCHING-FENG HSIEH
    • YUNG-CHI CHENGCHING-FENG HSIEH
    • B65D85/00
    • H05K5/0239
    • A protective device is applicable to a casing provided with a first coupling portion and configured for use with an outdoor communication apparatus. The protective device includes a body and a shielding portion. The body is configured to shield the front of the casing and provided with a second coupling portion coupled to the first coupling portion. The shielding portion is laterally provided to the side of the body for shielding the casing sideways. Hence, the shielding portion of the protective device shields the casing from direct irradiation of sunlight, prevents the outdoor communication apparatus from being overheated, and protects the outdoor communication apparatus against rainwater and dirt. A casing configured for use with an outdoor communication apparatus and equipped with the protective device is further provided.
    • 保护装置适用于设置有第一联接部并配置为与室外通信装置一起使用的壳体。 保护装置包括主体和屏蔽部分。 主体被构造成屏蔽壳体的前部并且设置有联接到第一联接部分的第二联接部分。 屏蔽部分侧向设置在主体的侧面,以侧向屏蔽壳体。 因此,保护​​装置的屏蔽部遮蔽了壳体的直射照射,防止室外通信装置过热,并且保护室外通信装置免受雨水污染。 还提供了一种配置成与室外通信装置一起使用并配备有保护装置的壳体。