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NAME : Parmar Gajendrakumar Babulal
ADDRESS : B/143 Newyogeswer society, near visalnagar, Isanpur,
Ahmedabad, Gujarat, India.
PHONE NO : 9408923132, 8401920825
EMAIL : gajendra808@rediffmail.com, gbparmar85@gmail.com
CAREER OBJECTIVES:
Technical Engineer position in a fast-paced Engineering lab related to current and new products,
performance testing, documentation & data analysis that build upon my experience and skills in
the Electronics and communication Industry. Intend to build a career with leading corporate of
Hi-tech environment with committed & dedicated people who will help me to explore
myself fully and realize my potential.
QUALIFICATION: B.E: Electronics & Communication from Sankalchand Patel
College of Engineering, Visnagar, Gujarat, India.
M.E: Electronics & Communication from Dharmsinh Desai
University, Nadiad, Gujarat, India.
PROFESSIONAL SKILLS:
Operating Systems Windows, Linux
Programming Languages C, C++, Assembly, VHDL
Embedded Software Keil, Emu8086, Matlab,Win8051
PCB Design software EAGLE, CAD Tools
Other software Quartus II, Xilinx, Multisim, Masm, CCStudio,NS-2.34
Experience: (1) 6th
Month experience in Electronics field from 19-12-2008 to 29-05-2008.
(2) 1 year Research & Development experience in Embedded System.
(3) 1 year and 7 month Teaching experience in degree engineering
College from 16-06-2011 to 07-12-2012.
(4) 3 Year as an Embedded engineer in gbp Embedded System Company
from 25-05-2009 to 30-06-2010, 08-12-2012 to 29-03-2015.
Projects: (1) Title: Comparison between SPI Protocol and IIC Protocol
My Research Project based on Comparison between Serial Peripheral
Interface (SPI) Protocol and Inter Integrated Circuit (I2
C, IIC or I2C)
Protocol. These two are Embedded system Protocol. SPI is a general
purpose synchronous serial interface. During an SPI transfer, transmit and
receive data is simultaneously shifted out and in serially. A serial clock
line synchronizes the shifting and sampling of the information on two
serial data lines. The SPI is mainly used to allow a microcontroller to
communicate with peripheral devices such as E2PROMs. SPI requires
more effort and more hardware resources than I2C when more than one
slave is involved. But SPI tends to be simpler and more efficient than
I2C in point-to-point (single master, single slave) applications for the very
same reason; the lack of device addressing means less overhead. SPI is a
full duplex serial interfaces. It can handle multiple masters and slaves
being connected to a given bus. For this project I have to choose ARM7
Processor and LPC 2368 Philips kit.
(2) Title: Controller Area Network (CAN)
My project based on the Controller Area Network (CAN).
Controller Area Network (CAN) is the definition of a high performance
communication protocol for serial data communication. The CAN
Controller is designed to provide a full implementation of the CAN-
Protocol according to the CAN Specification. Microcontrollers with this
on-chip CAN controller are used to build powerful local networks by
supporting distributed real-time control with a very high level of security.
The applications are automotive, industrial environments, and high speed
networks as well as low cost multiplex wiring. The result is a strongly
reduced wiring harness and enhanced diagnostic and supervisory
capabilities.
(3) Title: Temperature measurement using LM35 sensor
The LM35 series are precision integrated-circuit temperature
sensors, whose output voltage is linearly proportional to the Celsius
(Centigrade) temperature. The LM35 thus has an advantage over linear
temperature sensors calibrated in ° Kelvin, as the user is not required to
subtract a large constant voltage from its output to obtain convenient
Centigrade scaling.
(4) Title: Ultrasonic Range Finder Using PIC 16f84 Controller
The ultrasonic detector is a sensitive stand-alone device for detecting the
distance of the object. However, this device makes us of sound of very
high frequency, higher than that detectable by human ear. We call it
ultrasound. This has the advantage that the person is unaware that the
device is operating in the room. The circuit is designed to emit this
ultrasound waves toward the object and detect the reflected echo, for that
distant measurement we use V = (D/T) concept. Where v= velocity,
T=reflected wave detection time, D=distance.
(5) Title: UART (Universal Asynchronous Receiver Transmitter)
The Universal Asynchronous Receiver Transmitter (UART) is a popular
and widely-used device for data communication in the field of
telecommunication. some of them contain FIFOs for the
receiver/transmitter data buffering and some of them have the 9 Data bits
mode (Start bit + 9 Data bits + Parity + Stop bits). This UART reference
design contains a receiver and a transmitter. The receiver performs serial-
to-parallel conversion on the asynchronous data frame received from the
serial data input SIN. The transmitter performs parallel-to-serial conversion
on the 8-bit data received from the CPU. In order to synchronize the
asynchronous serial data and to insure the data integrity, Start, Parity and
Stop bits are added to the serial data.
(6) Title: Digital clock with integrated alarm
(7) Title: stepper motor
(8) Title: Lcd display
(9) Title: Led display
(10) Title: sine, square and triangular wave generator.
I have also guided to the students in various projects. I know about the ARM
Processor, LPC (low power consumption) kit and related its application.
Extra activities: (1) Serial Peripheral Interface based Research Paper Publications
National conference, International conference and Journal in
Embedded system.
(2) Participate in Robotics Competition.
(3) Participate in Electronics Model Presentation
(4) Participate in Aakash tablet workshop
(5) Participate in Teacher Training program
AREA OF INTERESTS: Interested in Embedded system, Communication, Electronics.
HOBBIES: Reading books.
KEY-STRENGTH:
 Good analytical and quantitative skills
 Self confident
 Better time management capacities
 Work efficiently in group as well as individually
PERSONAL PROFILE
Name : Parmar Gajendrakumar Babulal
Date of Birth : 16Apr’85
Sex : Male
Nationality : Indian
Marital status : Married
Languages Known : English, Hindi and Gujarati.

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Resume for Embedded Engineer_1

  • 1. NAME : Parmar Gajendrakumar Babulal ADDRESS : B/143 Newyogeswer society, near visalnagar, Isanpur, Ahmedabad, Gujarat, India. PHONE NO : 9408923132, 8401920825 EMAIL : gajendra808@rediffmail.com, gbparmar85@gmail.com CAREER OBJECTIVES: Technical Engineer position in a fast-paced Engineering lab related to current and new products, performance testing, documentation & data analysis that build upon my experience and skills in the Electronics and communication Industry. Intend to build a career with leading corporate of Hi-tech environment with committed & dedicated people who will help me to explore myself fully and realize my potential. QUALIFICATION: B.E: Electronics & Communication from Sankalchand Patel College of Engineering, Visnagar, Gujarat, India. M.E: Electronics & Communication from Dharmsinh Desai University, Nadiad, Gujarat, India. PROFESSIONAL SKILLS: Operating Systems Windows, Linux Programming Languages C, C++, Assembly, VHDL Embedded Software Keil, Emu8086, Matlab,Win8051 PCB Design software EAGLE, CAD Tools Other software Quartus II, Xilinx, Multisim, Masm, CCStudio,NS-2.34 Experience: (1) 6th Month experience in Electronics field from 19-12-2008 to 29-05-2008. (2) 1 year Research & Development experience in Embedded System. (3) 1 year and 7 month Teaching experience in degree engineering College from 16-06-2011 to 07-12-2012. (4) 3 Year as an Embedded engineer in gbp Embedded System Company from 25-05-2009 to 30-06-2010, 08-12-2012 to 29-03-2015. Projects: (1) Title: Comparison between SPI Protocol and IIC Protocol My Research Project based on Comparison between Serial Peripheral Interface (SPI) Protocol and Inter Integrated Circuit (I2 C, IIC or I2C) Protocol. These two are Embedded system Protocol. SPI is a general purpose synchronous serial interface. During an SPI transfer, transmit and receive data is simultaneously shifted out and in serially. A serial clock line synchronizes the shifting and sampling of the information on two serial data lines. The SPI is mainly used to allow a microcontroller to communicate with peripheral devices such as E2PROMs. SPI requires
  • 2. more effort and more hardware resources than I2C when more than one slave is involved. But SPI tends to be simpler and more efficient than I2C in point-to-point (single master, single slave) applications for the very same reason; the lack of device addressing means less overhead. SPI is a full duplex serial interfaces. It can handle multiple masters and slaves being connected to a given bus. For this project I have to choose ARM7 Processor and LPC 2368 Philips kit. (2) Title: Controller Area Network (CAN) My project based on the Controller Area Network (CAN). Controller Area Network (CAN) is the definition of a high performance communication protocol for serial data communication. The CAN Controller is designed to provide a full implementation of the CAN- Protocol according to the CAN Specification. Microcontrollers with this on-chip CAN controller are used to build powerful local networks by supporting distributed real-time control with a very high level of security. The applications are automotive, industrial environments, and high speed networks as well as low cost multiplex wiring. The result is a strongly reduced wiring harness and enhanced diagnostic and supervisory capabilities. (3) Title: Temperature measurement using LM35 sensor The LM35 series are precision integrated-circuit temperature sensors, whose output voltage is linearly proportional to the Celsius (Centigrade) temperature. The LM35 thus has an advantage over linear temperature sensors calibrated in ° Kelvin, as the user is not required to subtract a large constant voltage from its output to obtain convenient Centigrade scaling. (4) Title: Ultrasonic Range Finder Using PIC 16f84 Controller The ultrasonic detector is a sensitive stand-alone device for detecting the distance of the object. However, this device makes us of sound of very high frequency, higher than that detectable by human ear. We call it ultrasound. This has the advantage that the person is unaware that the device is operating in the room. The circuit is designed to emit this ultrasound waves toward the object and detect the reflected echo, for that distant measurement we use V = (D/T) concept. Where v= velocity, T=reflected wave detection time, D=distance. (5) Title: UART (Universal Asynchronous Receiver Transmitter) The Universal Asynchronous Receiver Transmitter (UART) is a popular and widely-used device for data communication in the field of telecommunication. some of them contain FIFOs for the receiver/transmitter data buffering and some of them have the 9 Data bits mode (Start bit + 9 Data bits + Parity + Stop bits). This UART reference
  • 3. design contains a receiver and a transmitter. The receiver performs serial- to-parallel conversion on the asynchronous data frame received from the serial data input SIN. The transmitter performs parallel-to-serial conversion on the 8-bit data received from the CPU. In order to synchronize the asynchronous serial data and to insure the data integrity, Start, Parity and Stop bits are added to the serial data. (6) Title: Digital clock with integrated alarm (7) Title: stepper motor (8) Title: Lcd display (9) Title: Led display (10) Title: sine, square and triangular wave generator. I have also guided to the students in various projects. I know about the ARM Processor, LPC (low power consumption) kit and related its application. Extra activities: (1) Serial Peripheral Interface based Research Paper Publications National conference, International conference and Journal in Embedded system. (2) Participate in Robotics Competition. (3) Participate in Electronics Model Presentation (4) Participate in Aakash tablet workshop (5) Participate in Teacher Training program AREA OF INTERESTS: Interested in Embedded system, Communication, Electronics. HOBBIES: Reading books. KEY-STRENGTH:  Good analytical and quantitative skills  Self confident  Better time management capacities  Work efficiently in group as well as individually PERSONAL PROFILE Name : Parmar Gajendrakumar Babulal Date of Birth : 16Apr’85 Sex : Male Nationality : Indian Marital status : Married Languages Known : English, Hindi and Gujarati.