3. Circuit in Figure B.3 is designed to provide a DC voltage of 20 V to a load resistance, UTM RL. The input voltage, Vi, varies from 30 V to 50 V. Based on the parameters given in Table B.1, select one zener diode that is suitable for the above circuit operation. Show relevant calculation to justify your selection. 5 UTM Rs 0.75 k2 & UTM & UTM UTM &UTM S 5 UTM & UTM 2.5 k2 SUTM & UTM TM RL V. UTM &UTM UTM UTM &UTM 5 UTM PDMAX (W) Zener Diode Table B.1 Vz (V) ZA UTM &UTM STM TM ZC 5 ZB 0.5 1 15 ZD 0.5 15 ZE 20 JUTM UTM UTM UTM &UTM ZF 0.5 1 & UTM & UI 20 5 UTM UTM & UTM & UTM A UTM A UTM

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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3. Circuit in Figure B.3 is designed to provide a DC voltage of 20 V to a load resistance,
RL. The input voltage, Vi, varies from 30
in Table B.1, select one zener diode that is suitable for the above circuit operation.
Show relevant calculation to justify your selection.
UTM
OV to 50 V. Based on the parameters given
UTM
Rs
0.75 k2
UTM & UTM
UTM & UTM
UTM UTM
V,
SUTM & UTM TM
2.5 k2
UTM UTM
UTM
Table B.1
Zener Diode Vz (V)
UTM &UTM & UTM
PDMAX (W)
ZA
UTM UTM
ZB
0.5
5
ZC
1
15
ZD
0.5
15
JUTM UTM 5 UTM
ZE
20
UTM UTM
ZF
0.5
1
UTM UTM20
& UTM & UTM & UTM
UTM UTM
TM UTM
TTM UTM
Transcribed Image Text:3. Circuit in Figure B.3 is designed to provide a DC voltage of 20 V to a load resistance, RL. The input voltage, Vi, varies from 30 in Table B.1, select one zener diode that is suitable for the above circuit operation. Show relevant calculation to justify your selection. UTM OV to 50 V. Based on the parameters given UTM Rs 0.75 k2 UTM & UTM UTM & UTM UTM UTM V, SUTM & UTM TM 2.5 k2 UTM UTM UTM Table B.1 Zener Diode Vz (V) UTM &UTM & UTM PDMAX (W) ZA UTM UTM ZB 0.5 5 ZC 1 15 ZD 0.5 15 JUTM UTM 5 UTM ZE 20 UTM UTM ZF 0.5 1 UTM UTM20 & UTM & UTM & UTM UTM UTM TM UTM TTM UTM
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