*44. Using the characteristics of Fig. 4.121. design a voltage-divider configuration to have a satura- tion level of 10 mA and a Q-point one-half the distance hetween cutoff and saturation. The...


*44. Using the characteristics of Fig. 4.121. design a voltage-divider configuration to have a satura-<br>tion level of 10 mA and a Q-point one-half the distance hetween cutoff and saturation. The<br>available supply is 28 V, and Vg is to be one-fifth of Vee The condition established by Eq.<br>(4.33) should also be met to provide a high stability factor. Use standard values.<br>

Extracted text: *44. Using the characteristics of Fig. 4.121. design a voltage-divider configuration to have a satura- tion level of 10 mA and a Q-point one-half the distance hetween cutoff and saturation. The available supply is 28 V, and Vg is to be one-fifth of Vee The condition established by Eq. (4.33) should also be met to provide a high stability factor. Use standard values.
Ic (mA)<br>110 µA<br>100 u.<br>10<br>90<br>80 uA<br>9.<br>70 μΑ<br>8.<br>60 μΑ<br>7<br>50 µA<br>6.<br>40 µA<br>30 μλ<br>4<br>3.<br>20<br>10µ<br>= 0 LA<br>10<br>15<br>20<br>25<br>30<br>VCE (V)<br>FIG. 4.121<br>Problems 5, 6, 9, 13, 24, 44, and 57.<br>ork of Fig. 4.118 on the<br>

Extracted text: Ic (mA) 110 µA 100 u. 10 90 80 uA 9. 70 μΑ 8. 60 μΑ 7 50 µA 6. 40 µA 30 μλ 4 3. 20 10µ = 0 LA 10 15 20 25 30 VCE (V) FIG. 4.121 Problems 5, 6, 9, 13, 24, 44, and 57. ork of Fig. 4.118 on the

Jun 11, 2022
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