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    • 91. 发明授权
    • Eyecup switched optical device
    • Eyecup交换光学设备
    • US09516226B2
    • 2016-12-06
    • US14597837
    • 2015-01-15
    • Sensors Unlimited, Inc.
    • John Angelo Wieners
    • H04N5/222G03B17/00H04N5/232G02B23/12G02B27/01G02B5/00G02B27/02H01H1/00G06F1/32
    • H04N5/23241G02B5/005G02B23/12G02B27/0018G02B27/017G02B27/0176G02B27/022G02B2027/0187G06F1/3265H01H1/00H01H3/14H01H3/16H04N5/23203H04N5/23293Y02D10/153
    • An optical device is disclosed. The optical device may generate light for projection into a user's eye. The optical device may have a switch connected to an eyecup. When the eyecup is pressed against the user's face, the switch may be actuated, signaling the optical device to generate light for projection into a user's eye. When the eyecup is not pressed against the user's face, the switch may be unactuated, signaling the optical device to cease to generate light for projection into a user's eye. Various electronics of the optical device may remain active, for example, a controller may continue to generate an image for representation by the generated light, but the optical device may refrain from generating the light, such as by a display. In this manner, inadvertent light leakage may be ameliorated, and power consumption by the optical device lessened when the eyecup is not depressed.
    • 公开了一种光学装置。 光学装置可以产生用于投射到用户眼睛中的光。 光学装置可以具有连接到眼罩的开关。 当眼罩被按压在使用者的脸部上时,可以启动开关,使光学装置发出信号,产生用于投射到用户眼睛中的光。 当眼罩未被按压在使用者的脸部上时,开关可能不起作用,指示光学装置停止产生用于投射到用户眼睛中的光。 光学设备的各种电子设备可以保持有效,例如,控制器可以继续生成用于通过所产生的光进行表示的图像,但是光学设备可以例如通过显示器来避免产生光。 以这种方式,可以改善无意的光泄漏,并且当眼罩未被按下时,光学装置的功率消耗减少。
    • 92. 发明授权
    • Electrostatic relay
    • 静电继电器
    • US09508515B2
    • 2016-11-29
    • US14634231
    • 2015-02-27
    • OMRON Corporation
    • Takahiro MasudaJunya Yamamoto
    • H01H59/00H01H45/14H01H1/00
    • H01H59/0009H01H45/14H01H2001/0078H01H2221/036H01H2235/02H01H2239/008
    • In an electrostatic relay in which a moving contact and a movable electrode are displaced in parallel with a base substrate, an opening force is increased when the movable electrode is separated from a fixed electrode, and a structure is simplified to enhance a degree of freedom of design. A fixed contact portion and a fixed electrode portion are fixed to the base substrate. The fixed electrode portion and a movable electrode portion constitute an electrostatic actuator that displaces the movable electrode portion and a moving contact portion. A movable spring provided in a spring supporting portion retains the movable electrode portion in a displaceable manner. A cantilever secondary spring is provided in the spring supporting portion, and a projection portion is provided in a front end face of the movable electrode portion. The secondary spring abuts on the projection portion while being not deformed until abutting on the projection portion, before the moving contact of the moving contact portion abuts on the fixed contact of the fixed contact portion when the moving contact portion and the movable electrode portion are displaced.
    • 在可移动触点和可动电极与基底平行移动的静电继电器中,当可动电极与固定电极分离时,开启力增加,并且简化结构以提高自由度 设计。 固定接触部分和固定电极部分固定到基底基板上。 固定电极部分和可动电极部分构成使可动电极部分和可移动接触部分移动的静电致动器。 设置在弹簧支撑部分中的可移动弹簧以可移动的方式保持可动电极部分。 悬臂二次弹簧设置在弹簧支撑部分中,并且突出部分设置在可动电极部分的前端面中。 第二弹簧在活动接触部和可动电极部位移动时,在活动接触部的移动接触抵接在固定接触部的固定接点上之前,不会变形直到抵接在突出部上 。
    • 98. 发明授权
    • Rotor and electromechanical switching device having a rotor
    • 具有转子的转子和机电开关装置
    • US09287061B1
    • 2016-03-15
    • US14854115
    • 2015-09-15
    • Siemens Aktiengesellschaft
    • Pawel BiedunkiewiczJörg-Uwe Dahl
    • H01H1/00H01H1/20
    • H01H1/205H01H1/2025H01H77/10
    • A rotor is shown for an electromechanical switching device, includes: a rotor housing; two contact bridges having in each case two contact portions; an intermediate element disposed between the two contact bridges and mounted so as to be rotatable about a rotation axis; and first spring pins and second spring pins; first spring elements and second spring elements. In an embodiment, the spring pins, the spring elements, and the intermediate element are operationally connected, and at least one of the first and second spring pins is disposed on the intermediate element and/or on the contact bridges such that the spring pin by rotating the rotor is tiltable between the two states in relation to the rotation axis. An embodiment furthermore relates to an electromechanical switching device including the rotor.
    • 示出了用于机电开关装置的转子,包括:转子壳体; 两个接触桥在每种情况下具有两个接触部分; 中间元件,设置在所述两个接触桥之间并且被安装成可围绕旋转轴线旋转; 和第一弹簧销和第二弹簧销; 第一弹簧元件和第二弹簧元件。 在一个实施例中,弹簧销,弹簧元件和中间元件可操作地连接,并且第一和第二弹簧销中的至少一个设置在中间元件和/或接触桥上,使得弹簧销由 旋转转子可以在两个状态之间相对于旋转轴线倾斜。 一个实施例还涉及包括转子的机电开关装置。
    • 99. 发明授权
    • Electronic switching device and method for manufacturing the same
    • 电子开关装置及其制造方法
    • US09184009B2
    • 2015-11-10
    • US13901425
    • 2013-05-23
    • LSIS CO., LTD.
    • Sang Jin Lee
    • H01H51/00G01R31/327H01H9/02H01H11/00H01H50/06H01H49/00H01H1/00
    • H01H51/00G01R31/3278H01H9/02H01H11/0062H01H49/00H01H50/06H01H2001/0021H01H2009/0292H01H2011/0075Y10T29/49105
    • Provided are an electronic switching device and a method for manufacturing the same. The electronic switching device includes a fixed unit including a fixed unit body defining an outer appearance thereof and a fixed contact part disposed within the fixed unit body, a movable unit including a movable contact part selectively contacting the fixed contact part to supply current, a moving part provided in the movable unit to guide a movement of the movable contact part toward the fixed contact part, a coil to which power is applied to move the moving part, and an elastic member that is elastically deformable while the moving part moves. At least one of the fixed unit and the moving part has a through hole so that an inner component of the fixed unit or the moving part communicates with the outside to allow a preset signal to pass therethrough.
    • 提供一种电子开关装置及其制造方法。 电子开关装置包括:固定单元,包括限定外观的固定单元主体和设置在固定单元主体内的固定触点部分;可移动单元,包括选择性地接触固定触点部分以供应电流的可动触头部分;移动 部分设置在可移动单元中以引导可动接触部分朝向固定接触部分的移动;施加电力的线圈,用于移动移动部分;以及弹性构件,其在移动部分移动时可弹性变形。 固定单元和移动部件中的至少一个具有通孔,使得固定单元或移动部件的内部部件与外部连通以允许预置信号通过。
    • 100. 发明授权
    • Nanoelectromechanical switch with localized nanoscale conductive pathway
    • 具有局部纳米尺度导电通路的纳米机电开关
    • US09171680B2
    • 2015-10-27
    • US14039935
    • 2013-09-27
    • International Business Machines Corporation
    • Daniel GroggLaurent A. DellmannMichel DespontAbu Sebastian
    • H01H1/00
    • H01H1/0094H01H2001/0052
    • The present invention is directed to a nanoelectromechanical (NEM) switch comprising two electrodes (12, 18), wherein: at least one (18) of the electrodes comprises an active layer (10) thereon; and at least one (12) of the electrodes is movable along a given direction (z), from a: non-contact position to a contact position where one of the electrodes contacts the other one (18) of the electrodes, at the level of a contact point (P); and the active layer exhibits a conductive pathway (16), which pathway: extends along said given direction (z) to enable electrical conduction from one of the electrodes to the other one of the electrodes in the contact position; and is confined to a given region (R1) of the active layer, the region having nanoscale dimensions in a sectional plane (x, y) perpendicular to the given direction. The present invention is further directed to related devices, systems and methods.
    • 本发明涉及包括两个电极(12,18)的纳米机电(NEM)开关,其中:至少一个电极(18)包括其上的有源层(10) 并且所述电极中的至少一个(12)可沿着给定的方向(z)从非接触位置移动到所述电极中的一个接触所述电极的另一个(18)的接触位置, 的接触点(P); 并且所述有源层呈现导电通路(16),所述通路沿着所述给定方向(z)延伸以使得能够从接触位置的电极中的一个电极到另一个电极进行电导通; 并且被限制在有源层的给定区域(R1)中,该区域在垂直于给定方向的截面(x,y)中具有纳米级尺寸。 本发明进一步涉及相关设备,系统和方法。