Patents Assigned to QUALCOMM MEMS Technologies
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Publication number: 20130021305Abstract: This disclosure provides implementations of electromechanical systems resonator structures, devices, apparatus, systems, and related processes. In one aspect, a resonator structure includes a first conductive layer of electrodes and a second conductive layer of electrodes. A piezoelectric layer including a piezoelectric material is disposed between the first conductive layer and the second conductive layer. One or more trenches can be formed in the piezoelectric layer on one or both sides in space regions between the electrodes. In some implementations, a process for forming the resonator structure includes removing an exposed portion of the piezoelectric layer to define a trench, for instance, by partial etching or performing an isotropic release etch using a XeF2 gas or SF6 plasma. In some other implementations, a portion of a sacrificial layer is removed to define a trench in the piezoelectric layer.Type: ApplicationFiled: July 19, 2011Publication date: January 24, 2013Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Chengjie Zuo, Changhan Yun, Chi Shun Lo, Jonghae Kim
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Publication number: 20130021304Abstract: This disclosure provides implementations of electromechanical systems resonator structures, devices, apparatus, systems, and related processes. A resonator structure generally includes a first conductive layer with an input electrode, an output electrode, and a ground electrode. The ground electrode is disposed between the input electrode and the output electrode. In some implementations, the second conductive layer includes an input electrode, an output electrode, and a ground electrode. In some other implementations, a second conductive layer includes a pair of ground electrodes and a signal electrode in the form of an input or output electrode disposed between the ground electrodes. A piezoelectric layer is disposed between the first conductive layer and the second conductive layer.Type: ApplicationFiled: July 19, 2011Publication date: January 24, 2013Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Chengjie Zuo, Chi Shun Lo, Changhan Yun, Jonghae Kim
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Publication number: 20130021303Abstract: The present disclosure provides systems, methods, and apparatus relating to touch sensing display devices that include a sensing device and a display device. In one aspect, a touch sensing display device can include adaptive addressing architecture to adjust an addressing characteristic based at least in part in a sensing characteristic of a sensing device. In another aspect, a touch sensing display device can include adaptive sensing architecture to adjust a sensing characteristic of a sensing device based at least in part on an addressing characteristic of a display device and/or on an electrical interference characteristic altered by an addressing circuit of the display device.Type: ApplicationFiled: July 21, 2011Publication date: January 24, 2013Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Russel A. Martin, William J. Cummings
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Patent number: 8358458Abstract: Methods of fabricating an electromechanical systems device that mitigate permanent adhesion, or stiction, of the moveable components of the device are provided. The methods provide an amorphous silicon sacrificial layer with improved and reproducible surface roughness. The amorphous silicon sacrificial layers further exhibit excellent adhesion to common materials used in electromechanical systems devices.Type: GrantFiled: November 4, 2010Date of Patent: January 22, 2013Assignee: QUALCOMM MEMS Technologies, Inc.Inventors: James Randolph Webster, Thanh Nghia Tu, Xiaoming Yan, Wonsuk Chung
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Patent number: 8358459Abstract: An ornamental display device having an interferometric modulator for displaying an ornamental image. The ornamental device may also have a signal receiver configured to receive an external signal. The ornamental device may further have a processor configured to control an image on the display based on the external signal. The external signal is emitted from a controller configured to control a plurality of ornamental devices to display coordinated images. The ornamental device may have a patterned diffuser formed on a transparent substrate to provide an ornamental image or information. The ornamental device may be a piece of jewelry or an article that may be worn. The image displayed may have an iridescent appearance. A controller may also be used to control images displayed on multiple ornamental device to provide coordinated images based on externals received or pre-programmed images.Type: GrantFiled: March 30, 2011Date of Patent: January 22, 2013Assignee: QUALCOMM MEMS Technologies, Inc.Inventors: Brian J Gally, William J. Cummings
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Patent number: 8358266Abstract: A light guide device includes a light guide body and two or more pluralities of spaced-apart slits. The slits are formed by undercuts in the light guide body. Sidewalls of the slits form facets that redirect light impinging on the facets. In some embodiments, the light guide body is attached to a light source. The light source emits light that is injected into the light guide body and the slits redirect the light out of the light guide body and towards a desired target. In some embodiments, the target is a display and a first plurality of slits directs light from the light source across the light guide body and over the face of the display. A second plurality of slits then directs light out of the light guide body and towards the display.Type: GrantFiled: September 1, 2009Date of Patent: January 22, 2013Assignee: Qualcomm Mems Technologies, Inc.Inventors: Kasra Khazeni, Manish Kothari, Gang Xu, Ion Bita, Kollengode S. Narayanan
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Publication number: 20130016037Abstract: A reflective subpixel array may be formed in which an absorption layer is formed on a back substrate, which may obviate the need for a black mask on a front substrate upon which the reflective subpixel array is formed. In some implementations, the black mask layer may be formed only in post areas on the front substrate. The absorption layer may absorb light that enters between subpixel rows and/or columns. The absorption layer may include at least one highly conductive layer that can form part of the signal routing for the display. Conductive spacers may be formed to connect the conductive absorption layer to a conductive layer of the subpixel array.Type: ApplicationFiled: July 11, 2011Publication date: January 17, 2013Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventor: Hung-Jen Wang
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Patent number: 8355883Abstract: Methods and devices to measure voltage margins of electromechanical devices are disclosed. The voltage margins are determined based on responses to test voltages which cause the devices to change states. State changes of the devices are detected by monitoring integrated current or charge used to drive the devices with the test voltages.Type: GrantFiled: June 18, 2012Date of Patent: January 15, 2013Assignee: QUALCOMM MEMS Technologies, Inc.Inventors: Alok Govil, Kostadin Djordjev, Alan Lewis, Wilhelmus Johannes Robertus Van Lier
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Publication number: 20130009855Abstract: Embodiments include methods and devices for controlling the spectral profile and color gamut of light produced by an interferometric display. Such devices include illuminating a display with selected wavelengths of light. Embodiments also include a display comprising separate sections that output different predetermined colors of light. Other embodiments include methods of making the aforementioned devices.Type: ApplicationFiled: September 13, 2012Publication date: January 10, 2013Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Brian J. Gally, William J. Cummings
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Patent number: 8351793Abstract: Devices and systems are provided for free space optical communication using optical films. Some embodiments involve using an optical film for the transmission and/or reception of light in a free space optical communication system. Some free space optical communication systems may involve devices, such as laptop computers, desktop computers, mobile communications devices, etc., that are configured for communication via an optical film. The optical film may be disposed on a device, on a wall, a window, furniture, etc., according to the implementation. Many types of free space optical communication systems are provided, including line of sight and non line of sight free space optical communication systems.Type: GrantFiled: October 22, 2008Date of Patent: January 8, 2013Assignee: Qualcomm Mems Technologies, Inc.Inventors: Clarence Chui, Manish Kothari
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Patent number: 8348489Abstract: The present invention introduces a new class of thin doubly collimating light distributing engines for use in a variety of general lighting applications, especially those benefiting from thinness. Output illumination from these slim-profile illumination systems whether square, rectangular or circular in physical aperture shape is directional, square, rectangular or circular in beam cross-section, and spatially uniform and sharply cutoff outside the system's adjustable far-field angular cone. Field coverage extends from +/?5- to +/?60-degrees and more in each meridian, including all asymmetric combinations in between, both by internal design, by addition of angle spreading film sheets, and angular tilts. Engine brightness is held to safe levels by expanding the size of the engine's output-aperture without sacrifice in the directionality of illumination. One form of the present invention has a single input light emitter, a square output aperture and the capacity to supply hundreds of lumens per engine.Type: GrantFiled: January 29, 2009Date of Patent: January 8, 2013Assignee: Qualcomm Mems Technologies, Inc.Inventors: Robert L. Holman, Matthew B. Sampsell
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Publication number: 20130000696Abstract: This disclosure provides methods and apparatus for increasing the efficiency of a photovoltaic module. In one aspect, the position of a photovoltaic panel can be updated throughout the day based on whether the solar angle of incidence on the panel falls within a cone of at least 10° about a normal of the panel. For example, the panel can remain stationary when the solar angle of incidence falls within the cone, but when the solar angle of incidence falls outside the cone, the panel can be moved so that the solar angle of incidence falls within the cone.Type: ApplicationFiled: November 29, 2011Publication date: January 3, 2013Applicant: QUALCOMM MEMS Technologies, Inc.Inventor: Sandeep K. Giri
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Publication number: 20130002685Abstract: This disclosure provides systems, methods and apparatus for bonding a device substrate formed of a substantially transparent material to a carrier substrate. A laser etch stop layer may be formed on the device substrate. The carrier substrate may be coated with a releasable layer, such as a polymer layer. Vias may be formed in the device substrate by laser drilling. The vias may be filled with conductive material, e.g., by electroplating or by filling the vias with a conductive paste. One or more types of devices may then be attached to the device substrate and configured for electrical communication with the vias. In some implementations, passive devices may be formed on the device substrate before the vias are formed. Before or after device fabrication, the substrates may be separated. The substrates may be separated by laser irradiation or chemical dissolution of the releasable layer.Type: ApplicationFiled: June 30, 2011Publication date: January 3, 2013Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Ravindra V. Shenoy, Evgeni P. Gousev
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Publication number: 20130000695Abstract: This disclosure provides methods and apparatus for increasing the efficiency of a photovoltaic module. In one aspect, an apparatus includes an array of photovoltaic cells. One or more reflective surfaces can be provided along the edges of the array, between the edges of the array and the frame. The reflective surfaces can extend in a direction from the back of the array toward the front of the array so as to reflect light exiting the first and second edges of the array back into the array through the first and second edges. The reflective surface can be convex and/or can be disposed at one or more angles with respect to the array. The angles can be selected based on a selected geographical latitude and a corresponding selected orientation of the array relative to the sun.Type: ApplicationFiled: August 2, 2011Publication date: January 3, 2013Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventor: Sandeep Giri
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Publication number: 20130003160Abstract: Methods of fabricating an electromechanical systems (EMS) device with spacers between plates and EMS devices formed by the same are disclosed. In one embodiment, a EMS device is fabricated by laminating a front substrate and a carrier, each of which has components preformed thereon. The front substrate is provided with stationary electrodes formed thereover. A carrier including movable electrodes formed thereover is attached to the front substrate. The carrier may be released after transferring the movable electrodes to the front substrate. In other embodiments, the carrier stays over the front substrate, and serves as a backplate for the EMS device. Features are formed by deposition and patterning, by embossing, or by patterning and etching. Spacers are provided between the front substrate and the backplate to maintain a gap therebetween. The resulting EMS devices can trap smaller volumes between laminated substrates and are less susceptible to pressure variations and moisture leakage.Type: ApplicationFiled: September 10, 2012Publication date: January 3, 2013Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Jeffrey Brian Sampsell, Brian James Gally, Philip Don Floyd
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Publication number: 20130003158Abstract: This disclosure provides apparatus, systems and methods for optical decoupling. In one implementation, an optical system includes a substrate transmissive to visible light, a first antireflective structure disposed on a surface of the substrate, a second antireflective structure. The first and second antireflective structures define at least one cavity containing air in between. The optical system further includes a plurality of support posts configured to space the first antireflective structure from the second antireflective structure to define the height of the at least one cavity. A reflective display is disposed on a surface of the second antireflective structure opposite the at least one cavity.Type: ApplicationFiled: June 28, 2011Publication date: January 3, 2013Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Evgeni Gousev, Russell Wayne Gruhlke
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Patent number: 8344997Abstract: Methods and devices for applying bias potentials of opposite polarities to columns of electromechanical display elements are described herein. The bias potentials may be applied such that a column and an adjacent column receive bias potentials of opposite polarity. The bias potentials may be applied such that a polarity of bias voltages received by columns of a first set of the display elements is opposite a polarity of bias voltages received by columns of a second set of the display elements.Type: GrantFiled: August 5, 2010Date of Patent: January 1, 2013Assignee: QUALCOMM MEMS Technologies, Inc.Inventors: Clarence Chui, Manish Kothari
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Patent number: 8344377Abstract: Optical filter functionality is incorporated into a substrate of a display element thereby decreasing the need for a separate thin film filter and, accordingly, reducing a total thickness of a filtered display element. Filter functionality may be provided by any filter material, such as pigment materials, photoluminescent materials, and opaque material, for example. The filter material may be incorporated in the substrate at the time of creating the substrate or may be selectively diffused in the substrate through a process of masking the substrate, exposing the substrate to the filter material, and heating the substrate in order to diffuse the filter material in the substrate.Type: GrantFiled: November 5, 2008Date of Patent: January 1, 2013Assignee: QUALCOMM MEMS Technologies, Inc.Inventors: Brian J. Gally, William J. Cummings
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Patent number: 8345030Abstract: This disclosure provides systems, methods and apparatus, including computer programs encoded on computer storage media, for providing positive and negative voltages of a power supply. In one aspect, the power supply includes an inductor having a first end coupled via a source switch to a voltage source and coupled via a first plurality of output switches to a respective plurality of negative outputs and a second end coupled via a ground switch to a ground potential and coupled via a second plurality of output switches to a respective plurality of positive outputs and a controller adapted to configure the switches into at least one of multiple configurations.Type: GrantFiled: March 18, 2011Date of Patent: January 1, 2013Assignee: QUALCOMM MEMS Technologies, Inc.Inventor: Wilhelmus Johannes Robertus Van Lier
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Patent number: 8346048Abstract: A illumination device comprises a light guide having a first end for receiving light and configured to support propagation of light along the length of the light guide. A turning microstructure is disposed on a first side of the light guide configured to turn light incident on the first side and to direct the light out a second opposite side of the light guide, wherein the turning microstructure comprises a plurality of indentations. A cover is physically coupled to the light guide and disposed over the turning microstructure. An interlayer is between the cover and the light guide, wherein the interlayer physically couples the cover to the light guide. A plurality of open regions is between the interlayer and the plurality of indentations. Various embodiments include methods of coupling the cover to the light guide while preserving open regions between the cover and plurality of indentations.Type: GrantFiled: May 28, 2009Date of Patent: January 1, 2013Assignee: Qualcomm Mems Technologies, Inc.Inventors: Ion Bita, Gang Xu, Kollengode S. Narayanan, Russell W. Gruhlke, Marek Mienko, Lai Wang