Patents by Inventor Meng-Chyi Lin

Meng-Chyi Lin 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: 20090287468
    Abstract: A circuit emulator includes emulation resources programmed to emulate a circuit, a clocking system for clocking logic implemented by the emulation resources, a resource interface circuit, a logic analyzer, and a debugger. The resource interface circuit supplies input signals to the emulation resources, stores data representing behavior of signals generated by the emulation resources produces in response to the input signals and configures operating characteristics of the clocking system. Upon detecting a specified event in the selected signals of the emulation resources, the logic analyzer asserts a trigger signal telling the clocking system to stop clocking the emulation resources.
    Type: Application
    Filed: May 15, 2008
    Publication date: November 19, 2009
    Applicant: SPRINGSOFT, INC.
    Inventors: Meng-Chyi Lin, Fei-Sheng Hsu, Sweyyan Shei
  • Publication number: 20090235132
    Abstract: A broadcaster, system, and method for reducing test data volume and test application time in an ATE (automatic test equipment) in a scan-based integrated circuit. The scan-based integrated circuit contains multiple scan chains, each scan chain comprising multiple scan cells coupled in series. The broadcaster is a combinational logic network coupled to an optional virtual scan controller and an optional scan connector. The virtual scan controller controls the operation of the broadcaster. The system transmits virtual scan patterns stored in the ATE and generates broadcast scan patterns through the broadcaster for testing manufacturing faults in the scan-based integrated circuit. The number of scan chains that can be supported by the ATE is significantly increased. Methods are further proposed to reorder scan cells in selected scan chains, to generate the broadcast scan patterns and virtual scan patterns, and to synthesize the broadcaster and a compactor in the scan-based integrated circuit.
    Type: Application
    Filed: May 20, 2009
    Publication date: September 17, 2009
    Applicant: SYNTEST TECHNOLOGIES, INC.
    Inventors: Laung-Terng Wang, Hsin-Po Wang, Xiaoqing Wen, Meng-Chyi Lin, Shyh-Horng Lin, Ta-Chia Yeh, Sen-Wei Tsai, Khader S. Abdel-Hafez
  • Patent number: 7552373
    Abstract: A broadcaster, system, and method for reducing test data volume and test application time in an ATE (automatic test equipment) in a scan-based integrated circuit. The scan-based integrated circuit contains multiple scan chains, each scan chain comprising multiple scan cells coupled in series. The broadcaster is a combinational logic network coupled to an optional virtual scan controller and an optional scan connector. The virtual scan controller controls the operation of the broadcaster. The system transmits virtual scan patterns stored in the ATE and generates broadcast scan patterns through the broadcaster for testing manufacturing faults in the scan-based integrated circuit. The number of scan chains that can be supported by the ATE is significantly increased. Methods are further proposed to reorder scan cells in selected scan chains, to generate the broadcast scan patterns and virtual scan patterns, and to synthesize the broadcaster and a compactor in the scan-based integrated circuit.
    Type: Grant
    Filed: January 10, 2003
    Date of Patent: June 23, 2009
    Assignee: Syntest Technologies, Inc.
    Inventors: Laung-Terng Wang, Hsin-Po Wang, Xiaoqing Wen, Meng-Chyi Lin, Shyh-Horng Lin, Ta-Chia Yeh, Sen-Wei Tsai, Khader S. Abdel-Hafez
  • Publication number: 20090132880
    Abstract: A method and apparatus for providing ordered capture clocks to detect or locate faults within N clock domains and faults crossing any two clock domains in an integrated circuit or circuit assembly in self-test or scan-test mode, where N>1 and each domain has a plurality of scan cells. The method and apparatus allows generating and loading N pseudorandom or predetermined stimuli to all the scan cells within the N clock domains in the integrated circuit or circuit assembly during the shift operation, applying an ordered sequence of capture clocks to all the scan cells within the N clock domains during the capture operation, compacting or comparing N output responses of all the scan cells for analysis during the compact/compare operation, and repeating the above process until a predetermined limiting criteria is reached. A computer-aided design (CAD) system is further developed to realize the method and synthesize the apparatus.
    Type: Application
    Filed: August 20, 2008
    Publication date: May 21, 2009
    Inventors: Laung-Terng (L.- T.) Wang, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Hsin-Po Wang, Hao-Jan Chao, Xiaoqing Wen
  • Publication number: 20090070646
    Abstract: A method and apparatus for providing ordered capture clocks to detect or locate faults within N clock domains and faults crossing any two clock domains in a scan-based integrated circuit or circuit assembly in self-test or scan-test mode, where N>1 and each domain has a plurality of scan cells. The method and apparatus will apply an ordered sequence of capture clocks to all scan cells within N clock domains where one or more capture clocks must contain one or more shift clock pulses during the capture operation. A computer-aided design (CAD) method is further developed to realize the method and synthesize the apparatus. In order to further improve the circuit's fault coverage, a CAD method and apparatus are further developed to minimize the memory usage and generate scan patterns for full-scan and feed-forward partial-scan designs containing transparent storage cells, asynchronous set/reset signals, tri-state busses, and low-power gated clocks.
    Type: Application
    Filed: October 1, 2008
    Publication date: March 12, 2009
    Inventors: Laung-Terng (L.T.) Wang, Meng-Chyi Lin, Xiaoqing Wen, Hsin-Po Wang, Chi-Chan Hsu, Shih-Chia Kao, Fei-Sheng Hsu
  • Publication number: 20090037786
    Abstract: A method and apparatus for testing or diagnosing faults in a scan-based integrated circuit using a unified self-test and scan-test technique. The method and apparatus comprises using a unified test controller to ease prototype debug and production test. The unified test controller further comprises using a capture clock generator and a plurality of domain clock generators each embedded in a clock domain to perform self-test or scan-test. The capture clocks generated by the capture clock generator are used to guide at-speed or reduced-speed self-test (or scan-test) within each clock domain. The frequency of these capture clocks can be totally unrelated to those of system clocks controlling the clock domains. This unified approach allows designers to test or diagnose stuck-type and non-stuck-type faults with a low-cost DFT (design-for-test) tester or a low-cost DFT debugger. A computer-aided design (CAD) method is further developed to realize the method and synthesize the apparatus.
    Type: Application
    Filed: September 30, 2008
    Publication date: February 5, 2009
    Inventors: Laung-Terng Wang, Xiaoqing Wen, Khader S. Abdel-Hafez, Shyh-Horng Lin, Hsin-Po Wang, Ming-Tung Chang, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Chi-Chan Hsu
  • Patent number: 7444567
    Abstract: A method and apparatus for testing or diagnosing faults in a scan-based integrated circuit using a unified self-test and scan-test technique. The method and apparatus comprises using a unified test controller to ease prototype debug and production test. The unified test controller further comprises using a capture clock generator and a plurality of domain clock generators each embedded in a clock domain to perform self-test or scan-test. The capture clocks generated by the capture clock generator are used to guide at-speed or reduced-speed self-test (or scan-test) within each clock domain. The frequency of these capture clocks can be totally unrelated to those of system clocks controlling the clock domains. This unified approach allows designers to test or diagnose stuck-type and non-stuck-type faults with a low-cost DFT (design-for-test) tester or a low-cost DFT debugger. A computer-aided design (CAD) method is further developed to realize the method and synthesize the apparatus.
    Type: Grant
    Filed: April 4, 2003
    Date of Patent: October 28, 2008
    Assignee: Syntest Technologies, Inc.
    Inventors: Laung-Terng (L.-T.) Wang, Xiaoqing Wen, Khader S. Abdel-Hafez, Shyh-Horng Lin, Hsin-Po Wang, Ming-Tung Chang, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Chi-Chan Hsu
  • Publication number: 20080082880
    Abstract: A low-frequency circuit tester tests a high-frequency circuit to determine whether the circuit will operate properly at its specified operating frequency when clocked by a clock signal having a specified period. Each of the first and second phases of the test spans the same number of test cycles, with each test cycle spanning a uniform period exceeding the specified clock period. During each of first and second phases of the test, the circuit tester transmits the same input signal patterns to the circuit and monitors output signal patterns produced by the circuit in response to the input signals. The tester also provides a clock signal for clocking the circuit's logic. During odd-numbered test cycles of the first phase of the test and even-numbered test cycles of the second phase of the test, the tester supplies a pulse of a clock signal to the circuit with a first delay following to the start of the test cycle.
    Type: Application
    Filed: September 6, 2006
    Publication date: April 3, 2008
    Inventors: Hsin-Po Wang, Meng-Chyi Lin
  • Patent number: 7191373
    Abstract: A method and apparatus for inserting design-for-debug (DFD) circuitries in an integrated circuit to debug or diagnose DFT modules, including scan cores, memory BIST (built-in self-test) cores, logic BIST cores, and functional cores. The invention further comprises using a DFD controller for executing a plurality of DFD commands to debug or diagnosis the DFT modules embedded with the DFD circuitries. When used alone or combined together, these DFD commands will detect or locate physical failures in the DFT modules in the integrated circuit on an evaluation board or system using a low-cost DFT debugger. A computer-aided design (CAD) method is further developed to synthesize the DFD controller and DFD circuitries according to the IEEE 1149.1 Boundary-scan Std. The DFD controller supports, but is not limited to, the following DFD commands: RUN_SCAN, RUN_MBIST, RUN_LBIST, DBG_SCAN, DBG_MBIST, DBG_LBIST, DBG_FUNCTION, SELECT, SHIFT, SHIFT_CHAIN, CAPTURE, RESET, BREAK, RUN, STEP, and STOP.
    Type: Grant
    Filed: February 27, 2002
    Date of Patent: March 13, 2007
    Assignee: Syntest Technologies, Inc.
    Inventors: Laung-Terng (L.-T.) Wang, Ming-Tung Chang, Shyh-Horng Lin, Hao-Jan Chao, Jaehee Lee, Hsin-Po Wang, Xiaoqing Wen, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Sen-Wei Tsai, Chi-Chan Hsu
  • Patent number: 7007213
    Abstract: A method and apparatus for providing ordered capture clocks to detect or locate faults within N clock domains and faults crossing any two clock domains in an integrated circuit or circuit assembly in self-test or scan-test mode, where N>1 and each domain has a plurality of scan cells. The method and apparatus allows generating and loading N pseudorandom or predetermined stimuli to all the scan cells within the N clock domains in the integrated circuit or circuit assembly during the shift operation, applying an ordered sequence of capture clocks to all the scan cells within the N clock domains during the capture operation, compacting or comparing N output responses of all the scan cells for analysis during the compact/compare operation, and repeating the above process until a predetermined limiting criteria is reached. A computer-aided design (CAD) system is further developed to realize the method and synthesize the apparatus.
    Type: Grant
    Filed: February 7, 2002
    Date of Patent: February 28, 2006
    Assignee: Syntest Technologies, Inc.
    Inventors: Laung-Terng (L.-T.) Wang, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Hsin-Po Wang, Hao-Jan Chao, Xiaoqing Wen
  • Publication number: 20050235186
    Abstract: A method and apparatus for providing ordered capture clocks to detect or locate faults within N clock domains and faults crossing any two clock domains in a scan-based integrated circuit or circuit assembly in self-test or scan-test mode, where N>1 and each domain has a plurality of scan cells. The method and apparatus will apply an ordered sequence of capture clocks to all scan cells within N clock domains where one or more capture clocks must contain one or more shift clock pulses during the capture operation. A computer-aided design (CAD) method is further developed to realize the method and synthesize the apparatus. In order to further improve the circuit's fault coverage, a CAD method and apparatus are further developed to minimize the memory usage and generate scan patterns for full-scan and feed-forward partial-scan designs containing transparent storage cells, asynchronous set/reset signals, tri-state busses, and low-power gated clocks.
    Type: Application
    Filed: June 14, 2005
    Publication date: October 20, 2005
    Applicant: Syntest Technologies, Inc.
    Inventors: Laung-Terng Wang, Meng-Chyi Lin, Xiaoqing Wen, Hsin-Po Wang, Chi-Chan Hsu, Shih-Chia Kao, Fei-Sheng Hsu
  • Patent number: 6954887
    Abstract: A method and apparatus for providing ordered capture clocks to detect or locate faults within N clock domains and faults crossing any two clock domains in a scan-based integrated circuit or circuit assembly in self-test or scan-test mode, where N>1 and each domain has a plurality of scan cells. The method and apparatus will apply an ordered sequence of capture clocks to all scan cells within N clock domains where one or more capture clocks must contain one or more shift clock pulses during the capture operation. A computer-aided design (CAD) method is further developed to realize the method and synthesize the apparatus. In order to further improve the circuit's fault coverage, a CAD method and apparatus are further developed to minimize the memory usage and generate scan patterns for full-scan and feed-forward partial-scan designs containing transparent storage cells, asynchronous set/reset signals, tri-state busses, and low-power gated clocks.
    Type: Grant
    Filed: March 20, 2002
    Date of Patent: October 11, 2005
    Assignee: Syntest Technologies, Inc.
    Inventors: Laung-Terng (L.-T.) Wang, Meng-Chyi Lin, Xiaoqing Wen, Hsin-Po Wang, Chi-Chan Hsu, Shih-Chia Kao, Fei-Sheng Hsu
  • Publication number: 20040268181
    Abstract: A method and apparatus for testing or diagnosing faults in a scan-based integrated circuit using a unified self-test and scan-test technique. The method and apparatus comprises using a unified test controller to ease prototype debug and production test. The unified test controller further comprises using a capture clock generator and a plurality of domain clock generators each embedded in a clock domain to perform self-test or scan-test. The capture clocks generated by the capture clock generator are used to guide at-speed or reduced-speed self-test (or scan-test) within each clock domain. The frequency of these capture clocks can be totally unrelated to those of system clocks controlling the clock domains. This unified approach allows designers to test or diagnose stuck-type and non-stuck-type faults with a low-cost DFT (design-for-test) tester or a low-cost DFT debugger. A computer-aided design (CAD) method is further developed to realize the method and synthesize the apparatus.
    Type: Application
    Filed: April 4, 2003
    Publication date: December 30, 2004
    Inventors: Laung-Terng Wang, Xiaoqing Wen, Khader S. Abdel-Hafez, Shyh-Horng Lin, Hsin-Po Wang, Ming-Tung Chang, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Chi-Chan Hsu
  • Publication number: 20040153926
    Abstract: A method and apparatus to test data and set/reset faults in a scan-based integrated circuit in a selected scan-test mode or self-test mode. The scan-based integrated circuit contains multiple scan chains, each scan chain comprising multiple scan cells coupled in series. The method comprises shifting in a plurality of predetermined stimuli during scan-test or pseudo-random stimuli during self-test to the scan-based integrated circuit, using a set/reset enable (SR_EN) signal 383 and a scan enable (SE) signal 382 to capture faults to each scan cell, and shifting out the test responses for comparison or compaction. The apparatus or set/reset controller 375 further comprises using the set/reset enable (SR_EN) signal 383 and scan enable (SE) signal 382 to selectively propagate data faults or set/reset faults to the scan cells in the integrated circuit.
    Type: Application
    Filed: October 24, 2003
    Publication date: August 5, 2004
    Inventors: Khader S. Abdel-Hafez, Laung-Terng Wang, Augusli Kifli, Fei-Sheng Hsu, Xiaoqing Wen, Meng-Chyi Lin, Hsin-Po Wang
  • Publication number: 20030154433
    Abstract: A broadcaster, system, and method for reducing test data volume and test application time in an ATE (automatic test equipment) in a scan-based integrated circuit. The scan-based integrated circuit contains multiple scan chains, each scan chain comprising multiple scan cells coupled in series. The broadcaster is a combinational logic network coupled to an optional virtual scan controller and an optional scan connector. The virtual scan controller controls the operation of the broadcaster. The system transmits virtual scan patterns stored in the ATE and generates broadcast scan patterns through the broadcaster for testing manufacturing faults in the scan-based integrated circuit. The number of scan chains that can be supported by the ATE is significantly increased. Methods are further proposed to reorder scan cells in selected scan chains, to generate the broadcast scan patterns and virtual scan patterns, and to synthesize the broadcaster and a compactor in the scan-based integrated circuit.
    Type: Application
    Filed: January 10, 2003
    Publication date: August 14, 2003
    Inventors: Laung-Terng Wang, Hsin-Po Wang, Xiaoqing Wen, Meng-Chyi Lin, Shyh-Horng Lin, Ta-Chia Yeh, Sen-Wei Tsai, Khader S. Abdel-Hafez
  • Publication number: 20020184560
    Abstract: A method and apparatus for providing ordered capture clocks to detect or locate faults within N clock domains and faults crossing any two clock domains in a scan-based integrated circuit or circuit assembly in self-test or scan-test mode, where N>1 and each domain has a plurality of scan cells. The method and apparatus will apply an ordered sequence of capture clocks to all scan cells within N clock domains where one or more capture clocks must contain one or more shift clock pulses during the capture operation. A computer-aided design (CAD) method is further developed to realize the method and synthesize the apparatus. In order to further improve the circuit's fault coverage, a CAD method and apparatus are further developed to minimize the memory usage and generate scan patterns for full-scan and feed-forward partial-scan designs containing transparent storage cells, asynchronous set/reset signals, tri-state busses, and low-power gated clocks.
    Type: Application
    Filed: March 20, 2002
    Publication date: December 5, 2002
    Inventors: Laung-Terng Wang, Meng-Chyi Lin, Xiaoqing Wen, Hsin-Po Wang, Chi-Chan Hsu, Shih-Chia Kao, Fei-Sheng Hsu
  • Publication number: 20020138801
    Abstract: A method and apparatus for inserting design-for-debug (DFD) circuitries in an integrated circuit to debug or diagnose DFT modules, including scan cores, memory BIST (built-in self-test) cores, logic BIST cores, and functional cores. The invention further comprises using a DFD controller for executing a plurality of DFD commands to debug or diagnosis the DFT modules embedded with the DFD circuitries. When used alone or combined together, these DFD commands will detect or locate physical failures in the DFT modules in the integrated circuit on an evaluation board or system using a low-cost DFT debugger. A computer-aided design (CAD) method is further developed to synthesize the DFD controller and DFD circuitries according to the IEEE 1149.1 Boundary-scan Std. The DFD controller supports, but is not limited to, the following DFD commands: RUN_SCAN, RUN_MBIST, RUN_LBIST, DBG_SCAN, DBG_MBIST, DBG_LBIST, DBG_FUNCTION, SELECT, SHIFT, SHIFT_CHAIN, CAPTURE, RESET, BREAK, RUN, STEP, and STOP.
    Type: Application
    Filed: February 27, 2002
    Publication date: September 26, 2002
    Inventors: Laung-Terng Wang, Ming-Tung Chang, Shyh-Horng Lin, Hao-Jan Chao, Jaehee Lee, Hsin-Po Wang, Xiaoqing Wen, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Sen-Wei Tsai, Chi-Chan Hsu
  • Publication number: 20020120896
    Abstract: A method and apparatus for providing ordered capture clocks to detect or locate faults within N clock domains and faults crossing any two clock domains in an integrated circuit or circuit assembly in self-test or scan-test mode, where N>1 and each domain has a plurality of scan cells. The method and apparatus allows generating and loading N pseudorandom or predetermined stimuli to all the scan cells within the N clock domains in the integrated circuit or circuit assembly during the shift operation, applying an ordered sequence of capture clocks to all the scan cells within the N clock domains during the capture operation, compacting or comparing N output responses of all the scan cells for analysis during the compact/compare operation, and repeating the above process until a predetermined limiting criteria is reached. A computer-aided design (CAD) system is further developed to realize the method and synthesize the apparatus.
    Type: Application
    Filed: February 7, 2002
    Publication date: August 29, 2002
    Inventors: Laung-Terng Wang, Po-Ching Hsu, Shih-Chia Kao, Meng-Chyi Lin, Hsin-Po Wang, Hao-Jan Chao, Xiaoqing Wen