Patents by Inventor Peigang Hu
Peigang Hu 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).
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Patent number: 11870552Abstract: Coherent optical multiplexing 1+1 protection disclosed herein uses multiplexers, each having multiplexing and demultiplexing sub-units. Relay ports of a node are connected with the multiplexers, and each relay port is configured to input and output optical signals with the corresponding multiplexer. Two transmission ports of the node are connected with disjoint paths and are configured to input and output optical signals therewith. The node includes: a first optical splitter having input ports connected with the relay ports and two output ports connected with the two transmission ports; an optical switch connected with the transmission ports respectively via two input interfaces; a second optical splitter, which is a 1×N optical splitter, having one input port connected with an output interface of the optical switch and having output ports connected with the relay ports. The solution is reliable in implementation, has low insertion loss, and has good transmission performance.Type: GrantFiled: March 21, 2023Date of Patent: January 9, 2024Assignee: II-VI DELAWARE, INC.Inventors: Peigang Hu, Yajun Wang
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Publication number: 20230262920Abstract: Optical communication equipment used in data center interconnection (DCI) applications includes a chassis, having one or more panel modules or line cards and an earring bracket for securing the chassis. Also included is an extended management bracket, extending from the chassis, and an extended function module extending from the extended management bracket, located in an area in front of the chassis. A cable can be provided between the chassis and the extended function module, supporting data transmission therebetween. Alternatively, or in addition, a printed circuit board assembly can be mounted within the chassis, extending outside the chassis, along or within the extended management bracket, from a proximal end to a distal end of the extended management bracket, configured for connection to components of the extended function module, where the printed circuit board assembly supports data transmission and/or power supply between the chassis and components of the extended function module.Type: ApplicationFiled: February 9, 2023Publication date: August 17, 2023Inventors: Yonghao Xu, Peigang Hu, Jianfeng Ying
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Publication number: 20230224060Abstract: Coherent optical multiplexing 1+1 protection disclosed herein uses multiplexers, each having multiplexing and demultiplexing sub-units. Relay ports of a node are connected with the multiplexers, and each relay port is configured to input and output optical signals with the corresponding multiplexer. Two transmission ports of the node are connected with disjoint paths and are configured to input and output optical signals therewith. The node includes: a first optical splitter having input ports connected with the relay ports and two output ports connected with the two transmission ports; an optical switch connected with the transmission ports respectively via two input interfaces; a second optical splitter, which is a 1×N optical splitter, having one input port connected with an output interface of the optical switch and having output ports connected with the relay ports. The solution is reliable in implementation, has low insertion loss, and has good transmission performance.Type: ApplicationFiled: March 21, 2023Publication date: July 13, 2023Inventors: Peigang HU, Yajun WANG
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Patent number: 11637646Abstract: Coherent optical multiplexing 1+1 protection disclosed herein uses multiplexers, each having multiplexing and demultiplexing sub-units. Relay ports of a node are connected with the multiplexers, and each relay port is configured to input and output optical signals with the corresponding multiplexer. Two transmission ports of the node are connected with disjoint paths and are configured to input and output optical signals therewith. The node includes: a first optical splitter having input ports connected with the relay ports and two output ports connected with the two transmission ports; an optical switch connected with the transmission ports respectively via two input interfaces; a second optical splitter, which is a 1×N optical splitter, having one input port connected with an output interface of the optical switch and having output ports connected with the relay ports. The solution is reliable in implementation, has low insertion loss, and has good transmission performance.Type: GrantFiled: May 24, 2022Date of Patent: April 25, 2023Assignee: II-VI DELAWARE, INC.Inventors: Peigang Hu, Yajun Wang
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Publication number: 20220368446Abstract: Coherent optical multiplexing 1+1 protection disclosed herein uses multiplexers, each having multiplexing and demultiplexing sub-units. Relay ports of a node are connected with the multiplexers, and each relay port is configured to input and output optical signals with the corresponding multiplexer. Two transmission ports of the node are connected with disjoint paths and are configured to input and output optical signals therewith. The node includes: a first optical splitter having input ports connected with the relay ports and two output ports connected with the two transmission ports; an optical switch connected with the transmission ports respectively via two input interfaces; a second optical splitter, which is a 1×N optical splitter, having one input port connected with an output interface of the optical switch and having output ports connected with the relay ports. The solution is reliable in implementation, has low insertion loss, and has good transmission performance.Type: ApplicationFiled: May 24, 2022Publication date: November 17, 2022Inventors: Peigang HU, Yajun WANG
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Patent number: 11374673Abstract: Coherent optical multiplexing 1+1 protection disclosed herein uses multiplexers, each having multiplexing and demultiplexing sub-units. Relay ports of a node are connected with the multiplexers, and each relay port is configured to input and output optical signals with the corresponding multiplexer. Two transmission ports of the node are connected with disjoint paths and are configured to input and output optical signals therewith. The node includes: a first optical splitter having input ports connected with the relay ports and two output ports connected with the two transmission ports; an optical switch connected with the transmission ports respectively via two input interfaces; a second optical splitter, which is a 1×N optical splitter, having one input port connected with an output interface of the optical switch and having output ports connected with the relay ports. The solution is reliable in implementation, has low insertion loss, and has good transmission performance.Type: GrantFiled: June 1, 2021Date of Patent: June 28, 2022Assignee: II-VI DELAWARE, INCInventors: Peigang Hu, Yajun Wang
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Publication number: 20210376947Abstract: Coherent optical multiplexing 1+1 protection disclosed herein uses multiplexers, each having multiplexing and demultiplexing sub-units. Relay ports of a node are connected with the multiplexers, and each relay port is configured to input and output optical signals with the corresponding multiplexer. Two transmission ports of the node are connected with disjoint paths and are configured to input and output optical signals therewith. The node includes: a first optical splitter having input ports connected with the relay ports and two output ports connected with the two transmission ports; an optical switch connected with the transmission ports respectively via two input interfaces; a second optical splitter, which is a 1×N optical splitter, having one input port connected with an output interface of the optical switch and having output ports connected with the relay ports. The solution is reliable in implementation, has low insertion loss, and has good transmission performance.Type: ApplicationFiled: June 1, 2021Publication date: December 2, 2021Inventors: Peigang HU, Yajun WANG
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Publication number: 20190158940Abstract: A procedure for transferring wavelengths, and a system that operates in accordance with the procedure. The system comprises at least one network terminal, each including a switch and a controller. A plurality of wavelength sets are applied to the switch. The controller is arranged to operate the switch such that the switch (a) selects at least one wavelength from at least one of the plurality of wavelength sets, based on electrical monitoring at a port module external to the network terminal, and (b) outputs the at least one wavelength to an output of the at least one network terminal.Type: ApplicationFiled: January 4, 2019Publication date: May 23, 2019Inventors: Peigang Hu, Eric L. Chan, Matthew S. Vrba
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Publication number: 20170332158Abstract: A procedure for transferring wavelengths, and a system that operates in accordance with the procedure. The system comprises at least one network terminal, each including a switch and a controller. A plurality of wavelength sets are applied to the switch. The controller is arranged to operate the switch such that the switch (a) selects at least one wavelength from at least one of the plurality of wavelength sets, based on electrical monitoring at a port module external to the network terminal, and (b) outputs the at least one wavelength to an output of the at least one network terminal.Type: ApplicationFiled: July 31, 2017Publication date: November 16, 2017Inventors: Peigang Hu, Eric L. Chan, Matthew S. Vrba
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Patent number: 9723385Abstract: A procedure for transferring wavelengths, and a system that operates in accordance with the procedure. The system comprises at least one network terminal, each including a switch and a controller. A plurality of wavelength sets are applied to the switch. The controller is arranged to operate the switch such that the switch (a) selects at least one wavelength from at least one of the plurality of wavelength sets, based on electrical monitoring at a port module external to the network terminal, and (b) outputs the at least one wavelength to an output of the at least one network terminal.Type: GrantFiled: November 6, 2013Date of Patent: August 1, 2017Assignee: Coriant Operations, LLCInventors: Peigang Hu, Eric L. Chan, Matthew S. Vrba
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Patent number: 9525504Abstract: A network element includes first and second multiplexers, first and second interfaces, and first and second selecting units. The multiplexers are communicatively coupled. The first interface is communicatively coupled to the first multiplexer and configured to receive multiplexed signals. The second interface is communicatively coupled to the second multiplexer and configured to receive multiplexed signals. The first selecting unit is communicatively coupled to the first and second multiplexers and configured to select between a signal received from the first multiplexer and a signal received from the second multiplexer. The second selecting unit is also communicatively coupled to the first and second multiplexers and configured to select between a signal received from the first multiplexer and a signal received from the second multiplexer.Type: GrantFiled: August 12, 2014Date of Patent: December 20, 2016Assignee: CORIANT OPERATIONS, INC.Inventors: Eric L. Chan, Bradley R. Kangas, Peigang Hu
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Publication number: 20160050043Abstract: A network element includes first and second multiplexers, first and second interfaces, and first and second selecting units. The multiplexers are communicatively coupled. The first interface is communicatively coupled to the first multiplexer and configured to receive multiplexed signals. The second interface is communicatively coupled to the second multiplexer and configured to receive multiplexed signals. The first selecting unit is communicatively coupled to the first and second multiplexers and configured to select between a signal received from the first multiplexer and a signal received from the second multiplexer. The second selecting unit is also communicatively coupled to the first and second multiplexers and configured to select between a signal received from the first multiplexer and a signal received from the second multiplexer.Type: ApplicationFiled: August 12, 2014Publication date: February 18, 2016Inventors: Eric L. Chan, Bradley R. Kangas, Peigang Hu
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Publication number: 20150125141Abstract: A procedure for transferring wavelengths, and a system that operates in accordance with the procedure. The system comprises at least one network terminal, each including a switch and a controller. A plurality of wavelength sets are applied to the switch. The controller is arranged to operate the switch such that the switch (a) selects at least one wavelength from at least one of the plurality of wavelength sets, based on electrical monitoring at a port module external to the network terminal, and (b) outputs the at least one wavelength to an output of the at least one network terminal.Type: ApplicationFiled: November 6, 2013Publication date: May 7, 2015Applicant: TELLABS OPERATIONS, INC.Inventors: Peigang Hu, Eric L. Chan, Matthew S. Vrba