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    • 2. 发明授权
    • Touch panel and method of forming the same
    • 触摸面板及其形成方法
    • US09465475B2
    • 2016-10-11
    • US14175272
    • 2014-02-07
    • Chung Hua University
    • Jium Ming Lin
    • G06F3/041G01L1/16H01L41/113
    • G06F3/0414G01L1/16H01L41/1132
    • A touch panel comprises a plurality of basic sensing-units arranged in a matrix. The basic sensing-unit comprises a pressure-sensing transistor and a selection transistor. The pressure-sensing transistor comprises a first terminal, a second terminal, a gate electrode, a mask layer, a channel connecting the first and second terminals, a dielectric layer formed on the channel, and a piezoelectric material deposited on the dielectric layer. The piezoelectric material may comprise PVDF, lead zirconate titanate, ZnO, BaTiO3, LiNbO3, or PbTiO3. The selection transistor comprises a first terminal, a second terminal, and a third terminal. The first terminal of the selection transistor connects to a sensing electrode of the touch panel, the second terminal of the selection transistor connects to the first terminal of the pressure sensing transistor, and the third terminal of the selection transistor is a transistor gate and connects to a drive electrode of the touch panel.
    • 触摸面板包括以矩阵布置的多个基本感测单元。 基本感测单元包括压力感测晶体管和选择晶体管。 压力感测晶体管包括第一端子,第二端子,栅极电极,掩模层,连接第一和第二端子的沟道,形成在沟道上的电介质层和沉积在电介质层上的压电材料。 压电材料可以包括PVDF,锆钛酸铅,ZnO,BaTiO3,LiNbO3或PbTiO3。 选择晶体管包括第一端子,第二端子和第三端子。 选择晶体管的第一端子连接到触摸面板的感测电极,选择晶体管的第二端子连接到压力感测晶体管的第一端子,并且选择晶体管的第三端子是晶体管栅极并连接到 触摸面板的驱动电极。
    • 3. 发明授权
    • Electrostatic and piezoelectric touch panel
    • 静电和压电触摸屏
    • US09342191B2
    • 2016-05-17
    • US14446853
    • 2014-07-30
    • CHUNG HUA UNIVERSITY
    • Jium Ming Lin
    • H01L27/20G06F3/044G06F3/043G06F3/041
    • G06F3/0433G06F3/0416G06F3/044G06F2203/04106H01L27/20H01L41/1132
    • An electrostatic and piezoelectric touch panel includes a first switching circuit, a second switching circuit, at least one first sensing device, and at least one second sensing device. The first sensing device includes a first transistor and a piezoelectric-transistor. The first transistor and the piezoelectric-transistor are series-connected between a power source and ground. The first switching circuit connects to a connection point between the first transistor and the piezoelectric-transistor. The second sensing device includes a second transistor and two parallel-connected electrostatic to transistors. The second transistor and the two parallel-connected electrostatic transistors are series-connected between a negative power source and ground. The first switching circuit connects to a connection point between the second transistor and the two parallel-connected electrostatic transistors. Gates of the first and second transistors connect to the second switching circuit. The two parallel-connected electrostatic transistors include different types of doped semiconductor materials.
    • 静电和压电触摸面板包括第一开关电路,第二开关电路,至少一个第一感测装置和至少一个第二感测装置。 第一感测装置包括第一晶体管和压电晶体管。 第一晶体管和压电晶体管串联连接在电源和地之间。 第一开关电路连接到第一晶体管和压电晶体管之间的连接点。 第二感测装置包括第二晶体管和两个并联连接的静电对晶体管。 第二晶体管和两个并联连接的静电晶体管串联连接在负电源和地之间。 第一开关电路连接到第二晶体管和两个并联连接的静电晶体管之间的连接点。 第一和第二晶体管的栅极连接到第二开关电路。 两个并联连接的静电晶体管包括不同类型的掺杂半导体材料。
    • 4. 发明授权
    • Vertical probe card and method for manufacturing the same
    • 垂直探针卡及其制造方法
    • US09222961B1
    • 2015-12-29
    • US14445415
    • 2014-07-29
    • CHUNG HUA UNIVERSITY
    • Jium Ming Lin
    • G01R1/04G01R1/30G01R3/00G01R31/26G01R1/073
    • G01R1/07314G01R1/07378G01R1/30G01R3/00
    • A vertical probe card includes a bottom substrate, a top substrate, an interposer, a first set of electrically conductive polymer contacts, a second set of electrically conductive polymer contacts, a first anisotropic conductive film, and a second anisotropic conductive film. The interposer is disposed between the bottom substrate and the top substrate. The first set of electrically conductive polymer contacts is disposed on the surface of the bottom substrate opposite to the interposer. The second set of electrically conductive polymer contacts is disposed on the surface of the top substrate opposite to the interposer. The first set of electrically conductive polymer contacts are arranged differently from the second set of electrically conductive polymer contacts. The first anisotropic conductive film is disposed between the bottom substrate and the interposer, and configured to electrically connect the bottom substrate and the interposer. The second anisotropic conductive film is disposed between the interposer and the top substrate, and configured to electrically connect the interposer and the top substrate.
    • 垂直探针卡包括底部基板,顶部基板,插入件,第一组导电聚合物触点,第二组导电聚合物触点,第一各向异性导电膜和第二各向异性导电膜。 插入器设置在底部基板和顶部基板之间。 第一组导电聚合物触点设置在底部基板的与插入件相对的表面上。 第二组导电聚合物触点设置在顶部基板的与插入件相对的表面上。 第一组导电聚合物触点与第二组导电聚合物触点的布置不同。 第一各向异性导电膜设置在底部基板和插入件之间,并且被配置为电连接底部基板和插入件。 第二各向异性导电膜设置在插入件和顶部基板之间,并且构造成电连接插入件和顶部基板。
    • 5. 发明授权
    • Waveguide structure based on low frequency surface plasmon polaritons
    • 基于低频表面等离子体激元的波导结构
    • US09140855B2
    • 2015-09-22
    • US14143035
    • 2013-12-30
    • CHUNG HUA UNIVERSITY
    • Chia Ho Wu
    • H04W4/00G02B6/122
    • G02B6/1226
    • A structure of a low frequency surface plasmon polariton waveguide includes multiple unit cell blocks arranged at a sub-wavelength period to line up in a one-dimensional line-up direction to form a hollow metallic block periodic structure. Each unit cell blocs includes a body, a penetration section, and an open slot. The penetration section is formed in the unit cell block by extending in a direction perpendicular to the one-dimensional line-up direction so as to define a channel space in the unit cell block. In a low frequency spoof surface plasmon polariton transmission mode, in case of serving as a structure of an antenna, each unit cell block has an electromagnetic field distribution mostly confined in a channel space of the unit cell block; and in case of serving as a waveguide, the electromagnetic field is mostly distributed between two adjacent unit cell blocks with minority distributed in the channel space.
    • 低频表面等离子体激元波导管的结构包括布置在亚波长周期以在一维阵列方向排列以形成中空金属块周期性结构的多个单位晶胞块。 每个单元电池组件包括主体,穿透部分和开口槽。 穿透部通过沿垂直于一维排列方向的方向延伸而形成在单元电池块中,以便限定单元电池块中的沟道空间。 在低频欺骗表面等离子体激元传输模式中,在作为天线的结构的情况下,每个单元单元块具有主要限制在单位单元块的通道空间中的电磁场分布; 并且在用作波导的情况下,电磁场主要分布在具有少数分布在信道空间中的两个相邻单元单元块之间。
    • 6. 发明申请
    • TOUCH PANEL AND METHOD OF FORMING THE SAME
    • 触控面板及其形成方法
    • US20140247231A1
    • 2014-09-04
    • US14175272
    • 2014-02-07
    • Chung Hua University
    • Jium Ming LIN
    • G06F3/041
    • G06F3/0414G01L1/16H01L41/1132
    • A touch panel comprises a plurality of basic sensing-units arranged in a matrix. The basic sensing-unit comprises a pressure-sensing transistor and a selection transistor. The pressure-sensing transistor comprises a first terminal, a second terminal, a gate electrode, a mask layer, a channel connecting the first and second terminals, a dielectric layer formed on the channel, and a piezoelectric material deposited on the dielectric layer. The piezoelectric material may comprise PVDF, lead zirconate titanate, ZnO, BaTiO3, LiNbO3, or PbTiO3. The selection transistor comprises a first terminal, a second terminal, and a third terminal. The first terminal of the selection transistor connects to a sensing electrode of the touch panel, the second terminal of the selection transistor connects to the first terminal of the pressure sensing transistor, and the third terminal of the selection transistor is a transistor gate and connects to a drive electrode of the touch panel.
    • 触摸面板包括以矩阵布置的多个基本感测单元。 基本感测单元包括压力感测晶体管和选择晶体管。 压力感测晶体管包括第一端子,第二端子,栅极电极,掩模层,连接第一和第二端子的沟道,形成在沟道上的电介质层和沉积在电介质层上的压电材料。 压电材料可以包括PVDF,锆钛酸铅,ZnO,BaTiO3,LiNbO3或PbTiO3。 选择晶体管包括第一端子,第二端子和第三端子。 选择晶体管的第一端子连接到触摸面板的感测电极,选择晶体管的第二端子连接到压力感测晶体管的第一端子,并且选择晶体管的第三端子是晶体管栅极并连接到 触摸面板的驱动电极。
    • 7. 发明授权
    • EIT-based photonic logic gate
    • 基于EIT的光子逻辑门
    • US08675268B2
    • 2014-03-18
    • US13421461
    • 2012-03-15
    • Teh-Chau LiauJian-Qi ShenJin-Jei WuTzong-Jer Yang
    • Teh-Chau LiauJian-Qi ShenJin-Jei WuTzong-Jer Yang
    • G06E3/00G02F3/00
    • G02F3/00G02F2202/32
    • An electromagnetically induced transparent (EIT)-based photonic logic gate. The electromagnetically induced transparent (EIT)-based photonic logic gate is a photonic crystal (PC) and electromagnetically induced transparent (EIT)-based stacked layer which is constituted by a photonic crystal (PCs) layers and an electromagnetically induced transparent material layers. For the photonic crystal (PCs) and electromagnetically induced transparent (EIT)-based stacked layer, a probe field is an input signal which is emitted from the photonic crystal layer and a control field is a control signal which is emitted from the electromagnetically induced transparent material layers. The probe field is an input signal which is emitted from the electromagnetically induced transparent material layers. By varying the detune frequency of probe field and Rabi frequency of control field, the band gap structure can be adjusted. Henceforth, the tunable optical electromagnetically induced transparent (EIT)-based photonic logic gate can be achieved.
    • 基于电磁感应透明(EIT)的光子逻辑门。 基于电磁感应透明(EIT)的光子逻辑门是由光子晶体(PCs)层和电磁感应透明材料层构成的光子晶体(PC)和电磁感应透明(EIT)基层叠层。 对于光子晶体(PC)和电磁感应透明(EIT)的堆叠层,探测场是从光子晶体层发射的输入信号,控制场是从电磁感应透明 材料层。 探针场是从电磁感应透明材料层发射的输入信号。 通过改变探头场的失调频率和控制场的Rabi频率,可以调整带隙结构。 此后,可以实现可调光电磁感应透明(EIT)的光子逻辑门。
    • 8. 发明授权
    • Nerve-stimulating and signal-monitoring device and method of manufacturing the same and nerve-stimulating and signal-monitoring system
    • 神经刺激和信号监测装置及其制造方法,神经刺激和信号监测系统
    • US08606364B2
    • 2013-12-10
    • US12767592
    • 2010-04-26
    • Jium Ming Lin
    • Jium Ming Lin
    • A61N1/00
    • A61N1/36A61N1/08A61N1/37229A61N1/3727A61N1/375H05K1/0393H05K1/162H05K1/165H05K1/167H05K1/189
    • A nerve-stimulating and signal-monitoring device includes a flexible substrate, a modulation/demodulation module, a SOC unit and a plurality of stimulation probes. The modulation/demodulation module demodulates coded nerve-stimulating radio-frequency signals or modulates sending coded epidermal nerve response signals. The SOC unit and the modulation/demodulation module can be integrally packaged and bonded on the flexible substrate. The SOC unit decodes and transforms the coded nerve-stimulating radio-frequency signals to obtain nerve-stimulating electrical probe-driving signals. The stimulation probes protrude from the flexible substrate, are configured to transmit the nerve-stimulating electrical probe-driving signals to epidermal nerves, and are electrically coupled to the SOC unit. The SOC unit can receive, amplify, analyze, classify and encode epidermal nerve response signals sent to the modulation/demodulation module for modulating, and such coded epidermal nerve response signals are subsequently transmitted by an antenna to the monitor station for decoding, monitoring and analysis.
    • 神经刺激和信号监测装置包括柔性基板,调制/解调模块,SOC单元和多个刺激探针。 调制/解调模块解调编码的神经刺激射频信号或调制发送编码的表皮神经反应信号。 SOC单元和调制/解调模块可以整体封装在柔性基板上。 SOC单元对编码的神经刺激性射频信号进行解码和变换,以获得神经刺激电探针驱动信号。 刺激探针从柔性基底突出,被配置为将神经刺激电探针驱动信号传输到表皮神经,并且电耦合到SOC单元。 SOC单元可以接收,放大,分析和编码发送到调制/解调模块的表皮神经反应信号进行调制,然后将这种经编码的表皮神经反应信号通过天线发送到监测站进行解码,监测和分析 。
    • 10. 发明申请
    • Magnetic Tiles
    • 磁砖
    • US20120304580A1
    • 2012-12-06
    • US13152277
    • 2011-06-03
    • YUNG-CHIEH SHA
    • YUNG-CHIEH SHA
    • E04C2/08E04C2/38
    • E04F13/0883E04F13/0866
    • This invention offers a kind of magnetic material, which especially refers to wall tiles and floor tiles. This invention contains a building material(1) and at least a magnetic body(3). A magnetic body(3) is connected to the back side or inner part of a building material(1) to make a building material(1) magnetic; and above mentioned a magnetic body(3) can stick to metal sheet(2) and connect to the back of building material(1) to make the front side of building material(1) has large size magnetic effects. By the ways above mentioned, this invention can reach the effects easy to stick and take without ruining its surface.
    • 本发明提供一种磁性材料,特别是指墙砖和地砖。 本发明包含建筑材料(1)和至少一个磁体(3)。 磁性体(3)连接到建筑材料(1)的后侧或内部部分以使建筑材料(1)成为磁性; 并且上述磁体(3)可以粘附到金属板(2)上并连接到建筑材料(1)的背面,使得建筑材料(1)的前侧具有大的磁力效应。 通过上述方法,本发明可以达到容易粘贴和使用而不破坏其表面的效果。