
–7–
AD8091/AD8092
REV. A
FREQUENCY
–
MHz
3
2
–
7
0.1
1
10
100
V
= +5V
GAIN AS SHOWN
R
F
AS SHOWN
R
L
= 2k
V
O
= 0.2V p-p
G = +10
R
F
= 2k
G = +5
R
F
= 2k
G = +1
R
F
= 0
G = +2
R
F
= 2k
–
1
–
4
–
5
–
6
1
0
–
3
–
2
500
N
–
TPC 1. Normalized Gain vs. Frequency; V
S
= +5 V
FREQUENCY
–
MHz
3
2
–
7
0.1
500
1
10
100
–
1
–
4
–
5
–
6
1
0
–
3
–
2
V
S
= +3V
V
S
= 5V
V
S
= +5V
V
AS SHOWN
G = +1
R
L
= 2k
V
O
= 0.2V p-p
G
–
TPC 2. Gain vs. Frequency vs. Supply
FREQUENCY
–
MHz
3
2
–
7
0.1
500
1
10
100
–
1
–
4
–
5
–
6
1
0
–
3
–
2
–
40 C
+25 C
+85 C
G
–
V
= +5V
G = +1
R
L
= 2k
V
= 0.2V p-p
TEMPERATURE AS SHOWN
TPC 3. Gain vs. Frequency vs. Temperature
Typical Performance Characteristics
–
FREQUENCY
–
MHz
6.3
6.2
5.3
0.1
1
10
100
V
= +5V
G = +2
R
L
= 150
R
F
= 806
V
O
= 0.2V p-p
5.9
5.6
5.5
5.4
6.1
6.0
5.7
5.8
–
TPC 4. 0.1 dB Gain Flatness vs. Frequency; G = +2
FREQUENCY
–
MHz
9
8
–
1
0.1
500
1
10
100
5
2
1
0
7
6
3
4
V
AS SHOWN
G = +2
R
L
= 2k
R
F
= 2k
V
O
AS SHOWN
V
S
= +5V
V
O
= 2V p-p
V
S
= 5V
V
O
= 4V p-p
G
–
TPC 5. Large Signal Frequency Response; G = +2
FREQUENCY
–
MHz
70
–
20
0.1
500
1
10
100
40
10
0
–
10
60
50
20
30
0
–
45
–
90
–
135
–
180
GAIN
PHASE
50
PHASE
MARGIN
V
S
= +5V
R
L
= 2k
O
–
P
–
TPC 6. Open-Loop Gain and Phase vs. Frequency