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    • 32. 发明授权
    • Non-volatile memory with reduced leakage current for unselected blocks and method for operating same
    • 用于未选择块的漏电流减少的非易失性存储器及其操作方法
    • US07876618B2
    • 2011-01-25
    • US12409020
    • 2009-03-23
    • Sanghyun LeeMasaaki HigashitaniShinji SatoChih-Ming Wang
    • Sanghyun LeeMasaaki HigashitaniShinji SatoChih-Ming Wang
    • G11C16/04
    • G11C11/5628G11C11/5642G11C16/0483G11C16/08
    • A memory device with reduced leakage current during programming and sense operations, and a method for operating such a memory device. In a non-volatile memory device, current leakage at the drain select gates of NAND strings can occur in unselected blocks when a selected block undergoes a program or read operation, and the bit lines are shared by the blocks. In one approach, in which a common transfer gate driver is provided for both blocks, the drain select gates are pre-charged at an optimum level, which minimizes leakage, and subsequently floated while a program or read voltage is applied to a selected word line in the selected block. In another approach, a separate transfer gate driver is provided for the unselected block so that the optimal select gate voltage can be driven in the unselected block, even while the program or read voltage is applied in the selected block.
    • 在编程和感测操作期间具有减小的漏电流的存储器件,以及用于操作这种存储器件的方法。 在非易失性存储器件中,当所选择的块经历程序或读取操作,并且位线由块共享时,在NAND串的漏极选择栅极处的电流泄漏可能发生在未选择的块中。 在其中为两个块提供公共传输栅极驱动器的一种方法中,漏极选择栅极以最佳电平进行预充电,这使泄漏最小化,随后浮动,同时将程序或读取电压施加到所选择的字线 在所选的块中。 在另一种方法中,为未选择的块提供单独的传输栅极驱动器,使得即使在所选择的块中施加编程或读取电压,也可以在未选择的块中驱动最佳选择栅极电压。
    • 33. 发明申请
    • Wide-Band Antenna and Manufacturing Method Thereof
    • 宽带天线及其制造方法
    • US20100039329A1
    • 2010-02-18
    • US12469221
    • 2009-05-20
    • Yean-Cheng ChenChih-Ming WangKuan-Hsueh Tseng
    • Yean-Cheng ChenChih-Ming WangKuan-Hsueh Tseng
    • H01Q1/38H01P11/00
    • H01Q1/38H01Q9/42Y10T29/49016
    • A wide-band antenna and a manufacturing method thereof are provided. The wide-band antenna includes a substrate, a first radiator, a second radiator, a grounding portion, and a signal feeding portion. The first radiator is disposed on a first surface of the substrate while the second radiator is disposed on the first surface or a second surface opposite to the first surface. The first radiator and the second radiator are spaced apart by a predetermined distance. The grounding portion is disposed on the substrate to couple with the second radiator. The signal feeding portion has a coupling unit disposed on the second surface and at least partially overlapping the first radiator. The signal feeding portion is coupled with the grounding portion and feeds signals to excite the first radiator to form a first band mode through coupling effect by the coupling unit. The first radiator feeds signals to excite the second radiator to form a second band mode by coupling effect.
    • 提供了一种宽带天线及其制造方法。 宽带天线包括基板,第一散热器,第二散热器,接地部分和信号馈送部分。 第一散热器设置在基板的第一表面上,而第二散热器设置在与第一表面相对的第一表面或第二表面上。 第一散热器和第二散热器间隔开预定距离。 接地部设置在基板上以与第二散热器连接。 信号馈送部分具有设置在第二表面上并且至少部分地与第一辐射体重叠的耦合单元。 信号馈送部分与接地部分耦合并且馈送信号以激励第一辐射器,以通过耦合单元的耦合效应形成第一频带模式。 第一辐射器馈送信号以激励第二辐射器以通过耦合效应形成第二频带模式。
    • 35. 发明申请
    • THREE-DIMENSIONAL ANTENNA AND RELATED WIRELESS COMMUNICATION DEVICE
    • 三维天线和相关无线通信设备
    • US20090102729A1
    • 2009-04-23
    • US12332348
    • 2008-12-11
    • Chih-Ming WangFeng-Chi Eddie TsaiYi-Chih Wang
    • Chih-Ming WangFeng-Chi Eddie TsaiYi-Chih Wang
    • H01Q1/38H01Q1/24
    • H01Q1/36H01Q9/42
    • A three-dimensional antenna includes a substrate, a radiator, a second radiator, a signal feeding element, and a grounding element. The radiator is installed on the substrate. The radiator includes a first child radiator and a second child radiator. The first child radiator has a first end and a second end. The second child radiator has a first end and a second end, wherein the second end of the second child radiator is coupled to the second end of the first child radiator. The second radiator is coupled to the radiator. The signal feeding element is coupled to the first end of the first child radiator. The grounding element is coupled between the substrate and the first end of the second child radiator. The first child radiator and the second child radiator form an inverted V-shape installed on the substrate.
    • 三维天线包括基板,散热器,第二辐射器,信号馈送元件和接地元件。 散热器安装在基板上。 散热器包括第一儿童散热器和第二儿童散热器。 第一个小孩散热器具有第一端和第二端。 第二儿童散热器具有第一端和第二端,其中第二儿童辐射器的第二端耦合到第一儿童辐射器的第二端。 第二散热器耦合到散热器。 信号馈送元件耦合到第一儿童辐射器的第一端。 接地元件连接在基板和第二子散热器的第一端之间。 第一个儿童散热器和第二个小孩散热器形成一个安装在基片上的倒V形。
    • 40. 发明授权
    • Radio-frequency device and wireless communication device
    • 射频设备和无线通信设备
    • US08723749B2
    • 2014-05-13
    • US13350842
    • 2012-01-16
    • Hsiao-Yi LinJhih-Yuan KeChih-Ming Wang
    • Hsiao-Yi LinJhih-Yuan KeChih-Ming Wang
    • H01Q13/00
    • H01Q1/245H01Q5/328H01Q5/378
    • The present invention discloses an RF device for a wireless communication device, including a grounding element, an antenna, including a radiating element, a feed-in element, a coupling element, a switch, coupled between the coupling element and the grounding element, for connecting or disconnecting the grounding element to the coupling element, such that the antenna respectively operates in a first frequency band and a second frequency band, and a grounding terminal, for coupling the grounding element, a capacitive sensing element, for sensing an environment capacitance within a specific range through the radiating element, at least one capacitor, for blocking a DC route from the grounding terminal to the grounding element.
    • 本发明公开了一种用于无线通信设备的RF设备,包括接地元件,包括辐射元件的天线,馈入元件,耦合元件,耦合元件和接地元件之间的开关,用于 将接地元件连接或断开到耦合元件,使得天线分别在第一频带和第二频带中操作,以及用于耦合接地元件的接地端子,用于感测环境电容内的电容感测元件 通过辐射元件的特定范围,至少一个电容器,用于阻断从接地端子到接地元件的DC路径。