+12 V 741 Vo 3 Vs -12 V R1 R2 VREF Figure 2 Vo (V) 12 Vs (V) 3.3 5.7 -12 Figure 3 2.


+12 V<br>741<br>Vo<br>3<br>Vs<br>-12 V<br>R1<br>R2<br>VREF<br>Figure 2<br>Vo (V)<br>12<br>Vs (V)<br>3.3<br>5.7<br>-12<br>Figure 3<br>2.<br>

Extracted text: +12 V 741 Vo 3 Vs -12 V R1 R2 VREF Figure 2 Vo (V) 12 Vs (V) 3.3 5.7 -12 Figure 3 2.
1. Explain the theory of the circuit of Figure 2.<br>2. Derive the equation for VUTP and VLTP of the given circuit in Figure 2.<br>3. From the given values of Upper Threshold Point, VUTP and Lower Threshold Point,<br>VLTP in Figure 3, determine the values of R1 and R2 if the sum of R1 and R2 is<br>equal to 68.8 kQ and VREF = 5 V.<br>

Extracted text: 1. Explain the theory of the circuit of Figure 2. 2. Derive the equation for VUTP and VLTP of the given circuit in Figure 2. 3. From the given values of Upper Threshold Point, VUTP and Lower Threshold Point, VLTP in Figure 3, determine the values of R1 and R2 if the sum of R1 and R2 is equal to 68.8 kQ and VREF = 5 V.

Jun 10, 2022
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