b.2 Determine Vo, Ip, and IR. Draw the equivalent circuit using approximate models of the diodes. Si IR +12 Vo Vo red Typical Forward Voltage (V) ID Color Construction Note: A diode which emits 680 2...


b.2 Determine Vo, Ip, and IR. Draw the equivalent circuit using<br>approximate models of the diodes.<br>Si<br>IR<br>+12 Vo<br>Vo<br>red<br>Typical Forward<br>Voltage (V)<br>ID<br>Color<br>Construction<br>Note: A diode which emits<br>680 2<br>light when forward-biased is<br>known<br>2.1<br>AllnGaP<br>GaN<br>GaP<br>Amber<br>5.0<br>as ight-emitting<br>Bluc<br>diodes (LED). LEDS have<br>different colors and each<br>Green<br>2.2<br>Orange<br>GaAsP<br>2.0<br>Red<br>GAASP<br>1.8<br>color has equivalent knee<br>voltage.<br>White<br>GaN<br>4.1<br>Yellow<br>AllnGaP<br>2.1<br>

Extracted text: b.2 Determine Vo, Ip, and IR. Draw the equivalent circuit using approximate models of the diodes. Si IR +12 Vo Vo red Typical Forward Voltage (V) ID Color Construction Note: A diode which emits 680 2 light when forward-biased is known 2.1 AllnGaP GaN GaP Amber 5.0 as ight-emitting Bluc diodes (LED). LEDS have different colors and each Green 2.2 Orange GaAsP 2.0 Red GAASP 1.8 color has equivalent knee voltage. White GaN 4.1 Yellow AllnGaP 2.1

Jun 10, 2022
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