Patents by Inventor Shih-Chang Chang

Shih-Chang Chang 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).

  • Publication number: 20160351107
    Abstract: A display may have an array of pixels. The array of pixels may have a shape such as a circular shape or other shape with a curved edge. Display driver circuitry may supply data signals to the pixels using folded vertical data lines and bisected horizontal gate lines. Each folded vertical lines may have a first segment in a left half of the array and a second segment in a right half of the display. Curved coupling segments in an inactive area of the display may be used in joining the first and second segments. Display driver circuits may be provided in top and bottom portions of the inactive area to supply data to respective top and bottom portions of the array. Gate driver output buffers may have different strengths in different rows of the array.
    Type: Application
    Filed: January 7, 2016
    Publication date: December 1, 2016
    Inventors: Yu Cheng Chen, Tsung-Ting Tsai, Shih Chang Chang
  • Publication number: 20160334658
    Abstract: A display has an array of pixels controlled by display driver circuitry. Gate driver circuitry supplies gate line signals to rows of the pixels. The pixels may be liquid crystal display pixels. Each pixel may have a common electrode voltage terminal. The display may have a transparent conductive film that forms a common electrode voltage layer that overlaps that array and that is shorted to the common electrode voltage terminals of the pixels. Metal common electrode voltage lines may run across the transparent conductive film to reduce resistance. Metal common electrode voltage paths that are coupled to the metal common electrode voltage lines may run along the left and right edge of the display. Common electrode voltage compensation circuits may receive feedback from the metal common electrode voltage paths. There may be two or more common electrode voltage compensation circuits for both the left and right edges of the display.
    Type: Application
    Filed: May 14, 2015
    Publication date: November 17, 2016
    Inventors: Young-Jik Jo, Chun-Yao Huang, Hao-Lin Chiu, Kwang Soon Park, Shih Chang Chang
  • Patent number: 9494818
    Abstract: A display may have a liquid crystal layer sandwiched between a thin-film transistor layer and a color filter layer. An upper polarizer may be placed on top of the thin-film transistor layer. A lower polarizer may be placed under the color filter layer. Components may be bonded to bond pads on the inner surface of the thin-film transistor layer using anisotropic conductive film. Bond quality may be assessed by probing probe pads that are coupled to the bond pads or by visually inspecting the bond pads through the thin-film transistor layer. Opaque masking material in the inactive area may be provided with openings to accommodate the bond pads. Additional opaque masking material may be placed on the underside of the upper polarizer and on the upper surface of the thin-film transistor layer to block the openings from view following visual inspection.
    Type: Grant
    Filed: October 13, 2014
    Date of Patent: November 15, 2016
    Assignee: Apple Inc.
    Inventors: Kwang Soon Park, Byung Duk Yang, Christopher L. Boitnott, Chun-Yao Huang, Kuan-Ying Lin, Kyung-Wook Kim, Mohd Fadzli A. Hassan, Shih Chang Chang, Supriya Goyal, Yong Kwan Kim, Yu-Cheng Chen
  • Patent number: 9491852
    Abstract: The border routing of conductive traces in devices, such as displays, touch sensor panels, and touch screens, to improve border area space usage, thereby reducing device size, and to reduce trace resistance, thereby improving device operation, is disclosed. The conductive traces can form a staggered stair-step configuration in the device border area, in which the average widths of the traces can be different from each other and each trace can have segments with different widths. The conductive traces can be coupled to an active area of the device to transmit signals to and from the active area in accordance with a device operation. The varying widths can help improve the border area space usage, reduce trace resistance, and reduce the differences in resistance between traces.
    Type: Grant
    Filed: January 14, 2011
    Date of Patent: November 8, 2016
    Assignee: Apple Inc.
    Inventors: Benjamin B. Lyon, Shih Chang Chang, Martin Paul Grunthaner
  • Publication number: 20160306468
    Abstract: Displays such as organic light-emitting diode displays may be provided with touch sensing capabilities. A touch sensor may be formed from electrodes located on a thin-film encapsulation layer or one or more sides of a polarizer. A single-sided or double-sided touch sensor panel may be attached to the upper or lower surface of a polarizer. Control circuitry may be used to provide control signals to light-emitting diodes in the display using a grid of control lines. The control lines and transparent electrode structures such as indium tin oxide structures formed on a thin-film encapsulation layer or polarizer may be used as electrodes for a touch sensor. Displays may have active regions and inactive peripheral portions. The displays may have edge portions that are bent along a bend axis that is within the active region to form a borderless display. Virtual buttons may be formed on the bent edge portions.
    Type: Application
    Filed: June 28, 2016
    Publication date: October 20, 2016
    Inventors: Wei Chen, Steven P. Hotelling, John Z. Zhong, Shih-Chang Chang, Stephen S. Poon
  • Publication number: 20160307988
    Abstract: An electronic device may include a display having an array of display pixels on a substrate. The display pixels may be organic light-emitting diode display pixels or display pixels in a liquid crystal display. In an organic light-emitting diode display, hybrid thin-film transistor structures may be formed that include semiconducting oxide thin-film transistors, silicon thin-film transistors, and capacitor structures. The capacitor structures may overlap the semiconducting oxide thin-film transistors. The silicon transistors may be configured in a top gate arrangement. The oxide transistors may be configured in a top gate or a bottom gate arrangement. In one embodiment, source-drain contacts for the silicon and oxide transistors may be formed simultaneously. In another embodiment, the silicon and oxide thin-film transistor structures may be formed using at least three metal routing layers.
    Type: Application
    Filed: September 15, 2015
    Publication date: October 20, 2016
    Inventors: Jungbae Kim, Kyung Wook Kim, MinKyu Kim, Shih Chang Chang, Young Bae Park, Jae Won Choi
  • Patent number: 9472605
    Abstract: An organic light-emitting diode display may have an array of pixels. Each pixel may have an organic light-emitting diode with an anode and cathode. The anodes may be formed from a patterned layer of metal. Thin-film transistor circuitry in the pixels may include transistors such as drive transistors and switching transistors. Data lines may supply data signals to the pixels and horizontal control lines may supply control signals to the gates of the transistors. A switching transistor may be coupled between a voltage initialization line and each anode. The voltage initialization lines and capacitor structures in the thin-film transistor circuitry may be formed using a layer of metal that is different than the layer of metal that forms the anodes.
    Type: Grant
    Filed: November 17, 2014
    Date of Patent: October 18, 2016
    Assignee: Apple Inc.
    Inventors: Chin-Wei Lin, Jae Won Choi, MinKyu Kim, Shih Chang Chang, Tsung-Ting Tsai, Vasudha Gupta, Young Bae Park
  • Patent number: 9470941
    Abstract: Methods and devices employing in-cell and/or on-cell touch sensor components, including in-cell and/or on-cell black matrix material that also may serve as a touch drive or sense electrode, are provided. In one example, an electronic display may include a lower substrate, an upper substrate, and a black matrix material that shields light between pixels of the electronic display. At least a portion of the black matrix material may form all or part of a component of a touch sensor of the electronic display.
    Type: Grant
    Filed: August 19, 2011
    Date of Patent: October 18, 2016
    Assignee: APPLE INC.
    Inventors: Youngbae Park, Cheng Chen, Shih Chang Chang, John Z. Zhong
  • Publication number: 20160299372
    Abstract: A display that contains a column spacer arrangement which takes advantage of a protrusion on a TFT substrate is provided. One set of column spacers is disposed on top of the protrusion, while a second set of column spacers of substantially the same height as the first set of column spacers are disposed throughout the display. In this way, the display is adequately protected against deformation from external forces while at the same maintaining enough room to allow for a liquid crystal to spread out during the manufacturing process.
    Type: Application
    Filed: June 20, 2016
    Publication date: October 13, 2016
    Applicants: Apple Inc., Apple Inc.
    Inventors: Kyung-Wook KIM, Shih-Chang CHANG, Cheng CHEN, Young-Bae PARK, John Z. ZHONG
  • Patent number: 9466018
    Abstract: A display may have an active area surrounded by an inactive border area. The display may be a liquid crystal display having a liquid crystal layer sandwiched between a color filter layer and a thin-film transistor layer. An upper polarizer may have a polarized central region that overlaps the active area of the display. The upper polarizer may also have an unpolarized portion in the inactive border area overlapping the border structures. The border structures may include colored material such as a white layer on the inner surface of the thin-film transistor layer. Binary information may be embedded into an array of programmable resonant circuits. The binary information may be a display identifier or other information associated with a display. The programmable resonant circuits may be tank circuits with adjustable capacitors, fuses, or other programmable components.
    Type: Grant
    Filed: April 29, 2015
    Date of Patent: October 11, 2016
    Assignee: Apple Inc.
    Inventors: Kwang Soon Park, Ming-Chin Hung, Chun-Yao Huang, Shih Chang Chang, Ming-Yuh Hsu
  • Publication number: 20160293643
    Abstract: A display may have an array of pixels controlled by display driver circuitry. The pixels may have pixel circuits. In liquid crystal display configurations, each pixel circuit may have an electrode that applies electric fields to an associated portion of a liquid crystal layer. In organic light-emitting diode displays, each pixel circuit may have a drive transistor that applies current to an organic light-emitting diode in the pixel circuit. The pixel circuits and display driver circuitry may have thin-film transistor circuitry that includes transistor such as silicon transistors and semiconducting-oxide transistors. Semiconducting-oxide transistors and silicon transistors may be formed on a common substrate. Semiconducting-oxide transistors may have polysilicon layers with doped regions that serve as gates. Semiconducting-oxide channel regions overlap the gates.
    Type: Application
    Filed: April 3, 2015
    Publication date: October 6, 2016
    Inventors: Jungbae Kim, Kyung-Wook Kim, Shih Chang Chang, Ting-Kuo Chang, Ton-Yong Wang
  • Publication number: 20160293081
    Abstract: A display may have an array of pixels controlled by display driver circuitry. Gate driver circuitry supplies gate line signals to rows of the pixels. The gate driver circuitry may include blocks of gate driver circuits each having an output coupled to a respective one of the gate lines. The gate driver circuits of each block are coupled in a chain to form a shift register. Each block has a local block-level gate start pulse generator. The display driver circuitry has a display driver circuit that supplies a gate start pulse clock to each of the local block-level gate start pulse generators. The local block-level gate start pulse generators create gate start pulses that are applied to the first gate driver circuit in each shift register. The display driver circuit may delay the gate start pulse clock when it is desired to implement an intraframe pause.
    Type: Application
    Filed: April 2, 2015
    Publication date: October 6, 2016
    Inventors: Rungrot Kitsomboonloha, Chun-Yao Huang, Shih Chang Chang, Szu-Hsien Lee
  • Publication number: 20160282997
    Abstract: A touch screen. In some examples, the touch screen can comprise a first element coupled to a first sense connection, and a second element coupled to a second sense connection. In some examples, the first and second sense connections can be configured such that a load presented by the first sense connection and the first element is substantially equal to a load presented by the second sense connection and the second element. In some examples, the first and second sense connections can comprise detour routing configured such that a resistance of the first sense connection is substantially equal to a resistance of the second sense connection. In some examples, the first and second sense connections can be coupled to dummy routing configured such that a first capacitance presented by the first sense connection is substantially equal to a second capacitance presented by the second sense connection.
    Type: Application
    Filed: June 10, 2016
    Publication date: September 29, 2016
    Inventors: Szu-Hsien LEE, Byung Duk YANG, Chun-Yao HUANG, Kyung-Wook KIM, Shih-Chang CHANG
  • Patent number: 9454025
    Abstract: An electronic device display may have a color filter layer, a thin-film-transistor layer, and a layer of liquid crystal material. The display may have a display cover layer such as a layer of glass or plastic. Adhesive may be used to attach the upper polarizer to the display cover layer. The thin-film transistor layer may have a substrate with upper and lower surfaces. Thin-film-transistor circuitry may be formed on the upper surface. A display driver integrated circuit may be mounted to the lower surface or a flexible printed circuit and may be coupled to the thin-film-transistor circuitry using wire bonding wires. Through vias that are formed through the thin-film-transistor layer substrate may be used in coupling the thin-film-transistor circuitry to the display driver integrated circuit.
    Type: Grant
    Filed: August 31, 2012
    Date of Patent: September 27, 2016
    Assignee: Apple Inc.
    Inventors: John Z. Zhong, Cheng Chen, Shih-Chang Chang, Victor H. Yin, Shawn R. Gettemy, Wei Chen
  • Publication number: 20160275845
    Abstract: A display may have an array of pixels arranged in rows and columns. Display driver circuitry may load data into the pixels via data lines that extend along the columns. The display driver circuitry may include gate driver circuitry that supplies horizontal control signals to rows of the pixels. The horizontal control signals may include emission enable signals for controlling emission enable transistors and scan signals for controlling switching transistors. During an emission phase of operation for the display, the emission enable signal may be pulse-width modulated by the emission control gate driver circuits in the gate driver circuitry to control the output of the light-emitting diodes. The emission control gate driver circuits may be controlled using an emission start signal and a pair of two-phase clocks.
    Type: Application
    Filed: April 15, 2015
    Publication date: September 22, 2016
    Inventors: Tsung-Ting Tsai, Chin-Wei Lin, Shih Chang Chang
  • Publication number: 20160266693
    Abstract: Improvement of visual uniformity of an integrated touch screen display is provided. A touch screen can include common electrodes separated by gaps in a Vcom layer. To improve visual non-uniformity in the display resulting from the gaps, a first set of semi-transparent dummy features (primary-dummy features) can be formed on a second layer at the locations of the gaps, and a second set of dummy features (supplementary-dummy features) can also be formed on the second layer or another layer to mitigate low spatial resolution of the primary-dummy features and/or non-uniform spacing of the primary-dummy features. In some examples, holes or slits can be formed in the Vcom layer at areas of the supplementary-dummy features to further improve visual uniformity.
    Type: Application
    Filed: March 9, 2016
    Publication date: September 15, 2016
    Inventors: Yu Cheng CHEN, Abbas JAMSHIDI-ROUDBARI, Hiroshi OSAWA, Shang-Chih LIN, Shih-Chang CHANG, Shin-Hung YEH, Ting-Kuo CHANG, Majid GHARGHI, Keitaro YAMASHITA
  • Publication number: 20160254338
    Abstract: A display may have an array of organic light-emitting diode display pixels. Each display pixel may have a light-emitting diode that emits light under control of a drive transistor. Each display pixel may also have control transistors for compensating and programming operations. The array of display pixels may have rows and columns. Row lines may be used to apply row control signals to rows of the display pixels. Column lines (data lines) may be used to apply display data and other signals to respective columns of display pixels. A bottom conductive shielding structure may be formed below each drive transistor. The bottom conductive shielding structure may serve to shield the drive transistor from any electric field generated from the adjacent row and column lines. The bottom conductive shielding structure may be electrically floating or coupled to a power supply line.
    Type: Application
    Filed: May 9, 2016
    Publication date: September 1, 2016
    Inventors: Chin-Wei Lin, Shih Chang Chang, Ching-Sang Chuang
  • Publication number: 20160253034
    Abstract: A touch screen having touch circuitry integrated into a display pixel stackup. The touch screen can include a transistor layer, an LED layer and a first layer. The first layer can operate as an LED cathode during a display phase and as touch circuitry during a touch sensing phase. The transistor layer can be at least partially utilized for transitioning between the display phase and the touch sensing phase. The touch screen can be fabricated to reduce or eliminate damage to the LED layer.
    Type: Application
    Filed: May 6, 2016
    Publication date: September 1, 2016
    Inventors: Vasudha GUPTA, Shih Chang CHANG, Young-Bae PARK, Ting-Kuo CHANG
  • Patent number: 9429803
    Abstract: A display may have a thin-film transistor (TFT) layer and a color filter layer. The TFT layer may have a first substrate, a first black masking layer, a planarization layer, and a layer of TFT circuitry on the planarization layer. The color filter layer may have a second substrate and a second black masking layer on the second substrate. A portion of the inactive area may serve as a logo area for displaying desired information to the user. A reflective structure may be formed on the bottom surface of the planarization layer, on the bottom surface of the first substrate, on the bottom surface of the second substrate, or on the upper surface of the first substrate in the logo area. In another embodiment, the logo area may be backlit by transmitting light through one or more openings in the first and second black masking layers in the logo area.
    Type: Grant
    Filed: November 20, 2014
    Date of Patent: August 30, 2016
    Assignee: Apple Inc.
    Inventors: Kwang Soon Park, Byung Duk Yang, Robin Huang, Shih Chang Chang
  • Patent number: 9424793
    Abstract: A touch screen display may include gate line driver circuitry coupled to a display pixel array. The display may be provided with intra-frame pausing (IFP) capabilities, where touch or other operations may be performed during one or more intra-frame blanking intervals. In one suitable arrangement, a gate driver circuit may include multiple gate line driver segments each of which is activated by a separate gate start pulse. Each gate start pulse may only be released at the end of an IFP interval. In another suitable arrangement, dummy gate driver units may be interposed among active gate driver units. Gate output signals may propagate through the dummy gate driver units during the IFP internal. In another suitable arrangement, each active gate driver unit may be provided with a buffer portion that protects at least some transistor in the gate driver unit from undesired stress.
    Type: Grant
    Filed: May 29, 2015
    Date of Patent: August 23, 2016
    Assignee: Apple Inc.
    Inventors: Rungrot Kitsomboonloha, Kwang Soon Park, Chin-Wei Lin, Chun-Yao Huang, Shih Chang Chang, Szu-Hsien Lee