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    • 1. 发明授权
    • Condition responsive electrical switch having improved bridging contact
means
    • 具有改进的桥接接触装置的状态响应电开关
    • US4121073A
    • 1978-10-17
    • US772701
    • 1977-02-28
    • Thomas BileskiJoe W. CrawfordBobby D. BlantonCarl N. JohnsonFelix GarciaJohn W. OrcuttGlen C. ShepherdJames A. Oursler
    • Thomas BileskiJoe W. CrawfordBobby D. BlantonCarl N. JohnsonFelix GarciaJohn W. OrcuttGlen C. ShepherdJames A. Oursler
    • H01H1/20H01H35/34
    • H01H1/2083
    • An electrical switch actuatable upon the occurrence of a preselected level, includes a generally cup shaped, open ended housing which mounts therein a spaced pair of stationary contacts. The housing has two pairs of upwardly extending channels in its side walls, the two channels of the first pair aligned with the stationary contacts and the two channels of the second pair aligned with platform surfaces. An electrically conductive, flexible cruciform element is disposed in the housing with the distal end portions of two legs of the cruciform received respectively in the two channels of the first pair, and the distal end portions of the other two legs of the cruciform received respectively in the two channels of the second pair and resting on the platform surfaces. The stationary contacts may be disposed above or beneath the cruciform element for a normally open or normally closed switch as desired. The stationary contacts may lie in a plane parallel to the plane of the snap acting member or in planes which intersect each other and the plane of the snap acting member. A motion transfer pin extends between the snap acting member and the cruciform element and may be provided with a shoulder to prevent overtravel of the pin.
    • 在预先设定的水平位置上可启动的电开关包括一个大致为杯形的开放式外壳,其中安装有一对间隔开的固定触点。 壳体在其侧壁中具有两对向上延伸的通道,第一对的两个通道与固定触点对准,并且第二对的两个通道与平台表面对准。 导电的,柔性的十字形元件设置在壳体中,十字形的两个腿的远端部分别容纳在第一对的两个通道中,十字形的另外两个腿的远端部分别接收在 第二对的两个通道并且搁置在平台表面上。 根据需要,固定触点可以设置在十字形元件的上方或下方,用于常开或常闭开关。 固定触点可以位于平行于卡扣作用构件的平面的平面中,或者位于与快速作用构件相交的平面中。 运动传递销在卡扣作用构件和十字形元件之间延伸并且可以设置有肩部以防止销的超程。
    • 3. 发明授权
    • Silicon mirrors having reduced hinge stress from temperature variations
    • 硅镜具有从温度变化减小的铰链应力
    • US07468826B2
    • 2008-12-23
    • US10138402
    • 2002-05-03
    • John W. Orcutt
    • John W. Orcutt
    • G02B26/08
    • B81B3/0072G02B7/008G02B7/18G02B26/0841G02B26/101
    • A device such as a mirror assembly comprises a movable structure (41) having a first movable portion (45) hinged to a frame portion (43) by a first pair of torsional hinges (47A and 47B) spaced apart along a first axis (49). The device may also have a second movable portion (51) and a second pivot axis provided by set of torsional hinge (53A and 53B). The movable structure or mirror assembly (41) having a first coefficient of expansion is attached to a support structure (42) having a different coefficient of expansion at a single attaching or anchor point (63) such as by epoxy or a clamp (101). The single attaching point (63) allows expansion and/or contraction along two dimensions and thereby prevents compression and/or tension forces resulting from different coefficients of expansion between the mirror assembly 41 and the support structure 42 from being applied to the torsional hinges 47A, 47B, 53A and 53B. One embodiment of the invention also includes a biasing member or finger (105) which bears against the frame portion 43 of mirror assembly 41 to prevent vibrations in the third dimension.
    • 诸如反射镜组件的装置包括可移动结构(41),其具有通过沿着第一轴线(49)间隔开的第一对扭转铰链(47A和47B)铰接到框架部分(43)的第一可动部分(45) )。 该装置还可以具有由一组扭转铰链(53A和53B)提供的第二可动部分(51)和第二枢转轴线。 具有第一膨胀系数的可移动结构或反射镜组件(41)在诸如环氧树脂或夹具(101)的单个附接或锚点(63)处附接到具有不同膨胀系数的支撑结构(42) 。 单个附接点(63)允许沿两个维度的膨胀和/或收缩,从而防止由反射镜组件41和支撑结构42之间的不同膨胀系数引起的压缩和/或拉力施加到扭转铰链47A, 47B,53A和53B。 本发明的一个实施例还包括偏压构件或指状物(105),其抵靠反射镜组件41的框架部分43,以防止第三维度中的振动。
    • 5. 发明授权
    • Multilayer torsional hinged mirror with a recessed drive/sensing permanent magnet
    • 多层扭转铰链镜,带有凹入的驱动/感测永磁体
    • US07259900B2
    • 2007-08-21
    • US11054926
    • 2005-02-10
    • John W. Orcutt
    • John W. Orcutt
    • G02B26/08
    • G02B26/085B81B3/007B81B2201/042G02B26/0833G02B26/0858G02B26/105
    • A multilayered torsional hinged mirror assembly that includes a drive/sensing permanent magnet. To allow for permanent magnets having increased thicknesses, a hinge plate of the mirror defines a recess for receiving the permanent magnet. The recess may be etched completely through the hinge plate such that the permanent magnet is bonded to the back side of the mirror layer, or alternately may extend part way through the hinge plate to allow the permanent magnet to be mounted to the bottom of the recess. In both embodiments, the center of mass of the mirror assembly can be adjusted to lie on the pivoting axis of the mirror assembly by selection of the depth of the recess and the shape and mass of the permanent magnet.
    • 包括驱动/感测永磁体的多层扭转铰链镜组件。 为了允许具有增加的厚度的永磁体,反射镜的铰链板限定用于接收永磁体的凹部。 可以通过铰链板完全蚀刻凹部,使得永久磁铁接合到镜面层的背面,或者可以部分地延伸穿过铰链板,以使永久磁铁安装到凹部的底部 。 在两个实施例中,可以通过选择凹槽的深度和永磁体的形状和质量来调整反射镜组件的质心以位于反射镜组件的枢转轴线上。
    • 7. 发明授权
    • Packaged micromirror assembly with in-package mirror position passive component feedback
    • 带封装镜的封装微镜组件位置为无源元件反馈
    • US06639711B2
    • 2003-10-28
    • US09953463
    • 2001-09-12
    • John W. Orcutt
    • John W. Orcutt
    • G02B2600
    • G02B26/085G02B26/101Y10S359/904
    • A packaged micromirror assembly (21, 21′) is disclosed. The assembly (21, 21′) includes a mirror element (41) having a mirror surface (29) that can rotate in two axes. Magnets (53) are attached to the mirror element (41), to permit rotation of the mirror surface (29) responsive to the energizing of coil drivers (36). A sensor (63, 80) is disposed under the mirror surface (29) to detect mirror orientation. In one aspect of the invention, the sensor (63) includes a light source such as an LED (68) that imparts light through an aperture (66) at the underside of the mirror surface (29). Light detectors (65) are arranged at varying angles, and detect relative intensity of light reflected from the underside of the mirror surface (29), from which the rotational position of the mirror (29) can be derived.
    • 公开了一种封装的微镜组件(21,21')。 组件(21,21')包括具有可以在两个轴线上旋转的镜面(29)的镜子元件(41)。 磁体(53)附接到镜子元件(41),以允许响应于线圈驱动器(36)的激励来旋转镜面(29)。 传感器(63,80)设置在镜面(29)的下方以检测镜面取向。 在本发明的一个方面,传感器(63)包括诸如LED(68)的光源,其通过镜面(29)的下侧处的孔(66)发光。 光检测器(65)以不同的角度布置,并且检测从镜面(29)的下侧反射的光的相对强度,可以从其导出反射镜(29)的旋转位置。
    • 8. 发明授权
    • Trench scribe line for decreased chip spacing
    • 沟槽刻划线减少芯片间距
    • US5904548A
    • 1999-05-18
    • US752822
    • 1996-11-21
    • John W. Orcutt
    • John W. Orcutt
    • H01L21/301H01L21/78H01L21/46
    • H01L21/78
    • A method of scribing and separating chips on a semiconductor wafer (21) wherein the wafer (21) is patterned and a pattern of intersecting grooves is etched on a selected surface of the semiconductor wafer (21) in a pattern, preferably in a grid pattern, to define chip areas on that surface. Trenches (27) are then formed in the shape of the pattern and the selected surface is adhered to a tape (29). Light is then passed through the tape (29) and semiconductor wafer (21) from the pattern and a pattern of intersecting saw cuts or grooves (28) aligned with the light passing through the wafer (21) is formed. The saw cuts (28) extend from a surface of the wafer (21) opposing the selected surface and are aligned with the pattern of intersecting trenches (27).
    • 一种在半导体晶片(21)上刻划和分离芯片的方法,其中晶片(21)被图案化,并且在半导体晶片(21)的选定表面上以优选格栅图案蚀刻相交凹槽的图案 ,以定义该表面上的芯片面积。 然后形成图案形状的沟槽(27),并且所选择的表面粘附到带(29)上。 然后,光从图案通过带(29)和半导体晶片(21),并且形成与通过晶片(21)的光对准的交叉的锯切或凹槽(28)的图案。 锯切块(28)从晶片(21)的与选定表面相对的表面延伸并且与相交的沟槽(27)的图案对准。