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Multi-server and multi-CPU power management system and method 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06F-001/26
출원번호 US-0860210 (2001-05-18)
발명자 / 주소
  • Fung,Henry T.
출원인 / 주소
  • Huron IP LLC
대리인 / 주소
    Dykema Gossett PLLC
인용정보 피인용 횟수 : 69  인용 특허 : 58

초록

초록이 없습니다.

대표청구항

대표청구항이 없습니다.

이 특허에 인용된 특허 (58)

  1. Fung Henry Tat-Sang, Activity monitor for computer system power management.
  2. Culp Charles H. (Mundelein IL) Downar Denise J. (Palatine IL), Add/shed load control according to multiple add/shed sequences.
  3. Carter Robert R. (Cypress TX) Garner Paul M. (The Woodlands TX) Cepulis Darren J. (Houston TX) Boone Carrie (Houston TX), Apparatus for reducing computer system power consumption.
  4. Tanaka Nobuyuki (Ome JPX), Battery powered computer system wherein a power supply is selectively shut off when a low battery power is detected.
  5. Bolan Michael L. (Dallas TX) Little Wendell L. (Denton TX), Battery-initiated touch-sensitive power-up.
  6. Yoshida Hidetaka (Kashihara JPX) Haneda Isamu (Nara JPX), Battery-powered computer interface with manual and automatic battery disconnect circuit.
  7. Moore Morris A. (North Lauderdale FL) Braun William V. (Pompano Beach FL), Battery-saving arrangement for pagers.
  8. Shibukawa Masaru (Choufu JPX) Nakamura Hideo (Nishitama JPX) Matsubara Kiyoshi (Koganei JPX), CMOS Circuit with reduced power dissipation and a digital data processor using the same.
  9. Abe, Shunichi; Akiyama, Mitsuo; Kudo, Yoshihiko, Circuit for electric power source.
  10. Hiltpold W. Randolph (Starkville MS) Gowni Shiva P. (Starkville MS), Circuit for selective power-down of unused circuitry.
  11. Lies Kenneth A. (Lubbock TX), Clocked logic low power standby mode.
  12. Rose Frederick A. (Rte. 3 ; Box 529 Fort Atkinson WI 53538) DeWitt Christopher P. (Rte. 3 ; Koshkonong Lake Rd. Fort Atkinson WI 53538), Communications management system having multiple power control modes.
  13. Aihara Toshiharu (Tokyo JPX), Compact electronic apparatus with a refresh unit for a dynamic type memory.
  14. Hirosawa Toshio (Machida JPX) Ohki Masaru (Kodaira JPX) Kuwahara Yutaka (Hachioji JPX), Computer system with power control based on the operational status of terminals.
  15. Nelms George E. (Edina MN) Barthel Thomas C. (Becker MN) Bergland William J. (Fridley MN), Computer system with power control circuit.
  16. Yonezu Kazuya (Tokyo JPX) Matsumoto Keiji (Tokyo JPX), Control processor for controlling a peripheral unit.
  17. Hillion Herv (Eindhoven NLX), Data processing apparatus with energy saving clocking device.
  18. Swartz Jack S. (San Jose CA), Dual mode actuator for disk drive useful with a portable computer.
  19. Fung,Henry T., Dynamic power and workload management for multi-server system.
  20. Odaohhara, Shigefumi; Naitoh, Arimasa, Dynamic power consumption control for a computer or other electronic apparatus.
  21. Takahashi Takehiro (Toride JPX), IC card and portable terminal.
  22. Nojima Minejiro (Kamakura JPX) Kobayashi Makiji (Yokohama JPX) Kobayashi Atsushi (Tokyo JPX), Integrated circuit with interruptable oscillator circuit.
  23. Little Wendell L. (Carrollton TX), Integrated circuit with watchdog timer and sleep control logic which places IC and watchdog timer into sleep mode.
  24. Yorimoto Yoshikazu (Tokyo JPX) Takahashi Masashi (Tokyo JPX) Hirano Seiji (Tokyo JPX), Integrated-circuit card with active mode and low power mode.
  25. Iwamoto Eisaburo (Tokyo JPX), Low power consumption data processing system.
  26. Cole James F. (Palo Alto CA) McNamara James H. (Santa Cruz CA), Low-power, standby mode computer.
  27. Patton Paul B. (Rockford MN) Kidder Kenneth B. (Coon Rapids MN), Method and apparatus for testing signal quality in a burner control system.
  28. Nguyen Au H. (Santa Clara CA), Method for reducing power consumption includes comparing variance in number of time microprocessor tried to react input.
  29. Cho Tae-Young (Suwon KRX), Method of controlling the electric power supplied to a modem.
  30. Watanabe Minoru (Tokyo JPX), Microcomputer which enters sleep mode for a predetermined period of time on response to an activity of an input/output d.
  31. Fung Henry Tat-Sang, Multi-mode power switching for computer systems.
  32. Fung Henry Tat-Sang, Multi-state power management for computer systems.
  33. Kato Mitsuharu (Aichi JPX), One-chip data processing device including low voltage detector.
  34. Nagae Akihito (Tokyo JPX), Personal computer for cutting off power when a lock mechanism of hard disk pack is released.
  35. Culley Paul R. (Cypress TX), Personal computer having normal and high speed execution modes.
  36. Fung Henry T. S. (San Jose CA), Power conservation apparatus having multiple power reduction levels dependent upon the activity of the computer system.
  37. Whittaker Bruce E. (San Juan Capistrano CA) Jeppesen ; III James H. (El Toro CA) Sharp Larry D. (San Juan Capistrano CA), Power control network for multiple digital modules.
  38. Kuzawinski Mark J. (Maine NY) Zielinski Edward J. (Endicott NY), Power controller for permitting multiple processors to power up shared input/output devices and inhibit power down until.
  39. Smith R. Steven (Saratoga CA) Hanlon Mike S. (San Jose CA) Bailey Robert L. (San Jose CA), Power management for a laptop computer with slow and sleep modes.
  40. Frane Terrie L. (Bloomingdale IL), Power saving arrangement for a clocked digital circuit.
  41. Fairbanks John P. (Sunnyvale CA) Yuan Andy C. (Saratoga CA), Power supply and oscillator for a computer system providing automatic selection of supply voltage and frequency.
  42. Christian Ronald W. (Indianapolis IN) Kutzavitch Walter G. (Indianapolis IN), Power supply circuit for a data processor.
  43. Juzswik David L. (Dearborn Heights MI) Webb Nathaniel (Detroit MI) Floyd William M. (Livonia MI), Power-conserving control system for turning-off the power and the clocking for data transactions upon certain system ina.
  44. Rosch Winn L. (Shaker Heights OH), Process and apparatus for reducing power usage microprocessor devices operating from stored energy sources.
  45. Trinh Cuong O. (Daly City CA) Win Vincent (Milpitas CA) Kwan Mark (Milpitas CA), Programmable sense amplifier power reduction.
  46. Harvey Ian E. (El Toro CA) Malinowski Christopher W. (Melbourne Beach FL), Programmable speed/power arrangement for integrated devices having logic matrices.
  47. Watts ; Jr. LaVaughn F. (Temple TX) Wallace Steven J. (Temple TX), Real-time power conservation for portable computers.
  48. Asano Masamichi (Tokyo JPX) Iwahashi Hiroshi (Yokohama JPX), Semiconductor memory device.
  49. Khan Rashid N. (Cupertino CA) Chen Cheng (San Jose CA) Cheng Chien-Feng (Cupertino CA) Verstegen Brian (Sunnyvale CA) Cheng Win-Sheng (Cupertino CA) Gollabinnie Aurav (San Jose CA), Sleep mode refresh apparatus.
  50. Nocilini, John D.; Sharp, Ronald E.; Cuadra, Emilio J., Stanby mode controller utilizing microprocessor.
  51. Kitchin, David A., Synchronous clock stopper for microprocessor.
  52. Davis Walter L. (Plantation FL) Herold Barry W. (Lauderhill FL) Little Wendell L. (Austin TX), Synthesized clock microcomputer with power saving.
  53. Cobb Paul R. (Raleigh NC) Lennon Christopher J. (Cary NC) Long Kenneth J. (Cary NC), System and method for software error early detection and data capture.
  54. Fung, Henry Tat-Sang, System and method of computer operating mode clock control for power consumption reduction.
  55. Nishiura Yoshikazu (Yamatokoriyama JPX) Mineyama Takitsugu (Nara JPX) Inoue Kazuo (Kashihara JPX), System clock generator in integrated circuit.
  56. Fung, Henry T., System, method, and architecture for dynamic server power management and dynamic workload management for multi-server environment.
  57. Mensch ; Jr. William D. (1924 E. Hope St. Mesa AZ 85203), Topography of CMOS microcomputer integrated circuit chip including core processor and memory, priority, and I/O interfac.
  58. Tietjen Donald L. (Austin TX), Wait mode power reduction system and method for data processor.

이 특허를 인용한 특허 (69)

  1. Emma, Philip G., 3-D stacked and aligned processors forming a logical processor with power modes controlled by respective set of configuration parameters.
  2. Emma, Philip G., 3-D stacked and aligned processors forming a logical processor with power modes controlled by respective set of configuration parameters.
  3. Fan, Xiaobo; Hennecke, Mark D.; Heath, Taliver Brooks, Accurate power allotment.
  4. Chan,Hoi Y.; Kephart,Jeffrey O.; Levine,David W., Adaptive dynamic buffering system for power management in server clusters.
  5. Dutton, James E.; Arbilla, Laura; Yoakley, David, Adaptive power conservation in storage clusters.
  6. Dutton, James E.; Arbilla, Laura; Yoakley, David, Adaptive power conservation in storage clusters.
  7. Fung, Henry T., Apparatus and method for modular dynamically power managed power supply and cooling system for computer systems, server applications, and other electronic devices.
  8. Fung, Henry T., Apparatus and method for modular dynamically power managed power supply and cooling system for computer systems, server applications, and other electronic devices.
  9. Bonola, Thomas J.; Faasse, Scott P.; Depew, Kevin G.; Harsany, John S., BIOS-based systems and methods of processor power management.
  10. Weber, Wolf-Dietrich; Fan, Xiaobo; Barroso, Luiz Andre, Computer and data center load determination.
  11. Weber, Wolf-Dietrich; Fan, Xiaobo; Barroso, Luiz Andre, Computer and data center load determination.
  12. Weber, Wolf-Dietrich; Fan, Xiaobo; Barroso, Luiz Andre, Computer and data center load determination.
  13. Aybay, Gunes; Bandyopadhyay, Jaya, Dynamic fabric plane allocation for power savings.
  14. Brey, Thomas M.; Piazza, William Joseph, Dynamic selection of group and device power limits.
  15. Sundararaj, Carthic, Dynamic server farms.
  16. Ghose, Kanad, Energy aware processing load distribution system and method.
  17. Manne, Srilatha; Desikan, Rajagopalan; Pant, Sanjay; Kim, Youngtaek, Guardband reduction for multi-core data processor.
  18. Weber, Wolf-Dietrich; Fan, Xiaobo; Barroso, Luiz Andre, Load control in a data center.
  19. Weber, Wolf-Dietrich; Fan, Xiaobo; Barroso, Luiz Andre, Load control in a data center.
  20. Ji, Minwen; Waldspurger, Carl A.; Zedlewski, John, Method and system for determining a cost-benefit metric for potential virtual machine migrations.
  21. Khatri, Mukund; Khalid, Humayun; Hormuth, Robert W., Method and system for operating-system-independent power management using performance verifications.
  22. Dutton, James E.; Arbilla, Laura; Yoakley, David, Method for processing a request by selecting an appropriate computer node in a plurality of computer nodes in a storage cluster based on a calculated bid value in each computer node.
  23. Chan, Hoi Y.; Das, Rajarshi; Hanson, James E.; Isci, Canturk; Kephart, Jeffrey O.; Levine, David W., Method for saving power in a system by placing inactive computing devices in optimized configuration corresponding to a specific constraint.
  24. Fan, Xiaobo; Hennecke, Mark D.; Heath, Taliver Brooks, Method of correlating power in a data center by fitting a function to a plurality of pairs of actual power draw values and estimated power draw values determined from monitored CPU utilization of a statistical sample of computers in the data center.
  25. Aybay, Gunes, Methods and apparatus for power management associated with a switch fabric.
  26. Manne, Srilatha; Pant, Sanjay; Kim, Youngtaek; Schulte, Michael J., Power control for multi-core data processor.
  27. Fung,Henry T., Power on demand and workload management system and method.
  28. Weber, Wolf-Dietrich; Fan, Xiaobo; Barroso, Luiz Andre, Powering a data center.
  29. Isci, Canturk; Wang, Chengwei; Bhatt, Chirag; Shanmuganathan, Ganesha; Holler, Anne, Process demand prediction for distributed power and resource management.
  30. Isci, Canturk; Wang, Chengwei; Bhatt, Chirag; Shanmuganathan, Ganesha; Holler, Anne Marie, Process demand prediction for distributed power and resource management.
  31. Fukuda, Kazuhisa, Processor and method of controlling execution of processes.
  32. Fukuda, Kazuhisa, Processor and method of controlling execution of processes.
  33. Fukuda, Kazuhisa, Processor and method of controlling execution of processes.
  34. Fukuda, Kazuhisa, Processor and method of controlling execution of processes.
  35. Chan, Hoi Y.; Das, Rajarshi; Hanson, James E.; Isci, Canturk; Kephart, Jeffrey O.; Levine, David W., Saving power by managing the state of inactive computing devices according to specific constraints.
  36. Chan, Hoi Y.; Das, Rajarshi; Hanson, James E.; Isci, Canturk; Kephart, Jeffrey O.; Levine, David W., Saving power by placing inactive computing devices in optimized configuration corresponding to a specific constraint.
  37. Pittelko, Michael H., Single-level cell and multi-level cell hybrid solid state drive.
  38. Aszmann, Lawrence E.; Klemm, Michael J.; Pittelko, Michael H., Solid state drive data storage system and method.
  39. Aszmann, Lawrence E.; Klemm, Michael J.; Pittelko, Michael H., Solid state drive data storage system and method.
  40. Talkin, David; Brooks, Alec, Supplying grid ancillary services using controllable loads.
  41. Ghose, Kanad, System and method for activation of a plurality of servers in dependence on workload trend.
  42. Fung, Henry T., System and method for activity or event base dynamic energy conserving server reconfiguration.
  43. Fung,Henry T., System and method for activity or event based dynamic energy conserving server reconfiguration.
  44. Wenzel, Christiaan; Dasari, Radhakrishna; Jayaraman, Vishwanath; Yin, Jianwen, System and method for power management of storage resources.
  45. Wenzel, Christiaan; Dasari, Radhakrishna; Jayaraman, Vishwanath; Yin, Jianwen, System and method for power management of storage resources.
  46. Zaretsky,Lee B.; Khatri,Mukund P., System and method for power usage level management of blades installed within blade servers.
  47. Klemm, Michael J.; Uttormark, Michael J., System and method for raid management, reallocation, and restriping.
  48. Klemm, Michael J.; Uttormark, Michael J., System and method for raid management, reallocation, and restriping.
  49. Klemm, Michael J.; Uttormark, Michael J., System and method for raid management, reallocation, and restriping.
  50. Aszmann, Lawrence E.; Klemm, Michael J., System and method for transferring data between different raid data storage types for current data and replay data.
  51. Naffziger, Samuel D.; Petry, John P.; Bondalapati, Kiran; Hughes, William A., System for processor power limit management.
  52. Fung, Henry T., System, method, and architecture for dynamic server power management and dynamic workload management for multi-server environment.
  53. Fung, Henry T., System, method, architecture, and computer program product for dynamic power management in a computer system.
  54. Hanson, James E.; Kephart, Jeffrey Owen; Steinder, Malgorzata; Whalley, Ian Nicholas, Systems and methods for coordinated management of power usage and runtime performance in performance-managed computing environments.
  55. Rothschild, Keith Alan, Systems and methods for managing cloud computing resources.
  56. Cameron, Kirk; Turner, Joseph, Systems, devices, and/or methods for managing energy usage.
  57. Arai, Susumi; Orita, Ryuji, Thermal management of a multi-processor computer system.
  58. Jibbe, Mahmoud K.; Ragendran, Arunkumar; Rossario, Britto; Kannan, Senthil, Varying host interface signaling speeds in a storage array.
  59. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  60. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  61. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  62. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  63. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  64. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  65. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  66. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  67. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  68. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
  69. Soran, Philip E.; Guider, John P.; Aszmann, Lawrence E.; Klemm, Michael J., Virtual disk drive system and method.
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