Patents by Inventor Sheng BAI

Sheng BAI 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: 20160261346
    Abstract: An apparatus comprises an uncooled laser; a splitter coupled to the laser; a first wavelength component coupled to the splitter; a local oscillator (LO) port coupled to the first wavelength component; a modulator coupled to the splitter; a second wavelength component coupled to the modulator; and a signal port coupled to the second wavelength component. A method comprises emitting an input light; splitting the input light into a first local oscillator (LO) optical signal and a first unmodulated optical signal; modulating the first unmodulated optical signal using polarization-multiplexed, high-order modulation to produce a first modulated optical signal; transmitting the first LO optical signal to a first duplex fiber; and transmitting the first modulated optical signal to a second duplex fiber.
    Type: Application
    Filed: February 26, 2016
    Publication date: September 8, 2016
    Inventors: Zhihong Li, Yan Cui, Fei Zhu, Yu Sheng Bai
  • Publication number: 20160261352
    Abstract: A system comprises: a polarization state aligner (PSA) comprising: an input port; a first polarization beam splitter (PBS) coupled to the input port; a first phase shifter (PS) coupled to the first PBS; a first polarization rotator (PR) coupled to the first PBS; a first beam splitter (BS) coupled to the first PS and the first PR; a first output port coupled to the first BS; and a second output port coupled to the first BS.
    Type: Application
    Filed: March 1, 2016
    Publication date: September 8, 2016
    Inventors: Yangjing Wen, Fei Zhu, Yu Sheng Bai
  • Publication number: 20160218811
    Abstract: An apparatus comprising a first electrical driver configured to generate a first binary voltage signal according to first data, a second electrical driver configured to generate a second binary voltage signal according to second data, wherein the first data and the second data are different, and a first optical waveguide arm coupled to the first electrical driver and the second electrical driver, wherein the first optical waveguide arm is configured to shift a first phase of a first optical signal propagating along the first optical waveguide arm according to a first voltage difference between the first binary voltage signal and the second binary voltage signal to produce a first, multi-level phase-shifted optical signal.
    Type: Application
    Filed: January 7, 2016
    Publication date: July 28, 2016
    Inventors: Morgan Chen, Qianfan Xu, Hungyi Lee, Yifan Gu, Liang Gu, Yen Dang, Gong Lei, Yuming Cao, Xiao Shen, Yu Sheng Bai
  • Patent number: 9372315
    Abstract: A BOSA package comprising only one cylindrical TO package comprising a ROSA and a TOSA, and an optical port in optical communication with the ROSA and the TOSA. Also disclosed is a TO package comprising a TOSA for transmitting a first optical signal, a ROSA for receiving a second optical signal, an optical communication window, and a TFF positioned such that the first optical signal transmitted from the TOSA is reflected by the TFF toward the optical communication window and the second optical signal received from the optical communication window passes through the TFF and to the ROSA.
    Type: Grant
    Filed: October 29, 2013
    Date of Patent: June 21, 2016
    Assignee: Futurewei Technologies, Inc.
    Inventors: Rongsheng Miao, Yu Sheng Bai
  • Publication number: 20160062062
    Abstract: A photonic device comprising a base plate, a photonic laser coupled to the base plate, wherein the photonic laser is configured to generate a light, a lens coupled to the base plate, wherein the lens is configured to receive the light from the photonic laser, form a focused light, and pass the focused light to a reflector, and the reflector incorporated with the base plate such that the lens is positioned between the photonic laser and the reflector, wherein the reflector is configured to receive the focused light, and wherein the reflector is configured to steer a first portion of the focused light through the base plate using total internal reflection.
    Type: Application
    Filed: November 11, 2015
    Publication date: March 3, 2016
    Inventors: Rongsheng Miao, Yu Sheng Bai
  • Publication number: 20160062207
    Abstract: An optical modulator comprising a waveguide for propagating an optical signal comprising a proximate arm configured to communicate a proximate portion of the optical signal, and a distal arm configured to communicate a distal portion of the optical signal, a proximate diode configured to modulate the proximate portion of the optical signal, a distal diode configured to modulate the distal portion of the optical signal, and an electrical input electrically coupled to opposite signed interfaces of the proximate diode and the distal diode such that an electrical driving signal propagated along the electrical input causes an equal and opposite modulation of the proximate portion of the optical signal in the proximate arm of the waveguide and the distal portion of the optical signal in the distal arm of the waveguide.
    Type: Application
    Filed: August 21, 2015
    Publication date: March 3, 2016
    Inventor: Yu Sheng Bai
  • Patent number: 9213155
    Abstract: A photonic device comprising a base plate, a photonic laser coupled to the base plate, wherein the photonic laser is configured to generate a light, a lens coupled to the base plate, wherein the lens is configured to receive the light from the photonic laser, form a focused light, and pass the focused light to a reflector, and the reflector incorporated with the base plate such that the lens is positioned between the photonic laser and the reflector, wherein the reflector is configured to receive the focused light, and wherein the reflector is configured to steer a first portion of the focused light through the base plate using total internal reflection.
    Type: Grant
    Filed: December 23, 2014
    Date of Patent: December 15, 2015
    Assignee: Futurewei Technologies, Inc.
    Inventors: Rongsheng Miao, Yu Sheng Bai
  • Patent number: 9112608
    Abstract: An optical receiver comprising a frontend configured to receive an optical signal and convert the optical signal into a plurality of digital electrical signals comprising a plurality of spectrally shaped subcarrier signals carrying symbol mapped data information, and a digital signal processor (DSP) unit coupled to the frontend and configured to receive the digital signals from the frontend, demulitplex the digital signals into the subcarrier signals, and compensate chromatic dispersion (CD) for each of the subcarrier signals by applying an equalizer, wherein each of the subcarrier signals is associated with a unique tone frequency and a unique spectral shape. Also disclosed is an optical transmitter comprising a digital signal processor (DSP) unit configured to map data symbols onto a plurality of electrical subcarrier signals that are non-overlapping and spectrally shaped in a frequency domain.
    Type: Grant
    Filed: October 8, 2013
    Date of Patent: August 18, 2015
    Assignee: Futurewei Technologies, Inc.
    Inventors: Yu Sheng Bai, Yanjun Zhu, Qing Guo, Yan Cui, Fei Zhu
  • Patent number: 9075200
    Abstract: An optical apparatus, comprising a polarization beam splitter (PBS) comprising a birefringent crystal having a front-end and a back-end, and an optical rotator positioned on the back-end of the birefringent crystal. Included is an optical apparatus comprising a PBS comprising a birefringent crystal and an optical rotator, wherein the PBS is configured to receive a multiplexed optical signal comprising a first polarized optical signal and a second polarized optical signal, wherein the second polarized optical signal is orthogonal to the first polarized optical signal, separate the first polarized optical signal from the second polarized optical signal using the birefringent crystal, and rotate the second polarized optical signal using the optical rotator such that the rotated second polarized optical signal is parallel to the first polarized optical signal. The PBS may further comprise only one lens, wherein the lens is positioned on the front-end of the birefringent crystal.
    Type: Grant
    Filed: December 28, 2012
    Date of Patent: July 7, 2015
    Assignee: Futurewei Technologies, Inc.
    Inventors: Rongsheng Miao, Tongqing Wang, Changzheng Su, Xueyan Zheng, Yu Sheng Bai
  • Publication number: 20150185426
    Abstract: A photonic device comprising a base plate, a photonic laser coupled to the base plate, wherein the photonic laser is configured to generate a light, a lens coupled to the base plate, wherein the lens is configured to receive the light from the photonic laser, form a focused light, and pass the focused light to a reflector, and the reflector incorporated with the base plate such that the lens is positioned between the photonic laser and the reflector, wherein the reflector is configured to receive the focused light, and wherein the reflector is configured to steer a first portion of the focused light through the base plate using total internal reflection.
    Type: Application
    Filed: December 23, 2014
    Publication date: July 2, 2015
    Inventors: Rongsheng Miao, Yu Sheng Bai
  • Publication number: 20150117813
    Abstract: An apparatus comprising a waveguide along a longitudinal axis at a first elevation, an optical splitter coupled to a first edge of the waveguide along the longitudinal axis, two or more inverse tapers coupled to a second edge of the optical splitter along the longitudinal axis, and one or more offset inverse tapers that are substantially parallel with the two or more inverse tapers, wherein the one or more offset inverse tapers are along the longitudinal axis at a second elevation.
    Type: Application
    Filed: October 28, 2014
    Publication date: April 30, 2015
    Inventors: Yu Sheng Bai, Huapu Pan
  • Patent number: 8963019
    Abstract: A circuit board and a manufacturing method thereof are provided. According to the method, a dielectric layer is formed on a dielectric substrate, and the dielectric layer contains active particles. A surface treatment is performed on a surface of the dielectric first conductive layer is formed on the activated surface of the dielectric layer. A conductive via is formed in the dielectric substrate and the dielectric layer. A patterned mask layer is formed on the first conductive layer, in which the patterned mask layer exposes the conductive via and a part of the first conductive layer. A second conductive layer is formed on the first conductive layer and conductive via exposed by the patterned mask layer. The patterned mask layer and the first conductive layer below the patterned mask layer are removed.
    Type: Grant
    Filed: August 9, 2012
    Date of Patent: February 24, 2015
    Assignee: Unimicron Technology Corp.
    Inventors: Cheng-Po Yu, Shang-Feng Huang, Chang-Ming Lee, Young-Sheng Bai
  • Patent number: 8964805
    Abstract: An apparatus comprising a plurality of laser dice and a heat sink positioned between the laser dice and thermally coupled to the laser dice. Also included is an apparatus comprising a chip comprising a laser core, a stopper at least partially defining a groove, wherein the stopper and the groove are positioned adjacent to the chip, and a heater located between the laser core and the groove.
    Type: Grant
    Filed: May 4, 2009
    Date of Patent: February 24, 2015
    Assignee: Futurewei Technologies, Inc.
    Inventors: Xiao A. Shen, Yu Sheng Bai
  • Patent number: 8934787
    Abstract: An apparatus comprising a plurality of optical transmitters and a wavelength locker shared by the plurality of optical transmitters. A periodic transmission filter used for wavelength locker operations is in a network communication path and shapes optical transmissions from the plurality of optical transmitters to a network. An apparatus comprising at least one processor configured to receive a pre-filter signal corresponding to part of an optical signal comprising a pilot tone and to receive a post-filter signal corresponding to a part of the optical signal that passes through a period transmission filter, wherein a filtered part of the optical signal is directed into a network. The processor is also configured to perform wavelength locking based on a quadrature detection technique that aligns an adiabatic logical one position of a modulated transmission signal with a spectral transmission peak of the period transmission filter.
    Type: Grant
    Filed: September 29, 2011
    Date of Patent: January 13, 2015
    Assignee: Futurewei Technologies, Inc.
    Inventors: Xiao A. Shen, Tongqing Wang, Hongbing Lie, Yu Sheng Bai
  • Publication number: 20140355997
    Abstract: A BOSA package comprising only one cylindrical TO package comprising a ROSA and a TOSA, and an optical port in optical communication with the ROSA and the TOSA. Also disclosed is a TO package comprising a TOSA for transmitting a first optical signal, a ROSA for receiving a second optical signal, an optical communication window, and a TFF positioned such that the first optical signal transmitted from the TOSA is reflected by the TFF toward the optical communication window and the second optical signal received from the optical communication window passes through the TFF and to the ROSA.
    Type: Application
    Filed: October 29, 2013
    Publication date: December 4, 2014
    Applicant: Futurewei Technologies, Inc.
    Inventors: Rongsheng Miao, Yu Sheng Bai
  • Patent number: 8861966
    Abstract: Method and system for band blocking in an optical telecommunication network. According to an embodiment, the present invention provides a system for optical network. The system includes an input that is configured to receive an input signal through a first optical input. The system also includes a band splitting module that is coupled to the input. The band splitting module is configured to separate the input signal into a plurality of bands. The plurality of bands includes a first band and a second band. The first band includes a first plurality of wave channels. The first plurality of wave channels is characterized by a first channel spacing. The second band includes a second plurality of wave channels, which is characterized by a second channel spacing.
    Type: Grant
    Filed: September 27, 2007
    Date of Patent: October 14, 2014
    Assignee: FutureWei Technologies, Inc.
    Inventors: Fei Zhu, Yu Sheng Bai
  • Patent number: 8781327
    Abstract: An apparatus comprising at least one processor configured to receive a wavelength-division-multiplexed (WDM) signal from a remote node, wherein the WDM signal comprises a first channel carrying a first remotely generated signal, a second channel carrying a second remotely generated signal, and a third channel, adapt the WDM signal into a composite WDM signal by: dropping the first remotely generated signal from the first channel; adding a first locally generated signal to the first channel; and adding a second locally generated signal to the third channel, and provide wavelength locking to the first locally generated signal and the second locally generated signal without providing wavelength locking to the second remotely generated signal.
    Type: Grant
    Filed: July 7, 2011
    Date of Patent: July 15, 2014
    Assignee: Futurewei Technologies, Inc.
    Inventors: Xiao A. Shen, Hongbing Lei, Yu Sheng Bai
  • Patent number: 8774630
    Abstract: A network apparatus comprising an optical gain medium, a wavelength division multiplexing (WDM) filter coupled to the optical gain medium, and a Faraday Rotator Mirror (FRM) coupled to the WDM, and wherein the optical gain medium, the WDM filter, and the FRM are coupled by single mode fibers to form a self-seeded external cavity laser for a DWDM wavelength channel.
    Type: Grant
    Filed: October 13, 2011
    Date of Patent: July 8, 2014
    Assignee: Futurewei Technologies, Inc.
    Inventors: Huafeng Lin, Yu Sheng Bai
  • Publication number: 20140185139
    Abstract: An optical apparatus, comprising a polarization beam splitter (PBS) comprising a birefringent crystal having a front-end and a back-end, and an optical rotator positioned on the back-end of the birefringent crystal. Included is an optical apparatus comprising a PBS comprising a birefringent crystal and an optical rotator, wherein the PBS is configured to receive a multiplexed optical signal comprising a first polarized optical signal and a second polarized optical signal, wherein the second polarized optical signal is orthogonal to the first polarized optical signal, separate the first polarized optical signal from the second polarized optical signal using the birefringent crystal, and rotate the second polarized optical signal using the optical rotator such that the rotated second polarized optical signal is parallel to the first polarized optical signal. The PBS may further comprise only one lens, wherein the lens is positioned on the front-end of the birefringent crystal.
    Type: Application
    Filed: December 28, 2012
    Publication date: July 3, 2014
    Applicant: Futurewei Technologies, Inc.
    Inventors: Rongsheng Miao, Tongqing Wang, Changzheng Su, Xueyan Zheng, Yu Sheng Bai
  • Publication number: 20140185253
    Abstract: A method comprising coupling a circuit to an opto-electronic package via an anisotropic conductive film (ACF), wherein the opto-electronic package is configured to communicate electrical signals via the coupling at a maximum frequency of about 10 gigahertz (GHz) to about 40 GHz. An apparatus comprising, an opto-electronic package comprising a plurality of first electrodes, and a circuit comprising a plurality of second electrodes, wherein at least one of the first electrodes is coupled to at least one of the second electrodes via an ACF, and wherein the opto-electronic package is configured to communicate electrical signals via the coupling at a maximum frequency of about 10 GHz to about 40 GHz.
    Type: Application
    Filed: December 28, 2012
    Publication date: July 3, 2014
    Applicant: Futurewei Technologies, Inc.
    Inventors: Morgan Chen, Rongsheng Miao, Xueyan Zheng, Bo Li, Xiao Shen, Yu Sheng Bai