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ADA4622-1ARZ-R7 Datasheet(PDF) 34 Page - Analog Devices

Part # ADA4622-1ARZ-R7
Description  30 V, 8 MHz, Low Bias Current, Single-Supply, RRO, Precision Op Amps
PDF  38 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADA4622-1ARZ-R7 Datasheet(HTML) 34 Page - Analog Devices

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ADA4622-1/ADA4622-2/ADA4622-4
Data Sheet
Rev. E | Page 34 of 38
FULL WAVE RECTIFIER
Figure 102 shows the circuit of a full wave rectifier using two
ADA4622-1 op amps in single-supply operation. The circuit is
composed of a voltage follower (U1) and a second stage amplifier
(U2) that combine the output of the first stage amplifier and the
inverted version of the input signal. U1 follows the input during
the positive half cycle and clamps the negative going input
signal to ground, producing a half wave signal at VHW. The
following equation defines the circuit transfer function:
VFW = (1+ R3/R2)VHW − (R3/R2) × VIN
where:
VFW is the full wave output from U1.
R3 and R2 are the feedback resistors shown in Figure 102.
VHW is the half wave output from U1.
VIN is the input voltage.
2V p-p
1kHz
R1
30kΩ
VFW
U1
U2
VCC
5V
VCC
5V
GND
GND
GND
R2
50kΩ
R3
50kΩ
Figure 102. Full Wave Rectifier Circuit
During the input positive half cycle, U1 follows the input so that
VHW = VIN; therefore, VFW = VIN. During the negative half cycle,
U1 clamps the signal to ground so that VHW = 0 V; therefore,
VFW = −(R3/R2) × VIN = −VIN because R3/R2 = 1. Figure 103
shows the input and outputs waveforms from the circuit. The
input is a 2 V p-p, 1 kHz sine wave while the circuit is running
on a 5 V single supply.
INPUT
HALF
WAVE
FULL
WAVE
TIME
Figure 103. Full Wave and Half Wave Rectifier Input and Output Waveforms



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