PAT Testing (Portable Appliance Testing) Diploma Unlock your potential in the field of PAT Testing with our comprehensive PAT Testing Diploma course. Master the art and science of PAT Testing. Elevate your skills and become a go-to expert in PAT Testing. Learning Outcomes: Define the fundamentals of PAT Testing. Analyse various PAT Testing methodologies. Apply PAT Testing procedures in real-world scenarios. Evaluate the effectiveness of different PAT Testing instruments. Formulate standard PAT Testing protocols. More Benefits: LIFETIME access Device Compatibility Free Workplace Management Toolkit Key Modules from PAT Testing (Portable Appliance Testing) Diploma: Electrical Principles and Terminology in PAT Testing: Understand the core electrical principles and terminology, setting a solid foundation for all your PAT Testing tasks. Inspections, Safety Checks, and Competency for PAT Testing: Perform comprehensive inspections and safety checks, honing your competency in PAT Testing. PAT Testing Procedures and User Checks: Master the step-by-step PAT Testing procedures and perform meticulous user checks to ensure the highest level of safety and compliance. Test Instruments and Equipment: Get hands-on experience with the latest PAT Testing instruments and equipment, fortifying your practical skills in PAT Testing. Standard Testing Protocols: Establish and adhere to industry-standard protocols to ensure accurate and reliable PAT Testing results.
Course Title: Electric Power Metering for Single and 3-Phase Systems Unlock the Power of Precision Measurement for Efficient Energy Management Overview: In an era where energy efficiency is paramount, understanding and mastering electric power metering is crucial for both professionals and enthusiasts in the electrical industry. Our comprehensive course, 'Electric Power Metering for Single and 3-Phase Systems,' empowers participants with the knowledge and skills needed to navigate the intricacies of electric power measurement accurately and efficiently. Key Features: In-Depth Curriculum: Our course covers a broad spectrum of topics, ranging from the fundamentals of electric power to advanced metering techniques for both single and 3-phase systems. Participants will gain a solid understanding of electrical measurement principles, instrumentation, and relevant industry standards. Hands-On Practical Training: Theory comes to life with hands-on practical sessions using state-of-the-art power metering equipment. Participants will have the opportunity to apply their knowledge in real-world scenarios, ensuring a deeper understanding of the concepts covered in the course. Industry-Expert Instructors: Learn from seasoned industry professionals with extensive experience in electric power metering. Our instructors bring a wealth of knowledge, practical insights, and a passion for teaching to create an engaging and enriching learning experience. Customizable Learning Paths: Whether you're a seasoned professional looking to enhance your skills or a newcomer seeking a solid foundation, our course accommodates all skill levels. Tailor your learning experience based on your individual needs and career goals. Practical Applications for Various Industries: The skills acquired in this course are applicable across a spectrum of industries, including manufacturing, utilities, renewable energy, and facility management. Gain a competitive edge by mastering electric power metering techniques relevant to your specific field. Networking Opportunities: Connect with like-minded professionals and industry experts through our dedicated platform. Engage in discussions, share experiences, and build a valuable network that extends beyond the course. Benefits: Enhanced Career Opportunities Improved Energy Management Skills Compliance with Industry Standards Increased Efficiency in Electrical Systems Practical Knowledge Applicable to Real-World Scenarios Enroll Today: Take a significant step towards mastering electric power metering. Enroll in our course and embark on a journey of skill development, professional growth, and a deeper understanding of electric power measurement. Unlock the potential for precise energy management and contribute to a more sustainable and efficient future. Course Curriculum Introduction To Electric Power Metering For Single And Three Phase Systems Course Introduction To Electric Power Metering For Single And Three Phase Systems Course 00:00 Power Energy Power Energy 00:00 Ac Power Ac Power 00:00 Instrumentation Instrumentation 00:00 Single Phase Metering Single Phase Metering 00:00 Instrument Transformers Instrument Transformers 00:00 Three Phase Metering Three Phase Metering 00:00 Cross Wattmeter Verification Cross Wattmeter Verification 00:00
Electricity is the lifeblood of modern society, it enhances our quality of life and we are becoming increasingly reliant on it to power tools and devices we use for work and entertainment. However, although electricity has many benefits it can also be a hidden killer as it can’t be seen, felt, smelled or heard until someone comes into contact with it. This course will start by covering the many benefits electricity brings to society, as well as its key components voltage, current and resistance. It will explain the two main types of electricity, cover UK accident and death statistics, and describe a simple way of remembering the electrical hazards. It then goes on to provide basic instructions about how you could safely help someone you suspect has received an electric shock. Towards the end of the course it includes an overview of the main standards, guidance and legislation that control the use of electricity in the workplace, and finish off by looking at simple maintenance plans and portable appliance testing including who within an organisation would be best to carry out the various checks.
This is an intensive installation, commissioning, and maintenance course for emergency lighting systems. It is a follow on from our Foundation course on emergency lighting where the requirements of installation, commissioning, and maintenance are considered.
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Highlights of the Course Course Type: Online Learning Duration: 4 hours Tutor Support: Tutor support is included Customer Support: 24/7 customer support is available Quality Training: The course is designed by an industry expert Recognised Credential: Recognised and Valuable Certification Completion Certificate: Free Course Completion Certificate Included Instalment: 3 Installment Plan on checkout What you will learn from this course? Gain comprehensive knowledge about basic electricity and DC circuit analysis Understand the core competencies and principles of basic electricity and DC circuit analysis Explore the various areas of basic electricity and DC circuit analysis Know how to apply the skills you acquired from this course in a real-life context Become a confident and expert electrician, electrical engineer or technicians DC Circuit Analysis and Electricity Online Course Master the skills you need to propel your career forward in basic electricity and DC circuit analysis. This course will equip you with the essential knowledge and skillset that will make you a confident electrician, electrical engineer or technicians and take your career to the next level. This comprehensive DC circuit analysis and electricity online course is designed to help you surpass your professional goals. The skills and knowledge that you will gain through studying this DC circuit analysis and electricity online course will help you get one step closer to your professional aspirations and develop your skills for a rewarding career. This comprehensive course will teach you the theory of effective basic electricity and DC circuit analysis practice and equip you with the essential skills, confidence and competence to assist you in the basic electricity and DC circuit analysis industry. You'll gain a solid understanding of the core competencies required to drive a successful career in basic electricity and DC circuit analysis. This course is designed by industry experts, so you'll gain knowledge and skills based on the latest expertise and best practices. This extensive course is designed for electrician, electrical engineer or technicians or for people who are aspiring to specialise in basic electricity and DC circuit analysis. Enrol in this DC circuit analysis and electricity online course today and take the next step towards your personal and professional goals. Earn industry-recognised credentials to demonstrate your new skills and add extra value to your CV that will help you outshine other candidates. Who is this Course for? This comprehensive DC circuit analysis and electricity online course is ideal for anyone wishing to boost their career profile or advance their career in this field by gaining a thorough understanding of the subject. Anyone willing to gain extensive knowledge on this basic electricity and DC circuit analysis can also take this course. Whether you are a complete beginner or an aspiring professional, this course will provide you with the necessary skills and professional competence, and open your doors to a wide number of professions within your chosen sector. Entry Requirements This DC circuit analysis and electricity online course has no academic prerequisites and is open to students from all academic disciplines. You will, however, need a laptop, desktop, tablet, or smartphone, as well as a reliable internet connection. Assessment This DC circuit analysis and electricity online course assesses learners through multiple-choice questions (MCQs). Upon successful completion of the modules, learners must answer MCQs to complete the assessment procedure. Through the MCQs, it is measured how much a learner could grasp from each section. In the assessment pass mark is 60%. Advance Your Career This DC circuit analysis and electricity online course will provide you with a fresh opportunity to enter the relevant job market and choose your desired career path. Additionally, you will be able to advance your career, increase your level of competition in your chosen field, and highlight these skills on your resume. Recognised Accreditation This course is accredited by continuing professional development (CPD). CPD UK is globally recognised by employers, professional organisations, and academic institutions, thus a certificate from CPD Certification Service creates value towards your professional goal and achievement. Course Curriculum Introduction Ch - 02 Conductors & Insulators 00:08:00 Ch - 03 Current and Electric Circuits 00:12:00 Ch - 04 Ohm's Law 00:05:00 Ch - 06 Series & Parallel Circuits 00:17:00 Ch - 08 Electric Fields and Capacitance 00:26:00 Ch - 9 Magnetism and Inductance 00:49:00 Ch - 10 Transient Response Capacitors & Inductors 00:09:00 Final Assessment Assessment - Electricity and DC Circuit Analysis For Professionals 00:10:00 Obtain Your Certificate Order Your Certificate of Achievement 00:00:00 Get Your Insurance Now Get Your Insurance Now 00:00:00 Feedback Feedback 00:00:00
Duration 3 Days 18 CPD hours This course is intended for The primary audience for this course is an IT, facilities or data centre operations professional working in and around the data centre and having the responsibility to achieve and improve high-availability and manageability of the data centre. Overview After completion of the course the participant will be able to:? Understand the design life cycle of data centres and the stages involved? Discuss the data centre requirements in great level of detail with vendors, suppliers and contractors to ensure that these requirements are met? Validate design plans, quotes and offers proposed by vendors/contractors? Understand redundancy levels for both the data centre design/setup and maintenance? Understand the various building considerations such as bullet proofing, mitigation of seismic activity, fire ratings and thermal stability? Understand how to install a raised floor that meets requirements, avoiding misalignment, level differences and leakage? Understand how to read a Single Line Electrical Diagram to identify and avoid the most common design issues? Choose the correct UPS and parallel configuration, learn and avoid classic parallel installation mistakes? Understand how to calculate battery banks, validate offered configurations to ensure they meet requirements? Understand what distance to keep to avoid EMF issues for human safety and equipment disturbances? Understand the fundamental cooling setup, CFM, Delta-T and other important factors? Understand contamination factors and limitations? Understand full details of fire suppression options, how to calculate gas content and verify installations? Understand how to measure data centre energy efficiency and how to improve it The course will bring participants to the level of a suitable sparring partner with suppliers. They will be able to verify offers provided by vendors for correctness, effectiveness and efficiency. Data Centre Design/Life Cycle Overview Overview of the phases of a data centre life cycle Planning, re-alignment and continuous improvement Standards and Rating Level Definitions Rating level history Difference between Uptime and TIA-942 Rating level definitions Redundancy options (N+1), 2N, 2(N+1) Concurrent Maintainability/Compartmentalisation Example configurations Substation and feed requirements Maintenance options Operational processes guidelines/standards Skill development Building Considerations Building location considerations Floor and hanging loads requirements Fire rating for walls and glass Blast protection Bullet proofing Forced entry protection Advanced Raised Floor & Suspended Ceiling Raised floor installation guidelines Techniques to install a proper and leveled raised access floor Common mistakes Choosing the right tiles and their locations Seismic-mitigating floor constructions Choosing the correct suspended ceiling Advanced Power Power infrastructure layout; Formulas which you should know for the data centre Single Line Electrical diagrams; how to read to ensure key components are present for protection Over current protection devices (MCB/MCCB/VCB/ACB/Fuses) definitions and what to use where Earth Leakage devices (RCB/RCD/ELCB/GFCI/ALCI/RCBO), definitions and what to use where Sizing of protective components Lightning strikes and surge protection devices (TVSS/SPD), how they operate, where to use and how to install Power cabling and cable run considerations PDU/DB setup and minimum requirements Generators; Generator types: Standy/Prime/Continuous Component make up and functions Fuel storage and calculation Paralleling of gen-sets Generator room/area requirements UPS Systems; Required specifications for UPS systems How to read data sheets and select the correct UPS Requirements for parallel configurations and avoid pitfalls such as single point of failures How parallel installation should be done, classic mistakes made by installers and how to avoid these Harmonic Filters; Active/Passive filters and their application Battery Banks; Battery bank terminology Designing battery banks, how to calculate, and double check the battery bank to be installed Battery charging pitfalls and ensuring the right charger is being installed and used Using parallel battery banks; how to properly install them, limitations and risks when using batteries in parallel How to test batteries correctly and make decisions on cell/block or string replacement Battery casing choices; ABS, V0, V1, V2 Alternative energy storage; flywheel, re-usable cell, compressed air UPS, etc. Advanced Electro Magnetic Fields Sources of EMF Difference between single, three phase and bus-bar EMF Options available to measure EMF and how to interpret the results from single-axes and composite measurements Guidance on safe distance for equipment and humans Calculation of EMF attenuation factor for shielding material permeability and saturation factors Advanced Cooling Important definitions; dry-bulb, wet-bulb, dew-point, RH, sensible and latent heat Psychometric chart and ASHRAE recommendations Environmental class definitions and thermal specifications Temperature/humidity measurements guideline Heat dissipation methods Altitude impact on temperature intake to ICT equipment Floor plan setup for effective cooling Differences in tile surface and supporting structure and the air-flow performance impact Rack door construction and the flow performance impact Equipment Delta-T and its impact Optimising air flow Thermal units conversions Calculations for air volume displacement (CFM/CMH) Cooling capacity calculations Air-conditioning selection De- / humidifying options Air conditioning efficiency SHR impact on cost saving Efficiency indicator New cooling principle and techniques (Submerged, VSD/VRF/ECF/water- and air side economisers) Redundancy guidelines for air-conditioners avoiding classic misconceptions and mistakes for meeting ANSI/TIA-942 compliant designs Installation requirements Connections to fire panel and EPO Commissioning of air conditioners Set points and calibration CFD (Computational Fluid Dynamics) Advanced Fire Protection The fire triangle and elements to stop a fire Detection systems in detail (VESDA, VIEW, smoke sensors) Considerations for installation of sensors Proper testing of smoke sensors Water based systems i.e. deluge, wet-pipe, dry-pipe, pre-action and why most of them don't work and how to detect this Details on Inert and Halocarbon systems and how to select the correct system for your data centre How to calculate the gas content ensuring the appropriate level is installed to suppress the fire including safety considerations Other requirements for gas systems such as release times, hold times, pipe install requirements and other important factors Requirements for the fire detection panel Installation verification, methods, what to check and how New advanced fire suppression technologies Design and Install Scalable Networking Cabling System ANSI/TIA942 cabling structure topology ToR, EoR Design Intelligent patching systems Installation best practice such as routing, bending radius, separation from power, containment fill ratio, fiber link loss calculator, bonding and grounding requirement Standard for telecommunications labeling and administration Environmental Specifications and Contamination Control Acoustic noise effects, regulations, specifications and limits Data centre contaminations and classifications Measurements, standards and limits Preventive measures and avoidance Data Centre Efficiency Business drivers to go Green High-availability or Green? Green guidelines and standards How to measure it and what are acceptable numbers compared to the general industry PUE classes defined by Green Grid and issues with PUE Techniques for saving energy in all parts of the data centre i.e. application/system level, cooling, power distribution Mock ExamEXAM: Certified Data Centre Specialist
About this training course The smart meter or smart grid represents the next-generation electrical power system. This system uses information, data & communication technology within generation, delivery and consumption of electric energy. This 4-day course will equip you with the innovations that are shaping the power generation and distribution systems and will cover topics ranging from Smart Metering Architecture, Cybersecurity, Smart Grid Systems and Power Line Communications. Training Objectives By participating in this course, you will be able to: Comprehend the Smart Grid and Smart Meters architecture Review latest trends and challenges within the Smart Grid Technology Perform analysis on smart electronic meters Comply with regulatory and metering standards Recognize the importance of cybersecurity in smart grids Maximize efficiency, reliability, and longevity of your smart meters and equipment Gain valuable insights into power quality and harmonics Target Audience This course will greatly benefit the following groups but not limited to: Smart Grid managers and engineers Smart Meters managers and engineers Power plant managers Outage managers Maintenance and operations engineers Power regulatory personnel Transmission managers and engineers Distribution managers and engineers IT managers Renewable energy managers and engineers Course Level Basic or Foundation Intermediate Training Methods The training instructor relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all the topics covered. The training environment is highly stimulating, challenging, and effective because the participants will learn by case studies which will allow them to apply the material taught in their own organization. Course Duration: 4 days in total (28 hours). Training Schedule 0830 - Registration 0900 - Start of training 1030 - Morning Break 1045 - Training recommences 1230 - Lunch Break 1330 - Training recommences 1515 - Evening break 1530 - Training recommences 1700 - End of Training The maximum number of participants allowed for this training course is 25. This course is also available through our Virtual Instructor Led Training (VILT) format. Trainer Your expert course leader is a professional engineer with extensive experience in power system studies, substation design field-testing, and EHS programs settings for Mining and Electrical Utilities sectors. He was formally the Engineering Manager at GE Canada in Ontario. He received his M.Sc. in electrical engineering from the University of New Brunswick and his MBA from Laurier School of Business in Waterloo. He has managed and executed more than 150 engineering projects on substation design EMF audits and power system studies and analyses, EMF audits and grounding audits, for major electrical utilities, mines, oil and gas, data centers, industrial and commercial facilities in Canada and the U.S. He is a certified professional engineer in the provinces of Ontario and Alberta. He has various IEEE publications, has served as a technical reviewer for many IEEE journals in power systems and control systems, and is the chair of the Industry Application Chapter (IAS) for IEEE Toronto Section. He remains a very active member for the IEEE substation committee of IEEE Std. 81 ground testing (WGE6) and IEEE Std. 80 ground design (WGD7). A certified electrical safety trainer by GE Corporate and a Canadian Standard Association (CSA) committee member at the mining advisory panel for electrical safety, he also taught many technical courses all over Canada to industrial customers, electrical consultants as well as to electrical utilities customers. Highlighted Projects: Various Power System Studies for 345/230 kV Stations - Nova Scotia Power (EMERA) RF audits for Telecom tower and antennas - Cogeco/Rogers Mobile Power System analysis - Powell Canada Structural/Geotechnical Design and upgrades - Oakville Hydro Underground Cables testing and sizing - Plan Group Relay programming and design optimization - Cenovus Canada Different Arc Flash Analysis and BESS Design - SNC Lavalin Environmental site assessment (ESA) Phase I/II for multiple stations - Ontario Electromagnetic compatibility (EMC) assessment for Toronto LRT expansion - MOSAIC Battery energy storage system (BESS) installation at City of London - Siemens Canada EMF audits for 500 kV Transmission Lines - Hydro One EMF audits for 500 kV Transmission Lines - Hydro Quebec AC interference for 138 kV line modeling and mitigations - HBMS Mine 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 post training support and fees applicable Accreditions And Affliations