Patents by Inventor Houjun WANG

Houjun WANG 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: 10746604
    Abstract: An apparatus for measuring temperature of turbine blades, including: a radiation collection device, a data processing module; a master control unit (MCU); a calibration module; and a motion servo. The radiation collection device includes a scan reflector, a collimator lens, a first dichroic mirror, a first focus lens, a visible and near-infrared (VNIR) detector, a second dichroic mirror, a second focus lens, a short-wave infrared (SWIR) detector, a third focus lens, and a medium-wave infrared (MWIR) detector. The calibration module includes a calibration reflection mirror and a blackbody furnace. The scan reflector, the collimator lens, the first dichroic mirror, the second dichroic mirror, the third focus lens, and the MWIR detector are disposed successively along a first optical axis; the first dichroic mirror, the first focus lens, and the VNIR detector are disposed successively along a second optical axis that is perpendicular to the first optical axis.
    Type: Grant
    Filed: April 9, 2018
    Date of Patent: August 18, 2020
    Assignee: UNIVERSITY OF ELECTRONIC SCIENCE AND TECHNOLOGY OF CHINA
    Inventors: Chao Wang, Zezhan Zhang, Fei Wang, Chengui Zhang, Jun Hu, Yang Yang, Jing Jiang, Hongchuan Jiang, Yueming Wang, Yuhua Cheng, Jiexiong Ding, Li Du, Houjun Wang
  • Patent number: 10310546
    Abstract: The present invention provides an arbitrary waveform generator based on instruction architecture. To deal with the feature that the instructions and waveform data of the AWG are coupled in the prior art, an instruction set based waveform synthesis controller is employed, and substitutes for the sequence wave generator in the present invention, i.e. an arbitrary waveform generator based on instruction architecture. Thus the time-sharing scheduling in reading the waveform synthesis instruction and the segment waveform data is realized, and the complexity of the hardware is reduced, so that the AWG in present invention can synthesize and generate a complex sequence wave rapidly and efficiently.
    Type: Grant
    Filed: October 11, 2017
    Date of Patent: June 4, 2019
    Assignee: UNIVERSITY OF ELECTRONIC SCIENCE AND TECHNOLOGY OF CHINA
    Inventors: Yindong Xiao, Guangkun Guo, Ke Liu, Junwu Zhang, Houjun Wang, Jianguo Huang, Shulin Tian
  • Publication number: 20180348059
    Abstract: An apparatus for measuring temperature of turbine blades, including: a radiation collection device, a data processing module; a master control unit (MCU); a calibration module; and a motion servo. The radiation collection device includes a scan reflector, a collimator lens, a first dichroic mirror, a first focus lens, a visible and near-infrared (VNIR) detector, a second dichroic mirror, a second focus lens, a short-wave infrared (SWIR) detector, a third focus lens, and a medium-wave infrared (MWIR) detector. The calibration module includes a calibration reflection mirror and a blackbody furnace. The scan reflector, the collimator lens, the first dichroic mirror, the second dichroic mirror, the third focus lens, and the MWIR detector are disposed successively along a first optical axis; the first dichroic mirror, the first focus lens, and the VNIR detector are disposed successively along a second optical axis that is perpendicular to the first optical axis.
    Type: Application
    Filed: April 9, 2018
    Publication date: December 6, 2018
    Inventors: Chao WANG, Zezhan ZHANG, Fei WANG, Chengui ZHANG, Jun HU, Yang YANG, Jing JIANG, Hongchuan JIANG, Yueming WANG, Yuhua CHENG, Jiexiong DING, Li DU, Houjun WANG
  • Publication number: 20180032099
    Abstract: The present invention provides an arbitrary waveform generator based on instruction architecture. To deal with the feature that the instructions and waveform data of the AWG are coupled in the prior art, an instruction set based waveform synthesis controller is employed, and substitutes for the sequence wave generator in the present invention, i.e. an arbitrary waveform generator based on instruction architecture. Thus the time-sharing scheduling in reading the waveform synthesis instruction and the segment waveform data is realized, and the complexity of the hardware is reduced, so that the AWG in present invention can synthesize and generate a complex sequence wave rapidly and efficiently.
    Type: Application
    Filed: October 11, 2017
    Publication date: February 1, 2018
    Applicant: UNIVERSITY OF ELECTRONIC SCIENCE AND TECHNOLOGY OF CHINA
    Inventors: Yindong XIAO, Guangkun GUO, Ke LIU, Junwu ZHANG, Houjun WANG, Jianguo HUANG, Shulin TIAN
  • Patent number: 9130583
    Abstract: For the signal under acquisition which varies monotonically before and after the trigger time, a method for full-digital random sampling employs first sampled data before the trigger time and first sampled data after the trigger time to fit a curve, and obtains an intersection point of triggering level and the fitted curve, then, calculates the time interval between sampled data after the trigger time and the intersection point in the end, reconstructs the original signal, i.e. the signal under acquisition by a time interval of each acquisition. Thus, an analog trigger circuit and a time measurement circuit of conventional random sampling system can be eliminated, that simplifies the circuit design of data acquisition system and decreases its hardware complexity. Moreover, the higher sampling rate for the signal under acquisition is attained, and more waveform details are obtained.
    Type: Grant
    Filed: December 29, 2014
    Date of Patent: September 8, 2015
    Assignee: University of Electronic Science and Technology of China
    Inventors: Wuhuang Huang, Kuojun Yang, Houjun Wang, Jun Jiang, Hao Zeng, Duyu Qiu, Peng Ye, Qinchuan Zhang, Shulin Tian
  • Publication number: 20150188560
    Abstract: For the signal under acquisition which varies monotonically before and after the trigger time, a method for full-digital random sampling employs first sampled data before the trigger time and first sampled data after the trigger time to fit a curve, and obtains an intersection point of triggering level and the fitted curve, then, calculates the time interval between sampled data after the trigger time and the intersection point in the end, reconstructs the original signal, i.e. the signal under acquisition by a time interval of each acquisition. Thus, an analog trigger circuit and a time measurement circuit of conventional random sampling system can be eliminated, that simplifies the circuit design of data acquisition system and decreases its hardware complexity. Moreover, the higher sampling rate for the signal under acquisition is attained, and more waveform details are obtained.
    Type: Application
    Filed: December 29, 2014
    Publication date: July 2, 2015
    Inventors: Wuhuang HUANG, Kuojun YANG, Houjun WANG, Jun JIANG, Hao ZENG, Duyu QIU, Peng YE, Qinchuan ZHANG, Shulin TIAN