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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(yè)數(shù): 17/20頁(yè)
文件大小: 649K
代理商: AD8040AR
AD8029/AD8030/AD8040
Table 5. Effect of Load on Performance
Noninverting
Gain
(k)
1
0
1
0
1
0
2
1
2
2.5
2
5
–1
1
–1
2.5
–1
5
Rev. A | Page 17 of 20
R
F
R
G
(k)
N/A
N/A
N/A
1
2.5
5
1
2.5
5
R
LOAD
(k)
1
2
5
1
2.5
5
1
2.5
5
–3 dB SS BW
(MHz)
120
130
139
36
44.5
43
40
40
34
Peaking
(dB)
0.02
0.6
1
0
0.2
2
0.01
0.05
1
HD2 at 1 MHz,
2 V p-p (dB)
–80
–84
–87.5
–72
–79
–84
–68
–74
–78
HD3 at 1 MHz,
2 V p-p (dB)
–72
–83
–92.5
–60
–72.5
–86
–57
–68
–80
Output Noise
(nV/√Hz)
16.5
16.5
16.5
33.5
34.4
36
33.6
34
36
The feedback resistance (R
F
|| R
G
) combines with the input
capacitance to form a pole in the amplifier’s loop response. This
can cause peaking and ringing in the amplifier’s response if the
RC time constant is too low. Figure 55 illustrates this effect.
Peaking can be reduced by adding a small capacitor (1 pF–4 pF)
across the feedback resistor. The best way to find the optimal
value of capacitor is to empirically try it in your circuit. Another
factor of higher resistance values is the impact it has on noise
performance. Higher resistor values generate more noise. Each
application is unique and therefore a balance must be reached
between distortion, peaking, and noise performance. Table 5
outlines the trade-offs that different loads have on distortion,
peaking, and noise performance. In gains of 1, 2, and 10,
equivalent loads of 1 k, 2 k, and 5 k are shown.
With increasing load resistance, the distortion and –3 dB
bandwidth improve, while the noise and peaking degrade
slightly.
R
L
= 5k
FREQUENCY (MHz)
N
1
–8
10
100
1000
0
2
1
0
–1
–2
–3
–4
–5
–6
R
L
= 2.5k
–7
R
F
= R
L
= 5k
R
F
= R
L
= 2.5k
R
F
= R
L
= 1k
G = +2
G = +1
R
L
= 1k
V
S
= 5V
V
OUT
= 0.1V p-p
Figure 55. Frequency Response for Various Feedback/Load Resistances
DISABLE PIN
The AD8029 disable pin allows the amplifier to be shut down
for power conservation or multiplexing applications. When in
the disable mode, the amplifier draws only 150 μA of quiescent
current. The disable pin control voltage is referenced to the
negative supply. The amplifier enters power-down mode any
time the disable pin is tied to the most negative supply or within
0.8 V of the negative supply. If left open, the amplifier will
operate normally. For switching levels, refer to Table 6.
Table 6. Disable Pin Control Voltage
Disable Pin
Voltage
+3 V
Low
(Disabled)
0 V to <0.8 V
High
(Enabled)
1.2 V to 3 V
Supply Voltage
+5 V
±
5 V
0 V to <0.8 V
–5 V to <–4 .2 V
1.2 V to 5 V
–3.8 V to +5 V
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