Patents by Inventor Nai-Hsiang Sun

Nai-Hsiang Sun 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: 9831358
    Abstract: A photoelectric conversion device including a photoelectric converter, a transparent cover, an insulating material layer and a photonic crystal layer is provided. The photoelectric converter is adapted to receive a light. The transparent cover is disposed on a side of the photoelectric converter. The insulating material layer is disposed between the photoelectric converter and the transparent cover. The photonic crystal layer is disposed between the insulating material layer and the transparent cover, wherein the material of the photonic crystal layer is different from the material of the insulating material layer.
    Type: Grant
    Filed: September 14, 2015
    Date of Patent: November 28, 2017
    Assignee: I-SHOU UNIVERSITY
    Inventors: Jung-Sheng Chiang, Nai-Hsiang Sun
  • Publication number: 20160336462
    Abstract: A photoelectric conversion device including a photoelectric converter, a transparent cover, an insulating material layer and a photonic crystal layer is provided. The photoelectric converter is adapted to receive a light. The transparent cover is disposed on a side of the photoelectric converter. The insulating material layer is disposed between the photoelectric converter and the transparent cover. The photonic crystal layer is disposed between the insulating material layer and the transparent cover, wherein the material of the photonic crystal layer is different from the material of the insulating material layer.
    Type: Application
    Filed: September 14, 2015
    Publication date: November 17, 2016
    Inventors: Jung-Sheng Chiang, Nai-Hsiang Sun
  • Publication number: 20160334333
    Abstract: A sensing fiber adapted to transmit a sensing light along a path and sense an object is provided. The fiber includes a core, a plurality of photonic crystal structures surrounding the core, a sensing surface and a metal sensing layer. The core is located at the center of the fiber. The photonic crystal structures extend along the path. The sensing surface extends along part of the path and adjacent to the core, and the metal sensing layer having a plurality of metal grating structure is disposed on the sensing surface. When the fiber is sensing the object, the metal sensing layer is located between the sensing surface and the object, and part of the sensing light will be converted into a signal light by the object on the metal sensor layer. A sensing device is also provided.
    Type: Application
    Filed: September 2, 2015
    Publication date: November 17, 2016
    Inventors: Jung-Sheng Chiang, Nai-Hsiang Sun, Wen-Fung Liu, Shih-Chiang Lin
  • Publication number: 20150358081
    Abstract: An optical fiber communication method includes the steps of: providing an optical fiber that includes a core, and a second-order Bragg grating structure formed on the core; and emitting a data-carrying optical signal to an outer peripheral surface of the optical fiber that corresponds to the second-order Bragg grating structure in a radial direction of the optical fiber, so that the data-carrying optical signal is coupled into the core of the optical fiber via the second-order Bragg grating structure for transmission therein.
    Type: Application
    Filed: June 5, 2014
    Publication date: December 10, 2015
    Inventors: Nai-Hsiang SUN, Chia-Ming HU, Jung-Sheng CHIANG, Wen-Fung LIU, Gary A. EVANS, Jerome K. BUTLER
  • Patent number: 8903245
    Abstract: A method of generating an optical radiation signal is to be implemented by an optical radiation signal generating device including a dual beam generating unit for receiving an original optical input signal, and a second-order fiber Bragg grating (FBG). The dual-beam generating unit is configured to generate, from the original optical input signal, first and second optical input signals having a phase difference therebetween. The second-order FBG is configured to receive the first and second optical input signals, and to radiate an optical radiation signal by interference between the first and second optical input signals.
    Type: Grant
    Filed: April 30, 2012
    Date of Patent: December 2, 2014
    Assignee: I-Shou University
    Inventors: Nai-Hsiang Sun, Jung-Sheng Chiang, Wen-Fung Liu, Shih-Chiang Lin, Gary A. Evans, Jerome K. Butler
  • Publication number: 20130287408
    Abstract: A method of generating an optical radiation signal is to be implemented by an optical radiation signal generating device including a dual beam generating unit for receiving an original optical input signal, and a second-order fiber Bragg grating (FBG). The dual-beam generating unit is configured to generate, from the original optical input signal, first and second optical input signals having a phase difference therebetween. The second-order FBG is configured to receive the first and second optical input signals, and to radiate an optical radiation signal by interference between the first and second optical input signals.
    Type: Application
    Filed: April 30, 2012
    Publication date: October 31, 2013
    Applicant: I SHOU UNIVERSITY
    Inventors: Nai-Hsiang Sun, Jung-Sheng Chiang, Wen-Fung Liu, Shih-Chiang Lin, Gary A. Evans, Jerome K. Butler
  • Patent number: 8428467
    Abstract: An optical fiber communication method for communication between a transmitting terminal and a receiving terminal includes the steps of: providing an optical fiber to be coupled to the transmitting terminal and including a core that is provided with at least one second-order Bragg grating structure and a cladding that surrounds the core; configuring the transmitting terminal to output a data-carrying optical signal to one end of the core of the optical fiber for subsequent wireless transmission of the data-carrying optical signal via radiation through the second-order Bragg grating structure of the optical fiber; and configuring the receiving terminal to receive the signal radiated by the second-order Bragg grating structure of the optical fiber. A transmitting device is also disclosed.
    Type: Grant
    Filed: June 14, 2010
    Date of Patent: April 23, 2013
    Assignee: I Shou University
    Inventors: Nai-Hsiang Sun, Shih-Chiang Lin, Wen-Fung Liu, Jiun-Jie Liau
  • Patent number: 8384977
    Abstract: A light extracting device includes a dual light generating unit and a first order Bragg grating unit. The dual light generating unit is for receiving an input optical signal and a control signal, and for generating from the input optical signal first and second optical signals that have a phase difference there between. The phase difference is associated with the control signal. The first order Bragg grating unit is for receiving the first and second optical signals from the dual light generating unit, and for causing optical interference to occur between the first and second optical signals within a predetermined wavelength range to result in first and second output optical signals.
    Type: Grant
    Filed: January 31, 2011
    Date of Patent: February 26, 2013
    Assignee: I Shou University
    Inventors: Nai-Hsiang Sun, Shih-Chiang Lin, Jung-Sheng Chiang, Wen-Fung Liu, Gary A. Evans, Jerome K. Butler
  • Patent number: 8358460
    Abstract: A QPM waveguide includes an optical substrate having periodic domain-inverted regions and non-inverted regions which are arranged alternately, and a waveguide part passing through the domain-inverted regions and non-inverted regions. The substrate is divided into at least two sections each of which has a wave input facet and a wave output facet. At least one band-pass filter layer is disposed on the wave input facet of one section to filter out a signal wave for preventing back conversion so that the energy of the conversion wave can increase. A method for preventing the back conversion is also disclosed.
    Type: Grant
    Filed: April 13, 2010
    Date of Patent: January 22, 2013
    Assignee: I Shou University
    Inventors: Shih-Chiang Lin, Nai-Hsiang Sun, Po-Jui Chiang
  • Publication number: 20120194892
    Abstract: A light extracting device includes a dual light generating unit and a first order Bragg grating unit. The dual light generating unit is for receiving an input optical signal and a control signal, and for generating from the input optical signal first and second optical signals that have a phase difference there between. The phase difference is associated with the control signal. The first order Bragg grating unit is for receiving the first and second optical signals from the dual light generating unit, and for causing optical interference to occur between the first and second optical signals within a predetermined wavelength range to result in first and second output optical signals.
    Type: Application
    Filed: January 31, 2011
    Publication date: August 2, 2012
    Applicant: I SHOU UNIVERSITY
    Inventors: Nai-Hsiang Sun, Shih-Chiang Lin, Jung-Sheng Chiang, Wen-Fung Liu, Gary A. Evans, Jerome K. Butler
  • Publication number: 20110249317
    Abstract: A QPM waveguide includes an optical substrate having periodic domain-inverted regions and non-inverted regions which are arranged alternately, and a waveguide part passing through the domain-inverted regions and non-inverted regions. The substrate is divided into at least two sections each of which has a wave input facet and a wave output facet. At least one band-pass filter layer is disposed on the wave input facet of one section to filter out a signal wave for preventing back conversion so that the energy of the conversion wave can increase. A method for preventing the back conversion is also disclosed.
    Type: Application
    Filed: April 13, 2010
    Publication date: October 13, 2011
    Applicant: I SHOU UNIVERSITY
    Inventors: Shih-Chiang Lin, Nai-Hsiang Sun, Po-Jui Chiang
  • Publication number: 20110135313
    Abstract: An optical fiber communication method for communication between a transmitting terminal and a receiving terminal includes the steps of: providing an optical fiber to be coupled to the transmitting terminal and including a core that is provided with at least one second-order Bragg grating structure and a cladding that surrounds the core; configuring the transmitting terminal to output a data-carrying optical signal to one end of the core of the optical fiber for subsequent wireless transmission of the data-carrying optical signal via radiation through the second-order Bragg grating structure of the optical fiber; and configuring the receiving terminal to receive the signal radiated by the second-order Bragg grating structure of the optical fiber. A transmitting device is also disclosed.
    Type: Application
    Filed: June 14, 2010
    Publication date: June 9, 2011
    Applicant: I SHOU UNIVERSITY
    Inventors: Nai-Hsiang Sun, Shih-Chiang Lin, Wen-Fung Liu, Jiun-Jie Liau
  • Patent number: 7693371
    Abstract: A chirp optical waveguide includes a chirp grating formed in a ferroelectric substrate, and a waveguide part orthogonal to the chirp grating. The chirp grating has a plurality of grating segments and has a normalized grating period ?x/?0 that increases exponentially in each grating segment and decreases stepwise from each grating segment to a following one of the grating segments, where ?0 is an initial grating period at the wave propagation distance of zero, and ?x is a grating period at the wave propagation distance of x. The chirp grating provides high wave conversion efficiency for short pulse widths and effectively compensates for a reduction in conversion efficiency due to chromatic dispersion.
    Type: Grant
    Filed: April 15, 2009
    Date of Patent: April 6, 2010
    Assignee: I Shou University
    Inventors: Shih-Chiang Lin, Nai-Hsiang Sun