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    • 1. 发明申请
    • Liquid Crystal Display Device and Cellular Phone Provided with the Same
    • 液晶显示装置及配备手机的手机
    • US20080030647A1
    • 2008-02-07
    • US11629837
    • 2005-06-22
    • Toshio WatanabeYasushi Kasajima
    • Toshio WatanabeYasushi Kasajima
    • G02F1/13357
    • G02B6/0055G02B6/0018G02B6/0038G02B6/0046G02B6/0063G02F2001/133342H04M1/0214H04M1/22H04M2250/16
    • A liquid crystal display device (B1) according to the present invention includes a first liquid crystal display panel (20A) forming a first display surface (14A), a second liquid crystal display panel (20B) forming a second display surface (14B) which is oriented in an opposite direction from the first display surface (14A), and a light guide plate (30) including a light emitting portion (31) sandwiched between the first and the second liquid crystal display panels (20A), (20B) and a light incident portion (32) provided continuously with the light emitting portion (31) and serving to introduce external light (L) into the light emitting portion (31). The first liquid crystal display panel (20A) is illuminated with external light (L) passed through the second display panel (20B) and the light emitting portion (31) of the light guide plate (30). The second liquid crystal display panel (20B) is illuminated with external light (L) impinged on the light incident surface (32a) of the light guide plate (30) and guided to the second liquid crystal display panel (20B) by the light emitting portion (31).
    • 根据本发明的液晶显示装置(B 1)包括形成第一显示面(14A)的第一液晶显示面板(20A),形成第二显示面的第二液晶显示面板(20B) (14B),其与第一显示面(14A)相反的方向定向;以及导光板(30),其包括被夹在第一和第二液晶显示面板(20)之间的发光部分(31) A),(20B)和连续设置有发光部分(31)并用于将外部光(L)引入发光部分(31)的光入射部分(32)。 第一液晶显示面板(20A)被穿过第二显示面板(20B)的外部光(L)和导光板(30)的发光部分(31)照亮。 第二液晶显示面板(20B)被照射在入射到导光板(30)的光入射面(32a)上的外部光(L),并被引导到第二液晶显示面板(20B),由第二液晶显示面板 发光部(31)。
    • 3. 发明申请
    • IMAGE DISPLAY
    • 图像显示
    • US20090257015A1
    • 2009-10-15
    • US12375253
    • 2007-06-19
    • Yasushi Kasajima
    • Yasushi Kasajima
    • G02F1/1345
    • G02F1/134336G02F1/133514G02F2201/121
    • A liquid crystal image display (1) includes a first substrate (2), a second substrate (3), anisotropic conductive material (11) for bonding the substrates (2, 3), and liquid crystal (12). The inner surface of the first substrate (2) is provided with color filters (4R, 4G, 4B), a black mask (5), common electrodes (6A, 6B) and transfer portions (7A, 7B). Segment electrodes (8), connection wirings (10A, 10B) and a monochromatic driver IC (9) are provided on the inner surface of the second substrate (3). The transfer portions (7A, 7B) at the ends of the common electrodes (6A, 6B) on the first substrate (2) are connected to the connection wirings (10A, 10B) on the second substrate (3) via the anisotropic conductive material (11). Thus, the common electrodes (6A, 6B) are connected to the monochromatic driver IC (9) without extending over the stepped portion at the periphery of the black mask (5).
    • 液晶图像显示器(1)包括第一基板(2),第二基板(3),用于接合基板(2,3)和液晶(12)的各向异性导电材料(11)。 第一基板(2)的内表面设置有滤色器(4R,4G,4B),黑色掩模(5),公共电极(6A,6B)和转印部分(7A,7B)。 在第二基板(3)的内表面上设置有段电极(8),连接布线(10A,10B)和单色驱动器IC(9)。 在第一基板(2)上的公共电极(6A,6B)的端部的转印部分(7A,7B)经由各向异性导电材料连接到第二基板(3)上的连接布线(10A,10B) (11)。 因此,公共电极(6A,6B)连接到单色驱动器IC(9),而不延伸在黑色掩模(5)的周边处的台阶部分上。
    • 4. 发明授权
    • Electrostatic capacitance type input device and calculation method for calculating approach position of conductor
    • 静电电容型输入装置及计算导体接近位置的方法
    • US08884912B2
    • 2014-11-11
    • US13026775
    • 2011-02-14
    • Yoshiyuki OtsukiYasushi Kasajima
    • Yoshiyuki OtsukiYasushi Kasajima
    • G06F3/045G06F3/041G06F3/044
    • G06F3/044G06F3/0416G06F2203/04108
    • An electrostatic capacitance type input device includes: first electrodes arranged in a first direction and extending in a second direction intersecting the first direction; second electrodes arranged in the second direction and extending in the first direction; a storage unit storing first direction detection values obtained through the first electrodes resulting from the change in capacitance between a first conductor and the electrodes, and storing second direction detection values obtained through the second electrodes resulting from the change in capacitance between the first conductor and the electrodes; and a calculation unit, which generates first map values from a first value and a second value obtained, respectively, by processing at least one of the first direction detection values and at least one of the second direction detection values. The calculation unit determines whether the first conductor has approached the first electrodes and second electrodes using the first map values.
    • 静电电容式输入装置包括:沿与第一方向交叉的第二方向沿第一方向布置的第一电极; 第二电极,沿第二方向布置并沿第一方向延伸; 存储单元,存储由第一导体和电极之间的电容变化而产生的通过第一电极获得的第一方向检测值,并且存储由第一导体和第二导体之间的电容变化导致的通过第二电极获得的第二方向检测值 电极 以及计算单元,其通过处理所述第一方向检测值和所述第二方向检测值中的至少一个来分别从通过获得的第一值和第二值生成第一映射值。 计算单元使用第一映射值确定第一导体是否接近第一电极和第二电极。
    • 5. 发明授权
    • Input device
    • 输入设备
    • US08416207B2
    • 2013-04-09
    • US12651675
    • 2010-01-04
    • Yasushi Kasajima
    • Yasushi Kasajima
    • G06F3/041G06F3/033G09G5/00
    • G06F3/044G06F3/0412
    • An input device includes a plurality of detectors for respectively detecting a close approach of an approaching object, and a controller including a plurality of input channels. The plurality of detectors is aligned in a direction. Each of the detectors belongs to one of a plurality of groups each of which two or more detectors belong to. The plurality of detectors in each of the groups is connected in common to one of the input channels associated therewith in the controller. A permutation of the groups which at least three detectors, continuously aligned thus forming a set and arbitrarily selected from the plurality of detectors, respectively belong to is different by each set of at least three detectors.
    • 输入装置包括用于分别检测接近物体的紧密接近的多个检测器和包括多个输入通道的控制器。 多个检测器沿一个方向排列。 每个检测器属于两个或更多个检测器属于多个组中的一个。 每个组中的多个检测器共同连接到与控制器相关联的输入通道之一。 至少三个由多个检测器组成并任意选择的检测器连续对齐的检测器分别属于的组的排列由每组至少三个检测器不同。
    • 6. 发明授权
    • Method and system for automatically transferring electronic mail over a communication network
    • 通过通信网络自动传送电子邮件的方法和系统
    • US07603416B2
    • 2009-10-13
    • US09863616
    • 2001-05-23
    • Yasushi Kasajima
    • Yasushi Kasajima
    • G06F15/16
    • H04L29/06H04L12/2803H04L12/2825H04L12/2827H04L51/00H04L67/325H04L69/329H04L2012/2845H04L2012/2849H04L2012/285
    • A method and system for timely transferring electronic mail message over a communication network such as the Internet to a communication terminal to be transferred in accordance with a transfer trigger condition attached to the electronic mail message in advance, the trigger condition being specified by event information such as the movement and the operation of household appliance, living facility or positional information of specific terminal unit or other signals detected on the communication network. According to the present method, an electronic mail message is first sent to a communication server apparatus equipped on a communication network together with the transfer trigger condition, and after registering of the mail message, the communication server apparatus watches the transfer trigger condition and transfers the corresponding mail message of which transfer trigger condition meets a predetermined condition to a communication terminal unit to be transferred when the transfer trigger condition meets the predetermined condition.
    • 一种用于通过诸如因特网的通信网络将电子邮件消息及时传送到要根据附加到电子邮件消息的传送触发条件传送的通信终端的方法和系统,触发条件由事件信息指定,例如 作为家用电器的移动和操作,生活设施或特定终端单元的位置信息或在通信网络上检测到的其他信号。 根据本方法,电子邮件消息首先被发送到与传送触发条件一起配备在通信网络上的通信服务器装置,并且在注册了邮件消息之后,通信服务器装置监视传送触发条件并传送 当传送触发条件满足预定条件时,其传送触发条件满足预定条件的对应邮件消息要传送到要传送的通信终端单元。
    • 7. 发明申请
    • CAPACITANCE TYPE INPUT DEVICE
    • 电容式输入装置
    • US20100328254A1
    • 2010-12-30
    • US12786015
    • 2010-05-24
    • Yasuhiro NIGAYasushi Kasajima
    • Yasuhiro NIGAYasushi Kasajima
    • G06F3/045
    • G06F3/044G06F2203/04111
    • A capacitance type input device is configured to detect the access position of a conductor such as a finger, and includes a plurality of electrodes and an IC chip. The plurality of electrodes are spaced apart from each other in direction Y, and each of the electrodes has an elongated form extending in direction X. The IC chip detects the access position of the finger in direction Y, based on a change in capacitance generated between the finger and the respective electrodes. The plurality of electrodes include a high-sensitivity electrode, and a low-sensitivity electrode which has a greater surface area than that of the high-sensitivity electrode. When compared by the same size, the low-sensitivity electrode has a lower sensitivity than the high-sensitivity electrode.
    • 电容型输入装置被配置为检测诸如手指的导体的存取位置,并且包括多个电极和IC芯片。 多个电极在方向Y上彼此间隔开,并且每个电极具有在方向X上延伸的细长形状.IC芯片基于在Y方向上产生的电容的变化来检测手指在方向Y上的存取位置 手指和相应的电极。 多个电极包括高灵敏度电极和具有比高灵敏度电极的表面积更大的表面积的低灵敏度电极。 当与相同尺寸相比较时,低灵敏度电极具有比高灵敏度电极更低的灵敏度。