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    • 101. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20080246718A1
    • 2008-10-09
    • US12060282
    • 2008-04-01
    • Yasuhiro Tanaka
    • Yasuhiro Tanaka
    • G09G3/36
    • G09G3/3688G09G3/3614G09G2310/0291G09G2310/0297G09G2320/0233
    • A liquid crystal display device including an image line drive circuit having an amplifier circuit for outputting an image voltage to an image line. The amplifier circuit has a switching unit for connecting one of two input terminals to either of an inverting input terminal or a non-inverting input terminal and also for connecting the other of the two input terminals to the remaining one out of the inverting input terminal or the non-inverting input terminal. The switching unit switches, according to a switching control signal input every two display lines, one of the two input terminals of the amplifier circuit to an inverting input terminal and the other of the two input terminals to a non-inverting input terminal or switches one of the two input terminals of the amplifier circuit to the non-inverting input terminal and the other of the two input terminals to the inverting input terminal.
    • 一种液晶显示装置,包括具有用于向图像线输出图像电压的放大电路的图像线驱动电路。 放大器电路具有用于将两个输入端子中的一个连接到反相输入端子或非反相输入端子中的任一个的开关单元,并且还用于将两个输入端子中的另一个连接到反相输入端子中的其余输入端子,或 非反相输入端子。 开关单元根据每两个显示线输入的开关控制信号,将放大器电路的两个输入端中的一个输入到反相输入端子,将另一个输入端子切换到非反相输入端子或将一个 的放大器电路的两个输入端子连接到非反相输入端子,另一个输入端子连接到反相输入端子。
    • 102. 发明申请
    • OBJECTIVE LENS SYSTEM AND OPTICAL PICKUP INCLUDING THE SAME
    • 目标镜头系统和光学拾取,包括它们
    • US20080165660A1
    • 2008-07-10
    • US11969417
    • 2008-01-04
    • Katsuhiko HayashiYasuhiro TanakaMichihiro YamagataFumitomo Yamasaki
    • Katsuhiko HayashiYasuhiro TanakaMichihiro YamagataFumitomo Yamasaki
    • G11B7/135
    • G11B7/1275G11B7/1374G11B2007/0006
    • The present invention provides an objective lens system for forming a spot of a laser beam of λ wavelength on a first information recording surface through a disc protective layer having a first thickness and a second information recording surface through a disc protective layer having a second thickness greater than the first thickness, the objective lens system including: an objective lens having at least one diffraction structure for deflecting incident light by diffraction and at least two refractive surfaces for deflecting the incident light by refraction, wherein the diffraction structure divides the incident light into m1th order diffracted light (m1 is an integer) corresponding to the first information recording surface and m2th order diffracted light (m2 is an integer different from m1) corresponding to the second information recording surface and has negative power to diverge the m2th order diffracted light.
    • 本发明提供一种物镜系统,用于通过具有第一厚度的盘保护层和第二信息记录表面通过具有第二厚度的盘保护层在第一信息记录表面上形成λ波长的激光束的点 物镜系统包括:具有至少一个用于通过衍射偏转入射光的衍射结构的物镜和用于通过折射偏转入射光的至少两个折射表面,其中衍射结构将入射光分为m1 对应于第一信息记录表面的第二级衍射光(m1是整数)和与第二级对应的第二级衍射光(m2是不同于m1的整数) 信息记录表面并且具有负功率以分散m2 /次级衍射光。
    • 104. 发明申请
    • Piping with heater and connecting method of the piping
    • 配管加热器和管道连接方式
    • US20080041841A1
    • 2008-02-21
    • US11498126
    • 2006-08-03
    • Yasuhiro TanakaAtsushi IzumiAkinobu Tsuda
    • Yasuhiro TanakaAtsushi IzumiAkinobu Tsuda
    • H05B3/58
    • H05B3/58
    • A heater-attached piping having, a cord-like heater disposed along substantially entire length of a nylon tube forming a pipe for transferring a fluid, and at least a heat-retaining layer disposed around the nylon tube and the cord-like heater. The cord-like heater located at the end of the nylon tube may be, for example, folded back and formed in a duplex arrangement. With this arrangement, heat generating at the end of the heater-attached piping increases and is duplicated to result in suppression of power consumption of the cord-like heater to a possible lowest limit, and the heat-retaining ability and defrosting ability in the end of the heater-attached piping can be enhanced.
    • 一种加热器连接的管道,具有沿着形成用于传送流体的管的尼龙管的大致整个长度设置的绳状加热器,以及至少设置在尼龙管和绳状加热器周围的保温层。 位于尼龙管端部的线状加热器可以例如折叠并形成为双面布置。 通过这种布置,在加热器附接管道的端部产生的热量增加并重复,从而将线状加热器的功率消耗抑制到可能的最低限度,并且最终的保温能力和除霜能力 的加热器附接管道可以增强。