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    • 3. 发明申请
    • MANUFACTURING METHOD OF NERVE-STIMULATING AND SIGNAL-MONITORING DEVICE
    • 神经刺激和信号监测装置的制造方法
    • US20130330851A1
    • 2013-12-12
    • US13964845
    • 2013-08-12
    • CHUNG HUA UNIVERSITY
    • Jium Ming LIN
    • A61N1/36
    • A61N1/36A61N1/08A61N1/37229A61N1/3727A61N1/375H05K1/0393H05K1/162H05K1/165H05K1/167H05K1/189
    • A method for manufacturing a nerve-stimulating and signal-monitoring device includes the steps of forming a first silicon oxide layer on a surface of a flexible substrate; forming a patterned doped p-type poly-silicon layer on the first silicon oxide layer; forming a second silicon oxide layer on the patterned doped p-type poly-silicon layer; forming a circuit layer on the second silicon oxide layer; forming a plurality of openings on the second silicon oxide layer; forming a gold layer on the circuit layer and on the plurality of contact pads on the patterned doped p-type poly-silicon layer; attaching a chip to the plurality of chip pads of the circuit layer by using a flip-chip bonding technology; forming a plurality of through holes on the at least one probe pad; and securely and correspondingly attaching a plurality of stimulation probes into the plurality of through holes.
    • 神经刺激和信号监测装置的制造方法包括以下步骤:在柔性基板的表面上形成第一氧化硅层; 在所述第一氧化硅层上形成图案化掺杂的p型多晶硅层; 在所述图案化掺杂的p型多晶硅层上形成第二氧化硅层; 在所述第二氧化硅层上形成电路层; 在所述第二氧化硅层上形成多个开口; 在所述电路层上和所述图案化掺杂的p型多晶硅层上的所述多个接触焊盘上形成金层; 通过使用倒装芯片接合技术将芯片附着到电路层的多个芯片焊盘; 在所述至少一个探针垫上形成多个通孔; 并且将多个刺激探针牢固并相应地附接到多个通孔中。
    • 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. 发明申请
    • THERMAL CONVECTION TYPE ANGULAR ACCELEROMETER
    • 热对流式角度加速度计
    • US20140007684A1
    • 2014-01-09
    • US13932730
    • 2013-07-01
    • CHUNG HUA UNIVERSITY
    • Jium Ming LIN
    • G01P15/00
    • G01P15/008
    • A thermal convection type angular accelerometer includes an insulating substrate and an angular acceleration sensing device. The angular acceleration sensing device is disposed on the insulating substrate. The angular acceleration sensing device is configured to measure an angular acceleration of a rotation axis. The angular acceleration sensing device comprises a sensing group. The sensing group comprises two temperature sensing members and a heater disposed between the two temperature sensing members. The distance between two ends of the two temperature sensing members near the rotation axis is greater than the distance between the other two ends of the two temperature sensing members that are farther from the rotation axis.
    • 热对流型角加速度计包括绝缘基板和角加速度感测装置。 角加速度检测装置设置在绝缘基板上。 角加速度感测装置被配置成测量旋转轴的角加速度。 角加速度感测装置包括感测组。 感测组包括两个温度检测构件和设置在两个温度感测构件之间的加热器。 两个温度检测部件的两端之间的距离近于旋转轴线的距离大于两个温度感测部件的距离旋转轴线更远的两端之间的距离。