30 www RC RC ww OVO VB2+ UBI 10 Figure 1 Design a single-output BJT differential amplifier, similar to the one shown in Figure 1, such that I。 = 2 mA and VCE 10 V when both inputs are grounded (VB1 = VB2 = 0). Design the current source using a two-transistor BJT current mirror. Use ±15 V DC power supplies and PN2222A transistors. Assume B = 150 and V = 80 V. You can ignore the base currents in your design calculations. Indicate the value of vo when both inputs are grounded. Calculate Ad, Acm, and the CMRR (in dB) for the single-sided output differential amplifier. Calculate the differential-mode and common-mode input resistances.

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30
www
RC
RC
ww
OVO
VB2+
UBI
10
Figure 1
Design a single-output BJT differential amplifier, similar to the one shown in Figure 1, such that I。 =
2 mA and VCE 10 V when both inputs are grounded (VB1 = VB2 = 0). Design the current source using
a two-transistor BJT current mirror. Use ±15 V DC power supplies and PN2222A transistors. Assume
B = 150 and V = 80 V. You can ignore the base currents in your design calculations. Indicate the
value of vo when both inputs are grounded.
Calculate Ad, Acm, and the CMRR (in dB) for the single-sided output differential amplifier.
Calculate the differential-mode and common-mode input resistances.
Transcribed Image Text:30 www RC RC ww OVO VB2+ UBI 10 Figure 1 Design a single-output BJT differential amplifier, similar to the one shown in Figure 1, such that I。 = 2 mA and VCE 10 V when both inputs are grounded (VB1 = VB2 = 0). Design the current source using a two-transistor BJT current mirror. Use ±15 V DC power supplies and PN2222A transistors. Assume B = 150 and V = 80 V. You can ignore the base currents in your design calculations. Indicate the value of vo when both inputs are grounded. Calculate Ad, Acm, and the CMRR (in dB) for the single-sided output differential amplifier. Calculate the differential-mode and common-mode input resistances.
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