Learn how to test portable electrical appliances with a qualification in Electrical Equipment Maintenance and Testing aimed at new starters to the testing of portable electrical equipment with minimal electrical knowledge. This qualification is aimed at those with responsibilities for the maintenance of electrical equipment and for those undertaking practical inspection and testing of electrical equipment. It allows those with the responsibility for the testing and inspection of electrical equipment to gain a qualification suitable to their job role. The qualification allows candidates to learn, develop and practise the skills required to inspect and test items of electrical equipment in line with the latest edition of the Code of Practice for In-Service Inspection and Testing of Electrical Equipment. Learners completing the qualification will have the ability to carry out mandatory responsibilities within the workplace depending on their prior electrical knowledge This level will suit you if you are looking to become involved in, the inspection and testing of electrical equipment. To successfully complete the qualification learners will have to sit an Evolve on-line test comprising of a 50 MCQ and a practical assignment. The practical consists of 3 tasks which are: Task 1 is inspect and test Class I equipment, Task 2 is inspect and test Class II equipment (this will be either unearthed metal or without unearthed metal or Class II FE – Learners will not need to do all 3 of these, they only need to do one type), Task 3 is completing the record forms
This EV charging course is intended to provide expert guidance to learners wishing to gain knowledge and understanding on Electric Vehicle charging equipment installation. This 2 day course provides expert guidance on EV charging equipment installation, an important emerging area which is not covered in detail by the current edition of the Wiring Regulations (BS 7671) or the IET’s Guidance Notes. Aimed at experienced electricians interested in understanding a wide range of equipment and systems available, this course applies to the specialised installation requirements of electric vehicle charging equipment in domestic dwellings, on-street locations, commercial and industrial premises. This training course provides detailed guidance and recommendations on all aspects of the installation of Electric Vehicle Charging Equipment from the origin of the electrical supply, through distribution and final circuits, installation of the charging equipment itself to the cable between the charging equipment and vehicle’s electrical inlet. Also included are related issues of site layout and planning and subsequent inspection, testing, certification and maintenance of installations. Also Covering: How EV charging works How to select the correct EV Charging Point Solution for the customers needs. Technical requirements of installing & the use of different earthing arrangements (TN-C-S/TT systems) Planning requirements, labelling & risk assessments How to carry out surveys & Pre Installation considerations Meeting the requirements of BS7671 Awareness of the IET code of practice for Electrical Vehicle Charging Equipment & Installation. Plus much more Why take this EV charging course? Currently there is an increasing demand for new electric vehicle charging points but too few installers to roll them out. This is already a booming market which is due to get much bigger in the near future. The number of public charging connectors and locations has increased by 38% in the past 12 months and is expected to continue at that rate for years to come. Add this important service to future proof your knowledge to allow extra inspection & testing plus new installation work with this electric vehicle charging course. We have a variety of charging units and simulated installs which means it is just as working on a real installation. Making this installers course real value for money.
This qualification aims to provide expert guidance to learners wishing to gain knowledge and understanding on Electric Vehicle charging equipment installation. This 2 day course provides expert guidance on EV charging equipment installation, an important emerging area which is not covered in detail by the current edition of the Wiring Regulations (BS 7671) or the IET’s Guidance Notes. Aimed at experienced electricians interested in understanding a wide range of equipment and systems available, this course applies to the specialised installation requirements of electric vehicle charging equipment in domestic dwellings, on-street locations, commercial and industrial premises. The course provides detailed guidance and recommendations on all aspects of the installation of Electric Vehicle Charging Equipment from the origin of the electrical supply, through distribution and final circuits, installation of the charging equipment itself to the cable between the charging equipment and vehicle’s electrical inlet. Also included are related issues of site layout and planning and subsequent inspection, testing, certification and maintenance of installations. Why take this course? Currently there is an increasing demand for new electric vehicle charging points but too few installers to roll them out. This is already a booming market which is due to get much bigger in the near future. The number of public charging connectors and locations has increased by 38% in the past 12 months and is expected to continue at that rate for years to come. Entry Requirements There are no formal entry requirements for this qualification, however we do expect you to meet the following requirements: Minimum age 18 years old (mandatory) Must be able to demonstrate the following competencies Be able to correctly install and terminate: pvc/pvc cable (twin and earth) Steel Wire armoured cable (swa) Be able to carry out an initial verification (inspection & testing) on an electrical installation and complete the necessary paperwork. Please Note: These competencies are required for the assessment and are not taught as part of the course. It is also recommended that you are up to date with your wiring regulations.
This qualification aims to provide expert guidance to learners wishing to gain knowledge and understanding on Electric Vehicle charging equipment installation. This 2 day course provides expert guidance on EV charging equipment installation, an important emerging area which is not covered in detail by the current edition of the Wiring Regulations (BS 7671) or the IET’s Guidance Notes. Aimed at experienced electricians interested in understanding a wide range of equipment and systems available, this course applies to the specialised installation requirements of electric vehicle charging equipment in domestic dwellings, on-street locations, commercial and industrial premises. The course provides detailed guidance and recommendations on all aspects of the installation of Electric Vehicle Charging Equipment from the origin of the electrical supply, through distribution and final circuits, installation of the charging equipment itself to the cable between the charging equipment and vehicle’s electrical inlet. Also included are related issues of site layout and planning and subsequent inspection, testing, certification and maintenance of installations. Why take this course? Currently there is an increasing demand for new electric vehicle charging points but too few installers to roll them out. This is already a booming market which is due to get much bigger in the near future. The number of public charging connectors and locations has increased by 38% in the past 12 months and is expected to continue at that rate for years to come. Entry Requirements There are no formal entry requirements for this qualification, however we do expect you to meet the following requirements: Minimum age 18 years old (mandatory) Must be able to demonstrate the following competencies Be able to correctly install and terminate: pvc/pvc cable (twin and earth) Steel Wire armoured cable (swa) Be able to carry out an initial verification (inspection & testing) on an electrical installation and complete the necessary paperwork. Please Note: These competencies are required for the assessment and are not taught as part of the course. It is also recommended that you are up to date with your wiring regulations.
QA Level 1 Award In Health And Safety In The Workplace (RQF) Face to Face: Half-day course Virtual Classroom: Spread over 2 sessions of 2½ hr duration A basic course to train your workers in basic health and safety Teaches workers how to keep themselves and others safe at work Course Contents: Roles and responsibilities of employers and employees The importance of health and safety in the workplace Workplace hazards and Risks, including:Slips, Trips and FallsManual HandlingFireWorking from HeightElectricityHazardous SubstancesMachinery and Vehicles Workplace conditions that can affect health and safety Health and Safety Signage Personal Protective Equipment and its uses Importance of Personal hygiene The Purpose of First Aid Provision The need for Reporting Incidents and ill Health Benefits of this course: In 2023/24, 1.7 million people suffered from a work-related illness 600,000 sustained a non-fatal injury 138 People lost their lives 776,000 Workers suffered from work-related stress, depression or anxiety The estimated cost of injuries and ill health last year was £21.6 billion 33.7 million working days, or 140,417 working years, were lost due to work-related illnesses and injuries It is an employer's duty to protect the health, safety and welfare of their employees and other people who might be affected by their business. This includes providing sufficient information, instruction and training of employees, so they can work in a way that does not put themselves or others at risk Our QA Level 1 Award in Health and Safety in the Workplace (RQF) course helps employs gain a bit more understanding of health and safety issues and their own role within that. Accredited, Ofqual regulated qualification: Our Health and Safety Training Course is a nationally recognised, Ofqual regulated qualification accredited by Qualsafe Awards. This means that you can be rest assured that your Health and Safety Certificate fulfils the legal requirements and is a very good way to make sure you and your employees are trained in Health and Safety. The Ofqual Register number for this course is 603/0774/2
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
About this Virtual Instructor Led Training (VILT) Electrification of the transportation sector will impact the power system in several ways. Besides the additional load, local impact on the grid needs to be managed by the grid operators. Simultaneously charging of many electric vehicles (EVs) might exceed the limits in specific locations. On the other hand, EVs can provide flexibility and other ancillary services that will help grid operators. This 3 half-day VILT course will provide a complete overview of integrating electric vehicles (EVs) into the power grid. It will cover the whole value chain from grid operations to the car battery. This includes the control room, possible grid reinforcement, demand side management and power electronics. This course will demonstrate the impact on the grid and solutions for a safe & cost-effective grid plan and operation, with examples of successful integration of EVs. The course will also provide vital knowledge about technology used for EVs such as power electronics, demand side management, communication and batteries. In this context, the focus will be on power electronics as it has the highest impact on the grid. The grid planning tool, pandapower, is introduced as an open source tool for power system modelling. The set-up of the training course allows for discussion and questions. Questions can be formulated by the participants upfront or during the training. This course is delivered in partnership with Fraunhofer IEE. Training Objectives At the end of this course, the participants will: Understand the charging options for EVs and its impact on the grid and batteries Identify system services for EVs with regards to voltage quality at the point of common coupling Discover what are the 'grid friendly' and grid supporting functions in EVs Uncover the different applications, standards and data researched on EVs Examine the application of a grid planning tool (pandapower) for power system modelling Be able to develop code snippets with pandapower Apply and execute a code example for power system modelling with pandapower Target Audience EV and grid project developers and administrators Power grid operators and planners EPC organisations involved in grid development EV/ battery manufacturers and designers EV transport planners and designers Government regulators and policy makers Training Methods The VILT will be delivered online in 3 half-day sessions comprising 4 hours per day, with 2 x 10 minutes breaks per day, including time for lectures, discussion, quizzes and short interactive 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 of every session/day. Trainer Our first course expert is Head of Department Converters and Electrical Drive Systems at Fraunhofer IEE and Professor for Electromobility and Electrical Infrastructure at Bonn-Rhein-Sieg University of Applied Sciences. He received his engineering degree in automation in 2008 by the THM Technische Hochschule Mittelhessen (FH Giessen-Friedberg). Afterwards he studied power engineering at University of Kassel and received his diploma certificate in 2010. In 2016 he received the Ph.D. (Dr.-Ing.) from the University of Hannover. The title of his dissertation is Optimized multifunctional bi-directional charger for electric vehicles. He has been a researcher at the Fraunhofer IEE in Kassel since 2010 and deals with power converters for electric vehicles, photovoltaics and wind energy. His current research interests include the bidirectional inductive power transfer, battery charger and inverter as well as new power electronic components such as SiC MOSFETs and chokes. Additionally, our key expert is Chairman of the IEEE Joint IAS/PELS/IES German Chapter and a member of the International Scientific Committee of the EPE Association. Our second course expert is deputy head of energy storage department at Fraunhofer IEE. Prior to this he was the Director of Grid Integration department at SMA Solar Technology AG, one of the world's largest manufacturers of PV power converters. Before joining SMA, our course expert was manager of the Front Office System Planning at Amprion GmbH (formerly RWE TSO), one of the four German transmission system operators. He holds a degree of electrical engineering of the University of Kassel, Germany. In 2003 he finished his Ph.D. (Dr.-Ing.) on the topic of wind power forecasting at the 'Institute of Solar Energy Supply Technology' (now Fraunhofer IEE) in Kassel. In 2004 he started his career at RWE TSO with main focus on wind power integration and congestion management. Our course expert is chairman of the IEC SC 8A 'Grid Integration of Large-capacity Renewable Energy (RE) Generation' and has published several papers about grid integration of renewable energy source and forecasting systems on books, magazines, international conferences and workshops. Our third course expert is Research Associate at Fraunhofer IEE. He is actively working on different projects related to the integration of electric vehicle charging into the electric distribution grid. The focus of this work concerns time series based simulations for grid planning and operation in order to investigate the effect of a future rollout of electric vehicles and charging infrastructure on economics e.g. costs for grid reinforcement. He completed his master degree (MSc.) in Business Administration and Engineering: Electrical Power Engineering at RWTH Aachen University, Germany. Our trainers are experts from Fraunhofer Institute for Energy Economics and Energy System Technology (Fraunhofer, IEE), Germany. The Fraunhofer IEE researches for the national and international transformation of energy supply systems 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
Electric Kilns and Firing - an online course by Tim Thornton. The course covers firing and maintaining your kiln, and the effect firing has on clays and glazes