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[QUOTE=mani235;84219]R.MANIVANNAN [b][u]Mail Id [/u][/b]: vannanrmani AT gmail.com [b][u]CAREER OBJECTIVE [/u][/b]: A self- motivated candidate looking for a challenging position in a fast growing environment where I can effectively contribute my Technical skills with my experience. [b][u]ACADEMIC CHRONICLE [/u][/b]: [b][u]PROFESSIONAL QUALIFICATION [/u][/b]: - B.E (ELECTRONICS AND INSTRUMENTATION ENGINEERING) at P.R. Engineering college (ANNA UNIVERSITY, CHENNAI), Thanjavur having an aggregate percentage of 74% (FIRST CLASS) in the year 2009. [b][u]SCHOOLING [/u][/b]: - H.S.C ( ST. Antony’s Higher secondary school, Thanjavur) having a percentage of 77% in the year 2005 (STATE BOARD). - S.S.L.C ( ST. Antony’s Higher secondary school, Thanjavur) having a percentage of 86% in the year 2003 (STATE BOARD). [b][u]WORK EXPERIENCE [/u][/b]: [b][u]Company [/u][/b]: Toolfab Engineering Industries private limited, Thuvakudi, Trichy, Tamilnadu, India. [b][u]Designation [/u][/b]: Production & Quality Control Engineer. [b][u]Duration [/u][/b]: 1 year (July 2009 to May 2010). [b][u]EXPERIENCE DETAILS [/u][/b]: [b][u]NATURE OF THE JOB [/u][/b]: FABRICATION OF WIND MILL TOWERS. [b][u]CLIENTS [/u][/b]: M/s SUZLON ENERGY LTD M/s SHRI RAM LTD M/s WINWIND ENERGY LTD M/s REGEN POWER TECH LTD M/s VESTAS RRB LTD etc. - In Fabrication, any complicated drawings can be studied and also able to fabricate for corresponding requirements. - In windmill towers, Flange flatness and Flange tilt can be detected by using Easy laser instrument having accuracy of about 0.02 Microns. - Sand (copper slag) Blasting must be checked for materials which will have Micron value ranges from fifty and above. - Blasting medium will have some basic terminology as SA 2.5. - SA means surface acceptance. - Checking of coat thickness for materials mainly for windmill towers using DFT (dry film thickness) gauge. - DFT gauge is calibrated in Microns which is used to check the thickness of the paint. [b][u]WORK RESPONSIBILITIES [/u][/b]: - Drawing study. - Work schedule preparation based on customer requirement. - Discuss with contractors & labours for how to make the jobs with quantity as well as quality based requirements. - Supervising the final dimensions which should be Quality assurance product and also offering Quality control Engineer. - Visual Inspection is carried out and improper welding like undercut is corrected. - On the basis of customer requirements, Metallizing by using zinc wire in flange surface areas accomplished for windmill towers. [b][u]ACHIEVEMENTS [/u][/b]: - Reduction of reworks in the fabrication of windmill towers. - Controlled the consumables by training the welders and grinders. - Controlled the defects by pre heating the welding electrodes properly. [b][u]ACADEMIC PROJECT WORK [/u][/b]: [b][u]- Project title [/u][/b]: “Non-interactive synthesis of drugs using PLC” in the field of Industrial Automation. [b][u]- Description [/u][/b]: In this project, two liquids are used which is mixed well to get a final product, after heating the mixture for a particular period of time. ABB based PLC is used in this project. PLC eliminates the error occurs due to inaccurate mixing, change in concentration, volume, temperature and pH parameters etc. [b][u]COMPUTER PROFICIENCY [/u][/b]: - Knowledge in Windows Operating systems and packages of MS office. - C- Programming Language. [b][u]TRAINING PROGRAMME IN NSIC, CHENNAI [/u][/b]: (A Govt of India Enterprise) - Advanced Embedded systems [b][u]Duration [/u][/b]: 8 Weeks o Microprocessor & Microcontroller o CISC & RISC o CISC- 8051 controller - Timers - Interrupts - UART(serial communication) [b][u]- Assembler [/u][/b]: Kiel A51 [b][u]- Complier [/u][/b]: Kiel C51 o RISC- PIC 16F877 - Timers - ADC - UART(serial communication) - I2C communication [b][u]- Assembler [/u][/b]: MPASM [b][u]- Complier [/u][/b]: HI-TECH PICC - Interfaces (LED,7-SEGMENT,LCD) - Calibration [b][u]Duration [/u][/b]: 8 Weeks o Uncertainty o Expanded uncertainty o Master Instruments o Test Instruments o Confidence Level o Level of Accuracy o Range o Calibration Techniques - Direct method - Transfer method o Traceability o Typical Distributions considered for estimation of uncertainty - Rectangular Distribution - Normal Distribution o Estimation of uncertainty of measurements - Type - A uncertainty (error) - Type - B uncertainty (error) - Thermal Lab (Temperature Calibration) [b][u]Lab Temperature [/u][/b]: 23 oC to 27 oC [b][u]Lab Humidity [/u][/b]: 35% to 65% etc. - MFC (Multi Function Calibrator) [b][u]- Thermocouple, RTD, Thermometers, Temperature switch, Temperature gauges and Temperature Controller/Indicator with sensor Range [/u][/b]: -10 oC to 1200oC. - Electrical Lab (signal generation) [b][u]Lab Temperature [/u][/b]: 23 oC to 27 oC [b][u]Lab Humidity [/u][/b]: 35% to 65% etc. o Two modes of operation - Simulation mode - Measurement mode - MFC (Multi Function Calibrator). [b][u]- Function Generator (Range [/u][/b]: 10mHz to 10MHz). [b][u]- Decade Resistance box (Range [/u][/b]: 0 to 100Mega ohms). [b][u]- Variable AC power supply (Range [/u][/b]: 0 to 270V/8A). - Mechanical Lab (pressure) [b][u]Lab Temperature [/u][/b]: 23 oC to 27 oC [b][u]Lab Humidity [/u][/b]: 35% to 65% etc. - Pressure gauge (0 to 16 bar) using Microprocessor based medium pressure indicator (-0.8 to 40 bar). [b][u]- Pressure Calibrator(hydraulic)Range [/u][/b]:1kg/cm2 to 600 kg/cm2 using Dead weight Tester. [b][u]DECLARATION [/u][/b]: I do hereby confirm that the information furnished above is true to the best of my knowledge and belief. [b][u]Place [/u][/b]: [b][u]Date [/u][/b]:[/QUOTE]