Patents Assigned to QUALCOMM MEMS Technologies
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Publication number: 20120075269Abstract: An optical device suitable for forming a pixel in a video display. The optical device includes a first layer having a first refractive index; a second layer over the first layer, the second layer having a second refractive index less than the first refractive index; and a third layer over the second layer, the third layer having a third refractive index larger than the second refractive index; and a fourth layer that is at least partially optically absorptive, wherein the optical stack and the fourth layer are a first distance from one another when the device is in a first state and are a second distance from one another when the device is in a second state, the first distance different from the second distance.Type: ApplicationFiled: November 30, 2011Publication date: March 29, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventor: Gang Xu
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Publication number: 20120075313Abstract: Broad band white color can be achieved in MEMS display devices by incorporating a material having an extinction coefficient (k) below a threshold value for wavelength of light within an operative optical range of the interferometric modulator. One embodiment provides a method of making the MEMS display device comprising depositing said material over at least a portion of a transparent substrate, depositing a dielectric layer over the layer of material, forming a sacrificial layer over the dielectric, depositing an electrically conductive layer on the sacrificial layer, and forming a cavity by removing at least a portion of the sacrificial layer. The suitable material may comprise germanium, germanium alloy of various compositions, doped germanium or doped germanium-containing alloys, and may be deposited over the transparent substrate, incorporated within the transparent substrate or the dielectric layer.Type: ApplicationFiled: December 8, 2011Publication date: March 29, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Evgeni Gousev, Gang Xu, Marek Mienko
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Publication number: 20120075216Abstract: This disclosure provides systems, methods and apparatus for combining devices deposited on a first substrate, with integrated circuits formed on a second substrate such as a semiconducting substrate or a glass substrate. The first substrate may be a glass substrate. The first substrate may include conductive vias. A power combiner circuit may be deposited on a first side of the first substrate. The power combiner circuit may include passive devices deposited on at least the first side of the first substrate. The integrated circuit may include a power amplifier circuit disposed on and configured for electrical connection with the power combiner circuit, to form a power amplification system. The conductive vias may include thermal vias configured for conducting heat from the power amplification system and/or interconnect vias configured for electrical connection between the power amplification system and a conductor on a second side of the first substrate.Type: ApplicationFiled: September 16, 2011Publication date: March 29, 2012Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Justin Phelps Black, Ravindra V. Shenoy, Evgeni Petrovich Gousev, Aristotele Hadjichristos, Thomas Andrew Myers, Jonghae Kim, Mario Francisco Velez, Je-Hsiung Jeffrey Lan, Chi Shun Lo
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Patent number: 8144385Abstract: A multi-state light modulator comprises a first reflector 104. A first electrode 142 is positioned at a distance from the first reflector 104. A second reflector 14 is positioned between the first reflector 104 and the first electrode 142. The second reflector 14 is movable between an undriven position, a first driven position, and a second driven position, each having a corresponding distance from the first reflector 104. In one embodiment, the light modulator has latch electrodes 17 and 143, which hold the light modulator in a driven state. In another embodiment the latch electrodes 17 and 143 are used to alter the actuation and release thresholds of the light modulator.Type: GrantFiled: January 11, 2010Date of Patent: March 27, 2012Assignee: QUALCOMM MEMS Technologies, Inc.Inventor: Clarence Chui
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Publication number: 20120069232Abstract: Disclosed are various implementations of a camera lens that can be positioned between a display device and a user viewing the display device. The camera lens can be transparent to allow such viewing by the user, and also be configured to capture light rays from the user and turn such rays to an imaging sensor to form an image of the user. Such turning of light rays can be achieved by curved features formed on the camera lens. In some implementations, the camera lens is a substantially flat layer having such curved features. Various examples of the curved features are disclosed. Also disclosed are systems and methods for enhancing the image of the user in situations where a portion of a display being viewed is captured by the camera lens and combines with the image of the user.Type: ApplicationFiled: August 24, 2011Publication date: March 22, 2012Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Clarence Chui, Matthew S. Grob
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Publication number: 20120069031Abstract: In various embodiments described herein, a display device includes a front illumination device that comprises a light guide disposed forward of an array of display elements, such as an array of interferometric modulators, to distribute light across the array of display elements. The light guide may include a turning film to deliver uniform illumination from a light source to the array of display elements. For many portable display applications, the light guide comprises the substrate used in fabricating the display elements. The display device may include additional films as well. The light guide, for example, may include a diffuser and/or an optical isolation layer to further enhance the optical characteristics of the display.Type: ApplicationFiled: November 22, 2011Publication date: March 22, 2012Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Ion Bita, Gang Xu, Lai Wang, Marek Mienko, Russell Wayne Gruhlke
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Patent number: 8138479Abstract: Methods and systems for providing a light device that can emit light and sense light are disclosed. In one embodiment, a lighting device includes a light guide having a planar first surface, the light guide configured such that at least some ambient light enters the light guide through the first surface and propagates therein, and at least one light detector disposed along an edge of the light guide, the at least one detector optically coupled to the light guide to receive light propagating therein. The light detector can be configured to produce a control signal. In some embodiments, the lighting device also includes at least one light turning feature disposed on the first surface, the at least one light turning feature configured to direct light incident into the light guide through the first surface.Type: GrantFiled: September 14, 2009Date of Patent: March 20, 2012Assignee: QUALCOMM MEMS Technologies, Inc.Inventors: Manish Kothari, James Randolph Webster, Gaurav Sethi, Alok Govil, Jonathan Charles Griffiths
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Publication number: 20120062570Abstract: This disclosure provides systems, methods and apparatus for forming an air gap in an EMS device without using a sacrificial layer in the air gap. In some implementations, a support structure is formed on the substrate, and a sacrificial substrate is provided on the support structure. A liner material is deposited on the substrate, the support structure, and the sacrificial substrate, for instance, via an atomic layer deposition (ALD) process. The sacrificial substrate can be removed, and a top layer material can be deposited on the exposed areas of the support structure and the liner material. The liner material defines an air gap between the substrate and the top layer material.Type: ApplicationFiled: July 1, 2011Publication date: March 15, 2012Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventor: Marc Maurice MIGNARD
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Publication number: 20120062575Abstract: Various devices and methods of lighting a display are disclosed. In one embodiment, for example, a display device includes a transmissive display configured to be illuminated through a back surface and a reflective display configured to be illuminated through a front surface. A light source is disposed with respect to the back of the transmissive display to illuminate the transmissive display through the back surface. A light pipe is disposed with respect to the light source to receive light from the light source and is configured to propagate the light such that this light provides front illumination of the reflective display.Type: ApplicationFiled: September 2, 2011Publication date: March 15, 2012Applicant: Qualcomm MEMS Technologies, Inc.Inventor: Jeffrey B. Sampsell
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Publication number: 20120062615Abstract: This disclosure provides systems, methods and apparatus, including computer programs encoded on computer storage media, for calibrating display arrays. In one aspect, a method of calibrating a display array includes determining a particular drive response characteristic and updating a particular drive scheme voltage between updates of image data on the display array.Type: ApplicationFiled: September 2, 2011Publication date: March 15, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Wilhelmus Johannes Robertus Van Lier, Alan Lewis, Koorosh Aflatooni, Pramod Varma, Ramesh Kumar Goel, Nao Sugawara Chuei
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Publication number: 20120062310Abstract: An electromechanical device is disclosed. The device includes a variable capacitor, and a switch circuit configured to pre-charge an input node with a pulse charge at said selected voltage level. The switch circuit includes only a first switch coupled to the variable capacitor and the first switch is configured to respond to an enable signal having a duration shorter than a mechanical time constant of the variable capacitor and the first switch is configured to apply the selected voltage level across the variable capacitor to cause the pulse charge to accumulate on the variable capacitor.Type: ApplicationFiled: September 2, 2011Publication date: March 15, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventor: Mark W. Miles
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METHOD AND APPARATUS FOR PROVIDING BRIGHTNESS CONTROL IN AN INTERFEROMETRIC MODULATOR (IMOD) DISPLAY
Publication number: 20120062572Abstract: Methods and systems for providing brightness control in an interferometric modulator (IMOD) display are provided. In one embodiment, an interferometric modulator display pixel is provided that includes a microelectromechanical systems (MEMS) interferometric modulator having an associated first color spectrum, and a color absorber located substantially in front of the interferometric modulator display pixel, in which the color absorber has an associated second color spectrum. The micro electromechanical systems (MEMS) interferometric modulator is operable to shift the first color spectrum relative to the second color spectrum to control a visual brightness of the interferometric modulator display pixel independent of a color of the interferometric modulator display pixel.Type: ApplicationFiled: November 21, 2011Publication date: March 15, 2012Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventor: Marc Maurice Mignard -
Publication number: 20120056890Abstract: The present disclosure provides systems, methods and apparatus for providing interferometric modulator displays using flexible films. In one aspect, a method of forming an interferometric modulator device includes providing a conductive element, depositing a reflective layer over at least a portion of the conductive element, and depositing a plurality of spacing elements over the conductive element. The absorber layer and the substrate are provided over the conductive element such that the absorber layer is disposed between the substrate and the spacing elements.Type: ApplicationFiled: August 24, 2011Publication date: March 8, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventor: Marc M. Mignard
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Publication number: 20120056867Abstract: This disclosure provides systems, methods and apparatus for calibrating display arrays. A leakage compensation circuit is provided in conjunction with a circuit for sensing display element states. The leakage compensation circuit may include a leakage current integrator and a voltage to current converter.Type: ApplicationFiled: September 2, 2011Publication date: March 8, 2012Applicant: Qualcomm Mems Technologies, Inc.Inventors: Wilhelmus Johannes Robertus Van Lier, Didier H. Farenc
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Publication number: 20120056855Abstract: This disclosure provides systems, methods, and apparatus including one or more capacitance control layers to decrease the magnitude of an electric field between a movable layer and an electrode. In one aspect, a display device includes an electrode, a movable layer, and a capacitance control layer. At least a portion of the movable layer can be configured to move toward the electrode when a voltage is applied across the electrode and the movable layer and an interferometric cavity can be disposed between the movable layer and the first electrode. The capacitance control layer can be configured to decrease the magnitude of an electric field between the movable layer and the electrode when the voltage is applied across the movable layer and the electrode.Type: ApplicationFiled: January 21, 2011Publication date: March 8, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Wenyue Zhang, Alok Govil, Ming-Hau Tung, Yi Tao
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Publication number: 20120057216Abstract: A MEMS comprising a sacrificial structure, which comprises a faster etching portion and a slower etching portion, exhibits reduced damage to structural features when in forming a cavity in the MEMS by etching away the sacrificial structure. The differential etching rates mechanically decouple structural layers, thereby reducing stresses in the device during the etching process. Methods and systems are also provided.Type: ApplicationFiled: September 28, 2007Publication date: March 8, 2012Applicant: QUALCOMM MEMS TECHNOLOGIES, INC.Inventors: Lucio Flores, Lior Kogut, Xiaoming Yan, Thanh Tu, Qi Luo, Brian J. Gally, Dana Chase, Gang Xu, Sheng-Tzung Huang, Chia Wei Yang, Yi Fan Su
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Patent number: 8130440Abstract: A display with a photovoltaic (PV) cells integrated as the front side and/or back side of the display is disclosed. Ambient light may reach a PV cell situated behind a display through fully or partially transmissive features within the display. Display-generated light may also reach a PV cell behind a display. A transmissive PV material situated in front of a display may collect both ambient light as well as display-generated light.Type: GrantFiled: October 20, 2008Date of Patent: March 6, 2012Assignee: QUALCOMM MEMS Technologies, Inc.Inventors: Manish Kothari, Kasra Khazeni
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Publication number: 20120051088Abstract: Illumination systems and methods of manufacturing the same. In one embodiment, an illumination system includes a plurality of light sources configured to emit light into a light panel and a plurality of light turning features disposed on the light panel configured to turn light out of the light panel. The light sources can be configured to emit different colors of light than one another and the light turning features can be arranged such that a first light turning feature turns more light having a first color than any other color of light and such that a second light turning feature turns more light having a second color than any other color of light. In another embodiment, a method of manufacturing an illumination system includes providing a light panel and positioning a luminance altering element on the light panel such that a luminance characteristic of the panel changes.Type: ApplicationFiled: August 25, 2010Publication date: March 1, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Clarence Chui, Gaurav Sethi, Jonathan Charles Griffiths, Manish Kothari
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Publication number: 20120050299Abstract: This disclosure provides systems, methods, and apparatus for display device including a dielectric stack positioned between a first electrically conductive layer and a second movable electrically conductive layer. In one aspect, the dielectric stack includes alternating dielectric layers of high and low indices of refraction. By controlling the refractive indices and thicknesses of layers within the dielectric stack, the display device's states of light reflection may be reversed, such that light is reflected when the movable layer is positioned in proximity to the first electrically conductive layer.Type: ApplicationFiled: March 28, 2011Publication date: March 1, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Marc Maurice Mignard, Kasra Khazeni
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Publication number: 20120047715Abstract: Methods of manufacturing light panels having at least one re-entrant turning feature. In one embodiment, a method of manufacturing a light panel includes providing a base layer, providing a cover layer, and coupling the cover layer to the base layer to form at least one re-entrant turning feature between the base layer and the cover layer. In another embodiment, a method of manufacturing a light panel includes providing a base layer, forming at least one receiving space in the base layer, providing at least one prismatic block, and coupling at least a portion of the prismatic block into the receiving space such that re-entrant turning features are formed between the prismatic block and the base layer.Type: ApplicationFiled: August 25, 2010Publication date: March 1, 2012Applicant: QUALCOMM MEMS Technologies, Inc.Inventors: Clarence Chui, Gaurav Sethi, Jonathan Charles Griffiths, Manish Kothari