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    • 11. 发明授权
    • Electronic device and display control method
    • 电子设备和显示控制方法
    • US07948830B2
    • 2011-05-24
    • US11909679
    • 2006-03-20
    • Noritoshi SuzukiTakashi Ihara
    • Noritoshi SuzukiTakashi Ihara
    • G04B47/06G04B19/04G04C19/00G01F23/00
    • B63C11/02B63C2011/021G04C17/00G04G9/0082G04G21/02
    • In an electronic device that includes a first display unit (28) and a second display unit (29) that differs from the first display unit (28) in at least a type, a driving method to perform a display control, and a mode of driving to perform the display control, and that displays a plurality of functions using the first display unit (28) and the second display unit (29), a change request to change from a display in a normal mode (11) to a function mode (13) is acquired, and only a display mode of the second display unit (29) is changed, when the change request is made, to a preparation mode (12) without changing a display mode of the first display unit (28) that is in the normal mode (11) when the display modes of the first display unit (28) and the second display unit (29) are to be changed based on the acquired change request.
    • 在包括至少一种不同于第一显示单元(28)的第一显示单元(28)和第二显示单元(29)的电子设备中,执行显示控制的驱动方法和 驾驶以执行显示控制,并且使用第一显示单元(28)和第二显示单元(29)显示多个功能,从正常模式(11)中的显示改变为功能模式的改变请求 (13),并且仅当改变请求时才将第二显示单元(29)的显示模式改变为准备模式(12),而不改变第一显示单元(28)的显示模式, 在第一显示单元(28)和第二显示单元(29)的显示模式将基于所获取的改变请求而改变时处于正常模式(11)。
    • 12. 发明申请
    • ETCHING LIQUID FOR CONDUCTIVE POLYMER, AND METHOD FOR PATTERNING CONDUCTIVE POLYMER
    • 用于导电聚合物的蚀刻液和用于形成导电聚合物的方法
    • US20100089872A1
    • 2010-04-15
    • US12442867
    • 2007-09-13
    • Takashi IharaTakahiro Fujimoto
    • Takashi IharaTakahiro Fujimoto
    • B44C1/22C09K13/04
    • H05K3/067H01L21/32134H01L51/0017H01L51/0023H01L51/0037H05K1/09H05K3/064H05K2201/0329
    • The object is to provide an etching liquid for a conductive polymer having excellent etching capability toward a conductive polymer, and a method for patterning a conductive polymer employing the etching liquid for a conductive polymer. The conductive etching liquid of the present invention is selected from the group consisting of (1) an etching liquid comprising greater than 0.5 wt % but no greater than 70 wt % of (NH4)2Ce(NO3)8 or at least 0.5 wt % but no greater than 30 wt % of Ce(SO4)2, (2) an etching liquid comprising greater than 0.5 wt % but no greater than 30 wt % of (NH4)4Ce(SO4)4, (3) an etching liquid comprising a hypochlorous acid salt aqueous solution having an effective chlorine concentration of at least 0.06 wt % and a pH of greater than 3 but less than 8, (4) an etching liquid comprising nitrosyl chloride which comprises at least 5 wt % of hydrochloric acid and at least 20 wt % of nitric acid, a (hydrochloric acid concentration+0.51×nitric acid concentration) value being no greater than 35 wt %, and a (hydrochloric acid concentration+0.5×nitric acid concentration) value being at least 30 wt %, (5) an etching liquid comprising at least 3 wt % but no greater than 40 wt % of a bromic acid compound and at least 4 wt % of an inorganic acid, (6) an etching liquid comprising at least 6 wt % but no greater than 40 wt % of a chloric acid compound and at least 7 wt % of a hydrogen halide, (7) an etching liquid comprising at least 0.001 wt % but no greater than 20 wt % of a permanganic acid compound, and (8) an etching liquid comprising at least 3 wt % but no greater than 30 wt % of a hexavalent chromium compound.
    • 本发明的目的是提供一种用于导电聚合物的蚀刻液,该导电聚合物对导电聚合物具有优异的蚀刻能力,以及使用该导电聚合物蚀刻液对导电聚合物进行构图的方法。 本发明的导电蚀刻液体选自(1)包含大于0.5重量%但不大于70重量%的(NH 4)2 Cl(NO 3)8或至少0.5重量%的蚀刻液体,但是 不大于30重量%的Ce(SO 4)2,(2)包含大于0.5重量%但不大于30重量%的(NH 4)4 Cl(SO 4)4的蚀刻液,(3) 具有至少0.06重量%的有效氯浓度和大于3但小于8的pH的次氯酸盐水溶液,(4)包含亚硝酰氯的蚀刻液,其包含至少5重量%的盐酸和至少 20重量%的硝酸,(盐酸浓度+ 0.51×硝酸浓度)值不大于35重量%,(盐酸浓度+ 0.5倍硝酸浓度)值为30重量%以上( 5)包含至少3重量%但不大于40重量%的溴酸化合物的蚀刻液, 至少4重量%的无机酸,(6)包含至少6重量%但不大于40重量%的氯酸化合物和至少7重量%的卤化氢的蚀刻液,(7)蚀刻 包含至少0.001重量%但不大于20重量%的高锰酸化合物的液体,和(8)包含至少3重量%但不大于30重量%的六价铬化合物的蚀刻液。
    • 15. 发明授权
    • Ferroelectric liquid crystal device
    • 铁电液晶装置
    • US08081154B2
    • 2011-12-20
    • US11724220
    • 2007-03-15
    • Sinya KondohTakashi Ihara
    • Sinya KondohTakashi Ihara
    • G09G3/36
    • G09G3/3629G09G3/3692G09G2320/041
    • There is provided a liquid crystal comprising a liquid crystal panel with a memory effect (2) sandwiching liquid crystals of a memory effect, a driving circuit (10) outputs driving voltage for driving the liquid crystal panel with a memory effect (2) and a temperature sensor for detecting an ambient temperature, wherein the driving circuit (10) includes a control circuit (11) for varying a driving voltage. The control circuit has a first temperature compensation range where the driving voltage is increased from a high temperature side toward a lower temperature side according to temperature information detected by the temperature sensor (3), and a second temperature compensation range where the driving voltage is rendered in a maximum value at a predetermined temperature, or rendered substantially equal to, or smaller than the maximum value on a side of the boundary, lower than the predetermined temperature.
    • 提供了一种具有记忆效应的液晶面板的液晶(2)夹持存储效果的液晶,驱动电路(10)输出用于驱动具有记忆效果(2)的液晶面板的驱动电压和 用于检测环境温度的温度传感器,其中所述驱动电路(10)包括用于改变驱动电压的控制电路(11)。 控制电路具有第一温度补偿范围,其中驱动电压根据由温度传感器(3)检测到的温度信息从高温侧向下温度侧增加;以及第二温度补偿范围,其中驱动电压被提供 在预定温度下的最大值,或者基本上等于或小于边界一侧的最大值,低于预定温度。
    • 17. 发明申请
    • ELECTRONIC DEVICE AND DISPLAY CONTROL METHOD
    • 电子设备和显示控制方法
    • US20090015514A1
    • 2009-01-15
    • US11909679
    • 2006-03-20
    • Noritoshi SuzukiTakashi Ihara
    • Noritoshi SuzukiTakashi Ihara
    • G09G5/00
    • B63C11/02B63C2011/021G04C17/00G04G9/0082G04G21/02
    • In an electronic device that includes a first display unit (28) and a second display unit (29) that differs from the first display unit (28) in at least a type, a driving method to perform a display control, and a mode of driving to perform the display control, and that displays a plurality of functions using the first display unit (28) and the second display unit (29), a change request to change from a display in a normal mode (11) to a function mode (13) is acquired, and only a display mode of the second display unit (29) is changed, when the change request is made, to a preparation mode (12) without changing a display mode of the first display unit (28) that is in the normal mode (11) when the display modes of the first display unit (28) and the second display unit (29) are to be changed based on the acquired change request.
    • 在包括至少一种类型的与第一显示单元(28)不同的第一显示单元(28)和第二显示单元(29)的电子设备中,执行显示控制的驱动方法和 驾驶以执行显示控制,并且使用第一显示单元(28)和第二显示单元(29)显示多个功能,从正常模式(11)中的显示改变为功能模式的改变请求 (13),并且仅当改变请求时才将第二显示单元(29)的显示模式改变为准备模式(12),而不改变第一显示单元(28)的显示模式, 在第一显示单元(28)和第二显示单元(29)的显示模式将基于所获取的改变请求而改变时处于正常模式(11)。
    • 18. 发明授权
    • Construction for a cam rotation sensor attaching portion
    • 凸轮旋转传感器安装部的结构
    • US06481270B1
    • 2002-11-19
    • US09651312
    • 2000-08-31
    • Toshiki KobayashiTakashi Ihara
    • Toshiki KobayashiTakashi Ihara
    • G01M1500
    • F01L1/344F01L1/053F01L1/46F01L2001/0537F01L2001/34433F01L2001/34496F01L2820/041F02P7/0677
    • There is provided a construction for a cam rotation sensor attaching portion where a cam rotation sensor is attached which detect the rotation angles of camshafts (1, 3) supported on cam holders (lower cam holder 12, upper cam holder 13), the construction being characterized in that portions to be detected (projections 18) are provided on thrust plates (17) fixed to axial ends of the camshafts so as to be brought into abutment with an axial end face (a thrust receiving face 31) of the cam holder for regulating axial positions of the camshafts, and that a sensor (a proximity sensor 23) for detecting the passage of the portions to be detected from an axial direction of the camshafts is attached to a member (a sensor attaching wall 20) which is integrated into the cam holder. According to this construction, since the relative positioning accuracy between the portions to be detected and the sensor attaching portion with respect to the axial direction of the camshafts can easily be improved, a high detection accuracy can be obtained. Moreover, since the sensor and the head cover can be attached to and detached from the cylinder head without affecting each other, the maintenance and servicing properties thereof can be enhanced.
    • 提供一种用于凸轮旋转传感器安装部分的结构,其中安装有凸轮旋转传感器,其检测支撑在凸轮保持器(下凸轮保持器12,上凸轮保持器13)上的凸轮轴(1,3)的旋转角度,该结构为 其特征在于,被检测部分(突起18)设置在固定在凸轮轴的轴向端部的止推板(17)上,以与凸轮轴的轴向端面(推力接收面31)邻接 调节凸轮轴的轴向位置,并且用于检测从凸轮轴的轴向方向通过待检测部分的传感器(接近传感器23)附接到一体成型(传感器安装壁20) 凸轮架。 根据该结构,能够容易地提高检测部与传感器安装部之间相对于凸轮轴的轴向的相对定位精度,能够获得高的检测精度。 此外,由于传感器和头盖可以与气缸盖相连接和拆卸而不会相互影响,所以可以提高其维护和维修性能。
    • 20. 发明申请
    • Tuning device and radio-wave corrected timepiece
    • 调谐装置和无线电波校正钟表
    • US20060176777A1
    • 2006-08-10
    • US10549456
    • 2004-05-20
    • Takashi Ihara
    • Takashi Ihara
    • G04C11/02
    • H04B1/18G04R20/10G04R60/12H03J2200/10
    • A tuning apparatus is provided, wherein the on and off resistances of semiconductor switches within an tuning IC are optimized, so as to provide high sensitivity and superior stability, a wide range of tuned frequency variation, compactness and high performance. The tuning apparatus has a tuning circuit, which has N-channel MOS transistors (N transistors) 5a through 5f, serving as a plurality of semiconductor switches, and a counter circuit 6, which controls the opening and closing of the N transistors, a plurality of capacitors 4a through 4f, which are each connected in series with the plurality of N transistors, and a receiving antenna 2 wherein the total electrostatic capacitance of the plurality of capacitors is varied by the opening and closing of the plurality of N transistors, thereby varying the frequency tuned by the plurality of capacitors and the receiving antenna.
    • 提供了一种调谐装置,其中优化了调谐IC内的半导体开关的导通和截止电阻,从而提供高灵敏度和优异的稳定性,宽范围的调谐频率变化,紧凑性和高性能。 调谐装置具有调谐电路,其具有用作多个半导体开关的N沟道MOS晶体管(N个晶体管)5 a至5 f以及控制N晶体管的打开和关闭的计数器电路6, 分别与多个N个晶体管串联连接的多个电容器4 a至4 f以及多个电容器的总静电电容通过多个N个晶体管的开闭而变化的接收天线2 晶体管,从而改变由多个电容器和接收天线调谐的频率。