Day 1 of the Industrial Electrical Maintenance Part 1 consists of: Electricity at Work Regulations 1989, requirements and implementation Working safely, including the importance of isolation procedures and lock out systems Switches and Push Buttons, an explanation of the various types of switches and push buttons, the terminology and electrical symbols which are used in industry today, along with practical testing of functionality Relays and Contactors, principles of operation, purpose and uses Circuit design using BS electrical symbols and ladder diagrams, simple retaining circuits Construction of the above circuit, demonstrating the techniques of cable termination. Day 2 of the Industrial Electrical Maintenance Part 1 consists of: 3 phase induction motors, synchronous and asynchronous Description of the component parts of a 3 phase induction motor Demonstration of how a 3 phase rotating magnetic field is produced and how to reverse it Explanation of synchronous and asynchronous speed and slip Effect of the number of poles on motor speed Frame sizes Practical identification of various motors. Day 3 of the Industrial Electrical Maintenance Part 1 consists of: Principles of 3 phase induction motor control systems Overload protection principles of operation and use Design and operation of a DOL (direct on line) starter Construction of a DOL starter Inspection and testing procedure for the above starter Motor testing procedures. Day 4 of the Industrial Electrical Maintenance Part 1 consists of: DOL starter modifications Importance of updating documentation Design, construction and verification of reversing starter control and power circuits. Day 5 of the Industrial Electrical Maintenance Part 1 consists of: Star delta starters, principles of operation and uses Design, construction and verification of star delta starter control and power circuits.
This industrial electrical maintenance course is designed to enable candidates who have a small amount of electrical knowledge to gain recognised qualifications and skills to enable them to enter an industrial environment and work as a industrial electrician. The industrial electrical maintenance course will include a large amount of practical, enabling the candidate to install, fault find, design and wiring up control panels, using a variety of different methods. Industrial electrical maintenance course Aims The aim of the industrial electrical maintenance course is to provide solid foundations upon which the participant will be able to build and develop. Emphasis is given to providing the necessary skills, which will allow the participant to carry out routine electrical tasks. It is also made clear that a participant needs to identify and know their own limitations, allowing tasks to be carried out in a safe manner, not giving rise to danger.
This industrial electrical maintenance course is designed to enable candidates who have a small amount of electrical knowledge to gain recognised qualifications and skills to enable them to enter an industrial environment and work as a industrial electrician. The industrial electrical maintenance course will include a large amount of practical, enabling the candidate to install, fault find, design and wiring up control panels, using a variety of different methods.
This industrial electrical maintenance course is designed to enable candidates who have a small amount of electrical knowledge to gain recognised qualifications and skills to enable them to enter an industrial environment and work as a industrial electrician. The industrial electrical maintenance course will include a large amount of practical, enabling the candidate to install, fault find, design and wiring up control panels, using a variety of different methods.
This industrial electrical maintenance course is designed to enable candidates who have a small amount of electrical knowledge to gain recognised qualifications and skills to enable them to enter an industrial environment and work as a industrial electrician. The industrial electrical maintenance course will include a large amount of practical, enabling the candidate to install, fault find, design and wiring up control panels, using a variety of different methods.
Day 1 Solenoids and actuators, principles of operation and maintenance State precautions that may be necessary when removing cores from energised AC solenoids Transformers, sizing, applications and uses Heaters, applications, uses and safety precautions to be observed Temperature controllers, various types, principles of operation and uses Thermal sensors, various types, principles of operation and uses. Day 2 Proximity devices, limit switches and proximity switches, various types, principles of operation and uses Practical workshop, gaining an understanding of typical connections of various proximity devices and the range of available supplies catered for, voltage levels and current type Development of a typical simple control system using push buttons, proximity devices, relays and indicator lamps. Day 3 Protection against overcurrent Protective devices, various types, suitability and uses Earthing, including principles of protection against indirect shock Undervoltage protection. Day 4 Cable and core termination techniques, including crimping and soldering Practical workshop terminating YY, SY, SWA and MICC cable Testing, basic principles of circuit protective conductor testing and insulation resistance testing, instruments used and expected values Practical workshop testing cables terminated previously and testing cables with faults on test rig. Day 5 Fault finding, safety precautions and principles Practical workshop on fault rigs Root cause analysis PPM and maximising uptime
This industrial electrical maintenance course is designed to enable candidates who have a small amount of electrical knowledge to gain recognised qualifications and skills to enable them to enter an industrial environment and work as a industrial electrician. The industrial electrical maintenance course will include a large amount of practical, enabling the candidate to install, fault find, design and wiring up control panels, using a variety of different methods. Industrial electrical maintenance course aims The aim of the industrial electrical maintenance course is to provide solid foundations upon which the participant will be able to build and develop. Emphasis is given to providing the necessary skills, which will allow the participant to carry out routine electrical tasks. It is also made clear that a participant needs to identify and know their own limitations, allowing tasks to be carried out in a safe manner, not giving rise to danger. If your looking for industrial electrician training this course is for you.
About this Virtual Instructor Led Training (VILT) Electrical machines, mainly power transformers and electric motors are critical equipment that run production, and it must operate without any abnormalities. A wide variety of tests and standards have been developed to assist manufacturers and users of motors and transformer winding, assess the condition of the electrical insulation. The objective of this training course is to provide an understanding of power transformers and electric motors, their materials, components, and how they operate. It will also emphasize the importance of transformer life management, especially for those transformers and electric motors which have been in operation for than 10 years. The course will address in detail all aspects related to transformer principles, calculations, operation, testing and maintenance. Training Objectives This course aims to provide participants with the understanding of the fundamentals and constructional features of power transformers and electric motors, with particular reference to the design, testing, operation and maintenance of transformers in power systems. Delegates will gain a detailed appreciation of the following: Practical solutions for specifying, operating and maintaining power transformers and electric motors in a utility or plant environment Comprehensive understanding of principles, protection, maintenance and troubleshooting of power transformers and electric motors The necessary safe procedures relating to transformer operation and related circuitry Understand the principles of operation of the transformer and electric motors Identify the different features of power transformers and electric motors Appreciate the principles of transformer design, ratings, winding, core structure and materials, insulation and cooling methods, insulation and lifetime Utilize thermal limits and loading guides of transformers Analyze transformer and electric motors failure modes Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Course Level Basic or Foundation Training Methods The VILT will be delivered online in 4 half-day sessions comprising 4 hours per day, with 1 x 10 minutes break per day, including time for lectures, discussion, quizzes and short classroom exercises. Additionally, some self-study will be requested. Participants are invited but not obliged to bring a short presentation (10 mins max) on a practical problem they encountered in their work. This will then be explained and discussed during the VILT. A short test or quiz will be held at the end the course. Trainer Our key expert is actively involved in electrical inspections, energy audits, energy efficiency and technical consultation for M&E activities for industrial and commercial sectors. He is involved in testing and commissioning works of factory substations of up to 132kV system. He previously worked for Jimah coal-fired power plant in Port Dickson for 9 years with his last position being Electrical Maintenance Section Head. He was involved in the commissioning of coal-fired power plant mainly with 500kV generator transformer, 934 MVA generator, and up to 33kV MV motors and switchgear panels. Our key expert has managed the maintenance team to perform routine maintenance activities (together with supporting tools such as motor lube oil analysis, infrared thermography analysis, transformer oil analysis) & electrical troubleshooting and plant outages for critical and non-critical equipment. Besides that, our key expert has published several IEEE conference papers and journals such as: (2009). Effectiveness of auxiliary system monitoring & continuous hydrogen scavenging operation on hydrogen-cooled generator at power plant. In Energy and Environment, 2009. ICEE 2009. 3rd International Conference on (pp. 151-160). IEEE. (2010). Study on electric motor mass unbalance based on vibration monitoring analysis technique. In Mechanical and Electrical Technology (ICMET), 2010 2nd International Conference on (pp. 539-542). IEEE. (2012). Re-Design of AC Excitation Busduct based on Infrared (IR) Thermography: Condition-Based Monitoring (CBM) data analysis. eMaintenance, 101. (2016). Energy Saving Studies for a University Campus: An Educational-Based Approach, 3rd International Conference on Language, Education, Humanities and Innovation 2016. 'Grid-tied photovoltaic and battery storage systems with Malaysian electrcity tariff - A review on maximum demand shaving.' Energies 10.11 (2017): 1884 'Techno-Economic Optimization of Grid-Connected Photovoltaic (PV) and Battery Systems Based on Maximum Demand Reduction (MDRed) Modelling in Malaysia.' Energies 12.18 (2019): 3531 POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information about post training coaching support and fees applicable for this. Accreditions And Affliations
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