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Mtec in VLSI design and embedded systems

Location:
India
Posted:
September 03, 2015

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Resume:

Resume

Kavyashree C

Mobile: 997-***-****

E-mail: acriy4@r.postjobfree.com

Career Objective

Looking for challenging job where I can reach at infinite success in technical field full efficient effectiveness and hard work for the growth of an organization along with improvement in my own professional skill.

About the Profile

I Completed Post graduation M. Tech (VLSI Design and Embedded systems) from Vemana Institute of Technology. I have presented two technical papers at National Conferences and one awarded with best paper. Enclosed Annexure – 1 shows the Individual Project carried out throughout my course of education.

Paper presentation and Professional strengths

Paper presentation on “security surveillance mobile robot navigation with ultrasonic sensor using RF technology” at Dr. A.I.T, Bangalore on 28th April 2015.

Paper presentation on “Blue Eyes Technology” at Bangalore Institute of Technology, Bangalore.

Project exhibition on Gas leakage sensor at Dr. A.I.T, Bangalore.

Excellent knowledge of Electronics Technology and the new Methodologies and in-depth knowledge in latest IT technologies.

Manage the PowerPoint Presentation for students and provide a Conceptual Knowledge and make them visualize the things and identify the weak points of students.

Ability to complete assigned course within Limited Time Period. Familiar with the Policies and Guidelines of University.

Ability to explain Technical Concepts and Ideas in a clear and precise way and initiate, facilitate, and moderate classroom discussions.

Educational Qualifications

M. Tech (VLSI design & Embedded Systems) in 2015 passed out at “Vemana Institute of Technology”, Bangalore, VTU, Belgaum, and Aggregate 71.66 %( up to 3rd Semester).

BE (Electronics and Communication Engineering) in 2013 passed out at “Shirdi Sai Engineering College”, Bangalore, VTU, Belgaum, and Aggregate 65 %.

PUC (Karnataka Govt. PU Board) in 2009 passed out at “Swami Vivekananda PU College”, Bangalore with 74 %.

SSLC (Karnataka Govt. SSLC Board) in 2007 passed out at “Evergreen High School”, Bangalore with 91.68 %.

Technical Skills

Software Tools - CADENCE VIRTUSO layout/schematic editor, Xilinx MATLAB,

Code Composer Studio

Microprocessors - 8086

DSP - TMS320F28335

Microcontrollers - 8051

Programming languages - C, C++

HDL - Verilog, VHDL

Office Automation - MS - Word, Excel and PowerPoint

Achievements

Academics

Got best paper award “security surveillance mobile robot navigation with ultrasonic sensor using RF technology” at Dr. A.I.T, Bangalore.

Awarded intra college Quiz competition at Shirdi Sai Engineering College.

Awarded 1st Prize for Taluk level TT competition

Awarded 2nd Prize for Taluk level Shuttle competition

Topper award in SSLC (10th) at Evergreen High School, Bangalore.

Workshops Attended

An ANDROID and its applications

ATONOMOUS ROBOTICS

Personal skills

Excellent willingness to learn team facilitator.

Smart worker.

Quick learner

Annexure – 1

M.Tech Projects

1. Design And Development Of Mobile Robot Navigation System Prototype For Security Surveillance In Sensitive Areas.

Abstract: The main objective of this project is to design and develop the prototype of “Mobile Robot Navigation System” (MRNS) for security surveillance system in sensitive areas such as Nuclear power plants, Chemical industries, Military borders etc.,. The MRNS has two separate units namely “Control Unit” (CU) and “Receiver Mobile Robot Unit” (RMRU). The CU unit has microcontroller, RF transmitter, weapon trigger switch and LCD. The RMRU has the components such as ultrasonic and IR sensors for obstacle detection, a wireless camera to have awareness of the situation, and to detect the threats, RF receiver, and microcontroller. The maximum operational distance range of MRNS is 2 meter radius. Within 2m radius range the MRNS can detect the obstacles such as wood, plastic, metal, human beings, animals etc., Further the RMRU is supplemented with non-lethal weapon to make the detected enemies unconscious.

2. Implementation of Low Power 10T SRAM Cell

Abstract: Implementation of low-power non-pre-charge-type two-port SRAM cell. The memory cell (MC) has ten transistors (10T), comprised of the conventional 6T MC, a readout inverter and a transmission gate for a read port. Since the readout inverter fully charges/discharges a read bit line, there is no pre-charge circuit on the read bit-line. Thus, power is not consumed by pre-charging, but is consumed only when a readout datum is changed. This feature is suitable to video processing since image data have special correlation and similar data are read out in consecutive cycles. As well as the power reduction, the pre-chargeless structure shortens a cycle time by 38%compared with the conventional SRAM, because it does not require a pre-charge period. This, in turn demonstrates that the 10T SRAM operates at a lower voltage, which achieves further power reduction. Compared to the conventional 8T SRAM, the proposed SRAM reduces a charge/discharge possibility to 19% (81% reduction) on the bit lines, and saves 64% of a readout power when considered to 8T SRAM.

3. An Efficient Baugh-Wooley Architecture for both Signed & Unsigned Multiplication.

Abstract: High speed multiplier using the shift and adds method of Baugh-Wooley Multiplier. This parallel multiplier uses lesser adders and lesser iterative steps. As a result of which they occupy lesser space as compared to components which are as small as possible. Experimental result demonstrate that the proposed circuit is not only improves the accurate consumption that is dynamic power of 15.3mW and maximum clock period of 3.912ns is required which is very efficient as compared to the serial multiplier. This is very important criteria because in the fabrication of chips and high performance system requires performance but also reduces the hardware complexity and also less power.

BE Projects

1. Lab view for communication

The project is about the Virtual instrumentation. It is the use of customizable software and modular measurement hardware to create user- defined measurement systems, called virtual instruments.

Personal Information

Father Name - Chandrashekara. M

Date of Birth - 17-01-1992

Languages Known - English, Kannada and Hindi

Permanent Address - #1, Block – 13, Kaveri Sankeerna, Police Officers Qtrs, Adugodi,Bangalore-560030

Self Declaration

I Kavyashree C. hereby declare that all the above given details are true and correct to the best of my knowledge and belief.

Date : Kavyashree C

Place : Bangalore



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