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  4. Advanced low power RISC processor design using MIPS instruction set - 2015
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Category: MTech VLSI Projects
By MTech Projects
MTech Projects
01.Jun
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Advanced low power RISC processor design using MIPS instruction set - 2015

PROJECT TITLE:

Advanced low power RISC processor design using MIPS instruction set - 2015

ABSTRACT:

Present era of SOC's comprise analog, digital and mixed signal elements housing on the same chip. In this environment processor plays a very important role. As the technology shrinking to sub-micrometer technology node, there exists an enormous scope of undesirable hazards in processors. These hazards might cause disturbance in area, power and timing which deviate from desired quantities. Our project focuses mainly to resolve some of these problems. In-order to tackle these problems, we are introducing the enhanced version of MIPS. Microprocessor while not Interlocked Pipeline Stages (MIPS) may be a recent architecture into the semi-conductor industry. This project totally concentrates on planning the architecture in Verilog HDL. The planning had been simulated and synthesized in Nc-launch and RTL-compiler licensed by cadence Inc respectively. The physical style of synthesized design had been carried on by Socencounter below slow.lib library of TSMC Cmos 180nm technology node.

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  • Design and Implementation of Area-Efficient and Low-Power Configurable Booth-Multiplier - 2016
  • Design and Implementation of OFDM Transmitter (VHDL)
  • Computing Seeds for LFSR-Based Test Generation From Non test Cubes - 2016
  • Design and Implementation of Digital low power base band processor for RFID Tags (2010)
  • Low-Cost High-Performance VLSI Architecture forMontgomery Modular Multiplication - 2016
  • Glitch free combinational clock gating approach in nanometer VLSI circuits - 2015
  • Performance Analysis of a Low-Power High-Speed Hybrid 1-bit Full Adder Circuit - 2017
  • PNS-FCR: Flexible Charge RecyclingDynamic Circuit Technique forLow-Power Microprocessors - 2016
  • A Low Power Trainable Neuromorphic IntegratedCircuit That Is Tolerant to Device Mismatch - 2016
  • DLAU: A Scalable Deep Learning Accelerator Unit on FPGA - 2017
Previous article: Revisiting Central Limit Theorem Accurate Gaussian Random Number Generation in VLSI - 2015 Revisiting Central Limit Theorem Accurate Gaussian Random Number Generation in VLSI - 2015 Next article: RTL implementation for AMBA ASB APB protocol at system on chip level - 2015 RTL implementation for AMBA ASB APB protocol at system on chip level - 2015
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