about Electrical Engineering
Electrical Engineering is a reference software to teach electrical engineering. electrical engineering subjects are very important for students of related disciplines, so we have created this knowledge software for users who want to study electromagnetism, electricity, and electronics. Within the app, you can learn topics such as inductance and capacitance, transient, steady state sinusoidal analysis, frequency response, bode plots, and resonance. electrical engineering course will give you a deeper understanding of electricity-related knowledge for better revision and exams.
Electrical Engineering Important Topics:
1. What is electrical engineering?
-Properties of electricity
-Norton's theorem
-Categorization of engineering materials
-Why measure voltage?
-Battery technology
2. What is "bold"?
-Power plants and types
-Control engineering
-Power Transformer
-Motor
-Induction motors
-DC motors or DC motors
-AC generators Synchronous generators
-Electrical switchgear protection
-Digital Electronics
3. What is an electrical drive?
-Kirchhoff's Voltage Law (KVL)
-Shunt Circuit
4. What is LIDAR and how is it used?
Electrical Engineering content:
1. Pulse width modulator modeling
-Switching losses: effects on semiconductors
-Introduction to Multiplexing: Fundamentals of Telecommunications
-Boolean homogeneity
-Practical Introduction to Operational Amplifiers
2. eMMC: Introduction
-Universal Logic Gate
-Understanding and applying the Hall effect
-Introduction to Operational Amplifiers
3. AC phase
-Diodes and rectifiers
-Negative feedback
-Understanding Illumination: What's in a Lux?");
-Measuring and calculating lux values
-Measuring and Calculating Lux Values, Part 2
-Characteristics of Operational Amplifiers
-Amplifier in inverted configuration
-Non-inverting configuration of operational amplifiers
4. Junction diode characteristics
5. Electric fields and capacitance
6. Factors affecting capacitance
-Introduction to Capacitive Touch Sensing
-Circuits and techniques for realizing capacitive touch sensing
7. Forward conducting diode analysis
-How sensor fusion works
-Generation, transmission, and distribution of electricity
-Thermal, hydro, and nuclear power plants
-Power transmission
-Single-line representation of the power system
-Circuit solutions based on the mesh (ring) current method
-Circuit solution based on nodal voltage method
-Example of a circuit based on the nodal voltage method
-Wye (Y) - Delta (∆) OR Delta (∆)-Wye (Y) Transformation
-Converts from delta (Δ) to star or wye (Y)
-Apply a star (Y) to delta (Δ) or delta (Δ) to star (Y) transformation
-Examples of Star (Y) to Delta (Δ) or Delta (Δ) to Star (Y) Transforms
8. Superposition theorem for DC voltage and current sources acting in resistive networks
-Application of the superposition theorem
-Example of superposition theorem
-Limitations of the superposition theorem
-Thevenin's theorem and Norton's theorem in the context of DC voltage and current sources acting in resistive networks
-Procedure for applying Tevinen's theorem
-Maximum power transfer theorem
-Study of DC transients in R-L and R-C circuits
-Calculating inductance from physical coil dimensions
-Study the DC transient and steady-state response of series R-L circuits.
9. Energy stored in inductors
10. Capacitors and their properties
-Series R-L-C Circuit Response due to DC Voltage Source
Electrical Engineering Features:
-Circuit Design: Supports users in designing and simulating complex circuits.
-Multiple Input Methods: Supports multiple methods of symbol, component, and manual input.
-Frequency Response Analysis: Analyze the frequency response characteristics of circuits, especially filter designs.
-Stationary State Analysis: Supports steady state and transient analysis to help users analyze the long-term performance of a circuit.
-Electrical Symbol Support: Built-in library of standard electrical symbols for easy drawing.
-3D view: Some versions support 3D circuit design and presentation.
-Remote Collaboration: Supports multi-user simultaneous collaborative design.