UNIT 1 UNITS ASSOCIATED WITH BASIC ELECTRICAL QUANTITY UNIT 2 CELLS AND BATTERY UNIT 3 AN INTRODUCTION TO. Et – Electrical Technology – Download as PDF File .pdf), Text File .txt) or read online. ET ELECTRICAL TECHNOLOGY: 15 WEEKS: 2: NONE. SYNOPSIS ELECTRICAL TECHNOLOGY introduces students to the principles of operation of DC.

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If you wish to download it, please recommend it to your friends in any social system. The study of the integration of mechanical, electrical and electronic systems. Topics include DC motors and generator configuration, shunt, compound, and permanent magnet DC motor performance and characteristics. It is denoted by the symbol S.

Static and dynamic systems are explored in the context of applications such as circuits, dielectric and permeable materials, transmission lines, antennas and waveguides. Topics such as interfacing programmable logic controllers to communicate with each other, remote control of inputs and outputs, and networking devices together into a complete system are covered.

Signal conditioning and connection configurations are studied and applied. This course uses theory, laboratory investigation, and circuit simulation software to introduce basic electrical and circuit analysis principles.

One ampere of current is said to flow at 6. Static Electricity Atoms are made of charged particles: Topics include pre-construction planning, project scheduling systems, critical path management, risk and effects analysis, and failure modes.


Course may be algebra-based or calculus-based. To make this website work, we log user data and share it with processors.

The fundamental concepts and structures needed to understand communication systems are presented. The reciprocal salingan of resistance of conductor is called its conductance G.

These field sites include renewable energy facilities, laboratories, industry. The unit of power is the watt W One watt is one joule per second.

This course includes electromagnetic vector quantities and vector operations in spherical, cylindrical, and rectangular coordinate systems.

Use appropriate components and measuring equipment to perform related DC electrical circuit laboratory exercises.


The concepts needed to understand the important field of data communications and networking are presented in this course.

Concept of derivative, antiderivative and definite integral. Introduces properties of semiconductor materials and how they are manipulated to create several types of diodes, transistors, and optoelectronic devices.

Give the power of ten for micro. What is a the work done and b the power developed.


Department of Engineering Technology. Transformers, three-phase power, frequency response analysis, and selected direct current DC topics will also be introduced. Detailed problem specifications are formed.

This course focuses on the operation, analysis, and application of linear active circuits utilizing transistors, operational amplifiers, comparators, mixers, and other components as well as integrated circuit functions such as converters and electdical locked loops. Current I The rate of flow of charges through a conductor Needs a complete closed conducting path to flow.


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The principles associated with analog communications amplitude and angle modulation are introduced. Demonstrate team working efficiency while doing practical work.

Feedback Privacy Policy Feedback. We think you have liked this presentation. This course will provide the time tecchnology space for students to engage in engineering-related scholarship at a high level and expose them to a diverse set of professionals.

Principles of open and closed loop control systems are applied, including an introduction to proportional-integral-derivative control electricall. Emphasis on problem solving, approximation, data analysis and visualization. Characteristics of various three-phase power configurations and in-plant power distribution are covered. This course will provide the student with a hands-on experience in an Engineering Technology field application setting.

The field experience will not be covered in other courses. This course uses a balance of theory, analysis using circuit simulation software, and practical application through laboratory investigation and troubleshooting. Signal representations including Fourier and Laplace transforms will be used in convolution calculations, transfer functions and determinations of system responses.