Q.Define Rectification. How can a p-n junction diode be used as a full wave rectifier? OR Draw an OR gate using two diodes, explain its working and write its truth table.
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Start your 14-day free trial to unlock the full solution →A full-wave rectifier uses two diodes, each conducting on one half-cycle, to produce a unidirectional output for both halves of the AC input. (OR: a diode OR gate realises the logic Y = A + B.)
Part 1 — Rectification and the full-wave rectifier
Rectification is the process of converting an alternating current (AC), which reverses direction periodically, into a direct current (DC) that flows in only one direction. It uses the property of a p-n junction diode that it conducts (offers low resistance) only when forward biased and blocks current (offers very high resistance) when reverse biased.
Full-wave rectifier circuit: A centre-tapped step-down transformer is used. Its secondary winding has a centre tap connected to the load resistor RL through the common (ground) terminal. The two ends of the secondary are each connected to the anode of a diode (D1 and D2), and the cathodes of both diodes are joined together and connected to one end of RL, the other end being connected to the centre tap.
Working: During one half-cycle of the AC input, the end connected to D1 is positive with respect to the centre tap, so D1 is forward biased and conducts, sending current through RL, while D2 (whose end is negative) is reverse biased and does not conduct. During the next half-cycle, the polarities reverse: D2 becomes forward biased and conducts through RL (in the same direction as before), while D1 is now reverse biased. Thus current flows through RL in the same direction during both halves of the input cycle, so the output, though still varying (pulsating), is unidirectional — a full-wave rectified output. A capacitor filter across RL can smooth out this pulsating output to give a nearly steady DC.
Part 2 (OR) — Two-diode OR gate
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