Patents by Inventor Yu Sheng Bai

Yu 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).

  • Patent number: 11754788
    Abstract: A multi-channel mode converter includes a lens array having a first lens and a second lens, a glass block coupled to the lens array, and a fiber assembly unit (FAU) array coupled to the glass block, the FAU array including a first fiber corresponding to the first lens, and a second fiber corresponding to the second lens. The FAU array provides for a corresponding number of fibers and lenses such that a specific single fiber corresponds to a specific single lens, there being a 1:1 relationship between fibers and lenses. A mode converter system comprises: a lens array comprising: a first silicon lens configured to convert a first mode between a first waveguide and a first fiber, and a second silicon lens configured to convert a second mode between a second waveguide and a second fiber, and a glass block coupled to the lens array and configured to provide an optical path for a first light beam corresponding to the first silicon lens and a second light beam corresponding to the second silicon lens.
    Type: Grant
    Filed: February 24, 2021
    Date of Patent: September 12, 2023
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Rongsheng Miao, Xueyan Zheng, Xiao Andy Shen, Yu Sheng Bai
  • Patent number: 11405112
    Abstract: A method comprising: receiving a multiplexed optical signal comprising optical channels for N wavelengths, N being a positive integer greater than or equal to two; and separating the multiplexed optical signal into a first multiplexed light and a second multiplexed light, each of the first multiplexed light and the second multiplexed light having the same polarization, and each of the first multiplexed light and the second multiplexed light having N wavelengths; separating the first multiplexed light into a plurality of first lights, each having a different wavelength; separating the second multiplexed light into a plurality of second lights simultaneous with separating the first multiplexed light into the first lights, each of the second lights having a different wavelength; and generating optical parameters for each optical channel in the N wavelengths using the first light and the second light for each wavelength.
    Type: Grant
    Filed: December 28, 2017
    Date of Patent: August 2, 2022
    Assignee: Futurewei Technologies, Inc.
    Inventors: Yangjing Wen, Yu Sheng Bai, An Li, Yan Cui
  • Publication number: 20210181423
    Abstract: A multi-channel mode converter includes a lens array having a first lens and a second lens, a glass block coupled to the lens array, and a fiber assembly unit (FAU) array coupled to the glass block, the FAU array including a first fiber corresponding to the first lens, and a second fiber corresponding to the second lens. The FAU array provides for a corresponding number of fibers and lenses such that a specific single fiber corresponds to a specific single lens, there being a 1:1 relationship between fibers and lenses. A mode converter system comprises: a lens array comprising: a first silicon lens configured to convert a first mode between a first waveguide and a first fiber, and a second silicon lens configured to convert a second mode between a second waveguide and a second fiber, and a glass block coupled to the lens array and configured to provide an optical path for a first light beam corresponding to the first silicon lens and a second light beam corresponding to the second silicon lens.
    Type: Application
    Filed: February 24, 2021
    Publication date: June 17, 2021
    Inventors: Rongsheng Miao, Xueyan Zheng, Xiao Andy Shen, Yu Sheng Bai
  • Patent number: 10601629
    Abstract: Probabilistic generation and decoding modulation symbols for use with optical communication. Codewords are generated using combinations of symbols from a modulation symbol alphabet, and each type of modulation symbol is sequentially generated using a hardware efficient combination generator that performs as a virtual lookup table (LUT). Likewise, decoding can be performed by sequentially identifying locations of individual modulation symbols within the received codeword.
    Type: Grant
    Filed: August 6, 2018
    Date of Patent: March 24, 2020
    Assignee: Futurewei Technologies, Inc.
    Inventors: Murali Krishnan, Yan Cui, Yu Sheng Bai
  • Patent number: 10551640
    Abstract: An apparatus comprising a polarization beam splitter optically coupled to a first light path and a second light path and configured to receive a CW light having a plurality of wavelengths, forward a first light beam of the CW light along the first light path, and forward a second light beam of the CW light along the second light path. A first multiplexer coupled to the first light path and configured to de-multiplex the first light beam into a first plurality of channels each corresponding to one of the plurality of wavelengths. A second multiplexer coupled to the second light path and configured to de-multiplex the second light beam into a second plurality of channels each corresponding to one of the plurality of wavelengths. A modulator coupled to the first multiplexer and the second multiplexer and configured to modulate the first plurality of channels and the second plurality of channels.
    Type: Grant
    Filed: November 21, 2016
    Date of Patent: February 4, 2020
    Assignee: Futurewei Technologies, Inc.
    Inventors: Yangjing Wen, Yan Cui, Xiao Shen, Yu Sheng Bai
  • Patent number: 10498458
    Abstract: An optical modulator for generating quadrature amplitude modulation (nQAM) and phase-shift keying (nPSK) signals with tunable modulation efficiency. The modulator includes a controlling circuit for adjusting the modulation efficiency or modulation depth of the modulator by controlling the direct current (DC) bias.
    Type: Grant
    Filed: November 3, 2016
    Date of Patent: December 3, 2019
    Assignee: Futurewei Technologies, Inc.
    Inventors: Xueyan Zheng, Yu Sheng Bai, Xiao Shen, Yangjing Wen
  • Publication number: 20190207682
    Abstract: A method comprising: receiving a multiplexed optical signal comprising optical channels for N wavelengths, N being a positive integer greater than or equal to two; and separating the multiplexed optical signal into a first multiplexed light and a second multiplexed light, each of the first multiplexed light and the second multiplexed light having the same polarization, and each of the first multiplexed light and the second multiplexed light having N wavelengths; separating the first multiplexed light into a plurality of first lights, each having a different wavelength; separating the second multiplexed light into a plurality of second lights simultaneous with separating the first multiplexed light into the first lights, each of the second lights having a different wavelength; and generating optical parameters for each optical channel in the N wavelengths using the first light and the second light for each wavelength.
    Type: Application
    Filed: December 28, 2017
    Publication date: July 4, 2019
    Inventors: Yangjing Wen, Yu Sheng Bai, An Li, Yan Cui
  • Patent number: 10330959
    Abstract: A transmission-type polarization insensitive modulator implemented as a polarization insensitive micro ring modulator (PIMRM) includes a first polarization splitter-rotator (PSR) configured to generate a first light beam and a second light beam having a common polarization from an input, a micro ring configured to modulate the first light beam with data to generate a first output signal, and modulate the second light beam with data to generate a second output signal, and a second PSR configured to combine the first output signal and the second output signal to form a modulated output signal, wherein the micro ring is disposed in between the first PSR and the second PSR.
    Type: Grant
    Filed: May 22, 2017
    Date of Patent: June 25, 2019
    Assignee: Futurewei Technologies, Inc.
    Inventors: Yangjing Wen, Yu Sheng Bai, Hongzhen Wei
  • Patent number: 10268056
    Abstract: An optical modulator comprises a silicon substrate, a buried oxide (BOX) layer disposed on top of the silicon substrate, and a ridge waveguide disposed on top of the BOX layer and comprising a first n-type silicon (n-Si) slab, a first gate oxide layer coupled to the first n-Si slab, a first p-type silicon (p-Si) slab coupled to the first gate oxide layer, and a light propagation path that travels sequentially through the first n-Si slab, the first gate oxide layer, and the first p-Si slab.
    Type: Grant
    Filed: June 1, 2017
    Date of Patent: April 23, 2019
    Assignee: Futurewei Technologies, Inc.
    Inventors: Dawei Zheng, Hongbing Lei, Qianfan Xu, Xiao Shen, Yu Sheng Bai
  • Patent number: 10243684
    Abstract: A wavelength-division multiplexed (WDM) polarization-independent transmissive modulator (PITM) that receives a multi-wavelength continuous wave (CW) light of indeterminate polarization, splits the multi-wavelength CW light into two transverse electric (TE) polarized components, demultiplexer the polarized components into single-wavelength CW lights, modulates the single-wavelength CW lights using four-port cross-state or bypass-state modulators, multiplexes the modulated output of the four-port modulators (FPM) into two polarized modulated components, and combines the two polarized modulated components into a multi-wavelength modulated output signal.
    Type: Grant
    Filed: May 23, 2017
    Date of Patent: March 26, 2019
    Assignee: Futurewei Technologies, Inc.
    Inventors: Yangjing Wen, Yu Sheng Bai, Hongzhen Wei
  • Patent number: 10222676
    Abstract: A method of modulation implemented by a polarization insensitive integrated optical modulator (PIIOM). The method includes receiving, at an input, a continuous wave (CW) light, splitting, by a first polarization splitter-rotator (PSR), the CW light into a first light beam having a transverse electric (TE) polarization and a second light beam having a transverse magnetic (TM) polarization, rotating, by the first PSR, the second light beam having the TM polarization to generate a third light beam having the TE polarization, modulating, with a multiport modulator, the first light beam with data to generate a first output signal and the third light beam with data to generate a second output signal, combining, by a second PSR, the first output signal and the second output signal to form a modulated output CW light, and transmitting, at an output separate from the input, the modulated output CW light to an optical receiving device.
    Type: Grant
    Filed: January 27, 2017
    Date of Patent: March 5, 2019
    Assignee: Futurewei Technologies, Inc.
    Inventors: Yangjing Wen, Yu Sheng Bai
  • Publication number: 20190058306
    Abstract: A tunable hybrid laser has a gain chip and a wavelength selection chip. The wavelength selection chip includes a wavelength selective loop reflector. The wavelength selective loop reflector is configured to receive the amplified lightwave from the gain chip. The wavelength selective loop reflector includes a single optical coupler and a micro-ring resonator (MMR). The single optical coupler splits the amplified lightwave and provides portions thereof to different branches of the MRR. The MRR permits selection of a desired wavelength and reflects the portions of the amplified lightwave at the desired wavelength back to the single optical coupler, which combines the portions of the amplified lightwave at the desired wavelength to generate a reflection lightwave and a transmission lightwave. The reflection lightwave is returned to the gain chip to form the external cavity and the transmission lightwave is output from the tunable hybrid laser.
    Type: Application
    Filed: July 31, 2018
    Publication date: February 21, 2019
    Inventors: Yangjing Wen, Yu Sheng Bai
  • Publication number: 20190052509
    Abstract: Probabilistic generation and decoding modulation symbols for use with optical communication. Codewords are generated using combinations of symbols from a modulation symbol alphabet, and each type of modulation symbol is sequentially generated using a hardware efficient combination generator that performs as a virtual lookup table (LUT). Likewise, decoding can be performed by sequentially identifying locations of individual modulation symbols within the received codeword.
    Type: Application
    Filed: August 6, 2018
    Publication date: February 14, 2019
    Inventors: Murali Krishnan, Yan Cui, Yu Sheng Bai
  • Publication number: 20180343076
    Abstract: A wavelength-division multiplexed (WDM) polarization-independent transmissive modulator (PITM) that receives a multi-wavelength continuous wave (CW) light of indeterminate polarization, splits the multi-wavelength CW light into two transverse electric (TE) polarized components, demultiplexer the polarized components into single-wavelength CW lights, modulates the single-wavelength CW lights using four-port cross-state or bypass-state modulators, multiplexes the modulated output of the four-port modulators (FPM) into two polarized modulated components, and combines the two polarized modulated components into a multi-wavelength modulated output signal.
    Type: Application
    Filed: May 23, 2017
    Publication date: November 29, 2018
    Inventors: Yangjing Wen, Yu Sheng Bai, Hongzhen Wei
  • Publication number: 20180335652
    Abstract: A transmission-type polarization insensitive modulator implemented as a polarization insensitive micro ring modulator (PIMRM) includes a first polarization splitter-rotator (PSR) configured to generate a first light beam and a second light beam having a common polarization from an input, a micro ring configured to modulate the first light beam with data to generate a first output signal, and modulate the second light beam with data to generate a second output signal, and a second PSR configured to combine the first output signal and the second output signal to form a modulated output signal, wherein the micro ring is disposed in between the first PSR and the second PSR.
    Type: Application
    Filed: May 22, 2017
    Publication date: November 22, 2018
    Inventors: Yangjing Wen, Yu Sheng Bai, Hongzhen Wei
  • Patent number: 10129054
    Abstract: Systems and methods for creating and using a first and second group of training sequences in a training-aided single-carrier frequency domain equalization system. The first group of training sequences are conventional training sequences and the second group of training sequences are 90°-rotated versions of the first group of training sequences.
    Type: Grant
    Filed: February 10, 2017
    Date of Patent: November 13, 2018
    Assignee: Futurewei Technologies, Inc.
    Inventors: Qing Guo, Wei-Ren Peng, Yan Cui, Yu Sheng Bai
  • Patent number: 10097277
    Abstract: An apparatus comprises: a first input tap; a first optical modulator coupled to the first input tap; a first output tap coupled to the first optical modulator so that the first optical modulator is positioned between the first input tap and the first output tap; and a controller indirectly coupled to the first input tap and the first output tap.
    Type: Grant
    Filed: January 24, 2017
    Date of Patent: October 9, 2018
    Assignee: Futurewei Technologies, Inc.
    Inventors: Xueyan Zheng, Jianying Zhou, Xiao Shen, Chunlei Liao, Hongbing Lei, Hongmin Chen, Yu Sheng Bai
  • Publication number: 20180234273
    Abstract: Systems and methods for creating and using a first and second group of training sequences in a training-aided single-carrier frequency domain equalization system. The first group of training sequences are conventional training sequences and the second group of training sequences are 90°-rotated versions of the first group of training sequences.
    Type: Application
    Filed: February 10, 2017
    Publication date: August 16, 2018
    Inventors: Qing Guo, Wei-Ren Peng, Yan Cui, Yu Sheng Bai
  • Patent number: 10050713
    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: Grant
    Filed: February 26, 2016
    Date of Patent: August 14, 2018
    Assignee: Futurewei Technologies, Inc.
    Inventors: Zhihong Li, Yan Cui, Fei Zhu, Yu Sheng Bai
  • Publication number: 20180217468
    Abstract: A method of modulation implemented by a polarization insensitive integrated optical modulator (PIIOM). The method includes receiving, at an input, a continuous wave (CW) light, splitting, by a first polarization splitter-rotator (PSR), the CW light into a first light beam having a transverse electric (TE) polarization and a second light beam having a transverse magnetic (TM) polarization, rotating, by the first PSR, the second light beam having the TM polarization to generate a third light beam having the TE polarization, modulating, with a multiport modulator, the first light beam with data to generate a first output signal and the third light beam with data to generate a second output signal, combining, by a second PSR, the first output signal and the second output signal to form a modulated output CW light, and transmitting, at an output separate from the input, the modulated output CW light to an optical receiving device.
    Type: Application
    Filed: January 27, 2017
    Publication date: August 2, 2018
    Inventors: Yangjing Wen, Yu Sheng Bai