Showing posts with label ieee projects for ece. Show all posts
Showing posts with label ieee projects for ece. Show all posts

Thursday, July 17, 2014

VLSI Projects

Very Large Scale Integration (VLSI) describes about the semiconductor integrated circuits which are composed of hundreds of thousands of transistors in a chip. It provides high computational speed with minimum power dissipation, minimum chip area and lower cost. Frontend and Backend domain contains all the design steps of a VLSI chip from system level to layout level. SiliconMentor is the innovative technical group that works in both domains to cover the vast field of VLSI. According to the MRD, a new VLSI chip idea built up for the people requirements. This idea propagates to Frontend technical teams and they start implementation of the project using HDLs. They design RTL level and logic level of the required project. After that Frontend verification is required to check the design specifications using System Verilog. If it passes all the verification successfully then the project further propagates to the Backend group. They perform their task from circuit level to the layout level using various tools such as Cadence Virtuoso, Tanner, and ADS etc.  And verification at backend level is also required to check that specifications. So according to requirements, we have various VLSI project domains such as Digital, Analog VLSI projects, DSP VLSI projects , Communication VLSI projects  and FPGA in  Frontend and Backend projects. SiliconMentor project guidance covers Verilog and System Verilog language, tools like Model_sim, Questa_sim, Xilinx ISE, MATLAB Simulink, Tanner (S-edit, L-edit), ADS, H-Spice, P-Spice, Cadence Orcad and Micro wind. SiliconMentor also works at sub-device level using COMSOL Multiphysics.

                                                         Author- Deepak Berwal
                                                   (Research Associate at Silicon Mentor)



vlsi projects
Tags : VLSI Projects , M.Tech Projects, IEEE Projects , MATLAB Projects , VLSI Projects Training , PhD Projects

Tuesday, July 15, 2014

Research Guidance For VLSI PhD Projects

The main motive of Doing PhD is to invent something excusive for the world. Students pursuing PhD devote four to five year to complete their thesis work which is enough to take technology forward. Research work in PhD involves in-depth identification of problem statement for respective field. One should think very carefully about the scope of research. So PhD projects selection should be highly innovative and must not be selected with the enthusiasm but to maintain the enthusiasm throughout the project until the project is finished.


Research Guidance For PhD projects



Here at SiliconMentor we provide guidance to PhD students for their research work.  We provide a suitable framework for VLSI PhD Research projects. Our research interest  cover Analog circuit design, Ultra low power VLSI design of Standard cell, Advance digital signal processing, Communication IPs, Digital circuit design,  RF & Mixed Signal Circuit design, Image & Video processing for Biomedical applications, FPGA Prototyping,  Processor architecture & bus protocol.Our effort drives us in application development and product development. We try our level best to take the PhD research work up to patent level.

We provide guidance in VLSI PhD projects, VLSI M.tech projects, MATALB PhD Projects, VLSI DSP projects for M.tech, MATLAB projects for M.tech, Analog PhD projects, DSP Projects for PhD, IEEE PhD projects and more even.

Our project support start from topic selection as per choice of students, Literature survey, and problem statement identification, tentative solution for problem, implementation of the projects, Implementation of New research approaches, tool practice and project guidance and the support continues till the final submission.

Tuesday, July 8, 2014

Need for IEEE VLSI Projects


IEEE (Institute of Electrical and Electronics Engineers) is an advanced innovation and technical group of engineers, scientists, developers, physicists, medical doctors and researchers around the world. It has established on 1st  January, 1963 with the merging of societies AIEE (American Institute of Electrical Engineers) and IRE (Institute of Radio Engineers). IEEE is the world’s largest technical professional association which has now many fields such as electronic, electrical, communication, computing, nanotechnology, bioengineering and robotics. Now IEEE serves 38 societies, transactions, 130 journals and 300 conferences anually. IEEE prefers exact experimental research in specific areas. Research is most important for the student, researcher, professor and engineer. Without research, all those has nothing new to deliver to the world. Studies after the graduation means research. 21st centuries research is mainly focused on electronics because modern technological world,involves electronics to make things smart and fast. VLSI (Very Large Scale Integration) is the core domain of electronic semiconductor circuits. IEEE research in VLSI is the need of electronic world. Electronics can not move further without a research in VLSI.So IEEE VLSI projects and research papers are needed for the M.Tech and Ph.D students. VLSI is most innovative and interesting field in electronics. VLSI has mainly two types of design steps: Frontend and Backend. In frontend, we design the system and RTL level using HDLs according to the specification of projects or IC and in backend, we design logic, circuit and layout level of the projects. M.Tech, Ph.D and industrial VLSI projects should be new technological oriented to create new electronics world for the upcoming generation.

           Author - Deepak Berwal
           (Research associate at Silicon Mentor)




Click on the links to get the following Projects list :  
  
VLSI projects       Antenna Projects             MATLAB Projects


Thursday, June 26, 2014

Levels Of IC Design


The design of integrated circuits (IC) contains the different levels of abstraction . According to the IC design standards we can study the complex circuits at following four levels.
1). Device Physics Level  2). Transistor Level  3). Architecture Level  4). System Level

1). The device physics level describes the device internal behaviour for electric field and charge.
2). Transistor level consist of a group of these devices .
3). Architectural level defines a unit of several building blocks to perform a certain functions.
3). System level consist of the set of subsystems.e.g.  ADC, DAC etc.

In conclusion  one may say that in today's IC industry above four levels are essential to achieve a high performance and low cost device.