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1 © Unitec New Zealand APTE 5601 &DE4401 S EMICONDUCTORS A TOMIC S TRUCTURE DIODES
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Conductors, Semiconductors, Insulators 2 © Unitec New Zealand
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Silicon Crystal Lattice- no free electrons 3 © Unitec New Zealand
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N-type Silicon Doping –few free electrons 4 © Unitec New Zealand
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P-type Silicon Doping – a few holes 5 © Unitec New Zealand
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Summary of P & N Doping 6 © Unitec New Zealand
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Combining to make P_N Junction 7 © Unitec New Zealand
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P_N Zero Bias 8 © Unitec New Zealand
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P_N Reverse Bias- wide depletion barrier 9 © Unitec New Zealand
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P-N Forward Bias- thin depletion barrier 10 © Unitec New Zealand
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P_N Diode Symbol & Characteristic I-V 11 © Unitec New Zealand
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P-N Junction Diode Summary 12 © Unitec New Zealand
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Diode Real vs Ideal Summary 13 © Unitec New Zealand
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Small Signal Diodes 14 © Unitec New Zealand
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Small Signal Diode V-I characteristic 15 © Unitec New Zealand
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Small Signal Diode Summary 16 © Unitec New Zealand
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Signal Diode Parameters 17 © Unitec New Zealand
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Apps- Arrays and Data Line Protection 18 © Unitec New Zealand
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Diodes in Series – simple Voltage Regulator 19 © Unitec New Zealand
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Freewheel Diode – protect from Inductor 20 © Unitec New Zealand
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POWER Diode – much larger PN junction Basic RECTIFIER 21 © Unitec New Zealand
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Rectifier - simplest 22 © Unitec New Zealand
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Half-Wave Smoothing Capacitor 23 © Unitec New Zealand
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Full Wave Rectifier – special transformer 24 © Unitec New Zealand
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Full wave BRIDGE Rectifier 25 © Unitec New Zealand
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Bridge – POS & NEG cycle conduction 26 © Unitec New Zealand
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Bridge Rectifier Modules Cutoff corner = +, opposite = -, other two wires= AC input 27 © Unitec New Zealand
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Bridge Smoothing Capacitor 28 © Unitec New Zealand
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ZENER Diodes – Voltage Regulators 29 © Unitec New Zealand
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Reminder - Voltage divider formula 30 © Unitec New Zealand The ratio of individual resistance to total resistance is the same as the ratio of individual voltage drop to total supply voltage in a voltage divider circuit. This is known as the voltage divider formula
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Voltage Regulator – for variable loads 31 © Unitec New Zealand
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ZENER series Resistor Calculations 32 © Unitec New Zealand
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ZENERs in series 33 © Unitec New Zealand
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Typical ZENER voltages available 34 © Unitec New Zealand
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Using ZENERs to CLIP sine-waves 35 © Unitec New Zealand
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Using Normal Diodes to Clip Sine-waves 36 © Unitec New Zealand
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BIASED Clipping 37 © Unitec New Zealand
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PhotoVoltaic (PV) diode cell 38 © Unitec New Zealand
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PV BYPASS Diodes –prevent backflow from other shaded PVs or full battery 39 © Unitec New Zealand
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LED Characteristics 40 © Unitec New Zealand
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LED needs series resistor to limit current 41 © Unitec New Zealand
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Series LED strings 42 © Unitec New Zealand
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Driving LEDs with ICs 43 © Unitec New Zealand
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Driving LEDs with Transistors 44 © Unitec New Zealand
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Driving LEDs with Pulse Width Modulation 45 © Unitec New Zealand
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OPTO Coupler - ISOLATION 46 © Unitec New Zealand
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