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Electronics Engineering (ECE)

EST

"Future Electronics Engineer! EST (Electronic Systems and Technologies) - communications, control systems, and instrumentation. Connect the world!"

1. Communication Systems πŸ“‘

Modulation Types

AM Amplitude varies with message. BW = 2fm
FM Frequency varies. BW β‰ˆ 2(Ξ”f + fm)
PM Phase varies. Similar to FM
Digital ASK, FSK, PSK, QAM

Transmission Parameters

Channel Capacity: C = BΒ·logβ‚‚(1 + S/N) (Shannon)

Nyquist Rate: fs β‰₯ 2fmax

dB = 10Β·log₁₀(Pβ‚‚/P₁) = 20Β·log₁₀(Vβ‚‚/V₁)

2. Antenna Theory πŸ“Ά

Parameter Definition Unit
Gain Power focused vs isotropic dBi
Directivity Max radiation / average dB
Beamwidth Angular width at half power degrees
VSWR Standing wave ratio (match) ratio

Common Antennas:

Dipole (Ξ»/2): 2.15 dBi | Yagi: 7-20 dBi | Parabolic: 20-40 dBi

3. Control Systems πŸŽ›οΈ

Transfer Function

G(s) = Output(s)/Input(s)

  • Poles: denominator roots
  • Zeros: numerator roots
  • Stable: all poles in LHP

Stability Analysis

  • Routh-Hurwitz: stability test
  • Bode plot: gain/phase margins
  • Root locus: pole movement vs gain

PID Controller

Gc(s) = Kp + Ki/s + Kds

P: proportional response | I: eliminate steady-state error | D: anticipate and damp

4. Microwave & RF πŸ“»

Transmission Lines

Characteristic Impedance: Zβ‚€ = √(L/C)

Reflection Coefficient: Ξ“ = (ZL - Zβ‚€)/(ZL + Zβ‚€)

VSWR = (1 + |Ξ“|)/(1 - |Ξ“|)

Perfect match: ZL = Zβ‚€ β†’ Ξ“ = 0, VSWR = 1

Waveguides

Cutoff frequency: fc = c/(2a) for TE₁₀ mode

Only propagates f > fc

Used in microwave systems (GHz range)

5. Instrumentation πŸ”¬

Measurement Concepts

Accuracy vs Precision:

Accuracy: closeness to true value

Precision: repeatability

Error Types:

Systematic: consistent offset

Random: statistical variation

Common Sensors:

Temperature: RTD, thermocouple, thermistor

Pressure: strain gauge, piezoelectric

Position: potentiometer, encoder, LVDT

6. Practice Questions πŸ“š

Common Board Exam Questions

Q1: An AM signal has fc=1MHz, fm=10kHz. What is the bandwidth?

A: BW = 2fm = 2 Γ— 10kHz = 20kHz

Q2: A 50Ξ© line is terminated with 75Ξ©. Find VSWR.

A: Ξ“ = (75-50)/(75+50) = 0.2. VSWR = (1+0.2)/(1-0.2) = 1.5

Q3: A channel has 3kHz bandwidth, S/N = 1000. Find capacity.

A: C = 3000 Γ— logβ‚‚(1001) β‰ˆ 3000 Γ— 9.97 β‰ˆ 29.9 kbps

πŸ”₯ ECE Challenge πŸ”₯

Master systems! Communications, control, RF - connect and automate the world!

Systems thinking: see the big picture!

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