參數(shù)資料
型號(hào): AD8040AR
廠商: ANALOG DEVICES INC
元件分類: 運(yùn)動(dòng)控制電子
英文描述: Low Power, High Speed Rail-to-Rail Input/Output Amplifier
中文描述: QUAD OP-AMP, 6000 uV OFFSET-MAX, PDSO14
封裝: MS-012AB, SOIC-14
文件頁數(shù): 16/20頁
文件大?。?/td> 649K
代理商: AD8040AR
AD8029/AD8030/AD8040
APPLICATIONS
WIDEBAND OPERATION
Rev. A | Page 16 of 20
+V
S
–V
S
C2
10
μ
F
C1
0.1
μ
F
C4
0.1
μ
F
C3
10
μ
F
V
OUT
+
AD8029
R
G
R1
R
F
DISABLE
V
IN
R1 = R
F
||R
G
03679-0-052
Figure 51. Wideband Non-inverting Gain Configuration
+V
S
–V
S
C1
0.1
μ
F
C4
0.1
μ
F
C3
10
μ
F
R1
V
OUT
AD8029
+
R
G
R1 = R
F
||R
G
R
F
V
IN
03679-0-053
C2
10
μ
F
DISABLE
Figure 52. Wideband Inverting Gain Configuration
OUTPUT LOADING SENSITIVITY
To achieve maximum performance and low power dissipation,
the designer needs to consider the loading at the output of
AD8029/AD8030/AD8040. Table 5 shows the effects of output
loading and performance.
When operating at unity gain, the effective load at the amplifier
output is the resistance (R
L
) being driven by the amplifier. For
gains other than 1, in noninverting configurations, the feedback
network represents an additional current load at the amplifier
output. The feedback network (R
F
+ R
G
) is in parallel with R
L
,
which lowers the effective resistance at the output of the
amplifier. The lower effective resistance causes the amplifier to
supply more current at the output. Lower values of feedback
resistance increase the current draw, thus increasing the
amplifier’s power dissipation.
For example, if using the values shown in Table 5 for a gain of 2,
with resistor values of 2.5 k, the effective load at the output is
1.67 k. For inverting configurations, only the feedback resistor
R
F
is in parallel with the output load. If the load is greater than
that specified in the data sheet, the amplifier can introduce
nonlinearities in its open-loop response, which increases
distortion. Figure 53 and Figure 54 illustrate effective output
loading and distortion performance. Increasing the resistance of
the feedback network can reduce the current consumption, but
has other implications.
FREQUENCY (MHz)
H
0.01
–120
0.1
1.0
10
0
–40
–50
–60
–70
–80
–90
–100
–110
= 0.1V p-p
V
= 2.0V p-p
SECOND HARMONIC – SOLID LINES
THIRD HARMONIC – DOTTED LINES
R
L
= 5k
R
L
= 2.5k
V
S
= 5V
R
L
= 1k
Figure 53. Gain of 1 Distortion
FREQUENCY (MHz)
H
0.01
–120
0.1
1.0
10
0
–40
–50
–60
–70
–80
–90
–100
–110
= 0.1V p-p
V
= 2.0V p-p
SECOND HARMONIC – SOLID LINES
THIRD HARMONIC – DOTTED LINES
R
F
= R
L
= 1k
V
S
= 5V
R
F
= R
L
= 5k
R
F
= R
L
= 2.5k
Figure 54. Gain of 2 Distortion
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