Step 2: On the breadboard, construct a 4-bit R-2R ladder network with R = 1k0, connect each input bit ak to the ground node (figure 2). Make sure to check the resistor values before putting them in. Remember that the first resistor (R1) is 2kN (not 1k0). TAT R2 E R4 R6 2kΩ R8 2k2 2k오 2k2 vgut 1R3 R5. . R7. 1k R1 2k2 1k2 1k2 Figure 2. 4-bit R-2R ladder output resistance 2.1 Using series-parallel simplification, calculate the value of the equivalent resistance between Vout and the ground node (show the steps of your calculations) [RP3].

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Author:Robert L. Boylestad
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Step 2: On the breadboard, construct a 4-bit R-2R ladder network with R = 1kN, connect each input
bit ak to the ground node (figure 2). Make sure to check the resistor values before putting them
in. Remember that the first resistor (R1) is 2kO (not 1k0).
R2 E R4
R6 E R8
2K2E 2k2 E 2k2
2k2
Vout
R5.. .R7.
R1 E 1kh
2k2
1k2
1k2
Figure 2. 4-bit R-2R ladder output resistance
2.1 Using series-parallel simplification, calculate the value of the equivalent resistance
between Vout and the ground node (show the steps of your calculations) [RP
2.2 Using the DMM, measure the resistance between Vout and the ground node in your circuit
and report its value [RP4]?
Transcribed Image Text:Step 2: On the breadboard, construct a 4-bit R-2R ladder network with R = 1kN, connect each input bit ak to the ground node (figure 2). Make sure to check the resistor values before putting them in. Remember that the first resistor (R1) is 2kO (not 1k0). R2 E R4 R6 E R8 2K2E 2k2 E 2k2 2k2 Vout R5.. .R7. R1 E 1kh 2k2 1k2 1k2 Figure 2. 4-bit R-2R ladder output resistance 2.1 Using series-parallel simplification, calculate the value of the equivalent resistance between Vout and the ground node (show the steps of your calculations) [RP 2.2 Using the DMM, measure the resistance between Vout and the ground node in your circuit and report its value [RP4]?
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