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Sugumar N
Key qualifications: Bachelor of engineering (B.E.) in
Electronics and communication
(ECE) from P.S.N.A. CET, Dindigul
Gender: Male
Date of birth: 15th
of May 1982
Total work experience: 9.4 years
Availability date: 2 Months
Language skills: English – Very Good
Bangalore
Karnataka
Y O U R C O N T A C T
Mr. N.Sugumar
Senior Software Engineer
E-Mail:
Phone:
Mobile:
Fax:
suguganesh@gmail.com
NA
+ (0) 74113 - 64224
NA
Expertise keywords
Summary /Profile Highlights
• C, C++ and Embedded Development.
• Possessing knowledge in Automotive and Bio-Medical domain.
• Experience in Manual and Automation testing in Open Loop Labcar.
• Experience in handling Multimeter, CRO & picoscope.
• Experience in diagnostic protocols KWP2000 and OBD.
• Experience in testing tools INCA, CANalyzer, TAXI and UDE debugger.
• Experience in CAPL Programming Language.
• Experience in Validation tool MDA.
• Experience in I2C, SPI, CAN, RS232, LIN and J1939 communication protocols.
• Hands-on experience with 8051 and PIC (16F) Controllers.
• Experience in EEPROM, ADC, LCD and Stepper Motor.
• Experience in IDEs like RIDE, Keil C, MPLAB.
• Experience in IAR compilers.
• Experience in Real Time Operating System (RTOS - pSOS).
• Experience in 16-bit KEYENCE PLC.
• Experience in SCM tools ClearCase, Clearquest, eASEE, SVN.
• Hands-on experience with MiniCube2 Emulator.
• Experience in Auto-code generation tool ASCET.
• Experience in Defect tracking tools RADAR and Bugzilla.
• Knowledge in bootloader.
Expertise Key Strengths
Educational Details:
• B.E. [ECE], P.S.N.A. College of Engineering and Technology, Dindigul in 2003 with 77.9%
• H.S.C Nadar Higher Sec. School in 1999 with 87.08%
• SSLC Nadar Higher Sec. School in 1997 with 89.02%
Employment Details:
• Worked as a Senior Software Engineer with Embitel from Oct 2013 – till now (1.4 years)
• Worked as a Lead Engineer with HCL Technologies from Oct 2010 – Oct 2012 (2 years)
• Worked as Senior Software Engineer with Robert Bosch Engineering & Business Solutions Limited
• IBM Rational ClearCase (SCM).
• ETAS TestToolSuite (Unit/Functionality testing).
• RADAR (Review and defect tracking).
• INCA, CANalyzer, TAXI and UDE debugger
• IAR compiler
from May 2008 – Apr 2010 (2 years)
• Worked as Senior Embedded Programmer with Hari Info Tech Madurai, Tamilnadu from Jan 2004 –
Dec 2007 (4 years)
Project Summary
Project#1
Project name: IVB
Environment: WINDOWS with IAR compliance
• Description: The Integrated Valve Block (IVB) is a seat ECU, mounted in seatback along with
bladders for providing comfort to Driver and passengers.
IVB will receive commands from master MSM via LIN including the LIN switch status.
The MSM will read the LIN switch ECU and broadcast the switch info to IVB. IVB has to only
follow the commands from master MSM. IVB also need to report status to MSM via LIN.
All pneumatics application will be on Continental ECU (LIN master with CAN
communication to vehicle). Faurecia IVB(s) are executive slave (open valve / close valves).
Responsibilities:
• Involved in coding & testing of modules WAKEM, BATTM, LINSM, RPWMT, TIMET, WDGTT,
RAINT, LINHAL & ADCHAL.
• Involved in CR/PR.
• Involved in CPU Overload test
• Involved in creation of Module & bootloader.
• Involved in Module testing, Integration and Validation testing.
Project#2
Project name: J1939 Stack implementation for IVI project
Environment: VMWare
• Description: The System shall consist of a DEA600 integrated smart display with touch screen
functionality. All the custom calibrations and configurations shall reside in the DEA600. The
DEA600 shall be connected to the J1939 high speed bus (250 kbps). The DEA600 can support
Bluetooth, GPS & Wi-Fi etc.,
The J1939 stack is responsible for handling receive of J1939 messages in order to
provide different parameter information to the user application. The application related pgn’s
will have one or more spn data embedded in the data field of the message. This information is
separated and provided to the user application as per the specification provided.
Responsibilities:
• Involved in J1939 stack implementation
Project#3
Project name: MBM
Environment: WINDOWS with IAR compliance
• Description: The Memory Bolster Module (MBM) is a seat ECU, mounted in seatback along with
Massage and Lumbar bladders for providing comfort to Driver and passengers.
MBM will receive commands from master MSM via LIN. MBM has to only follow the
commands from master MSM. MBM also need to report status to MSM via LIN.
Responsibilities:
• Involved in coding on Correction request and problem request.
• Involved in testing of modules CULAM, LUMBM, MASGM, ADCHAL, TIMET, WDGTT & RAINT
• Involved in CR/PR.
• Involved in CPU Overload test
• Involved in creation of Module and Validation test descriptions.
• Involved in Module testing, Integration and Validation testing.
Project#4
Project name: Grammer
Environment: Linux
• Description: The Grammer is a reverse engineering project.
It has lot of modules like CRC, EEPROM, CAN DRIVER, EEPROM DRIVER, CANFILTER etc.,
Responsibilities:
• Involved in writing test cases, host based testing.
• Involved in preparation of Analysis report and LLD.
Project#5
Project name: CIM250 project (battery charging unit)
Client name: Grundfos
Environment: Embedded OS, C
Description: This project is used to test the pump through wireless. The main board will have SIM, GPS
module, Modem etc., The battery unit is connected to board and provide the power supply to the
board. The code for various battery parameters like charges, temperature, voltage level etc., are
developed and tested.
Responsibilities:
• Battery charging unit – Development & CPP unit testing
Project#6
Project name: Grundfos PDMLite, GHMI
Environment: Embedded OS, C, HEW and IAR and Visual Studio for
Simulator, Minicube Emulator
Description: This project is to display and control the pump parameters (like pressure, temperature,
power etc.,) which are used in any industry. The PDMlite project is used to diagnose the various
applications which are designed for industrial purpose (IR, Radio module, UART, LogoLeds, EEPROM,
keypad). The GHMI project is available with Graphical LCD display to display various pump parameters
which is communicated through FM board (Functional Module). Display module consists of 410 dynamic
screens, which are categorized into 4 type’s viz., Home, Status, Settings, and Assist screen. It supports
various pumps families; the display content varies with respect to the selected pump dynamically. The
SPI communication driver and power supply for GHMI board is implemented in FM board.
Responsibilities:
• IR, Logo Leds and keypad – involved in coding and testing in PDMLite
• SPI communication and creating new packets to communicate with GHMI side parameters –
Coding and ATP testing
Project#7
Project name: KCI Activac125 redesign
Environment: Embedded OS, C
Description: This project is to reduce the cost of KCI Activac medical device by replacing the touch-
screen LCD by keypad and LED's. The KCI Activac device is used to heal the wound from the patient by
setting the pressure. It's provided with two modes, clinician and patient with lot of setting options. The
KCI Activac125 device is designed with minimal set of operations (like constant pressure, no patient
mode, etc.,)
Responsibilities:
• Understanding the system
• Involved in coding & testing
Project#8
Project name: Implementation of CAN frames
Environment: Embedded OS, C
Client: GM
Description: CAN signal implementation for Chrysler Cheetah project. I have involved in the CAN signal
implementation in the application level and in the frame level. Used CANalyser for testing. I have
involved in Design, Coding, Testing and project integration. This tasks involves configuration and testing
of CAN frames,
1. $4D1 – Transmit Frame (500 ms) 5. $1CC – Transmit/Receive Frame (20 ms)
2. $1A1 - Transmit Frame (20 ms) 6. $2C3 - Transmit Frame (50 ms)
3. $3F9 – Transmit Frame (250 ms) 7. $3D1 - Transmit Frame (100 ms)
4. $1C5 - Transmit Frame (25 ms)
Responsibilities:
• Understanding the system
• Involved in development, testing & Integration
Project#9
Project name: PSA AutoSAR tasks
Environment: Embedded OS, C
Client: PSA
Description: AutoSAR is the common understandable architecture in automotive industry. The AutoSAR
tasks for the modules COV_SWSPSA, BGCREGS & OTM_SWSPSA has implemented. The RR preparation
for the PSA Hybrid modules is also included in this task.
Responsibilities:
• Understanding the system
• Involved in development, testing & Integration.
Project#10
Project name: Fan control- Coordinator
Environment: Embedded OS, C
Client: Chrysler-Cheetah
Description: The fan control is used for protecting the engine from overheating. The fan is controlled
dependent on the vehicle speed, engine speed, water, fuel- ambient, gearbox oil temperature and air
conditioning pressure. This task is a migration task from EDC16 (Panther) to EDC17 (CHEETAH).
Responsibilities:
• Understanding the system
• Involved in development, testing & Integration
Project#11
Project name: Device driver for Network Printer
Environment: Embedded OS, C, RTOS
Client: PWD Department, Madurai
Description: Network printer driver is used to access a printer to print the document files. Here we are
using the socket programming (pNA+ Network manager) to access the network. Since the different files
having the different format only document files are used. The Device Driver programming is used to
initialize and mounting the printer to the network.
Responsibilities:
• Socket programming, pNA + Network Programming. Device Driver coding
• Testing of Code along with Hardware modules using document files
Project#12
Project name: Devices controlling Based on IIC and RTC
Environment: Embedded OS, C
Client: PWD Department, Madurai
Description: The RTC (DS 1307) is interfaced with 89s8252 microcontroller using the IIC protocol ( Inter
Integrated Circuits ). The RTC is having inbuild RAM and automatic battery switch when power is off.
When a RTC is fix with crystal and power supply it continuously run the clock. We can read the clock,
date, month and year to microcontroller and by using that the devices are controlled. The advantage of
IIC is that we can interface more number of peripherals by slave address and only two pins are needed
( SDA and SCL ) for it’s communication.
Responsibilities:
• ALP Language Coding, 8051 with LCD interfacing, LCD initialization
• IIC protocol implantation, RTC 1307 Implementation
• Read and Write with the RTC, Matrix keypad interfacing to 8051
• Used Oscilloscope as debugging tool

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Profile_Sugumar_N

  • 1. Sugumar N Key qualifications: Bachelor of engineering (B.E.) in Electronics and communication (ECE) from P.S.N.A. CET, Dindigul Gender: Male Date of birth: 15th of May 1982 Total work experience: 9.4 years Availability date: 2 Months Language skills: English – Very Good Bangalore Karnataka Y O U R C O N T A C T Mr. N.Sugumar Senior Software Engineer E-Mail: Phone: Mobile: Fax: suguganesh@gmail.com NA + (0) 74113 - 64224 NA
  • 2. Expertise keywords Summary /Profile Highlights • C, C++ and Embedded Development. • Possessing knowledge in Automotive and Bio-Medical domain. • Experience in Manual and Automation testing in Open Loop Labcar. • Experience in handling Multimeter, CRO & picoscope. • Experience in diagnostic protocols KWP2000 and OBD. • Experience in testing tools INCA, CANalyzer, TAXI and UDE debugger. • Experience in CAPL Programming Language. • Experience in Validation tool MDA. • Experience in I2C, SPI, CAN, RS232, LIN and J1939 communication protocols. • Hands-on experience with 8051 and PIC (16F) Controllers. • Experience in EEPROM, ADC, LCD and Stepper Motor. • Experience in IDEs like RIDE, Keil C, MPLAB. • Experience in IAR compilers. • Experience in Real Time Operating System (RTOS - pSOS). • Experience in 16-bit KEYENCE PLC. • Experience in SCM tools ClearCase, Clearquest, eASEE, SVN. • Hands-on experience with MiniCube2 Emulator. • Experience in Auto-code generation tool ASCET. • Experience in Defect tracking tools RADAR and Bugzilla. • Knowledge in bootloader. Expertise Key Strengths Educational Details: • B.E. [ECE], P.S.N.A. College of Engineering and Technology, Dindigul in 2003 with 77.9% • H.S.C Nadar Higher Sec. School in 1999 with 87.08% • SSLC Nadar Higher Sec. School in 1997 with 89.02% Employment Details: • Worked as a Senior Software Engineer with Embitel from Oct 2013 – till now (1.4 years) • Worked as a Lead Engineer with HCL Technologies from Oct 2010 – Oct 2012 (2 years) • Worked as Senior Software Engineer with Robert Bosch Engineering & Business Solutions Limited • IBM Rational ClearCase (SCM). • ETAS TestToolSuite (Unit/Functionality testing). • RADAR (Review and defect tracking). • INCA, CANalyzer, TAXI and UDE debugger • IAR compiler
  • 3. from May 2008 – Apr 2010 (2 years) • Worked as Senior Embedded Programmer with Hari Info Tech Madurai, Tamilnadu from Jan 2004 – Dec 2007 (4 years) Project Summary Project#1 Project name: IVB Environment: WINDOWS with IAR compliance • Description: The Integrated Valve Block (IVB) is a seat ECU, mounted in seatback along with bladders for providing comfort to Driver and passengers. IVB will receive commands from master MSM via LIN including the LIN switch status. The MSM will read the LIN switch ECU and broadcast the switch info to IVB. IVB has to only follow the commands from master MSM. IVB also need to report status to MSM via LIN. All pneumatics application will be on Continental ECU (LIN master with CAN communication to vehicle). Faurecia IVB(s) are executive slave (open valve / close valves). Responsibilities: • Involved in coding & testing of modules WAKEM, BATTM, LINSM, RPWMT, TIMET, WDGTT, RAINT, LINHAL & ADCHAL. • Involved in CR/PR. • Involved in CPU Overload test • Involved in creation of Module & bootloader. • Involved in Module testing, Integration and Validation testing. Project#2 Project name: J1939 Stack implementation for IVI project Environment: VMWare • Description: The System shall consist of a DEA600 integrated smart display with touch screen functionality. All the custom calibrations and configurations shall reside in the DEA600. The DEA600 shall be connected to the J1939 high speed bus (250 kbps). The DEA600 can support Bluetooth, GPS & Wi-Fi etc., The J1939 stack is responsible for handling receive of J1939 messages in order to provide different parameter information to the user application. The application related pgn’s will have one or more spn data embedded in the data field of the message. This information is separated and provided to the user application as per the specification provided. Responsibilities: • Involved in J1939 stack implementation Project#3 Project name: MBM Environment: WINDOWS with IAR compliance
  • 4. • Description: The Memory Bolster Module (MBM) is a seat ECU, mounted in seatback along with Massage and Lumbar bladders for providing comfort to Driver and passengers. MBM will receive commands from master MSM via LIN. MBM has to only follow the commands from master MSM. MBM also need to report status to MSM via LIN. Responsibilities: • Involved in coding on Correction request and problem request. • Involved in testing of modules CULAM, LUMBM, MASGM, ADCHAL, TIMET, WDGTT & RAINT • Involved in CR/PR. • Involved in CPU Overload test • Involved in creation of Module and Validation test descriptions. • Involved in Module testing, Integration and Validation testing. Project#4 Project name: Grammer Environment: Linux • Description: The Grammer is a reverse engineering project. It has lot of modules like CRC, EEPROM, CAN DRIVER, EEPROM DRIVER, CANFILTER etc., Responsibilities: • Involved in writing test cases, host based testing. • Involved in preparation of Analysis report and LLD. Project#5 Project name: CIM250 project (battery charging unit) Client name: Grundfos Environment: Embedded OS, C Description: This project is used to test the pump through wireless. The main board will have SIM, GPS module, Modem etc., The battery unit is connected to board and provide the power supply to the board. The code for various battery parameters like charges, temperature, voltage level etc., are developed and tested. Responsibilities: • Battery charging unit – Development & CPP unit testing Project#6 Project name: Grundfos PDMLite, GHMI Environment: Embedded OS, C, HEW and IAR and Visual Studio for Simulator, Minicube Emulator Description: This project is to display and control the pump parameters (like pressure, temperature, power etc.,) which are used in any industry. The PDMlite project is used to diagnose the various applications which are designed for industrial purpose (IR, Radio module, UART, LogoLeds, EEPROM,
  • 5. keypad). The GHMI project is available with Graphical LCD display to display various pump parameters which is communicated through FM board (Functional Module). Display module consists of 410 dynamic screens, which are categorized into 4 type’s viz., Home, Status, Settings, and Assist screen. It supports various pumps families; the display content varies with respect to the selected pump dynamically. The SPI communication driver and power supply for GHMI board is implemented in FM board. Responsibilities: • IR, Logo Leds and keypad – involved in coding and testing in PDMLite • SPI communication and creating new packets to communicate with GHMI side parameters – Coding and ATP testing Project#7 Project name: KCI Activac125 redesign Environment: Embedded OS, C Description: This project is to reduce the cost of KCI Activac medical device by replacing the touch- screen LCD by keypad and LED's. The KCI Activac device is used to heal the wound from the patient by setting the pressure. It's provided with two modes, clinician and patient with lot of setting options. The KCI Activac125 device is designed with minimal set of operations (like constant pressure, no patient mode, etc.,) Responsibilities: • Understanding the system • Involved in coding & testing Project#8 Project name: Implementation of CAN frames Environment: Embedded OS, C Client: GM Description: CAN signal implementation for Chrysler Cheetah project. I have involved in the CAN signal implementation in the application level and in the frame level. Used CANalyser for testing. I have involved in Design, Coding, Testing and project integration. This tasks involves configuration and testing of CAN frames, 1. $4D1 – Transmit Frame (500 ms) 5. $1CC – Transmit/Receive Frame (20 ms) 2. $1A1 - Transmit Frame (20 ms) 6. $2C3 - Transmit Frame (50 ms) 3. $3F9 – Transmit Frame (250 ms) 7. $3D1 - Transmit Frame (100 ms) 4. $1C5 - Transmit Frame (25 ms) Responsibilities: • Understanding the system • Involved in development, testing & Integration Project#9 Project name: PSA AutoSAR tasks Environment: Embedded OS, C
  • 6. Client: PSA Description: AutoSAR is the common understandable architecture in automotive industry. The AutoSAR tasks for the modules COV_SWSPSA, BGCREGS & OTM_SWSPSA has implemented. The RR preparation for the PSA Hybrid modules is also included in this task. Responsibilities: • Understanding the system • Involved in development, testing & Integration. Project#10 Project name: Fan control- Coordinator Environment: Embedded OS, C Client: Chrysler-Cheetah Description: The fan control is used for protecting the engine from overheating. The fan is controlled dependent on the vehicle speed, engine speed, water, fuel- ambient, gearbox oil temperature and air conditioning pressure. This task is a migration task from EDC16 (Panther) to EDC17 (CHEETAH). Responsibilities: • Understanding the system • Involved in development, testing & Integration Project#11 Project name: Device driver for Network Printer Environment: Embedded OS, C, RTOS Client: PWD Department, Madurai Description: Network printer driver is used to access a printer to print the document files. Here we are using the socket programming (pNA+ Network manager) to access the network. Since the different files having the different format only document files are used. The Device Driver programming is used to initialize and mounting the printer to the network. Responsibilities: • Socket programming, pNA + Network Programming. Device Driver coding • Testing of Code along with Hardware modules using document files Project#12 Project name: Devices controlling Based on IIC and RTC Environment: Embedded OS, C Client: PWD Department, Madurai Description: The RTC (DS 1307) is interfaced with 89s8252 microcontroller using the IIC protocol ( Inter Integrated Circuits ). The RTC is having inbuild RAM and automatic battery switch when power is off. When a RTC is fix with crystal and power supply it continuously run the clock. We can read the clock, date, month and year to microcontroller and by using that the devices are controlled. The advantage of IIC is that we can interface more number of peripherals by slave address and only two pins are needed ( SDA and SCL ) for it’s communication.
  • 7. Responsibilities: • ALP Language Coding, 8051 with LCD interfacing, LCD initialization • IIC protocol implantation, RTC 1307 Implementation • Read and Write with the RTC, Matrix keypad interfacing to 8051 • Used Oscilloscope as debugging tool