Circuits and Network (DC) (4)
Discrete active & passive components, ideal constant voltage/current sources, Kirchhoff's laws (KCL, KVL), Thevenin's and Norton's theorem, Superposition theorem, and Maximum power transfer theorem ($R_L = R_{th}$).
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Discrete active & passive components, ideal constant voltage/current sources, Kirchhoff's laws (KCL, KVL), Thevenin's and Norton's theorem, Superposition theorem, and Maximum power transfer theorem ($R_L = R_{th}$).
PN junction fabrication, barrier potential, static/dynamic resistance, half-wave & full-wave bridge rectifiers, Ripple Factor ($\gamma$), Rectification efficiency ($\eta$), L & C smoothing filters, clipping & clamping circuits, LEDs.
NPN & PNP configurations (CB, CE, CC), active, cut-off and saturation regions, DC load line & Q-point, stability factors, fixed bias vs voltage divider bias (self-bias), 2-port hybrid $h$-parameter equivalent circuit.
JFET and MOSFET (both depletion and enhancement mode MISFET), pinch-off voltage ($V_p$), drain saturation current ($I_{DSS}$), threshold voltage ($V_{th}$), transconductance $g_m$, and short channel switching characteristics.
Load regulation and line regulation, Zener diode as shunt regulator, limitations of Zener circuits, error feedback amplifiers, and series regulated power supply using a pass transistor assisted by a Zener voltage reference.
Common Emitter (CE), Common Base (CB) and Emitter Follower buffer circuits, dynamic load line analysis, Class A, B and C amplifier classification, and midband frequency response with low and high cut-off frequencies ($f_L, f_H$).
Positive and negative feedback topologies (Voltage series, current series, voltage shunt, current shunt), Gain stabilization, IC 741 characteristics, inverting, non-inverting, summing adder, integrator, differentiator, and comparator.