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WIRELESS CHARGING#1
A method of transferring power without physical connectors, commonly used in electric vehicles.
ELECTROMAGNETIC INDUCTION#2
The process of generating electric current through a changing magnetic field, fundamental to wireless charging.
SAFETY STANDARDS#3
Regulations ensuring that electrical systems operate safely, crucial for wireless charging implementations.
PROTOTYPING#4
The process of creating a preliminary model of a product to test concepts and functionalities.
EFFICIENCY TESTING#5
Evaluating the performance of a charging system to ensure optimal energy transfer and minimal losses.
WIRELESS POWER TRANSFER#6
The transmission of electrical energy from a power source to an electrical load without physical connections.
INDUCTIVE COUPLING#7
A technique where energy is transferred between coils through electromagnetic fields, used in wireless charging.
MAGNETIC RESONANCE#8
A method that allows for efficient energy transfer over greater distances compared to traditional inductive coupling.
RESONANT FREQUENCY#9
The frequency at which a system naturally oscillates, important for optimizing wireless power transfer.
LOAD COUPLING#10
The alignment of transmitter and receiver coils to maximize energy transfer efficiency in wireless systems.
REGULATORY COMPLIANCE#11
Adherence to laws and guidelines governing safety and performance in electrical engineering.
RISK ASSESSMENT#12
Identifying and evaluating potential hazards in the design and implementation of electrical systems.
SCHEMATICS#13
Detailed drawings that represent the elements of an electrical system, essential for prototyping.
MATERIAL SELECTION#14
Choosing appropriate materials based on performance, safety, and efficiency for the prototype.
DATA ANALYSIS TECHNIQUES#15
Methods used to interpret testing data, crucial for evaluating system performance.
COMPLIANCE AUDITS#16
Systematic evaluations to ensure adherence to safety standards and regulations.
FEEDBACK INCORPORATION#17
Integrating insights from peers and stakeholders to enhance the design and functionality of the prototype.
TESTING PLAN#18
A structured approach to evaluating the performance and safety of the wireless charging system.
TROUBLESHOOTING GUIDE#19
A document outlining common issues and solutions encountered during prototyping and testing.
DOCUMENTATION#20
Comprehensive records of design, testing, and compliance processes, essential for project transparency.
PRESENTATION TECHNIQUES#21
Strategies for effectively communicating technical information to stakeholders.
ENGAGING STAKEHOLDERS#22
Involving relevant parties in the project to gather insights and support for the wireless charging system.
INITIAL TESTING PROTOCOLS#23
Guidelines for conducting preliminary tests to assess the functionality of the prototype.
PROJECT TIMELINE MANAGEMENT#24
Planning and tracking project milestones to ensure timely completion of the prototype.
ENERGY TRANSFER EFFICIENCY#25
A measure of how effectively energy is transferred from the charger to the vehicle.
PROTOTYPE EVALUATION#26
Assessing the prototype's performance against design specifications and safety standards.