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    • 7. 发明授权
    • Position indicator of electromagnetic induction system and electronic ink cartridge
    • 电磁感应系统和电子墨盒的位置指示器
    • US09297633B2
    • 2016-03-29
    • US13924381
    • 2013-06-21
    • Wacom Co., Ltd.
    • Masayuki Obata
    • G01B7/00G06F3/046G06F3/0354
    • G01L1/144B41J2/17546G01B7/003G01B7/14G01L1/148G06F3/03545G06F3/046Y10T137/8242
    • An electronic ink cartridge includes, in a direction of a central axis within a cylindrical body, a core body extended out from a distal end of the cylindrical body, a coupling member disposed on a side of a proximal end of the cylindrical body, a coil housed between the core body and the coupling member and having a predetermined inductance, and a pressure sensitive element whose capacitance changes according to pressure applied to the core body. Two terminals of the coil are electrically connected respectively to two terminals of the pressure sensitive element to thereby form two terminals of a resonance circuit formed by the coil and the pressure sensitive element. A connecting terminal electrically connected to at least one of the two terminals of the resonance circuit is disposed on a proximal end surface side of the coupling member to be accessible thereon from outside.
    • 一种电子墨盒,在圆柱体内的中心轴方向上包括从圆柱体的远端延伸的芯体,设置在圆柱体的近端一侧的耦合构件,线圈 容纳在芯体和耦合构件之间并且具有预定的电感,以及其电容根据施加到芯体的压力而变化的压敏元件。 线圈的两个端子分别电连接到压敏元件的两个端子,从而形成由线圈和压敏元件形成的谐振电路的两个端子。 电连接到谐振电路的两个端子中的至少一个端子的连接端子设置在耦合构件的近端表面侧上,以便从外部接近。
    • 9. 发明申请
    • INTEGRATED ELECTRONIC DEVICE FOR MONITORING PRESSURE WITHIN A SOLID STRUCTURE
    • 用于在固体结构中监测压力的集成电子设备
    • US20160041046A1
    • 2016-02-11
    • US14780819
    • 2014-03-27
    • STMICROELECTRONICS S.R.L.
    • Alberto PAGANI
    • G01L1/14G01L1/26
    • G01L1/142G01L1/144G01L1/148G01L1/26G01L25/00
    • The integrated electronic device detects the pressure related to a force applied in a predetermined direction within a solid structure. The device includes an integrated element that is substantially orthogonal to the direction of application of the force. First and second conductive elements are configured to face an operating surface. A measure module includes first and second measurement terminals which are electrically connected to the first and second conductive elements, respectively. A detecting element is arranged in the predetermined direction such that the operating surface is sandwiched between the first and second conductive elements and this detecting element. An insulating layer galvanically insulates the first and second conductive elements. A layer of dielectric material is sandwiched between the detecting element and the insulating layer, and is elastically deformable following the application of the force to change an electromagnetic coupling between the detecting element and the first and second conductive elements.
    • 集成电子设备检测与固体结构内的预定方向上施加的力相关的压力。 该装置包括基本上与力的施加方向正交的集成元件。 第一和第二导电元件构造成面对操作表面。 测量模块包括分别电连接到第一和第二导电元件的第一和第二测量端子。 检测元件沿预定方向布置,使得操作表面被夹在第一和第二导电元件和该检测元件之间。 绝缘层使第一和第二导电元件电绝缘。 介电材料层被夹在检测元件和绝缘层之间,并且随着施加力而弹性变形,以改变检测元件与第一和第二导电元件之间的电磁耦合。
    • 10. 发明授权
    • Pressure sensor having multiple pressure cells and sensitivity estimation methodology
    • 压力传感器具有多个压力传感器和灵敏度估算方法
    • US09176020B2
    • 2015-11-03
    • US14043556
    • 2013-10-01
    • FREESCALE SEMICONDUCTOR, INC.
    • Chad S. DawsonPeter T. Jones
    • G01L1/12G01L25/00G01L1/04G01L1/14
    • G01L25/00G01L1/04G01L1/142G01L1/148G01L9/0073G01L27/002
    • A pressure sensor (20) includes a test cell (32) and sense cell (34). The sense cell (34) includes an electrode (42) formed on a substrate (30) and a sense diaphragm (68) spaced apart from the electrode (42) to produce a sense cavity (64). The test cell (32) includes an electrode (40) formed on the substrate (30) and a test diaphragm (70) spaced apart from the electrode (40) to produce a test cavity (66). Both of the cells (32, 34) are sensitive to pressure (36). However, a critical dimension (76) of the sense diaphragm (68) is less than a critical dimension (80) of the test diaphragm (70) so that the test cell (32) has greater sensitivity (142) to pressure (36) than the sense cell (34). Parameters (100) measured at the test cell (32) are utilized to estimate a sensitivity (138) of the sense cell (34).
    • 压力传感器(20)包括测试单元(32)和感测单元(34)。 感测单元(34)包括形成在基板(30)上的电极(42)和与电极(42)间隔开的感测隔膜(68)以产生感测腔(64)。 测试电池(32)包括形成在基板(30)上的电极(40)和与电极(40)间隔开的测试膜(70),以产生测试腔(66)。 两个电池(32,34)对压力敏感(36)。 然而,感测隔膜(68)的临界尺寸(76)小于测试隔膜(70)的临界尺寸(80),使得测试电池(32)具有较高的灵敏度(142)至压力(36) 比感测单元(34)。 在测试单元(32)处测量的参数(100)用于估计感测单元(34)的灵敏度(138)。