MTCMOS DESIGN METHODOLOGIES AND CHARGE RECYCLING PROCESS

α
P.Sreenivasulu
P.Sreenivasulu
σ
Krishnna veni
Krishnna veni
ρ
Dr. K.Srinivasa Rao
Dr. K.Srinivasa Rao
α Jawaharlal Nehru Technological University, Kakinada Jawaharlal Nehru Technological University, Kakinada

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MTCMOS DESIGN METHODOLOGIES AND CHARGE RECYCLING PROCESS

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Abstract

technology provides a solution to the high performance and low power design requirements of modern designs. Low Vth and high Vth transistors are used in MTCMOS technology. Low Vth transistors are used to implement the desired functions. High Vth transistors are used to cut off the leakage current. The MTCMOS circuits ,however suffer from high energy overhead during the transitions between the active and stand by modes In this paper we (i) propose a new special flip flop which keeps a valid data during the sleep mode, (ii) develop a methodology which takes in to account the new design issues related to the MTCMOS technology. (iii).propose two adaptive MTCMOS schemes to address the growing leakage and delay spreads found in modern high performance designs. (IV) Propose a technique to lower the energy overhead during the transitions between the active and standby modes. The charge stored at the virtual lines is recycled during the active-to-sleep-toactive mode transitions with the proposed technique.

References

10 Cites in Article
  1. S Mutoh,S Shigematsu,Y Matsuya,H Fukuda,J Yamada (1996). A 1 V multi-threshold voltage CMOS DSP with an efficient power management technique for mobile phone application.
  2. T Kuroda (1996). A 0.9V 15OMHz lOmW 4mm2 2-D Discrete Cosine Transform Core Processor with Variable-Threshold Voltage Scheme.
  3. S Shigematsu,S Mutoh,Y Matsuya,Y Tanabe,J Yamada (1997). A 1-V high-speed MTCMOS circuit scheme for power-down application circuits.
  4. S Nassif (2001). Modeling and Analysis of Manufacturing Variations.
  5. Volkan Kursun,Eby Friedman (2006). Multi‐Voltage CMOS Circuit Design.
  6. G Sery,S Borkar,V De (2002). Life is CMOS: Why Chase Life After?.
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Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

P.Sreenivasulu. 2012. \u201cMTCMOS DESIGN METHODOLOGIES AND CHARGE RECYCLING PROCESS\u201d. Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 12 (GJRE Volume 12 Issue F3): .

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Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Version of record

v1.2

Issue date

March 13, 2012

Language
en
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technology provides a solution to the high performance and low power design requirements of modern designs. Low Vth and high Vth transistors are used in MTCMOS technology. Low Vth transistors are used to implement the desired functions. High Vth transistors are used to cut off the leakage current. The MTCMOS circuits ,however suffer from high energy overhead during the transitions between the active and stand by modes In this paper we (i) propose a new special flip flop which keeps a valid data during the sleep mode, (ii) develop a methodology which takes in to account the new design issues related to the MTCMOS technology. (iii).propose two adaptive MTCMOS schemes to address the growing leakage and delay spreads found in modern high performance designs. (IV) Propose a technique to lower the energy overhead during the transitions between the active and standby modes. The charge stored at the virtual lines is recycled during the active-to-sleep-toactive mode transitions with the proposed technique.

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MTCMOS DESIGN METHODOLOGIES AND CHARGE RECYCLING PROCESS

P.Sreenivasulu
P.Sreenivasulu Jawaharlal Nehru Technological University, Kakinada
Krishnna veni
Krishnna veni
Dr. K.Srinivasa Rao
Dr. K.Srinivasa Rao

Research Journals