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AN-732

更新时间: 2024-11-29 12:50:55
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亚德诺 - ADI 运算放大器
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4页 277K
描述
Universal Precision Op Amp Evaluation Board in SOIC Package

AN-732 数据手册

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AN-732  
APPLICATION NOTE  
One Technology Way • P.O. Box 9106 • Norwood, MA 02062-9106 • Tel: 781/329-4700 • Fax: 781/326-8703 • www.analog.com  
Universal Precision Op Amp Evaluation Board in SOIC Package  
by Giampaolo Marino, Soufiane Bendaoud, and Steve Ranta  
INTRODUCTION  
LOW-PASS FILTER  
The EVAL-PRAOPAMP-1R is an evaluation board which  
accommodates single op amps in SOIC packages. It is  
meant to provide the user with multiple choices and  
extensive flexibility for different applications circuits  
and configurations. This board is not intended to be  
used with high frequency components or high speed  
amplifiers. However, it provides the user with many  
combinations for various circuit types including active  
filters, differential amplifiers, and external frequency  
compensation circuits. A few examples of application  
circuits are given in this application note.  
Figure 1 is a typical representation of a first-order low-  
pass filter. This circuit has a 6 dB per octave roll-off  
after a close-loop –3 dB point defined by fC. Gain below  
this frequency is defined as the magnitude of R7 to R2.  
The circuit might be considered as an ac integrator for  
frequencies well above fC; however, the time domain  
response is that of a single RC, rather than an integral.  
fC = 1/(2ꢀ ꢁ R7 C7); –3 dB frequency  
fL = 1/(2ꢀ ꢁ R2 C7); unity gain frequency  
Acl = –(R7/R2); close loop gain  
R6 should be chosen equal to the parallel combination  
between R7 and R2 in order to minimize errors due to  
bias currents.  
C7  
R7  
R7  
R2  
V
IN  
V
OUT  
R2  
R4  
R6  
V
V
1
2
IN  
R6  
V
OUT  
IN  
60  
40  
20  
0
Figure 2. Difference Amplifier  
fC  
DIFFERENCE AMPLIFIER AND PERFORMANCE  
OPTIMIZATION  
Figure 2 shows an op amp configured as a difference  
amplifier. The difference amplifier is the complement  
of the summing amplifier, and allows the subtraction  
of two voltages or the cancellation of a signal common  
to both inputs. The circuit shown in Figure 2 is useful  
as a computational amplifier in making a differential  
to single-ended conversion or in rejecting a common-  
mode signal. The output voltage VOUT is comprised of  
two separate components:  
fL  
R7/R2 = 100  
–20  
f
10f  
100f  
RELATIVE FREQUENCY  
1000f  
10000f  
Figure 1. Simple Low-Pass Filter  
1. A component VOUT1 due to VIN1 acting alone (VIN2  
short-circuited to ground.)  
2. A component VOUT2 due to VIN2 acting alone (VIN1  
short-circuited to ground.)  
REV. A  

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