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    • 1. 发明授权
    • Synchronized activity bitmap generation method for co-located coexistence (CLC) devices
    • 用于共址共存(CLC)设备的同步活动位图生成方法
    • US09420599B2
    • 2016-08-16
    • US12730425
    • 2010-03-24
    • Li-Chun KoHong-Kai HsuChi-Chen LeeI-Kang FuJiun-Jang Su
    • Li-Chun KoHong-Kai HsuChi-Chen LeeI-Kang FuJiun-Jang Su
    • H04W72/12H04W88/06
    • H04W72/1215H04W88/06
    • A mobile communications device is provided. A first radio module communicates with a communications device in compliance with a first protocol. A second radio module communicates with a base station in compliance with a second protocol. A CLC radio manager receives a traffic pattern from the first radio module indicating a first traffic allocation for the first radio module, obtains timing information of the base station, obtains a native reference clock from a clock source, converts values of the traffic pattern into the native reference clock counts, aligns the converted traffic pattern with the timing information of the base station, generates one or more CLC bitmaps for the first radio module by converting the aligned traffic pattern into a plurality of WiMAX frames or sub-frames of the timing information, and transmits the generated CLC bitmaps to the base station to recommend a second traffic allocation of the frames or sub-frames.
    • 提供移动通信设备。 第一无线电模块根据第一协议与通信设备进行通信。 第二无线电模块根据第二协议与基站进行通信。 CLC无线电管理器从第一无线电模块接收指示第一无线电模块的第一业务分配的业务模式,获得基站的定时信息,从时钟源获取本地参考时钟,将业务模式的值转换为 本地参考时钟计数,将经转换的流量模式与基站的定时信息对齐,通过将对准的流量模式转换成多个WiMAX帧或定时信息的子帧,为第一无线电模块生成一个或多个CLC位图 ,并将生成的CLC位图发送到基站,以推荐帧或子帧的第二业务分配。
    • 2. 发明授权
    • Projected capacitive touch panel and fabricating method thereof
    • 投影电容式触摸屏及其制造方法
    • US08138425B2
    • 2012-03-20
    • US12638230
    • 2009-12-15
    • Chi-Chen LeeFu-Chen HuangHsin-Min ChenShih-Min Wu
    • Chi-Chen LeeFu-Chen HuangHsin-Min ChenShih-Min Wu
    • H05K1/03
    • G06F3/044
    • A touch panel and a fabricating method thereof are provided. The touch panel includes: a substrate; a first conductive layer configured on the substrate and having a first and a second portions; an insulating layer covering the first portion; and a second conductive layer having a third portion configured on the second portion, and a fourth portion configured on the insulating layer and being separate from the third portion. The fabricating method includes the steps of: providing a first conductive layer; forming an insulating layer partially covering the first conductive layer; and forming a second conductive layer having a first pattern coupled to the first conductive layer and a second pattern insulated from the first pattern on the insulating layer.
    • 提供了触摸面板及其制造方法。 触摸面板包括:基板; 配置在所述基板上并具有第一和第二部分的第一导电层; 覆盖所述第一部分的绝缘层; 以及第二导电层,其具有构造在所述第二部分上的第三部分,以及配置在所述绝缘层上并与所述第三部分分离的第四部分。 制造方法包括以下步骤:提供第一导电层; 形成部分地覆盖所述第一导电层的绝缘层; 以及形成具有耦合到所述第一导电层的第一图案的第二导电层和在所述绝缘层上与所述第一图案绝缘的第二图案。
    • 6. 发明申请
    • SUBSCRIBER OF WIRELES SYSTEM AND OPERATION METHOD THEREOF
    • WIRELES系统用户及其操作方法
    • US20080159224A1
    • 2008-07-03
    • US11745469
    • 2007-05-08
    • Jhe-Ming HsuYu-Ren YangChi-Chen LeeYu-Min Chiu
    • Jhe-Ming HsuYu-Ren YangChi-Chen LeeYu-Min Chiu
    • H04Q7/00
    • H04W72/1289H04L47/10H04L47/14H04L47/2433H04L47/564H04W72/1268
    • A subscriber of wireless system and the operation method thereof are disclosed. The subscriber includes a buffer, a scheduler, a modem, an MAP decoder, a bandwidth allocator and a PDU constructor. The buffer receives the output data from the upper layer unit thereof. The scheduler is coupled to the buffer and schedules each connection data in the buffer prior to decoding the MAP. The modem provides a signal modulation/demodulation interface. The MAP decoder is coupled to the modem. The bandwidth allocator is coupled to the MAP decoder and allocates a bandwidth to each connection according to the result of decoding the MAP. The PDU constructor is respectively coupled to the bandwidth allocator, the buffer and the modem, so that the PDU constructor reads out the data of each connection to build a data burst according to the bandwidth allocation result of each connection.
    • 公开了无线系统的用户及其操作方法。 订户包括缓冲器,调度器,调制解调器,MAP解码器,带宽分配器和PDU构造器。 缓冲器从其上层单元接收输出数据。 调度器被耦合到缓冲器,并且在解码MAP之前调度缓冲器中的每个连接数据。 调制解调器提供信号调制/解调接口。 MAP解码器耦合到调制解调器。 带宽分配器被耦合到MAP解码器,并且根据MAP解码的结果为每个连接分配带宽。 PDU构造器分别耦合到带宽分配器,缓冲器和调制解调器,使得PDU构造器根据每个连接的带宽分配结果读出每个连接的数据以建立数据突发。
    • 9. 发明授权
    • System and method for coordinating multiple radio transceivers within the same device platform
    • 用于协调同一设备平台内的多个无线电收发器的系统和方法
    • US08750926B2
    • 2014-06-10
    • US13134876
    • 2011-06-20
    • I-Kang FuLi-Chun KoChi-Chen LeeHuanchun YeHong-Kai HsuWillaim Plumb
    • I-Kang FuLi-Chun KoChi-Chen LeeHuanchun YeHong-Kai HsuWillaim Plumb
    • H04M1/00
    • H04W36/0005H04B1/406H04B2215/068
    • A wireless device having a central control entity that coordinates multiple radio transceivers co-located within the same device platform to mitigate coexistence interference. The wireless device comprises an LTE transceiver, a WiFi transceiver, a BT transceiver, or a GNSS receiver. In one embodiment, the central control entity receives radio signal information from the transceivers and determines control information. The control information is used to trigger FDM solution such that the transceivers operate in designated frequency channels to mitigate co-existence interference. In another embodiment, the central control entity receives traffic and scheduling information from the transceivers and determines control information. The control information is used to trigger TDM solution such that the transceivers are scheduled for transmitting or receiving radio signals over specific time duration to mitigate co-existence interference. In yet another embodiment, power control solution is used to mitigate coexistence interference.
    • 一种具有中央控制实体的无线设备,其协调位于同一设备平台内的多个无线电收发器,以减轻共存干扰。 无线设备包括LTE收发器,WiFi收发器,BT收发器或GNSS接收器。 在一个实施例中,中央控制实体从收发器接收无线电信号信息并确定控制信息。 控制信息用于触发FDM解决方案,使得收发器在指定的频道中工作,以减轻共存干扰。 在另一个实施例中,中央控制实体从收发器接收业务和调度信息并确定控制信息。 控制信息用于触发TDM解决方案,使得收发器被调度用于在特定持续时间内发射或接收无线电信号以减轻共存干扰。 在另一个实施例中,功率控制解决方案用于减轻共存干扰。
    • 10. 发明授权
    • System and methods for enhancing coexistence efficiency for multi-radio terminals
    • 提高多无线电终端共存效率的系统和方法
    • US08626067B2
    • 2014-01-07
    • US12925475
    • 2010-10-22
    • Li-Chun KoHong-Kai HsuI-Kang FuChi-Chen Lee
    • Li-Chun KoHong-Kai HsuI-Kang FuChi-Chen Lee
    • H04B7/00
    • H04W72/04H04M1/7253H04W72/1215H04W88/06Y02D70/1262Y02D70/142Y02D70/144Y02D70/146
    • A method of scheduling transmitting and receiving communication slots for co-located radio devices is provided. A Bluetooth (BT) device first synchronizes its communication time slots with a co-located radio module, and then obtains the traffic pattern of the co-located radio module. Based on the traffic pattern, the BT device selectively skips one or more TX or RX time slots to avoid data transmission or reception in certain time slots and thereby reducing interference with the co-located radio module. In addition, the BT device generates a co-located coexistence (CLC) bitmap and transmits the CLC bitmap to its peer BT device such that the peer BT device can also skip data transmission or reception in certain time slots affected by the co-located radio module. The skipped time slots are disabled for TX or RX operation to prevent interference and to achieve more energy saving.
    • 提供了一种调度发送和接收用于同位置无线电设备的通信时隙的方法。 蓝牙(BT)设备首先将其通信时隙与同位置的无线电模块同步,然后获得同位置无线电模块的业务模式。 基于业务模式,BT设备有选择地跳过一个或多个TX或RX时隙,以避免某些时隙中的数据传输或接收,从而减少对共址无线电模块的干扰。 此外,BT设备产生共址共存(CLC)位图,并将CLC位图发送到其对等BT设备,使得对等BT设备也可以在受共同定位的无线电影响的某些时隙中跳过数据传输或接收 模块。 跳过的时隙禁用TX或RX操作,以防止干扰并实现更多的节能。