$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Variable resistor apparatus formed utilizing nanotechnology 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01C-007/10
출원번호 US-0045846 (2005-01-31)
발명자 / 주소
  • Nugent,Alex
출원인 / 주소
  • KnowmTech, LLC
대리인 / 주소
    Ortiz &
인용정보 피인용 횟수 : 57  인용 특허 : 44

초록

A variable resistor apparatus includes a plurality of nanoparticles disposed between two terminals, wherein the plurality of nanoparticles provides an electrical resistance. An electric field applied to the plurality of nanoparticles across the two terminals results in an alignment of the nanopartic

대표청구항

What is claimed is: 1. A variable resistor apparatus, comprising: a plurality of nanoparticles disposed between two terminals, wherein said plurality of nanoparticles acts as an electrical resistance; and an electric field applied perpendicular to said plurality of nanoparticles across said two ter

이 특허에 인용된 특허 (44)

  1. Francisco Jose Ayala, Adaptive neural learning system.
  2. Smith John Stephen ; Yeh Hsi-Jen J. ; Hadley Mark A. ; Verma Ashish K., Apparatus for fabricating self-assembling microstructures.
  3. Works George A. (San Diego CA) Hicks William L. (San Diego CA) Kasbo Richard L. (San Diego CA) Muenchau Ernest E. (San Diego CA) Deiss Stephen R. (Encinitas CA), Array processor.
  4. Walter L. Brown ; Sungho Jin ; Wei Zhu, Article comprising vertically nano-interconnected circuit devices and method for making the same.
  5. Uchikawa Yoshiki,JPX ; Furuhashi Takeshi,JPX ; Yamaguchi Masashi,JPX ; Fujime Yoko,JPX, Autonomic system for updating fuzzy neural network and control system using the fuzzy neural network.
  6. Kuekes Philip J. ; Williams R. Stanley, Demultiplexer for a molecular wire crossbar network (MWCN DEMUX).
  7. Ginosar Ran,ILX ; Weinberg Nitzan,ILX, Digital hardware architecture for realizing neural network.
  8. Huang Shi-Fong,TWX, Digital neural node.
  9. Jim-Shih Liaw ; Theodore W. Berger, Dynamic synapse for signal processing in neural networks.
  10. Forouhi Abdul Rahim (San Jose CA) Hamdy Esmat Z. (Fremont CA) Hu Chenming (Alamo CA) McCollum John L. (Saratoga CA), Electrically programmable antifuse.
  11. McHardy John (Westlake Village CA) Townsend Carl W. (Los Angeles CA) Higley Lin R. (Laguna Hills CA) Ludwig Frank A. (Rancho Palos Verdes CA), Electrochemical synapses for artificial neural networks.
  12. Rogers John A. ; Jackman Rebecca J. ; Whitesides George M., Fabrication of small-scale cylindrical articles.
  13. Bose Chinmoy Bhusan (Green Brook NJ), Feedback process control using a neural network parameter estimator.
  14. Cheng-Jer Yang TW; Fu-Kuo Tan-Tai TW; Huang-Chung Cheng TW, Low dielectric constant nanotube.
  15. Nandakishore Kambhatla ; Dimitri Kanevsky ; Wlodek Wlodzimierz Zadrozny, Method and apparatus for executing neural network applications on a network of embedded devices.
  16. Clark Noel A. (Boulder CO) Douglas Kenneth (Boulder CO) Rothschild Kenneth J. (Newton MA), Method for parallel fabrication of nanometer scale multi-device structures.
  17. Connolly Dennis Michael, Method of chemically assembling nano-scale devices.
  18. Phaedon Avouris ; Philip G. Collins ; Richard Martel, Methodology for electrically induced selective breakdown of nanotubes.
  19. Kuekes Philip J. ; Williams R. Stanley ; Heath James R., Molecular wire crossbar memory.
  20. Kuekes Philip J. ; Williams R. Stanley ; Heath James R., Molecular-wire crossbar interconnect (MWCI) for signal routing and communications.
  21. James C. Ellenbogen, Monomolecular electronic device.
  22. Chen Yong ; Williams R. Stanley, Nanoscale patterning for the formation of extensive wires.
  23. Yong Chen ; R. Stanley Williams, Nanoscale patterning for the formation of extensive wires.
  24. Otto Z. Zhou ; Bo Gao, Nanotube-based high energy material and method.
  25. Jackie Y. Ying ; Zhibo Zhang ; Lei Zhang ; Mildred S. Dresselhaus, Nanowire arrays.
  26. Castelaz Patrick F. (Yorba Linda CA) Mills Dwight E. (La Verne CA) Woo Steven C. (Stanford CA) Jmaev Jack I. (La Habra CA) Henrikson Tammy L. (Fullerton CA), Neural engine for emulating a neural network.
  27. Neely William Shields, Neural network signal processor for magnetic storage channels.
  28. Colak Sel B.,NLX, Neural network using inhomogeneities in a medium as neurons and transmitting input signals in an unchannelled wave patte.
  29. Tomabechi Hideto,JPX, Neural network, a method of learning of a neural network and phoneme recognition apparatus utilizing a neural network.
  30. John C. Carson ; Christ H. Saunders, Neural processing module with input architectures that make maximal use of a weighted synapse array.
  31. Steimle Andre,FRX ; Tannhof Pascal,FRX ; Paillet Guy,FRX, Neural semiconductor chip and neural networks incorporated therein.
  32. Kozicki Michael N. ; West William C., Programmable metallization cell structure and method of making same.
  33. Kozicki Michael N. ; West William C., Programmable metallization cell structure and method of making same.
  34. Kozicki Michael N. ; West William C., Programmable metallization cell structure and method of making same.
  35. Kozicki Michael N. ; West William C., Programmable metallization cell structure and method of making same.
  36. Kozicki, Michael N.; West, William C., Programmable sub-surface aggregating metallization structure and method of making same.
  37. Mashiko Koichiro (Hyogo JPX), Semiconductor neural network and operating method thereof.
  38. Mashiko Koichiro (Hyogo JPX), Semiconductor neural network including photosensitive coupling elements.
  39. John Gerard Lavin ; Harry Vaughn Samuelson, Single-wall carbon nanotube-polymer composites.
  40. Ishikawa Akira, Spherical shaped semiconductor integrated circuit.
  41. Reed Mark A. (New Haven CT), Sub-nanoscale electronic systems and devices.
  42. Alex Freeman, System and method for plasma etch on a spherical shaped device.
  43. Randall John N. ; Frazier Gary A., Universal quantum dot logic cell.
  44. Schulz, Robert; Boily, Sabin; Joly, Alain; Van Neste, Andre; Alamdari, Houshang, Varistors based on nanocrystalline powders produced by mechanical grinding.

이 특허를 인용한 특허 (57)

  1. Nugent, Alex, Adaptive neural network utilizing nanotechnology-based components.
  2. Nugent, Alex, Anti-hebbian and hebbian computing with thermodynamic RAM.
  3. Pakhomov, Serguei V. S.; Hemmy, Laura Sue; Lim, Kelvin O., Automated verbal fluency assessment.
  4. Pakhomov, Serguei V. S., Automatic measurement of speech fluency.
  5. Pakhomov, Serguei V. S., Automatic measurement of speech fluency.
  6. Manning, H. Montgomery; Rueckes, Thomas; Bertin, Claude L., Compact electrical switching devices with nanotube elements, and methods of making same.
  7. Mouttet, Blaise Laurent, Crossbar arithmetic and summation processor.
  8. Mouttet, Blaise Laurent, Crossbar waveform driver circuit.
  9. Ward, Jonathan W.; Egerton, Elwood James; Sen, Rahul; Segal, Brent M., Electromagnetic and thermal sensors using carbon nanotubes and methods of making same.
  10. Nugent, Alex, Extensible adaptive classification framework.
  11. Nugent, Alex, Fractal memory and computational methods and systems based on nanotechnology.
  12. Nugent,Alex, Fractal memory and computational methods and systems based on nanotechnology.
  13. Nugent, Alex, Framework for the evolution of electronic neural assemblies toward directed goals.
  14. Nugent, Alex, Framework for the evolution of electronic neural assemblies toward directed goals.
  15. Nugent, Alex, Hierarchical temporal memory methods and systems.
  16. Nugent, Alex, High density synapse chip using nanoparticles.
  17. Bertin, Claude L.; Guo, Frank; Rueckes, Thomas; Konsek, Steven L.; Meinhold, Mitchell; Strasburg, Max; Sivarajan, Ramesh; Huang, X. M. Henry, Memory arrays using nanotube articles with reprogrammable resistance.
  18. Liu, Jun; Violette, Michael P., Memory devices having electrodes comprising nanowires.
  19. Liu, Jun; Violette, Michael P., Memory devices having electrodes comprising nanowires, systems including same and methods of forming same.
  20. Liu, Jun; Violette, Michael P., Memory devices having electrodes comprising nanowires, systems including same and methods of forming same.
  21. Bertin, Claude L.; Huang, X. M. Henry; Rueckes, Thomas; Sivarajan, Ramesh, Memory elements and cross point switches and arrays of same using nonvolatile nanotube blocks.
  22. Bertin, Claude L.; Huang, X. M. Henry; Rueckes, Thomas; Sivarajan, Ramesh, Memory elements and cross point switches and arrays of same using nonvolatile nanotube blocks.
  23. Nugent, Alex, Memristive neural processor utilizing anti-hebbian and hebbian technology.
  24. Nugent, Alex, Memristor apparatus.
  25. Nugent, Alex, Memristor apparatus with meta-stable switching elements.
  26. Nugent, Alex, Method and system for a hierarchical temporal memory utilizing a router hierarchy and hebbian and anti-hebbian learning.
  27. Nugent, Alex, Methods and systems for Anti-Hebbian and Hebbian (AHaH) feature extraction of surface manifolds using.
  28. Nugent, Alex, Methods and systems for feature extraction.
  29. Nugent, Alex, Methods and systems for fractal flow fabric.
  30. Nugent, Alex, Methods for performing anti-hebbian and hebbian (AHAH) based feature extraction of surface manifolds for compression.
  31. Liu, Jun; Violette, Michael P., Methods of forming memory devices having electrodes comprising nanowires.
  32. Liu, Jun; Violette, Michael P., Methods of operating memory devices and electronic systems.
  33. Nugent, Alex, Multilayer training in a physical neural network formed utilizing nanotechnology.
  34. Manning, H. Montgomery; Rueckes, Thomas; Bertin, Claude L.; Ward, Jonathan W.; Derderian, Garo, NRAM arrays with nanotube blocks, nanotube traces, and nanotube planes and methods of making same.
  35. Kang,Hee Bok, Nano tube cell, and semiconductor device having nano tube cell and double bit line sensing structure.
  36. Kang,Hee Bok, Nano tube cell, and semiconductor device having nano tube cell and double bit line sensing structure.
  37. Colli, Alan, Nanowire.
  38. Friedman, Daniel J.; Kim, Seongwon; Lam, Chung H.; Modha, Dharmendra S.; Rajendran, Bipin; Tierno, Jose A., Producing spike-timing dependent plasticity in a neuromorphic network utilizing phase change synaptic devices.
  39. Friedman, Daniel J.; Kim, Seongwon; Lam, Chung H.; Modha, Dharmendra S.; Rajendran, Bipin; Tierno, Jose A., Producing spike-timing dependent plasticity in a neuromorphic network utilizing phase change synaptic devices.
  40. Friedman, Daniel J.; Kim, Seongwon; Lam, Chung H.; Modha, Dharmendra S.; Rajendran, Bipin; Tierno, Jose A., Producing spike-timing dependent plasticity in a neuromorphic network utilizing phase change synaptic devices.
  41. Mouttet,Blaise Laurent, Programmable crossbar signal processor.
  42. Mouttet,Blaise Laurent, Programmable crossbar signal processor used as morphware.
  43. Mouttet,Blaise Laurent, Programmable crossbar signal processor used in image processing.
  44. Mouttet,Blaise Laurent, Programmable crossbar signal processor with input/output tip interconnection.
  45. Mouttet,Blaise Laurent, Programmable crossbar signal processor with op-amp outputs.
  46. Mouttet,Blaise Laurent, Programmable crossbar signal processor with rectification layer.
  47. Viviani, Darlene, Resistive change element arrays using resistive reference elements.
  48. Rose, Jeffrey A.; Rose, James Adam; Rose, Stephen D.; Cooper, Raymond, Robot skeletal components.
  49. Rose, Jeffrey A.; Rose, James Adam; Rose, Stephen D.; Cooper, Raymond, Rotational hydraulic joints.
  50. Nugent, Alex, Self-evolvable logic fabric.
  51. Mouttet, Blaise Laurent, Symmetrical programmable memresistor crossbar structure.
  52. Nugent, Alex, System for AHAH-based feature extraction of surface manifolds.
  53. Yufik, Yan M., Systems and methods for a computer understanding multi modal data streams.
  54. Nugent, Alex; Molter, Timothy, Thermodynamic random access memory for neuromorphic computing utilizing AHaH (anti-hebbian and hebbian) and memristor components.
  55. Rose, Jeffrey A.; Rose, James Adam; Rose, Stephen D.; Cooper, Raymond, Touch sensitive robotic gripper.
  56. Rose, Jeffrey A.; Rose, James Adam; Rose, Stephen D.; Cooper, Raymond; Sweda, Jeffrey John, Touch sensitive robotic gripper.
  57. Rose, Jeffrey A.; Rose, James Adam; Rose, Stephen D.; Cooper, Raymond; Sweda, Jeffrey John, Touch sensitive robotic gripper.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로