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    • 61. 发明授权
    • Touch panel coordinate input device having light filter
    • 具有滤光片的触摸屏坐标输入装置
    • US4751379A
    • 1988-06-14
    • US914283
    • 1986-10-02
    • Hiroaki SasakiKazuo HasegawaJunichi Ouchi
    • Hiroaki SasakiKazuo HasegawaJunichi Ouchi
    • G06F3/042G06F3/033G06F3/041G01V9/04
    • G06F3/0421
    • A photodetection type coordinate input device includes a frame having a substantially rectangular opening formed in the center, a light-emitting element array composed of a plurality of light-emitting elements disposed along each of the two sides of the opening of the frame, a light-receiving element array composed of a plurality of light-receiving elements disposed along each of the two sides which respectively oppose the first two sides, and a filter provided in a part or the whole area of the opening and adapted to transmit desired light alone. The opening of the frame is disposed in front of a display to form a plurality of optical paths by pairs of light-emitting and -receiving elements, respectively, in front of the display screen of the display, and a position at which optical paths are blocked is detected to specify a coordinate position on the display screen, thereby inputting the coordinate position. The coordinate input device is provided with a recess for blocking the propagation of light toward the light-receiving element side. The recess is disposed in a region within the filter section which is closer to at least the light-receiving element side than a position which is located on the downstream side in a direction in which the light emitted from the light-emitting elements travels and which position is at a mid point between the light-emitting and -receiving elements.
    • 光检测型坐标输入装置包括:具有形成在中心的大致矩形的开口的框架;发光元件阵列,其由沿框架的开口的两侧设置的多个发光元件构成, - 接收元件阵列,其由沿着分别与前两侧相对的两侧设置的多个光接收元件构成;以及滤光器,设置在所述开口的一部分或整个区域中,并且仅适用于传输期望的光。 框架的开口被布置在显示器的前面,以分别在显示器的显示屏前面的成对的发光和接收元件形成多个光路,并且光路是 检测到阻挡以在显示屏幕上指定坐标位置,由此输入坐标位置。 坐标输入装置设置有用于阻挡光朝向光接收元件侧的传播的凹部。 所述凹部设置在所述过滤器部分内的比从所述发光元件发射的光行进的方向上位于下游侧的位置更靠近所述受光元件侧的区域中,以及哪个 位置处于发光元件和接收元件之间的中点。
    • 62. 发明授权
    • Optical fiber connector with locking mechanism
    • 带锁定机构的光纤连接器
    • US4747656A
    • 1988-05-31
    • US861544
    • 1986-05-09
    • Yoshinori MiyaharaKazuo Hasegawa
    • Yoshinori MiyaharaKazuo Hasegawa
    • G02B6/38G02B6/42G02B6/36
    • G02B6/3893G02B6/3855G02B6/3869G02B6/3887G02B6/4292
    • An optical connector composed of a plug lock member provided on the end of a light guide pass and a plug attachable to/detachable from the plug lock member, which is characterized by a lock member provided on either the plug lock member or plug to be pressed onto a member to be held, a push member movable in the direction intersecting the attaching/detaching direction of the plug, push portions provided on the push member for pushing the lock member onto the member to be held, and a click mechanism provided on the push member, wherein when the member to be held is pressed by the lock member the click mechanism operates to lock the push member, whereby its locked state is maintained stable and can not be released even subjected to continuous vibration or pulling force.
    • 一种光学连接器,其由设置在光导通道的端部上的插头锁定构件和可插拔到插头锁定构件的插头组成,其特征在于,设置在插头锁定构件或要被按压的插头上的锁定构件 在要被保持的构件上,能够沿与插头的安装/拆卸方向相交的方向移动的推动构件,设置在推动构件上的推动部,用于将锁定构件推压到要保持的构件上, 推动构件,其中当被保持构件被所述锁定构件按压时,所述卡扣机构操作以锁定所述推动构件,由此其锁定状态保持稳定,并且即使经受连续的振动或拉力也不能被释放。
    • 63. 发明授权
    • Optical coordinate position input device
    • 光学坐标位置输入装置
    • US4742221A
    • 1988-05-03
    • US864703
    • 1986-05-19
    • Hiroaki SasakiKazuo HasegawaJunichi Ouchi
    • Hiroaki SasakiKazuo HasegawaJunichi Ouchi
    • G06F3/033G06F3/042H05K3/30G01V9/04
    • G06F3/0421H05K3/301
    • An optical coordinate input device comprises a number of light emitting elements and corresponding light detecting elements disposed in a plurality of linear arrays. A light ray selection member is provided such that only the light rays from the light emitting elements are detected by the light detecting elements. The light ray selection member is an optical semiconductor element light obstructing holder. The optical semiconductor elements have terminals projecting from the bottom surface of their main body which are fixed to a base and have a light emitting function or light detection function. In addition to these, a pair of mold bodies extending in the array direction of the optical semiconductor elements is combined, and this array of elements can be integrally fitted therein while being provided with a pressure portion elestically contacting the bottom surface of the main body of each element.
    • 光学坐标输入装置包括多个发光元件和布置在多个线性阵列中的对应的光检测元件。 设置光线选择构件,使得只有来自发光元件的光被光检测元件检测。 光线选择部件是光半导体元件遮光保持器。 光半导体元件具有从其主体的底表面突出的端子,其固定到基座并具有发光功能或光检测功能。 除此之外,组合了沿着光半导体元件的排列方向延伸的一对模具体,并且该元件阵列可以整体地装配在其中,同时设置有与主体的底面接触的压力部分 每个元素
    • 66. 发明授权
    • Pressure sensor mounting method, tire and wheel having pressure sensor, and tire pressure detection device
    • 压力传感器安装方法,具有压力传感器的轮胎和轮胎以及轮胎压力检测装置
    • US08176776B2
    • 2012-05-15
    • US12223250
    • 2007-01-24
    • Hirohisa SuzukiEiji AkamaKazuo Hasegawa
    • Hirohisa SuzukiEiji AkamaKazuo Hasegawa
    • B60C23/02
    • B60C23/0408
    • The accuracy of a measurement value obtained by a tire pressure detection device is lowered by a centrifugal force and an inertial force during travel. A pressure sensor (30) displaces a diaphragm (20) in its vertical direction (32) according to the pressure. The pressure sensor (30) is arranged in a tire (2) with the vertical direction (32) directed to a direction parallel to a rotation axis (34) instead of the tire circumferential direction or radial direction. The pressure sensor (30) is mounted onto a substrate with the vertical direction (32) of its diaphragm (20) directed in parallel to the substrate surface and the substrate is bonded to a tread portion of the tire (2) and a wheel rim portion while adjusting the vertical direction (32) of the diaphragm (20) with the direction of the rotation axis (34).
    • 由轮胎压力检测装置获得的测量值的精度通过离心力和行驶期间的惯性力而降低。 压力传感器(30)根据压力在其垂直方向(32)上移动隔膜(20)。 代替轮胎周向或径向,压力传感器(30)布置在轮胎(2)中,其中垂直方向(32)指向平行于旋转轴线(34)的方向。 压力传感器(30)安装在基板上,其隔膜(20)的垂直方向(32)平行于基板表面并且基板结合到轮胎(2)的胎面部分,轮缘 同时沿着旋转轴线(34)的方向调节隔膜(20)的垂直方向(32)。
    • 68. 发明授权
    • A/D Converter to convert an analog signal from a bridge circuit to a digital signal
    • A / D转换器将模拟信号从桥接电路转换为数字信号
    • US07755529B2
    • 2010-07-13
    • US12338875
    • 2008-12-18
    • Kazuo HasegawaHirohisa Suzuki
    • Kazuo HasegawaHirohisa Suzuki
    • H03M1/12
    • H03M3/34G01P15/12H03M3/356H03M3/43H03M3/462
    • An AD converter comprising: a delta-sigma-modulation circuit to output an analog signal from a bridge circuit as a quantized signal; a switch circuit to switch between a first state, where a first level voltage is applied to one terminal of the bridge circuit and a second level voltage different in level from the first level voltage is applied to the other terminal thereof, and a second state, where voltages opposite in level to those in the first state are applied thereto, based on a logic level of a control signal; and an up-down counter to increase a count value based on a rate of the quantized signal being one logic level, during a predetermined period, in the first state, and decrease the count value based on the rate, during the predetermined period, in the second state, the count value representing a digital signal according to the physical quantity.
    • 一种AD转换器,包括:Δ-Σ调制电路,用于将来自桥接电路的模拟信号作为量化信号输出; 在第一状态和第二状态之间进行切换,该第一状态向桥接电路的一个端子施加第一电平电压,另一端施加与第一电平电压不同的第二电平电压, 其中基于控制信号的逻辑电平对其施加与第一状态相反的电压电平; 以及升降计数器,用于在所述第一状态期间的预定时段期间,基于所述量化信号为一逻辑电平的速率来增加计数值,并且在所述预定时段期间,基于所述速率减少所述计数值 第二状态,计数值表示根据物理量的数字信号。
    • 69. 发明申请
    • TEMPERATURE SENSOR CIRCUIT
    • 温度传感器电路
    • US20100046580A1
    • 2010-02-25
    • US12509094
    • 2009-07-24
    • Kazuo Hasegawa
    • Kazuo Hasegawa
    • G01K7/00H01L37/00
    • G01K7/01
    • A temperature sensor circuit includes a band-gap reference voltage circuit. The resistor and diode-connected bipolar transistor of the band-gap reference voltage circuit are separated into a transistor-resistor series circuit and a transistor-diode series circuit. The transistor-resistor series circuit is configured such that an emitter of the bipolar transistor Q21 is connected to a power supply voltage terminal VCC, a collector thereof is grounded via the resistor R2. The transistor-diode series circuit is configured such that an emitter of the bipolar transistor Q20 is connected to the power supply voltage terminal VCC, a collector thereof is connected to a collector of the diode-connected bipolar transistor Q19, and an emitter of the diode-connected bipolar transistor is grounded. A voltage divider circuit 5 having a plurality of output terminals is connected to the transistor-resistor series circuit and the transistor-diode series circuit via first and second buffer circuits 3 and 4, respectively.
    • 温度传感器电路包括带隙基准电压电路。 带隙参考电压电路的电阻和二极管连接双极晶体管分为晶体管电阻串联电路和晶体管二极管串联电路。 晶体管电阻串联电路被配置为使得双极晶体管Q21的发射极连接到电源电压端子VCC,其集电极经由电阻器R2接地。 晶体管二极管串联电路被配置为使得双极晶体管Q20的发射极连接到电源电压端子VCC,其集电极连接到二极管连接的双极晶体管Q19的集电极,二极管的发射极 连接的双极晶体管接地。 具有多个输出端子的分压器电路5分别经由第一和第二缓冲电路3和4连接到晶体管电阻器串联电路和晶体管二极管串联电路。