Patents by Inventor Hsiang-yun Hsiao

Hsiang-yun Hsiao 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: 11245295
    Abstract: A rotor is provided. The rotor includes a main body, a plurality of magnets and a plurality of magnet-receiving slots. The plurality of magnet-receiving slots are disposed on the main body and disposed around a central axis. Each two adjacent magnet-receiving slots are symmetrical to each other. Each magnet-receiving slot includes a slot body and a first flux barrier connected with each other. Each magnet is contained in the corresponding slot body. Each first flux barriers includes a respective arc-cutting start point. A minimum arc-cutting distance is formed between the two respective arc-cutting start points. Each of the two respective arc-cutting start points is extended toward the central axis along an arc with a first arc length radius to define a first arc-cutting end point. The first arc length radius is greater than or equal to 0.2 times of the minimum arc-cutting distance.
    Type: Grant
    Filed: August 3, 2020
    Date of Patent: February 8, 2022
    Assignee: DELTA ELECTRONICS, INC.
    Inventors: Yu-Hsiang Liu, Ta-Chien Yeh, Hsiang-Yun Hsiao, Chia-Hsiang Yang
  • Patent number: 11201512
    Abstract: A rotor assembly for a motor is disclosed. The motor has a minimum air gap width value. The rotor assembly includes magnets, a main-body portion, magnet-receiving slots and arc-trimming portions. Each of the magnet-receiving slots is disposed around a central axis of the main-body portion and locates through the main-body portion for accommodating the corresponding magnet therein. The magnet-receiving slot has a slot width value. The arc-trimming portions spatially correspond to the magnet-receiving slots. Each of the arc-trimming portions and a geometric symmetry center of the corresponding magnet-receiving slot together form an arc-trimming depth value. The arc-trimming depth value is greater than a sum value of a rate constant multiplied by the slot width value and then subtracted 2 times of the minimum air gap width value, and is less than the sum value of the rate constant multiplied by the slot width value and then plus 2 times of the minimum air gap width value.
    Type: Grant
    Filed: November 27, 2019
    Date of Patent: December 14, 2021
    Assignee: DELTA ELECTRONICS, INC.
    Inventors: Chien-Chung Shih, Hsiang-Chun Chen, Hsiang-Yun Hsiao, Chia-Hsiang Yang
  • Publication number: 20210296949
    Abstract: A rotor is provided. The rotor includes a main body, a plurality of magnets and a plurality of magnet-receiving slots. The plurality of magnet-receiving slots are disposed on the main body and disposed around a central axis. Each two adjacent magnet-receiving slots are symmetrical to each other. Each magnet-receiving slot includes a slot body and a first flux barrier connected with each other. Each magnet is contained in the corresponding slot body. Each first flux barriers includes a respective arc-cutting start point. A minimum arc-cutting distance is formed between the two respective arc-cutting start points. Each of the two respective arc-cutting start points is extended toward the central axis along an arc with a first arc length radius to define a first arc-cutting end point. The first arc length radius is greater than or equal to 0.2 times of the minimum arc-cutting distance.
    Type: Application
    Filed: August 3, 2020
    Publication date: September 23, 2021
    Inventors: Yu-Hsiang Liu, Ta-Chien Yeh, Hsiang-Yun Hsiao, Chia-Hsiang Yang
  • Publication number: 20210028661
    Abstract: A rotor assembly for a motor is disclosed. The motor has a minimum air gap width value. The rotor assembly includes magnets, a main-body portion, magnet-receiving slots and arc-trimming portions. Each of the magnet-receiving slots is disposed around a central axis of the main-body portion and locates through the main-body portion for accommodating the corresponding magnet therein. The magnet-receiving slot has a slot width value. The arc-trimming portions spatially correspond to the magnet-receiving slots. Each of the arc-trimming portions and a geometric symmetry center of the corresponding magnet-receiving slot together form an arc-trimming depth value. The arc-trimming depth value is greater than a sum value of a rate constant multiplied by the slot width value and then subtracted 2 times of the minimum air gap width value, and is less than the sum value of the rate constant multiplied by the slot width value and then plus 2 times of the minimum air gap width value.
    Type: Application
    Filed: November 27, 2019
    Publication date: January 28, 2021
    Inventors: Chien-Chung Shih, Hsiang-Chun Chen, Hsiang-Yun Hsiao, Chia-Hsiang Yang
  • Patent number: 10263019
    Abstract: A flexible panel includes a substrate, a first insulating layer, a second insulating layer, a sacrificial layer, and a metal wiring layer. The substrate has an active area, a peripheral area, and an intermediate area. The first insulating layer is in the three areas of the substrate, and the first insulating layer in the intermediate area has a first pattern. The second insulating layer is on the first insulating layer. The second insulating layer in the intermediate area has a first opening extending along a first direction, so that the second insulating layer does not cover the first pattern of the first insulating layer. The sacrificial layer is between the first insulating layer and the second insulating layer in the intermediate area, and does not cover the first pattern of the first insulating layer. The metal wiring layer extends between the active area and the peripheral area.
    Type: Grant
    Filed: April 19, 2018
    Date of Patent: April 16, 2019
    Assignee: AU OPTRONICS CORPORATION
    Inventors: Pei-Yun Wang, Cheng-Wei Jiang, Ting-Yu Hsu, Ya-Qin Huang, Hsiang-Yun Hsiao, Chia-Kai Chen
  • Publication number: 20180308877
    Abstract: A flexible panel includes a substrate, a first insulating layer, a second insulating layer, a sacrificial layer, and a metal wiring layer. The substrate has an active area, a peripheral area, and an intermediate area. The first insulating layer is in the three areas of the substrate, and the first insulating layer in the intermediate area has a first pattern. The second insulating layer is on the first insulating layer. The second insulating layer in the intermediate area has a first opening extending along a first direction, so that the second insulating layer does not cover the first pattern of the first insulating layer. The sacrificial layer is between the first insulating layer and the second insulating layer in the intermediate area, and does not cover the first pattern of the first insulating layer. The metal wiring layer extends between the active area and the peripheral area.
    Type: Application
    Filed: April 19, 2018
    Publication date: October 25, 2018
    Inventors: Pei-Yun WANG, Cheng-Wei JIANG, Ting-Yu HSU, Ya-Qin HUANG, Hsiang-Yun HSIAO, Chia-Kai CHEN
  • Publication number: 20180158847
    Abstract: A light emitting diode (LED) display includes a substrate, a pixel define layer, at least one first color micro LED, and at least one second color micro LED. The pixel define layer is disposed on the substrate and has a first opening and a second opening separated from each other. Contours of the first and second openings on a surface of the pixel define layer facing away from the substrate respectively define areas which are the same as each other. The first color micro LED is disposed in the first opening and has a first vertical projection projected on the substrate. The second color micro LED is disposed in the second opening and has a second vertical projection projected on the substrate. An area of the first vertical projection is different from an area of the second vertical projection.
    Type: Application
    Filed: January 30, 2018
    Publication date: June 7, 2018
    Inventors: Cheng-Chieh CHANG, Tsung-Tien WU, Kang-Hung LIU, Hsiang-Yun HSIAO
  • Patent number: 9891501
    Abstract: A method of fabricating a polycrystalline silicon thin film transistor device includes the following steps. A substrate is provided, and a buffer layer having dopants is formed on the substrate. An amorphous silicon layer is formed on the buffer layer having the dopants. A thermal process is performed to convert the amorphous silicon layer into a polycrystalline silicon layer by means of polycrystalization, and to simultaneously out-diffuse a portion of the dopants in the buffer layer into the polycrystalline silicon layer for adjusting a threshold voltage. The polycrystalline silicon layer is patterned to form an active layer. A gate insulating layer is formed on the active layer. A gate electrode is formed on the gate insulating layer. A source doped region and a drain doped region are formed in the active layer.
    Type: Grant
    Filed: September 14, 2016
    Date of Patent: February 13, 2018
    Assignee: AU OPTRONICS CORPORATION
    Inventors: Hsiang-Yun Hsiao, Chia-Kai Chen, Shih-Liang Lin, Ting-Yu Hsu, Pei-Yun Wang, Ya-Qin Huang, Cheng-Wei Jiang
  • Publication number: 20170084457
    Abstract: A method of fabricating a polycrystalline silicon thin film transistor device includes the following steps. A substrate is provided, and a buffer layer having dopants is formed on the substrate. An amorphous silicon layer is formed on the buffer layer having the dopants. A thermal process is performed to convert the amorphous silicon layer into a polycrystalline silicon layer by means of polycrystalization, and to simultaneously out-diffuse a portion of the dopants in the buffer layer into the polycrystalline silicon layer for adjusting a threshold voltage. The polycrystalline silicon layer is patterned to form an active layer. A gate insulating layer is formed on the active layer. A gate electrode is formed on the gate insulating layer. A source doped region and a drain doped region are formed in the active layer.
    Type: Application
    Filed: September 14, 2016
    Publication date: March 23, 2017
    Inventors: Hsiang-Yun HSIAO, Chia-Kai CHEN, Shih-Liang LIN, Ting-Yu HSU, Pei-Yun WANG, Ya-Qin HUANG, Cheng-Wei JIANG
  • Publication number: 20160372514
    Abstract: An LED display is provided in considering of both the human eye perception and inconsistent luminous efficiencies of LEDs in a red, blue, and green sub-pixels. A total area of a light-exiting surface of a red micro LED is larger than a total area of a light-exiting surface of a green micro LED so as to improve the problem that the sub-pixels of different colors have inconsistent luminous efficiencies.
    Type: Application
    Filed: May 19, 2016
    Publication date: December 22, 2016
    Inventors: Cheng-Chieh CHANG, Tsung-Tien WU, Kang-Hung LIU, Hsiang-Yun HSIAO
  • Patent number: 8048692
    Abstract: An LED light emitter with heat sink holder and a method for manufacturing it are both disclosed. The LED light emitter with heat sink holder includes a heat sink holder and at least an LED chip. The heat sink holder is made of high thermal conductivity coefficient, and includes a reflecting mirror having a central portion and a reflecting portion surrounding the central portion. A normal of a top surface of the reflecting portion forms an acute angle relative to a normal of a top surface of the central portion. The LED chip is unitarily connected with a top surface of the central portion, and an electrode unit connecting with and Ohmic contacting the light emitting film for supplying power for the light emitting film. The LED light emitter with heat sink holder improves heat dissipation and working duration.
    Type: Grant
    Filed: January 25, 2008
    Date of Patent: November 1, 2011
    Assignee: Liung Feng Industrial Co., Ltd.
    Inventors: Ray-hua Horng, Dong-sing Wuu, Cheng-chung Chiang, Hsiang-yun Hsiao, Tsang-lin Hsu, Heng-I Lin
  • Publication number: 20090114934
    Abstract: An LED light emitter with heat sink holder and a method for manufacturing it are both disclosed. The LED light emitter with heat sink holder includes a heat sink holder and at least an LED chip. The heat sink holder is made of high thermal conductivity coefficient, and includes a reflecting mirror having a central portion and a reflecting portion surrounding the central portion. A normal of a top surface of the reflecting portion forms an acute angle relative to a normal of a top surface of the central portion. The LED chip is unitarily connected with a top surface of the central portion, and an electrode unit connecting with and Ohmic contacting the light emitting film for supplying power for the light emitting film. The LED light emitter with heat sink holder improves heat dissipation and working duration.
    Type: Application
    Filed: January 25, 2008
    Publication date: May 7, 2009
    Inventors: Ray-Hua Horng, Dong-Sing Wuu, Cheng-Chung Chiang, Hsiang-Yun Hsiao, Tsang-Lin Hsu, Heng-I Lin