TS615
Figure 7 : Closed Loop Gain vs. Frequency
AV=+4
14
40
gain
12
20
(Vcc=±2.5V)
10
phase
(Vcc=±6V)
0
8
-20
6
(Vcc=±2.5V)
-40
4
(Vcc=±6V)
2
-60
0
-2
(Vcc=±2.5V, Rfb=910Ω, Rg=300Ω, Rload=10Ω)
(Vcc=±6V, Rfb=620Ω, Rg=560//330Ω, Rload=25Ω)
-4
100
1k
10k
100k
1M
10M
Frequency (Hz)
-80
-100
-120
100M
Figure 8 : Closed Loop Gain vs. Frequency
AV=+8
20
40
gain
18
20
(Vcc=±2.5V)
16
phase
(Vcc=±6V)
0
14
-20
12
(Vcc=±2.5V)
-40
10
(Vcc=±6V)
8
-60
6
4
(Vcc=±2.5V, Rfb=680Ω, Rg=240//160Ω, Rload=10Ω)
(Vcc=±6V, Rfb=510Ω, Rg=270//100Ω, Rload=25Ω)
2
100
1k
10k
100k
1M
10M
Frequency (Hz)
-80
-100
-120
100M
Figure 9 : Bandwidth vs. Temperature
AV=+4, Rfb=910Ω
50
Vcc=±6V
Load=25Ω
45
40
35
30
Vcc=±2.5V
25
Load=10Ω
20
-40
-20
0
20
40
60
80
Temperature (°C)
8/27
Figure 10 : Closed Loop Gain vs. Frequency
AV=-4
14
-140
gain
12
-160
(Vcc=±2.5V)
10
phase
(Vcc=±6V)
-180
8
-200
6
(Vcc=±2.5V)
4
-220
(Vcc=±6V)
2
-240
0
-2
(Vcc=±2.5V, Rfb=1kΩ, Rin=320//360Ω, Rload=10Ω)
(Vcc=±6V, Rfb=620Ω, Rin=360//270Ω, Rload=25Ω)
-4
100
1k
10k
100k
1M
10M
Frequency (Hz)
-260
-280
-300
100M
Figure 11 : Closed Loop Gain vs. Frequency
AV=-8
20
-140
gain
18
-160
(Vcc=±2.5V)
16
phase
(Vcc=±6V)
-180
14
-200
12
(Vcc=±2.5V)
-220
10
(Vcc=±6V)
8
-240
6
4
(Vcc=±2.5V, Rfb=680Ω, Rin=160//180Ω, Rload=10Ω)
(Vcc=±6V, Rfb=510Ω, Rin=150//110Ω, Rload=25Ω)
2
100
1k
10k
100k
1M
10M
Frequency (Hz)
-260
-280
-300
100M
Figure 12 : Positive Slew Rate
AV=+4, Rfb=620Ω, VCC=±6V, RL=25Ω
4
2
0
-2
-4
0.0
10.0n
20.0n
30.0n
40.0n
50.0n
Time (s)