Datasheet

AD8023
REV. A
–8–
FREQUENCY – MHz
+1
–8
1
500
10 100
–4
–5
–6
–7
–2
–3
0
–1
0
–90
–180
GAIN
PHASE
V
S
= 7.5V
V
S
= 2.5V
V
S
= 7.5V
V
S
= 2.5V
+2
G = +10
R
L
= 150
CLOSED-LOOP GAIN (NORMALIZED) – dB
PHASE SHIFT – Degrees
Figure 24. Closed-Loop Gain and Phase vs. Frequency,
G = +10, R
L
= 150
Ω
FREQUENCY – MHz
+1
–8
1
400
10
CLOSED-LOOP GAIN (NORMALIZED) – dB
100
–4
–5
–6
–7
–2
–3
0
–1
0
–90
–180
–9
GAIN
PHASE
V
S
= 2.5V
V
S
= 7.5V
PHASE SHIFT – Degrees
Figure 25. Closed-Loop Gain and Phase vs. Frequency,
G = +1, R
L
= 150
Ω
Figure 26. Large Signal Pulse Response,
Gain = –1, (R
F
= 750
Ω
, R
L
= 150
Ω
, V
S
=
±
7.5 V)
V
IN
V
O
FREQUENCY – MHz
+1
–8
1 50010
CLOSED-LOOP GAIN (NORMALIZED) – dB
100
–4
–5
–6
–7
–2
–3
0
–1
PHASE SHIFT – Degrees
0
–90
–180
GAIN
PHASE
G = +1
R
L
= 150
V
S
= 7.5V
V
S
= 2.5V
V
S
= 7.5V
V
S
= 2.5V
–9
Figure 27. Closed-Loop Gain and Phase vs. Frequency,
G = –1, R
L
= 150
Ω
Figure 28. Small Signal Pulse Response,
Gain = +10, (R
F
= 274
Ω
, R
L
= 150
Ω
, V
S
=
±
7.5 V)
Figure 29. Small Signal Pulse Response,
Gain = –1, (R
F
= 750
Ω
, R
L
= 150
Ω
, V
S
=
±
7.5 V)
V
IN
V
O
V
IN
V
O










