Patents by Inventor Mark W. Miles

Mark W. Miles has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7936031
    Abstract: Embodiments of MEMS devices comprise a conductive movable layer spaced apart from a conductive fixed layer by a gap, and supported by rigid support structures, or rivets, overlying depressions in the conductive movable layer, or by posts underlying depressions in the conductive movable layer. In certain embodiments, both rivets and posts may be used. In certain embodiments, these support structures are formed from rigid inorganic materials, such as metals or oxides. In certain embodiments, etch barriers may also be deposited to facilitate the use of materials in the formation of support structures which are not selectively etchable with respect to other components within the MEMS device.
    Type: Grant
    Filed: July 21, 2006
    Date of Patent: May 3, 2011
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventors: Jeffrey B. Sampsell, Clarence Chui, Manish Kothari, Mark W. Miles, Teruo Sasagawa, Wonsuk Chung, Ming-Hau Tung
  • Patent number: 7929197
    Abstract: Light in the visible spectrum is modulated using an array of modulation elements, and control circuitry connected to the array for controlling each of the modulation elements independently, each of the modulation elements having a surface which is caused to exhibit a predetermined impedance characteristic to particular frequencies of light. The amplitude of light delivered by each of the modulation elements is controlled independently by pulse code modulation. Each modulation element has a deformable portion held under tensile stress, and the control circuitry controls the deformation of the deformable portion. Each deformable element has a deformation mechanism and an optical portion, the deformation mechanism and the optical portion independently imparting to the element respectively a controlled deformation characteristic and a controlled modulation characteristic. The deformable modulation element may be a non-metal.
    Type: Grant
    Filed: June 10, 2010
    Date of Patent: April 19, 2011
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Publication number: 20110080632
    Abstract: An Interferometric Modulator (IMod) is a microelectromechanical device for modulating light using interference. The colors of these devices may be determined in a spatial fashion, and their inherent color shift may be compensated for using several optical compensation mechanisms. Brightness, addressing, and driving of IMods may be accomplished in a variety of ways with appropriate packaging, and peripheral electronics which can be attached and/or fabricated using one of many techniques. The devices may be used in both embedded and directly perceived applications, the latter providing multiple viewing modes as well as a multitude of product concepts ranging in size from microscopic to architectural in scope.
    Type: Application
    Filed: November 1, 2010
    Publication date: April 7, 2011
    Applicant: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Patent number: 7907319
    Abstract: An interferometric modulator (Imod) cavity has a reflector and an induced absorber. A direct view reflective flat panel display may include an array of the modulators. Adjacent spacers of different thicknesses are fabricated on a substrate by a lift-off technique used to pattern the spacers which are deposited separately, each deposition providing a different thickness of spacer. Or a patterned photoresist may be used to allow for an etching process to selectively etch back the thickness of a spacer which was deposited in a single deposition. A full-color static graphical image may be formed of combined patterns of interferometric modulator cavities. Each cavity includes a reflector, and an induced absorber, the induced absorber including a spacer having a thickness that defines a color associated with the cavity.
    Type: Grant
    Filed: May 12, 2006
    Date of Patent: March 15, 2011
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Patent number: 7898722
    Abstract: Light in the visible spectrum is modulated using an array of modulation elements, and control circuitry connected to the array for controlling each of the modulation elements independently, each of the modulation elements having a surface which is caused to exhibit a predetermined impedance characteristic to particular frequencies of light. The amplitude of light delivered by each of the modulation elements is controlled independently by pulse code modulation. Each modulation element has a deformable portion held under tensile stress, and the control circuitry controls the deformation of the deformable portion. Each deformable element has a deformation mechanism and an optical portion, the deformation mechanism and the optical portion independently imparting to the element respectively a controlled deformation characteristic and a controlled modulation characteristic. The deformable modulation element may be a non-metal.
    Type: Grant
    Filed: October 13, 2006
    Date of Patent: March 1, 2011
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Publication number: 20110043891
    Abstract: Light is modulated using an array of modulation elements formed on a semiconductor substrate, and control circuitry connected to the array for controlling each of the modulation elements independently, each of the modulation elements having a surface which is caused to exhibit a predetermined impedance characteristic to particular frequencies of light. Each modulation element has a deformable portion held under tensile stress, and the control circuitry controls the deformation of the deformable portion. The elements are made by forming a sandwich of two layers and a sacrificial layer between them, the sacrificial layer having a thickness related to the final cavity dimension, and using water or an oxygen based plasma to remove the sacrificial layer.
    Type: Application
    Filed: November 3, 2010
    Publication date: February 24, 2011
    Applicant: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Publication number: 20110038027
    Abstract: Light in the visible spectrum is modulated using an array of modulation elements, and control circuitry connected to the array for controlling each of the modulation elements independently, each of the modulation elements having a surface which is caused to exhibit a predetermined impedance characteristic to particular frequencies of light. The amplitude of light delivered by each of the modulation elements is controlled independently by pulse code modulation. Each modulation element has a deformable portion held under tensile stress, and the control circuitry controls the deformation of the deformable portion. Each deformable element has a deformation mechanism and an optical portion, the deformation mechanism and the optical portion independently imparting to the element respectively a controlled deformation characteristic and a controlled modulation characteristic. The deformable modulation element may be a non-metal.
    Type: Application
    Filed: October 20, 2010
    Publication date: February 17, 2011
    Applicant: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Publication number: 20110037907
    Abstract: An interference modulator (Imod) incorporates anti-reflection coatings and/or micro-fabricated supplemental lighting sources. An efficient drive scheme is provided for matrix addressed arrays of IMods or other micromechanical devices. An improved color scheme provides greater flexibility. Electronic hardware can be field reconfigured to accommodate different display formats and/or application functions. An IMod's electromechanical behavior can be decoupled from its optical behavior. An improved actuation means is provided, some one of which may be hidden from view. An IMod or IMod array is fabricated and used in conjunction with a MEMS switch or switch array. An IMod can be used for optical switching and modulation. Some IMods incorporate 2-D and 3-D photonic structures. A variety of applications for the modulation of light are discussed. A MEMS manufacturing and packaging approach is provided based on a continuous web fed process.
    Type: Application
    Filed: October 26, 2010
    Publication date: February 17, 2011
    Applicant: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Publication number: 20110026100
    Abstract: In one embodiment of the invention there is provided a device for modulating light. The device comprises a plurality of nano-scale particles; a conformal structure defining a surface to which the nano-scale particles conform under influence of a displacement force; and a displacement mechanism to apply the displacement force to the nano-scale particles; wherein the nano-scale particles when they conform to the conformal structure change the optical characteristics of the conformal structure.
    Type: Application
    Filed: September 27, 2010
    Publication date: February 3, 2011
    Inventor: Mark W. Miles
  • Publication number: 20110026096
    Abstract: Light in the visible spectrum is modulated using an array of modulation elements, and control circuitry connected to the array for controlling each of the modulation elements independently, each of the modulation elements having a surface which is caused to exhibit a predetermined impedance characteristic to particular frequencies of light. The amplitude of light delivered by each of the modulation elements is controlled independently by pulse code modulation. Each modulation element has a deformable portion held under tensile stress, and the control circuitry controls the deformation of the deformable portion. Each deformable element has a deformation mechanism and an optical portion, the deformation mechanism and the optical portion independently imparting to the element respectively a controlled deformation characteristic and a controlled modulation characteristic. The deformable modulation element may be a non-metal.
    Type: Application
    Filed: October 12, 2010
    Publication date: February 3, 2011
    Applicant: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Publication number: 20110019380
    Abstract: Improvements in an interferometric modulator that has a cavity defined by two walls.
    Type: Application
    Filed: October 4, 2010
    Publication date: January 27, 2011
    Applicant: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Patent number: 7875485
    Abstract: Embodiments of MEMS devices comprise a conductive movable layer spaced apart from a conductive fixed layer by a gap, and supported by rigid support structures, or rivets, overlying depressions in the conductive movable layer, or by posts underlying depressions in the conductive movable layer. In certain embodiments, portions of the rivet structures extend through the movable layer and contact underlying layers. In other embodiments, the material used to form the rigid support structures may also be used to passivate otherwise exposed electrical leads in electrical connection with the MEMS devices, protecting the electrical leads from damage or other interference.
    Type: Grant
    Filed: July 27, 2009
    Date of Patent: January 25, 2011
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventors: Teruo Sasagawa, SuryaPrakash Ganti, Mark W. Miles, Clarence Chui, Manish Kothari, Ming-Hau Tung
  • Patent number: 7872792
    Abstract: Improvements in an interferometric modulator that has a cavity defined by two walls.
    Type: Grant
    Filed: January 26, 2007
    Date of Patent: January 18, 2011
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Patent number: 7868847
    Abstract: In one embodiment, a method is provided. The method comprises positioning a plurality of display screens at different positions within a real space, each display screen being associated with a different window into an object space through which a scene comprising objects from the object space can be seen; and displaying scenes from the object space on each of the plurality of display screens, wherein the scene displayed on each screen comprises objects from the object space that can be seen through the window associated with that screen by a hypothetical viewer positioned at a first position relative to the window and for which window the field of view is restricted to be non-overlapping with the field of view for an adjacent window.
    Type: Grant
    Filed: May 24, 2005
    Date of Patent: January 11, 2011
    Inventor: Mark W Miles
  • Publication number: 20110000210
    Abstract: In one embodiment, the invention provides a method for using heat to perform work, comprising: operating a first thermodynamic cycle wherein heat for a first working fluid is provided by combustion of a fuel-based (FB) energy source; operating a second thermodynamic cycle wherein heat for a second working fluid is from a combination of a non-fuel-based (NFB) energy source and waste heat from the first thermodynamic cycle.
    Type: Application
    Filed: July 1, 2009
    Publication date: January 6, 2011
    Inventor: Mark W. Miles
  • Publication number: 20100320555
    Abstract: In one embodiment, the invention provides a method for fabricating a microelectromechanical systems device. The method comprises fabricating a first layer comprising a film having a characteristic electromechanical response, and a characteristic optical response, wherein the characteristic optical response is desirable and the characteristic electromechanical response is undesirable; and modifying the characteristic electromechanical response of the first layer by at least reducing charge build up thereon during activation of the microelectromechanical systems device.
    Type: Application
    Filed: August 23, 2010
    Publication date: December 23, 2010
    Applicant: QUALCOMM MEMS Technolgies, Inc.
    Inventors: Mark W. Miles, John Batey, Clarence Chui, Manish Kothari, Ming-Hau Tung
  • Publication number: 20100315695
    Abstract: Light in the visible spectrum is modulated using an array of modulation elements, and control circuitry connected to the array for controlling each of the modulation elements independently, each of the modulation elements having a surface which is caused to exhibit a predetermined impedance characteristic to particular frequencies of light. The amplitude of light delivered by each of the modulation elements is controlled independently by pulse code modulation. Each modulation element has a deformable portion held under tensile stress, and the control circuitry controls the deformation of the deformable portion. Each deformable element has a deformation mechanism and an optical portion, the deformation mechanism and the optical portion independently imparting to the element respectively a controlled deformation characteristic and a controlled modulation characteristic. The deformable modulation element may be a non-metal.
    Type: Application
    Filed: October 13, 2006
    Publication date: December 16, 2010
    Inventor: Mark W. Miles
  • Patent number: 7852545
    Abstract: Improvements in an interferometric modulator that has a cavity defined by two walls.
    Type: Grant
    Filed: August 20, 2007
    Date of Patent: December 14, 2010
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventor: Mark W. Miles
  • Patent number: 7852544
    Abstract: A separable modulator architecture is disclosed. The modulator has a mirror suspended from a flexible layer over a cavity. The flexible layer also forms supports and support posts for the mirror. An alternative separable modulator architecture has a mirror suspended over a cavity. The modulator is supported by supports and support posts. The support posts comprise a flexible layer over support post plugs. A bus structure may be formed upon the flexible layer arranged over the support posts.
    Type: Grant
    Filed: March 1, 2010
    Date of Patent: December 14, 2010
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventors: Jeffrey Brian Sampsell, Mark W. Miles, Clarence Chui, Manish Kothari
  • Patent number: RE42119
    Abstract: One aspect of the invention provides a method for fabricating a microelectromechanical systems device. The method comprises fabricating an array of first elements, each first element conforming to a first geometry; fabricating at least one array of second elements, each second element conforming to a second geometry; wherein fabricating the arrays comprises selecting a defining aspect of each of the first and second geometries based on a defining characteristic of each of the first and second elements; and normalizing differences in an actuation voltage required to actuate each of the first and second elements, wherein the differences are as a result of the selected defining aspect, the defining characteristic of each of the elements being unchanged.
    Type: Grant
    Filed: June 2, 2005
    Date of Patent: February 8, 2011
    Assignee: QUALCOMM MEMS Technologies, Inc.
    Inventors: Clarence Chui, Mark W. Miles