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Courses

Power and Electrical Course

Civil Power and Electrical Course A VLSI course covers design and manufacturing of integrated circuits, focusing on semiconductor physics, digital and analog design, and layout techniques. Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down Power and Electrical Course A Power and Electrical course equips students with the knowledge to design, implement, and maintain electrical power systems. The curriculum covers power generation, transmission, and distribution, as well as electrical circuits, control systems, and renewable energy technologies. Students gain hands-on experience through labs and projects, learning to ensure electrical safety and energy efficiency. Graduates are prepared for careers as electrical engineers, power systems analysts, and energy consultants, working in sectors such as utilities, manufacturing, and renewable energy. This course addresses the increasing demand for reliable and sustainable electrical power solutions in a technologically advancing world. Advantages of Power and Electrical Course High Demand Diverse Career Opportunities Specialized Knowledge Hands-on Training Sustainability Focus Regulatory Compliance Innovation and Technology Professional Growth Global Opportunities Impactful Work Job Opportunities Electrical Engineer Power Systems Engineer Control Systems Engineer Renewable Energy Engineer Electrical Design Engineer Energy Consultant Power Plant Operator Maintenance Engineer Utility Engineer Electrical Project Manager Instrumentation Engineer Telecommunications Engineer Field Service Engineer Technical Sales Engineer Research and Development Engineer Duration 6 Months Type of Study Full Time Fees 20000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. Power and Electrical Course – Syllabus Fundamentals Introduction to Electricity Basics and definitions Electro Magnetism Generation Of Electricity Single phase AC circuits Poly phase AC circuits Electrical Machines & Instruments DC machines AC machines Transformer Protective Devices Controlling Devices Monitoring Devices Estimation & Costing Wiring Accessories & illumination Estimation of Domestic installation Estimation of Industrial Installation Estimation of Substations Electrical system design Safety, Testing & installation of electrical Equipments Advanced Technologies in Electrical Systems Panel Design and Wiring Build your Career in Power and Electrical Course with SMEC Build your career in Power and Electrical Engineering with SMEC, a leader in technical education. Our comprehensive course equips you with the knowledge and skills needed to excel in the dynamic field of electrical engineering. Dive deep into power generation, transmission, and distribution, as well as electrical circuits, control systems, and renewable energy technologies. Our curriculum offers a balanced mix of theoretical instruction and hands-on experience through practical labs and real-world projects. This approach ensures you are job-ready and proficient in applying your knowledge to solve real-world challenges. Graduates from SMEC are well-prepared for diverse roles, including electrical engineers, power systems analysts, energy consultants, and more. The increasing demand for sustainable and efficient power solutions opens up numerous career opportunities in sectors like utilities, manufacturing, and renewable energy. Join SMEC to gain the expertise and practical skills necessary to thrive in the high-demand field of power and electrical engineering, and contribute to innovative energy solutions worldwide. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQs for Power and Electrical Course Top Job oriented Courses in SMEClabs Kochi? Data Science Courses Artificial Intelligence Course Python courses Digital marketing Courses Software Testing Courses CCNA & CCNP PLC programming Embedded System & VLSI Data Science SAP course Oil and Gas Courses Python programming Android development courses Asp dot net course Networking Cisco Microsoft CCNA MCSA Instrumentation Courses Oracle & MS SQL What is PLC Course? PLC programming is used to control the PLCs. We provide real-time Industrial automation and process automation training. PLC Courses, PLC Programming Course, Process Automation Training, Industrial Automation Course, PLC SCADA Training, PLC Online Training, DCS Training, Marine Automation Training, Programmable Logic Controller How to apply Online training courses in SMEClabs Kochi? We provide On-demand video courses, Instructor Led Live training, Virtual Lab facilities in All Industrial, Marine IT, and accounting courses. Main online training courses are Industrial Automation Courses, Embedded Courses, Instrumentation courses, Data science, and Artificial Intelligence. What is plc programming? PLC programming. PLC – Programmable Logic Controllers are the major components in industrial automation and control. The controlling nature of PLC is ranging from simple-push button switching to a single motor to several complex control structures. The PLC programming is an important task of designing and implementing control applications depending on customers’ needs. A PLC programming consists of a set of instructions either in textual or graphical form, which represents the logic to be implemented for specific industrial real-time applications. A dedicated PLC programming software comes from a PLC hardware of a specific manufacturer that allows entry and development of user application code, which can be finally downloaded to the PLC hardware.  Human Machine Interface (HMI) as a graphical representation of variables. Once this program gets downloaded to the PLC and if the PLC is placed in Run mode, then the PLC continuously works according to the program. Students feedback Trusted by genius people. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

Courses

VLSI Course

VLSI Course VLSI Course A VLSI course covers design and manufacturing of integrated circuits, focusing on semiconductor physics, digital and analog design, and layout techniques. Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down VLSI Course A VLSI (Very Large Scale Integration) course is designed to impart knowledge and skills in the field of integrated circuit design and manufacturing. Students learn foundational principles such as semiconductor physics, digital design methodologies, analog circuit design, and layout techniques crucial for creating complex integrated circuits. The curriculum typically includes practical hands-on experience using industry-standard design tools and software for simulation, verification, and physical layout of ICs. Key topics covered in a VLSI course include CMOS (Complementary Metal-Oxide-Semiconductor) technology, logic synthesis, timing analysis, and design for manufacturability. Advanced topics may include ASIC (Application-Specific Integrated Circuit) design, FPGA (Field-Programmable Gate Array) architecture, and system-on-chip (SoC) integration methodologies. Graduates of VLSI courses are prepared for careers as VLSI design engineers, where they can work on designing and optimizing integrated circuits for a wide range of applications including mobile devices, computer systems, networking equipment, and automotive electronics. They may also pursue roles in semiconductor companies, research institutions, or start-ups focusing on innovative chip design and development. Overall, a VLSI course provides the necessary theoretical knowledge and practical skills to enter the dynamic field of integrated circuit design, contributing to technological advancements and innovations in electronics and computing industries. Advantages of VLSI Course Technical Expertise Hands-on Experience Industry Certification Job Opportunities Career Growth Versatility Sustainability Job Security VLSI Course Job Opportunities VLSI Design Engineer Physical Design Engineer Verification Engineer FPGA Engineer Analog/Mixed-Signal Design Enginee System-on-Chip (SoC) Engineer CAD Engineer Test Engineer Research and Development Engineer Duration 6 Months Type of Study Full Time Fees 20000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. VLSI Course – Syllabus Introduction to VLSI Basics of VLSI Physical Design Flow Gajski-Kuhn (Y) Chart Domain Basics of Low Power VLSI Introduction to Layout tools CMOS Logic Design MOS Fundamentals CMOS circuits Various Logic Structures Digital Integrated Circuits Transmission Gates and Pass Transistor Logic Combinational and Sequential Circuit Design VLSI Design Advanced Logical Design VLSI Circuit Design ASIC and FPGA Design Methodologies Memory Design Design of Controllers and data path units Controller design using FSMs and ASMs Electronic Design Automation Tools HDLs : VHDL and Verilog HDL HVL : System Verilog and Assertions VLSI CAD Tools Synthesis of Digital Systems System level design and modelling Testing and Verification Design For Testability(DFT) Fault Models Automatic Test Pattern Generation Memory BIST Ad-hoc and IDDQ Test Functional Verification methodology FPGA Implementation and Prototyping Introduction to Programmable Logic and FPGAs Popular CPLD & FPGA Families Architecture of popular Xilinx and SPARTAN FPGA Advanced FPGA Design Logic Synthesis for FPGA Static Timing Analysis New Semiconductor Technology SoC Integration FinFET Technology Ideas about 3D IC TSMC lower nanotechnology IVth element in ICs – Memristor etc. Tools and Design Software Xilinx ISE Model SIM Altera Mentor Graphics Cadence Design Suite Tanner EDA – S-edit, L-Edit, T-spice, W-edit Evaluation Boards Spartan 3AN FPGA Board Spartan 3 Development Board CPLD – Coolrunner II Papilio Pro Spartan 6 FPGA Altera Cyclone IV FPGA Board Build your Career in VLSI Course with SMEC A VLSI (Very Large Scale Integration) course equips individuals with the knowledge and skills needed to design and manufacture integrated circuits (ICs) containing millions of transistors. It covers essential topics such as semiconductor device physics, digital and analog circuit design, CMOS technology, and IC layout techniques. Practical aspects of the course typically include hands-on experience using CAD tools for simulation, verification, and physical design of ICs. Upon completion, graduates can pursue various career paths in the semiconductor industry. Job opportunities include roles as VLSI design engineers responsible for creating and optimizing IC designs, physical design engineers focusing on layout and manufacturability, and verification engineers ensuring functional correctness through rigorous testing. Specialized roles may involve ASIC design, FPGA development, or working with analog and mixed-signal circuits. With the rapid advancements in technology, VLSI professionals play a crucial role in driving innovation across sectors such as consumer electronics, telecommunications, automotive, and healthcare, offering rewarding careers with opportunities for professional growth and contribution to technological advancements. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQs for HVAC Course VLSI full form? Very large-scale integration Does SMEClabs provides placement for VLSI Course? Yes, SMEClabs provides placement you can visit this website Placementshala to get more details regarding the placements. What is Smec? SMEC, one of India’s first worldwide EPC contractor company globally recognized for its distinctive services specifically in Marine & Industrial Automation, Instrumentation, Electrical, Pneumatics, Hydraulics and Mechanical sectors which started its journey in 2001. It has a R&D and training division SMEClabs which caters job-oriented training in various domains which helps an aspiring engineer /fresher or professionals to get a jump start to their career. Best VLSI Course Institute in India. SMEClabs provides best training for VLSI. PGDVLSI Students feedback Trusted by genius people. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

Courses

HVAC Course

HVAC Course HVAC Course An HVAC course covers heating, ventilation, air conditioning, and refrigeration system installation, maintenance, troubleshooting, and energy efficiency principles. Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down HVAC Course An HVAC course provides comprehensive training in heating, ventilation, air conditioning, and refrigeration systems. It covers key areas such as system design, installation, maintenance, and repair, focusing on electrical components, refrigeration cycles, airflow dynamics, and energy efficiency. The curriculum combines theoretical knowledge with hands-on practice, allowing students to work with real HVAC equipment. Emphasis is placed on safety standards, troubleshooting techniques, and compliance with industry regulations. Graduates are equipped for various roles, including HVAC technicians, installers, and maintenance professionals in residential, commercial, and industrial settings. This training addresses the growing demand for skilled HVAC professionals, ensuring they can contribute to creating sustainable and comfortable indoor environments. Advantages of HVAC Course Technical Expertise Hands-on Experience Industry Certification Job Opportunities Career Growth Versatility Sustainability Job Security HVAC Course Job Opportunities HVAC Technician HVAC Installer Maintenance Technician Service Technician Building Engineer Energy Auditor Controls Technician Sales Representative Facilities Manager Consultant Duration 6 Months Type of Study Full Time Fees 20000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. HVAC Course – Syllabus HVAC Technician Courses Introduction & Fundamentals Psychometry Types of Air Condition System Types of Refrigeration Cycle Study on refrigerants Study on Air Distribution System Duct Designing Duct Sizing Using Duct Sizer Duct System Components Gril sizing using beta programme Ventilation systems & LAB ESP Calculation VRV or VRF systems Heat Load Calculation (Manual Method) HAP Equipment Selection Pipe Sizing methods Mini Project Chiller and Plant configuration Types of Chillers Pump Selection HVAC System, Valves Accessories & Scheme Schedule Estimate Main Project Build your Career in Instrumentation QC with SMEC An HVAC course equips individuals with comprehensive knowledge and skills in heating, ventilation, air conditioning, and refrigeration systems, catering to a wide array of career opportunities in various sectors. Students typically cover topics ranging from fundamental principles of thermodynamics and refrigeration cycles to advanced concepts in system design, installation, maintenance, and troubleshooting. Hands-on training is a key component, allowing students to work with HVAC equipment in simulated and real-world settings. This practical experience ensures proficiency in handling HVAC systems effectively and safely, adhering to industry standards and regulations. Graduates of HVAC courses can pursue roles such as HVAC technicians responsible for installing, repairing, and maintaining HVAC systems in residential, commercial, or industrial settings. HVAC installers specialize in setting up new systems during construction or renovation projects, while maintenance technicians focus on preventive maintenance and troubleshooting to ensure optimal system performance. Additionally, opportunities exist in specialized areas like energy auditing, HVAC controls, and sales of HVAC products and services. With increasing emphasis on energy efficiency and environmental sustainability, HVAC professionals play a crucial role in optimizing building operations and reducing energy consumption. Overall, completing an HVAC course not only prepares individuals for immediate entry into the workforce but also sets the stage for career growth and advancement in a dynamic and essential industry. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQs for HVAC Course Why HVAC Certification Course is important? HVAC systems are used to control the climate inside a building. It balances outside temperature so that the inside is cooler or warmer when it’s hot. The air conditioner is active during warmer days, while heaters and boilers are activated during colder days. Does SMEClabs provides placement for HVAC Course? Yes, SMEClabs provides placement you can visit this website Placementshala to get more details regarding the placements. Career opportunities for HVAC Course Automotive HVAC Technician. HVAC Engineer. HVAC Design Engineer. Refrigeration Technician. Energy Auditor. Indoor Air Quality (IAQ) Inspector. Solar Technician.  Wind Turbine Technician What is Smec? SMEC, one of India’s first worldwide EPC contractor company globally recognized for its distinctive services specifically in Marine & Industrial Automation, Instrumentation, Electrical, Pneumatics, Hydraulics and Mechanical sectors which started its journey in 2001. It has a R&D and training division SMEClabs which caters job-oriented training in various domains which helps an aspiring engineer /fresher or professionals to get a jump start to their career. Students feedback Trusted by genius people. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

Courses

Instrumentation QA QC

Automation Course Instrumentation QC Instrumentation Quality Control (QC) ensures accuracy, precision, and reliability of instruments through regular calibration, maintenance, validation, and performance checks. Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down Instrumentation QC Instrumentation Quality Control (QC) is essential for ensuring the accuracy, precision, and reliability of instruments used in various scientific, industrial, and medical fields. QC processes involve regular calibration, maintenance, validation, and performance checks to detect and correct any deviations or malfunctions. Calibration ensures that instruments produce results within acceptable ranges, aligning with standards and specifications. Regular maintenance helps prevent wear and tear, extending the lifespan of the equipment. Validation ensures that instruments consistently produce accurate results across different conditions and uses. Performance checks involve running known standards or samples to verify instrument accuracy regularly. Additionally, documentation and record-keeping are crucial in QC to track instrument performance and any corrective actions taken. By implementing stringent QC measures, organizations can ensure the integrity of their data, comply with regulatory requirements, and maintain operational efficiency. This proactive approach minimizes the risk of errors, enhances data quality, and supports informed decision-making based on reliable measurements. Advantages of Instrumentation QC Accuracy and Precision Compliance Cost Savings Extended Lifespan Data Integrity Operational Efficiency Risk Management Customer Satisfaction Instrumentation QC Job Opportunities Quality Control Technician Instrumentation Engineer QC Analyst Calibration Technician Maintenance Engineer Validation Specialist Regulatory Compliance Specialist Lab Technician Process Control Technician Field Service Engineer Duration 6 Months Type of Study Full Time Fees 20000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. Instrumentation QC – Syllabus Instrumentation QC Preparation of QC Procedures ISO Standards International Codes and Standards Preparation of Inspection Test Plans – ITPs Preparation of Project Quality Plan General work Procedure(WP) Receiving Drawing and Documents Reproduction of Drawing Issuing of Drawing to site New Issuing new version Red line and As Built Drawing Documentation for Inspection RFI(Request for Inspection) P&ID for line verification Instrument Wiring diagram for wiring details Hook up for tubing/air line Documentation for Loop Checking Check List Instrument loop diagrams (ILD) Instrument specification sheet (ISS)/ Instrument Data Sheet(IDS) Alarm List Calibration Records Cable megger records Pressure Test Records Work Scope Summary Work Pack Preparation As Built drawings Verification of calibration certificates and Inspection Reports Preparation of MEI Certificate, Energization Notice, Punch-list and System acceptance certificates Final QA / QC Documentation Instrumentation Quality control and Quality assurance (QA/QC) Mandatory HSE Training. Introduction to ISO (the International Organization for Standardization). Instrument Symbols, Types of Instruments (familiarize with variety of instruments ) Flow, Level, Pressure, Temperature, Vibration, Fire and gas and Control Valves Process Flow Diagram (PFD) Piping and Instrument Diagram ( P& ID ) and Isometric Drawing, Instrument Loop Diagram, Instrument I/O Wiring. Control Loops and Control Systems. Instrument Installation and Testing. Checking the Instrument loop wiring. Receiving Inspection, In process Inspection & Final Inspection. Control of Nonconforming of Items / Products. Non-Conformances for issuance of Non- Conformance Reports (NCRs)/Corrective Action Requests (CARs)/Technical Deviations, as necessary. Calibration of Monitoring & Measuring Equipment. Comply and adhere with Project Quality Plan. Verification of calibration certificates and Inspection Reports. Preparation of Construction Check Sheets, Red-line drawing and As Built drawings. Inspection of impulse tube, airline pneumatic air header as per hook-up, P &ID, Inspection of pressure testing /leak test of all pneumatic lines, impulse lines. Inspection & testing of Instrument/ Pneumatic Hook-Ups: Cable Routing, Laying, Glanding Termination & Grounding Punch-list and System acceptance certificate. Final QA / QC Documentation Build your Career in Instrumentation QC with SMEC Instrumentation Quality Control (QC) is a critical component in maintaining the accuracy, precision, and reliability of instruments across various sectors, including scientific research, manufacturing, pharmaceuticals, and healthcare. It encompasses activities such as regular calibration, maintenance, validation, and performance checks to ensure instruments function within specified parameters. Calibration aligns instrument outputs with established standards, while maintenance prevents malfunctions and extends equipment lifespan. Validation confirms consistent performance under different conditions. These QC processes are essential for ensuring data integrity, regulatory compliance, and operational efficiency. Proper documentation and record-keeping support tracking performance and corrective actions, ensuring transparency and accountability. The benefits of effective instrumentation QC include minimizing errors, reducing downtime, avoiding costly repairs, and enhancing product quality. Ultimately, a robust QC program supports informed decision-making, upholds industry standards, and fosters customer trust by delivering reliable and accurate measurements. This proactive approach is vital for sustaining high-quality outcomes and maintaining competitive advantages in various industries. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQs for Instrumentation QC Course Does SMEClabs provides placement? Yes, SMEClabs provides placement you can visit this website Placementshala to get more details regarding the placements. What are all the job opportunities you would get after completing the Instrumentation course? Plant Engineer QC Inspector Electrical Instrumentation Engineer Calibration Engineer Instrumentation design Engineer QC Inspector What are all the skills that you can acquire after completing the Instrumentation Course from SMEClab? You would be able to calibrate several instruments Industrial plant design You would be able to do the maintenance and repair of several instruments Instrumentation QA/QC Marine Instrumentation Communicating instruments with the controller You would be able to troubleshoot various instruments Communicating instruments with controllers Does instrumentation have a future? Yes, instrumentation has a good

Courses

Certified IoT Courses

Automation Course IoT Courses Design declutter will help you simplify and organize for better user experience by removing unnecessary elements and prioritizing essential ones. It will help improve communication, engagement, and conversion rates, ensuring user-friendliness and aesthetic appeal Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down IoT Courses IoT is most commonly utilized for general usage like for consumer purposes. IIolT is the industrial internet of things that are used for industrial purposes and IoT is for general purposes. Internet of things deals with connecting different devices in our home, like electrical appliances, automatic doors, and a lot more. IoT would be used to control most of our home appliances. We can see the IoT applications in the transportation sector, home automation, commercial buildings, and a lot more. So the IoT sector is developing day by day. If you are planning to start a career in IoT then you won’t regret it, because in the future there would be a lot of IoT job opportunities. IoT is the future and SMEClabs can make you future-ready. SMEClabs would help you to become a Certified IoT Engineer and this would give you a lot of opportunities. Siemens TIA Basics Courses The Siemens TIA Basics Courses are totally Integrated Automation (TIA) Portal Online Courses is an engineering framework conceived and developed by Siemens Industry Automation Division for swiftly and intuitively integrating automation solutions across all automation sectors in every industry across the world. This allows programmers to avoid the time-consuming and costly integration of multiple software products. The Siemens TIA Basics Courses is widely used for developing, commissioning, running, maintaining, and upgrading automation systems, resulting in greatly improved operational efficiency and significant project cost savings. Learners are introduced to some of the exclusive content available only at Siemens through the Siemens TIA Basics Course delivered by SMEClabs. SMEclabs provides (TIA) Portal Training course with 100%placement. The Siemens Totally Integrated Automation (TIA) Portal Online Training is an engineering framework designed and developed by the Siemens Industry Automation Division  for integrating automation solutions across all automation sectors in every industry across the world – swiftly and intuitively. This allows programmers to bypass the time-consuming and expensive process of integrating many software products. The Siemens TIA Portal is widely used for developing, commissioning, running, maintaining, and upgrading automation systems, resulting in vastly improved operational efficiency and significant project cost savings. Learners are introduced to some of the exclusive content available only at Siemens through the Siemens TIA Portal Training delivered by SMEClabs. Advantages of Siemens TIA Portal Course Simple to deliver higher creation. There are fewer costs per bit of data. It doesn’t have a lot of connections. It has a higher speed and a better stable state. It is more dependable to use for a single task. Job Opportunities after Siemens TIA Portal Course Industrial Automation Engineer Automation Technician PLC /Robotic Programmer Commissioning Engineer Industrial Automation System Operator Duration 3 Months Type of Study Full Time Fees 25000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. Siemens TIA Basics Courses – Syllabus Introduction Introduction to Hardware- Siemens S7-1200 PLC Introduction to Siemens TIA-Total Integrated Automation Programming Understanding General Elements of TIA Bit Logic Operations Timer Operation Counter Operation Comparative Operation Math Operation Move Operation Jump and Label Instruction Word Logic Operation Shift and Rotate Command PLC Troubleshooting Techniques Build your Career in Siemens TIA Portal Course with SMEClabs Building a career with Siemens TIA Portal through SMEClabs equips you with the necessary skills and knowledge to excel in the field of industrial automation. With comprehensive training, hands-on experience, and industry-recognized certification, you will be well-prepared to meet the demands of the automation industry and advance your professional career. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQ for Siemens TIA Basics Courses I need to know more about industrial automation course? Industrial automation is a technology we use in order to reduce human activities and to make machines or industrial processes to work automatically. By doing so we can reduce cost as well as improve productivity and quality in a company. PLC, known as Programmable Logic Controller is the base controller for automation. Then we have monitoring software like SCADA, Supervisory Control and Data Acquisition System which we can use to design a particular area of control and it is mainly used to data acquisition and supervisory control. Along with that Field devices like sensors, transducers etc. can also be used to implement full automation. What are the course contents you cover in your syllabus? We have mainly three types of courses. A three and a half months full course which is known as Post Graduate Diploma in Industrial Automation (PGDIA) which covers 7 brands of PLCs (SIEMENS, Allen Bradley, ABB, Schneider Electric, Omron, Delta, GE Fanuc), 5 SCADAs (Intouch, Factory Talkview, WinCC, Vijeo Citect and iFix), VFD, HMI, MCC Panel wiring and designing, PAC (Programmable Automation Controller), P&FI and DCS (Distributed Control System) The next course is a two months course – Advanced Diploma in Industrial Automation (ADIA) with 6 PLCs, 3 SCADAs, VFD, HMI, MCC Panel, P&FI and DCS can also be included. The third is the One-month course Certified Automation Engineering (CAE) with 6

Courses

Electrical QA \ QC

Automation Course Electrical QA QC Electrical QA/QC involves ensuring electrical systems and components meet quality standards through inspection, testing, and compliance verification. Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down Electrical QA QC Electrical QA/QC (Quality Assurance/Quality Control) is essential in ensuring the safety, reliability, and compliance of electrical systems and installations. QA involves establishing and implementing processes to maintain consistent quality throughout the project lifecycle. This includes developing quality management plans, conducting audits, and implementing corrective actions to prevent defects. QC focuses on verifying that electrical components, materials, and installations meet specified standards and regulatory requirements. It encompasses activities such as inspections, testing, and documentation to ensure adherence to design specifications and applicable codes. QA/QC professionals monitor construction or manufacturing processes closely, conducting inspections to identify potential issues early and ensuring that installations meet safety and performance standards. Effective Electrical QA/QC practices not only enhance the reliability and longevity of electrical systems but also mitigate risks associated with electrical hazards. Industries such as construction, manufacturing, renewable energy, and utilities rely on stringent QA/QC procedures to deliver projects that meet quality expectations and regulatory compliance, ultimately safeguarding public safety and operational efficiency. Advantages of Electrical QA QC Improved Efficiency Reliability and Stability Scalability Integration of Renewable Energy Cost-effectiveness Enhanced Safety Environmental Benefits Smart Grid Implementation Regulatory Compliance Economic Growth Electrical QA QC Job Opportunities Enhanced Safety Improved Reliability Compliance with Standards Cost Savings Customer Satisfaction Operational Efficiency Risk Mitigation Continuous Improvement Professional Reputation Environmental Impact Duration 6 Months Type of Study Full Time Fees 20000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. Electrical QA QC – Syllabus MODULE 1 : ELECTRICAL ENGINEER QA/QC – INTRODUCTION Duties and responsibilities of a QA/QC Engineer(Project & Corporate). Brief description about the type of jobs available for a QA/QC Electrical engineer Electrical QC General Requirements Electrical QC Plan and applicable Codes, specifications About the standard in industries(IS,ISO,IEC,IEEE, NFPA, NEMA, NEC, ANSI,CPWD). MODULE 2 : INTRODUCTION OF INDUSTRIES Brief discriprion about Electricity power generation, transmission and distribution, and transmission of power to the consumers . Introduction to various types of industries like manufacturing, power plants, construction etc Revision of electrical system basics. Overview of MCB types, RCCB, RCBO etc Types of Distribution Board,Cables,wires, breakers etc Concept of Total connected Load, maximum demand. Cable sizing, breaker sizing. Transformer, Generator , UPS selection basis for design review purpose. Various electrical panel designing methodologies. MODULE 3 : DESIGN DOCUMENT REVIEW. Design documentation requirements Review of consultant design electrical basis Preparation of design review reports for projects. Electrical Contract Review Power Distribution Review Lighting System Review Checking of electrical drawings. Review reports of electrical equipment’s, and plant. Preparation of Electrical design review checklist Preparation of Electrical drawing checklist Communication and Data Processing Life Safety and Security Systems Grounding Systems Electrical System Technical Specification Tool, Equipment & calibration Testing Electrical Construction Management Reading/checking of various types of electrical equipment. Brief description of electrical design calculations/various design methodologies. MODULE 4 : HT AND LT ELECTRICAL INSTALLATION Planning of electrical installation. Site aspects and standards for electrical power distribution – wiring, light fitting, conduiting and DB wiring. Wiring installation and checking methodologies in domestic, industrial, and hospital projects. Conduit installation and checking methodologies in domestic , industrial and hospital projects DB, switch board installation and checking procedures. Site aspects and standards for Cable management system, HT and LT panels etc Installation and checking methodologies for transformers, Generators, and UPS. Installation and checking methodologies for Lightning and earthing protection. Outdoor electrical panels, cable routing. Fixing of Street lights, Flood lights, and various exterior lighting options, etc. Outdoor substation. Solar street lights. MODULE 5 : SITE DOCUMENTATION AND COORDINATION PROCEDURES Electrical bill of quantity and Estimate review. Preparation of Rate analysis statement for various electrical items. Checking of GA drawings, and various shop drawings. Preparation of Bill of materials for Residential, commercial, and industrial projects. Preparation of Revised estimate,comparative charts, LMR estimate. Documentation of Invoices, quotations, etc Method documentation of comments, coordination, and responses. Organizing and coordinating site meetings and their implemention. Preparation of MOM. General idea about Plumbing, HVAC, and fire fighting works for site-level coordination and implementation. Energy conservation procedures. Energy auditing methodologies. Maintenance and safety procedures. MODULE 6 : INSPECTION AND TESTING PROCEDURES Safety ,testing and installation of electrical equipments. Preparation of Inspection Checklist for the following Wires Conduit Lighting Cables Distribution BoardBus duct Electrical Panels Earthing Lightning protection system Generator Transformer…etc Electrical safety checklist. Preparation Inspection and Test plan(ITP) of Wiring,Distribution board, Earthing etc. Preparation of method statement. Electrical QA QC Documents and Records. Purchasing and expediting Insulation resistance test, Polarity test, Earth continuity test etc Inspect, test or measure equipment and materials Various measuring instruments Loop checking, wiring continuity and color coding, start-up, and troubleshooting Inspection. Generator synchronization, VFD, and AMF panel wiring-load testing. Panel building. Experience knowledge of motor, pneumatic, servo, robotics, sensors, machine installation & commissioning and Internal and external project audit Audit scheduling, Planning, reporting, and follow up. MODULE 7 : AUTOCAD SOFTWARE TRAINING Auto Cad software training. Drafting Setting & Drawing Tools Modification Tools,Arrays, 2D Drafting. Properties Panel & Layers, Annotation Panel. Blocks, Block Editing, Attributes. Advanced Tools, Tools Palettes , Plot & Print. Project, Isometry). Build your Career in Electrical QA QC with SMEC An Electrical QA/QC course is instrumental in preparing individuals for careers focused on ensuring the quality, safety, and compliance of electrical systems and installations. This

Courses

MEP Design Courses

Automation Course MEP Design Courses Design declutter will help you simplify and organize for better user experience by removing unnecessary elements and prioritizing essential ones. It will help improve communication, engagement, and conversion rates, ensuring user-friendliness and aesthetic appeal Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down MEP Design Courses In a building system, there would be a Mechanical, electrical, and plumbing system. All these systems should work properly otherwise there could be a lot of problems. In most of the commercial buildings, we won’t be able to see any hanging electrical wires or pipelines that go up or down in an improper way. All of this would be achieved because of the MEP professionals. Ventilation plays an important part in commercial buildings so commercial buildings should have good ventilation. In order to achieve a proper functional building, all of this must be designed and also should function properly. Most of the MNCs are looking for skillful professional MEP engineers. So you need to be a certified engineer to get yourself placed in a good firm. The electrical system should be properly designed and all the connections should be properly done, this would be the same case for the piping and mechanical section otherwise. If there is any fault then it would cost a lot and even someone could lose their life due to this. So MEP plays a major role to create a proper commercial building. SMEClabs can help you to become a certified MEP engineer. If you complete the Diploma in MEP from SMEClabs then it would benefit a lot for your career. You can acquire a lot of skills after completing this course because you would be trained by professionals. SMEClabs offers you detailed training in MEP, walking you through global standards. SMEClabs offers you detailed training in MEP, walking you through global standards. Job Opportunities After Completing MEP Design Course MEP Engineer HVAC Engineer Electrical Designing and Drafter Firefighter Who Is This Program For? Professionals interested in exploring MEP Hobbyists and students who want to start their career in MEP Students / Working professionals Duration 3 Months Type of Study Full Time Fees 25000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. MEP Design Courses – Syllabus HVAC Designing & Drafting Introduction & Fundamentals Psychometry Types of Air Condition System Types of Refrigeration Cycle Study on refrigerants Study on Air Distribution System Duct Designing Duct Sizing Using Duct Sizer Duct System Components Gril sizing using beta programme Ventilation systems & LAB ESP Calculation VRV or VRF systems Heat Load Calculation (Manual Method) HAP Equipment Selection Pipe Sizing methods Mini Project Chiller and Plant configuration Types of Chillers Pump Selection HVAC System, Valves Accessories & Scheme Schedule Estimate Main Project Electrical System Design Introduction to Building Industry Apartment Lighting Design in CAD (LAB) Types of DB, Circuit Breakers and its Selection DB schedule designing in CAD (LAB) Load calculation, transformer and DG set calculation Power system components, types of panels, electrical consumers Scheme designing – Apartment and commercial projects Scheme designing – Apartment and commercial projects (LAB) Earthing Protection, Lightning Protection, Relay and CT’s Equipment/substation layout designing (CAD) Bill of Quantity, Estimation, DBR, Tender doc various electrical calculations Introduction to IBMS, Project Planning Introduction – DIALUX/ I Lighting software & Lighting design Project Designing of college/school – (LAB) Public Health Engineering Introduction & Fundamentals Water quality & Sanitaryware Plumbing Fixtures & LAB Fixture Layout LAB PHE Calculation Internal Plumbing Layout LAB Pumps, Tank Selection & Types of Pipes External Plumbing External Plumbing LAB Rain water harvesting & Storm water Schedule & Estimate & LAB AutoCAD Introduction Drafting Settings, Drawing Tools Modification Tools Arrays Drafting Orthographic Projection Properties Panel, Layers Annotation Panel Machine Drawing Blocks Layout Plot Exercise 1,2 Advance Tools Utilities Panel Attributes, Tool Palettes, Visibility Isometry Electrical CAD Introduction & Insertion of components Library Symbol-Creation Component Tools Wires & Signal Arrows Ladder Tools, wire numbers & wire edit PLC & P to P Wiring tools Foot Prints Printing General Reports Projects Scope of MEP Mechanical, Electrical, and Plumbing (MEP) engineering plays a crucial role in the design, construction, and maintenance of buildings, ensuring they are functional, safe, and comfortable for occupants. Each component of MEP has a distinct focus yet works synergistically to support the overall infrastructure of a building. Mechanical Engineering: This aspect primarily deals with heating, ventilation, and air conditioning (HVAC) systems. Mechanical engineers design systems that control indoor climate, ensuring thermal comfort and air quality for occupants. They consider factors like building size, occupancy, and usage patterns to create efficient systems for temperature regulation, humidity control, and air distribution. Additionally, they focus on energy efficiency, integrating renewable energy sources and advanced technologies to reduce the building’s carbon footprint. Electrical Engineering: This discipline encompasses the design and maintenance of electrical systems that power a building. Electrical engineers ensure safe and reliable power distribution to lighting, outlets, appliances, fire alarms, security systems, and communication networks. They also implement energy management systems to optimize power consumption and incorporate renewable energy solutions such as solar panels and wind turbines. Electrical engineering in MEP includes ensuring compliance with electrical codes and standards, providing backup power solutions, and designing systems for smart buildings with automated controls. Plumbing Engineering: This field involves designing and installing systems for water supply, waste removal, and stormwater management. Plumbing engineers ensure that clean water is safely distributed throughout the building

Courses

IIoT Courses

Automation Course IIoT Courses Design declutter will help you simplify and organize for better user experience by removing unnecessary elements and prioritizing essential ones. It will help improve communication, engagement, and conversion rates, ensuring user-friendliness and aesthetic appeal Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down IIoT Courses IIOT  is the next industrial revolution. The industrial internet of things is the process of connecting industrial sensors and equipment. Because of IIOT, we can say that most industries have been digitized. The Internet of things has made many changes in our daily life, like connecting the internet to home appliances, Infotainment systems in cars, etc. The industrial internet of things would be really useful to increase productivity and profit. So all the equipment and devices can transfer data to each other because of the industrial internet of things. IIOT would make a lot of changes in our industrial sector. The industrial internet of things can be considered advanced automation. Best IIoT Courses Training Certification Industrial IoT 2023 Industrial Internet of Things courses in India UAE Saudi Arabia Qatar Africa. Many industries are using IIOT so the career opportunities in this field are increasing day by day. Choosing a career in IIOT would secure and brighten your future. SMEClabs provides a complete IIOT package and this would open a lot of doors for you.   What You’ll Learn Introduction to Industrial Internet of thing PLC and SCADA Analyzing and mining sensor data Sensor Area Network (WSAN) (WSAN) Industrial Internet of Things (IIoT) system IoT security in industry Real-time data acquisition of sensor data Controlling industrial devices with the IoT IIoT monitoring of industrial sensors Data Analysis to improve efficiency and many more Who Should Attend IoT device management engineers Field Engineers Embedded system specialists Application engineers Machine learning developers IoT solutions architects Validation engineers IoT developers Cloud solution architects IT Engineers Duration 3 Months Type of Study Full Time Fees 50000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. IIoT Courses – Syllabus Industry 4.0 Architecture Fundamentals of IoT & Wireless Sensor Networks  Embedded C and ARM Cortex Microcontrollers Embedded Linux IoT Protocols & Networking Fundamentals Porting on ARM Cortex Microcontrollers The Constrained Application Protocol (CoAP) MQTT HTTP Web and REST Architecture, Constrained RESTful Environments requirements and Architecture IoT Application Development Difference between IIoT and consumer IoT Applications at technical level PLC SCADA HMI NodeMCU IIOT practicing NodeMCU to PLC Thingspeak & Firebase (HTTP ) Cloud Adafruit (MQTT) Cloud Project Build Your Career in IIoT with SMEClabs The Industrial Internet of Things, or IIoT, is a digital ecosystem of connected machinery, equipment, and devices that can communicate with one another. It is based on the Internet of Things concept. To de-centralize the decision-making process, this cyber-physical system with machine-to-machine communication monitors and analyses physical processes. The Industrial Internet of Things (IIoT) connects essential assets with superior predictive and prescriptive analytics, and it’s altering the way businesses run. Upskilling in IIoT can provide a huge boost to one’s profession in these competitive times. The IIoT online training from SMEClabs covers key concepts in industrial automation, including PLC and SCADA. Sensor data mining, wireless sensor area networks (WSAN), smart factories, industrial cloud platforms, and Industrial IoT security are all covered. The IIoT certification course also gives participants hands-on experience in the field with practical assignments and labs, ensuring they gain a thorough understanding of all concepts discussed during the sessions. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQ for IIOT Industrial Internet of things Courses Full form of IoT and IIoT Internet of things and industrial internet of things   Difference between IIoT and IoT IIOT is utilized in the industrial sector while IoT is mostly used in our daily life, like connecting the internet to home appliances.   What are all the skills you achieve from the SMEClabs IIoT course? IIOT security Exposure to industrial control system such as SCADA & DCS You would be capable to develop and design different IIOT systems Working with Wireless sensor area network Smart factory designing skills You would get a lot of knowledge regarding the industrial cloud platforms What will be the future of IIoT? IIOT would make a lot of profit for small-scale and large-scale industries. This would reduce the cost and save a lot of money. IIOT is affordable and it would also improve the security of the industrial plants. In the future, most industries would implement IIOT.   What is Smec? Major job opportunities after completing the IIOT course from SMEClabs  Students feedback Trusted by genius people. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

Courses

Power System Design

Automation Course Power System Design The Power System Design course covers electrical system analysis, grid integration, protection schemes, renewable energy, and smart grid technologies. Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down Power System Design The Power System Design course provides comprehensive training in designing and analyzing electrical power systems. It covers fundamental topics such as electrical circuit theory, power generation, transmission, and distribution. Students learn about grid integration, focusing on the seamless incorporation of various energy sources, including renewable energy like solar and wind power, into the power grid. Key components of the course include protection schemes, which are essential for safeguarding electrical systems from faults and ensuring reliable operation. The course also delves into smart grid technologies, exploring advancements that enhance grid efficiency, flexibility, and resilience. Emphasis is placed on modern tools and software for power system analysis and simulation. Through a blend of theoretical knowledge and practical application, students gain the skills needed to design robust and efficient power systems. The course prepares graduates for careers in electrical engineering, utility management, and renewable energy sectors, equipping them with the expertise to address contemporary challenges in power system design and operation. Advantages of Power System Design Improved Efficiency Reliability and Stability Scalability Integration of Renewable Energy Cost-effectiveness Enhanced Safety Environmental Benefits Smart Grid Implementation Regulatory Compliance Economic Growth Power System Design Job Opportunities Power System Engineer Renewable Energy Engineer Transmission Planning Engineer Distribution System Engineer Protection Engineer Smart Grid Engineer Energy Consultant Project Manager Research and Development (R&D) Engineer Regulatory Compliance Specialist Duration 6 Months Type of Study Full Time Fees 20000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. Power System Design – Syllabus Electrical Machines & Instruments Power and Automation – Main Course + 2 Higher end PLC, SCADA, HMI, VFD, PAC, DCS AC Generator(Alternator)Construction: Operation – parts of the generator – types of AC generator – single-phase AC generator – three-phase AC generator DC Generator: Basic principle – construction – parts of the generator – method of functioning -types of the generator – series generator – shunt generator – Compound Transformer : Introduction –  construction – operation – types of transformers – uses – protective devices of transformer – transformer oil. DC Motor: Basic principles – construction – parts of dc motor – method of functioning – types of dc motor – series motor – shunt motor – compound motor AC Motor: Three-phase motor – single phase motor – construction – operation – uses Study of Electrical Projects High Tension and Low Tension Electrical Work Marine Electrical Work Estimate and Costing Estimate Material Quantities and Costs Prior to Bidding an Electrical based Project Calculation of total load Selection of electrical equipment Design of Electrical Drawings Teach to create and manage projects, create and edit various electrical drawings, develop reports with the help of Autocad Electrical Safety, testing and installation of electrical equipment Megger Multimeter Tong tester Earth tester Neon tester Loop calibrator Advanced Technologies in Power Generator synchronization, VFD and AMF Earthing Load testing Power management and monitoring Cable laying and grand booting Ferrule and types of crimping Bus bar arrangements Relay Contactor and switch gear Complete panel design and wiring Awareness of Electricity Basics of electricity and its symbols electrical machines and instruments distribution of electricity Build your Career in Power System Design with SMEC A Power System Design course equips students with the knowledge and skills necessary to design, analyze, and optimize electrical power systems. The curriculum typically covers a broad range of topics essential for understanding and implementing effective power systems: Fundamentals of Electrical Engineering: Basic principles including circuit theory, electromagnetism, and power electronics form the foundation. Power Generation: Study of various methods of generating electricity, including conventional sources like thermal, hydro, and nuclear, as well as renewable sources such as solar and wind. Transmission and Distribution: Understanding the principles and techniques for efficient and reliable transfer of electricity over long distances (transmission) and within local networks (distribution). Grid Integration: Integration of different energy sources into the power grid, including management of intermittency and grid stability. Protection Systems: Design and implementation of protection schemes to detect and isolate faults in power systems, ensuring safety and reliability. Smart Grid Technologies: Exploration of advanced technologies like automation, digital communication, and data analytics to enhance grid efficiency and reliability. Renewable Energy Integration: Strategies and challenges associated with integrating renewable energy sources into existing power systems. Software Tools and Simulation: Hands-on experience with industry-standard software for power system analysis, simulation, and optimization. A well-rounded Power System Design course prepares graduates for careers as power system engineers, renewable energy specialists, grid planners, consultants, and researchers. It emphasizes practical applications through projects, lab work, and industry collaborations, ensuring graduates are ready to tackle real-world challenges in the evolving field of electrical power systems. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQs for Factory Automation I need to know more about industrial automation course? Industrial automation is a technology we use in order to reduce human activities and to make machines or industrial processes to work automatically. By doing so we can reduce cost as well as improve productivity and quality in a company. PLC, known as Programmable Logic

Courses

Factory Automation

Automation Course Factory Automation The Factory Automation course covers robotics, control systems, sensors, PLC programming, AI, IoT, and smart manufacturing processes to enhance efficiency. Supported DCS Vendor System DCS System Integration Consulting DCS Commissioning Project Management Training R & D Department Automation Embedded System Instrumentation Contact US Scroll Down Factory Automation Factory Automation leverages control systems like computers and robots, along with information technologies, to manage industrial processes and machinery, minimizing the need for human intervention. Key components include Programmable Logic Controllers (PLCs) for machine control, robotics for precision and repetitive tasks, and sensors for real-time data collection to optimize operations. Advanced technologies such as Artificial Intelligence (AI) and the Internet of Things (IoT) are increasingly integrated into these systems, enabling smarter, more adaptive manufacturing environments. Automation enhances productivity through continuous, error-free operations, reduces production costs, and improves product quality. Moreover, factory automation offers flexibility, allowing quick adaptation to changing production needs with minimal downtime. By improving efficiency, safety, and reliability, factory automation transforms manufacturing processes to meet the demands of modern industries, driving significant advancements in production capabilities. Advantages of Embedded Systems Increased Efficiency Enhanced Precision and Accuracy Cost Reduction Improved Safety Scalability Consistency and Reliability Real-time Monitoring and Data Collection Enhanced Productivity Resource Optimization Competitive Advantage Embedded Systems Job Opportunities Automation Engineer Robotics Technician Controls Engineer Industrial Engineer Maintenance Technician System Integrator Software Developer IoT Specialist Quality Control Analyst Project Manager Data Analyst Sales Engineer Duration 6 Months Type of Study Full Time Fees 20000 R & D Department 22 Years What you will learn? TEACHINGWORLD-CLASS FACULTY WITH A WEALTH OF INDUSTRY EXPERIENCE. 01 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 02 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 03 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. 04 Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. DCS Courses -Distributed Control System – Syllabus Factory IO Items Boxes Pallets Stackable Box Raw Material Product Lid Product Base Final Product Heavy Load Roller Conveyor Curved Roller Conveyor Loading Conveyor Roller Stop Free Roller Chain Transfer Light Load Belt Conveyors Curved Belt Conveyor Belt Conveyor Gate Inclined Belt Conveyor Conveyor Scale Sensors Capacitive Sensor Diffuse Sensor Inductive Sensor Light Array Retroreflective Sensor Operators Emergency Stop Push Buttons Light, Indicators Selector Potentiometer Digital Display Electric, Switchboard Stations Machining Center Elevator Pick & Place Stacker Crane and Rack Palletizer Two-Axis Pick & Place Tank Walkways & Warning Devices Handrails, Platforms Safeguard Stairs Safety Door Alarm Siren Stack Light Warning Light Emitter, Remover & I/O Drivers Emitter Remover Siemens S7-1200/1500 Siemens S7-PLCSIM Control I/O Siemens TIA-Total Integrated Automation Introduction to the Hardware Siemens S7-1200 PLC Introduction to Siemens TIA-Total Integrated Automation Understanding General Elements of TIA Bit Logic Operations in TIA Timer Operations in TIA Counter Operations in TIA Comparative Operations in TIA Math Operations in TIA Move Operations in TIA Understanding various Program Control operations in TIA Word logic Operators Shift and Rotate Command PLC Troubleshooting Techniques WinCC – Unified Webserver – Basic Webserver with user defined Pages PLC – PLC Communication Analog Value Processing PID Compact Data Blocks, Organization blocks and function blocks – Overview PLC Application Example using SCL Coding Simulate HMI and PLC in Siemens TIA Learn Siemens HMI KTP 400 – Wiring Designing and Interfacing Understanding Switch elements in Siemens KTP 400 HMI Creating Output Indication in HMI Understanding multi-state Inputs and Outputs in HMI Numeric Display element Understanding Animations in HMI Understanding Control Functions of HMI Understanding Alarms – Discrete and Analogue Build your Career in Factory Autoamtion with SMEC Building your career in factory automation with SMEC Automation offers a strategic and comprehensive approach to becoming a proficient automation professional. SMEC Automation provides specialized training programs that encompass critical aspects of factory automation, including PLC programming, SCADA systems, robotics, control systems, and IoT integration. These courses are meticulously designed to blend theoretical knowledge with practical application, ensuring you are well-prepared for real-world challenges. SMEC Automation’s training facilities are equipped with the latest automation technologies and tools, providing a hands-on learning experience that mirrors current industry practices. The courses are led by experienced instructors who bring a wealth of industry expertise, offering insights into the latest trends and advancements in factory automation. This practical, experience-based learning ensures that you develop the skills necessary to excel in the automation field. Furthermore, SMEC Automation offers robust career support services, including resume development, interview coaching, and job placement assistance. Their extensive industry network and partnerships with top automation companies provide valuable connections and employment opportunities, enhancing your career prospects. Choosing SMEC Automation for your training means gaining access to a nurturing environment that prioritizes practical skills and industry relevance. Whether you are starting your career or seeking to upgrade your skills, SMEC Automation equips you with the knowledge and experience needed to thrive in the fast-paced world of factory automation. Download Brochure Benefits of learning from us Designed for Working Professionals Personalised mentorship sessions Dedicated career support Doubt-Solving with Expert Industry mentors Proactive Program Support Job Assistance with Top Firms IIIT Kanpur Alumni organised syllabus Virtual Lab Facility 100% Placement Assistance National & International Certifications FAQs for Factory Automation I need to know more about industrial automation course? Industrial automation is a technology we use in order to reduce human activities and to make machines or industrial processes to work automatically. By doing so we can reduce cost as well as improve productivity and quality in a company. PLC, known as Programmable Logic Controller is the base controller for automation. Then we have monitoring software like SCADA, Supervisory Control and Data Acquisition System which we can use to design a particular area of control and it is mainly used to data acquisition and supervisory control. Along with that Field devices like sensors, transducers etc. can also be

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