ESD protection for RF circuits
    61.
    发明授权
    ESD protection for RF circuits 有权
    射频电路的ESD保护

    公开(公告)号:US08279570B2

    公开(公告)日:2012-10-02

    申请号:US12908064

    申请日:2010-10-20

    Abstract: An electrostatic discharge (ESD) circuit, adaptive to a radio frequency (RF) device, which includes a RF circuit coupled between a VDD power rail and a VSS power rail and having a RF I/O pad, includes an ESD clamp circuit coupled between a VDD power rail node and the VSS power rail node and a LC-tank structure coupled between the VDD power rail node and the VSS power rail node and to the RF I/O pad. The LC-tank structure includes a first ESD block between the VDD power rail node and the RF I/O pad, and a second ESD block between the VSS power rail node and the RF I/O pad. At least one of the first and second ESD blocks includes a pair of diodes coupled in parallel with each other and an inductor coupled in series with one of the pair of diodes.

    Abstract translation: 适用于射频(RF)装置的静电放电(ESD)电路,其包括耦合在VDD电源轨和VSS电源轨之间并具有RF I / O焊盘的RF电路,包括耦合在 VDD电源轨节点和VSS电源轨节点以及耦合在VDD电源轨节点和VSS电源轨节点之间以及RF I / O焊盘的LC槽结构。 LC槽结构包括VDD电源轨节点和RF I / O焊盘之间的第一个ESD模块,以及VSS电源轨节点和RF I / O焊盘之间的第二个ESD模块。 第一和第二ESD块中的至少一个包括彼此并联耦合的一对二极管和与一对二极管中的一个串联耦合的电感器。

    Method for establishing scattering bar rule
    62.
    发明授权
    Method for establishing scattering bar rule 有权
    建立散射条规则的方法

    公开(公告)号:US08103978B2

    公开(公告)日:2012-01-24

    申请号:US12198121

    申请日:2008-08-26

    CPC classification number: G03F1/36 G03F1/68

    Abstract: A method for establishing a scattering bar rule for a mask pattern for fabricating a device is provided. The method is described as follows. First, at least one image simulation model is established according to the mask pattern and a process reference set used for fabricating the device based on the mask pattern. Next, a plurality of scattering bar reference sets is applied to the image simulation model so as to generate a plurality of simulation images, respectively. Further, a portion of the simulation images are selected to be a plurality of candidate layouts according to a screening criterion. Next, one of the candidate layouts is determined to be a pattern layout according to a selection rule, and the scattering bar reference set corresponding to the pattern layout is determined to be a scattering bar rule of the mask pattern.

    Abstract translation: 提供了一种用于建立用于制造器件的掩模图案的散射线规则的方法。 该方法描述如下。 首先,根据掩模图案建立至少一个图像模拟模型,以及基于掩模图案用于制造该装置的工艺参考组。 接下来,将多个散射条参考集合应用于图像模拟模型,以分别生成多个模拟图像。 此外,根据筛选标准,将模拟图像的一部分选择为多个候选布局。 接下来,根据选择规则将候选布局之一确定为图案布局,并且将与图案布局相对应的散射条参考集确定为掩模图案的散射条规则。

    ELECTROSTATIC DISCHARGE PROTECTION CIRCUIT
    64.
    发明申请
    ELECTROSTATIC DISCHARGE PROTECTION CIRCUIT 有权
    静电放电保护电路

    公开(公告)号:US20110198678A1

    公开(公告)日:2011-08-18

    申请号:US12705339

    申请日:2010-02-12

    CPC classification number: H02H9/046 H01L27/0285

    Abstract: An electrostatic discharge (ESD) protection circuit, suitable for an input stage circuit including a first N channel metal oxide semiconductor (NMOS) transistor, is provided. The ESD protection circuit includes an P channel metal oxide semiconductor (PMOS) transistor and an impedance device, in which the PMOS transistor has a source coupled to a gate of the first NMOS transistor, and a drain coupled to a source of the first NMOS transistor, and the impedance device is coupled between a gate of the PMOS transistor and a first power rail to perform a initial-on ESD protection circuit. The ESD protection circuit formed by the PMOS transistor and the resistor is capable of increasing the turn-on speed of the ESD protection circuit and preventing the input stage circuit from a CDM ESD event.

    Abstract translation: 提供一种适用于包括第一N沟道金属氧化物半导体(NMOS)晶体管的输入级电路的静电放电(ESD)保护电路。 ESD保护电路包括P沟道金属氧化物半导体(PMOS)晶体管和阻抗器件,其中PMOS晶体管具有耦合到第一NMOS晶体管的栅极的源极和耦合到第一NMOS晶体管的源极的漏极 并且阻抗器件耦合在PMOS晶体管的栅极和第一电源轨之间以执行初始ESD保护电路。 由PMOS晶体管和电阻器形成的ESD保护电路能够增加ESD保护电路的接通速度并防止输入级电路从CDM ESD事件发生。

    CUTTING STRUCTURE FOR PLASTIC FILM
    65.
    发明申请
    CUTTING STRUCTURE FOR PLASTIC FILM 失效
    塑料薄膜切割结构

    公开(公告)号:US20110179927A1

    公开(公告)日:2011-07-28

    申请号:US12765798

    申请日:2010-04-22

    Applicant: Chun-Yu Lin

    Inventor: Chun-Yu Lin

    Abstract: A cutting structure for plastic film includes a bracket, a first roller, a second roller, a tachometer, a processor, a monitor and a cutter. The bracket includes a bottom and two sidewalls extending from the bottom along a same direction. The first roller includes a shaft fixed to the sidewalls and a sleeve rotatably sleeving on the shaft. The second roller is pivotally connected to the sidewalls. The tachometer is disposed on one end of the second roller and configured for measuring the rotation speed of the second roller. The processor is configured for reading the rotation speed and further calculating a rotation distance of the second roller. The monitor is configured for displaying the rotation distance.The cutter extends upward from the bottom for cutting the plastic film pulled from the first roller and the second roller.

    Abstract translation: 塑料薄膜的切割结构包括支架,第一滚筒,第二滚筒,转速计,处理器,显示器和切割器。 支架包括底部和两个从底部沿相同方向延伸的侧壁。 第一辊包括固定到侧壁的轴和可旋转地套在轴上的套筒。 第二辊枢转地连接到侧壁。 转速计设置在第二辊的一端,并被配置为测量第二辊的转速。 处理器被配置为读取转速并进一步计算第二辊的旋转距离。 显示器配置为显示旋转距离。 切割器从底部向上延伸以切割从第一辊和第二辊拉出的塑料膜。

    OPTICAL FIBER CONNECTOR HAVING STRENGTHENING UNIT
    66.
    发明申请
    OPTICAL FIBER CONNECTOR HAVING STRENGTHENING UNIT 失效
    具有加强单元的光纤连接器

    公开(公告)号:US20110069930A1

    公开(公告)日:2011-03-24

    申请号:US12749468

    申请日:2010-03-29

    Applicant: Chun-Yu LIN

    Inventor: Chun-Yu LIN

    CPC classification number: G02B6/32 G02B6/3845 G02B6/3853 G02B6/3885 G02B6/389

    Abstract: An optical fiber connector includes a shell, a lens and a strengthening unit. The shell includes a blind hole extended along a first direction for receiving a fiber and a through hole communicated with the blind hole and extended along a second direction perpendicular to the first direction. The lens is formed on the shell to align with a bottom of the blind hole. The lens is capable of optically coupling with the fiber in the blind hole. The strengthening unit is formed in the through hole.

    Abstract translation: 光纤连接器包括壳体,透镜和加强单元。 壳体包括沿着第一方向延伸的用于容纳纤维的盲孔和与盲孔相通并沿着垂直于第一方向的第二方向延伸的通孔。 透镜形成在壳体上以与盲孔的底部对准。 透镜能够与盲孔中的光纤光学耦合。 加强单元形成在通孔中。

    Apparatus for controling servo signal gains of an optical disc drive and method of same
    67.
    发明授权
    Apparatus for controling servo signal gains of an optical disc drive and method of same 有权
    用于控制光盘驱动器的伺服信号增益的装置及其方法

    公开(公告)号:US07911891B2

    公开(公告)日:2011-03-22

    申请号:US11758082

    申请日:2007-06-05

    CPC classification number: G11B7/0941 G11B7/0903

    Abstract: The invention provides an apparatus for controlling servo signal gains of an optical disc drive. The apparatus adjusts the gains of a plurality of servo signals controlling a servo system of the optical disc drive according to a closed-loop mode or a state-reloading mode whenever the optical disk drive encounters an operating state transition. In closed-loop mode, at least one AGC loop of the apparatus compensates the gains of the servo signals with a selectable bandwidth during a specific period after the operating state transition to accelerate the convergence of the servo signals. In state-reloading mode, at least one AGC loop of the apparatus reloads the previously saved convergence values or pre-determined values as the initial values according to the current operating state immediately after the operating state transition to accelerate the convergence of the servo signals.

    Abstract translation: 本发明提供一种用于控制光盘驱动器的伺服信号增益的装置。 只要光盘驱动器遇到操作状态转换,该装置根据闭环模式或状态重新加载模式来调整控制光盘驱动器的伺服系统的多个伺服信号的增益。 在闭环模式中,该装置的至少一个AGC环路在操作状态转换之后的特定周期期间以可选择的带宽补偿伺服信号的增益,以加速伺服信号的收敛。 在状态重新加载模式中,装置的至少一个AGC回路根据当前运行状态在运行状态转换之后重新加载先前存储的收敛值或预定值作为初始值,以加速伺服信号的收敛。

    Method for controlling lag time of in-situ passageway formation in osmotic delivery system
    69.
    发明申请
    Method for controlling lag time of in-situ passageway formation in osmotic delivery system 审中-公开
    控制渗透输送系统中原位通道形成滞后时间的方法

    公开(公告)号:US20070014858A1

    公开(公告)日:2007-01-18

    申请号:US11481749

    申请日:2006-07-06

    CPC classification number: A61K9/0004 A61K9/0007 A61K9/2086

    Abstract: An osmotically controlled delivery system includes a solid core having a shallow indentation on a surface of the core, and a semipermeable membrane enclosing the solid core. The solid core is made by a drug composition being caopable of generating an osmotically effective pressure, and the semipermeable membrane is relatively thinner at the shallow indentation. An in-situ exit passageway is formed in the indentation position when external aqueous fluids are imbibed through the semipermeable membrane into the dosage form by an osmotic pressure gradient. A process for forming an in-situ exit passageway of an osmotic delivery dosage form, a controlled onset dosage form, and a method for controlling the lag time of in-situ passageway formation are also disclosed.

    Abstract translation: 渗透控制递送系统包括在芯的表面上具有浅凹陷的实心芯和包封实芯的半透膜。 固体核心由能够产生渗透有效压力的药物组合物制成,并且半透膜在浅凹陷处相对较薄。 当外部含水流体通过渗透压梯度吸入​​通过半透膜进入剂型时,在压痕位置形成原位离开通道。 还公开了一种用于形成渗透递送剂型的原位出口通道,受控起始剂型和控制原位通道形成的滞后时间的方法的方法。

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