Datasheet

FREQUENCY (MHz)
NORMALIZED GAIN (dB)
PHASE
(
°
)
1
10 100 1000
-21
-18
-15
-12
-9
-6
-3
0
3
V
OUT
= 0.25 V
PP
GAIN
PHASE
-100
-80
-60
-40
-20
0
20
40
60
A
V
= +1
A
V
= +2
A
V
= +5
A
V
= +10
A
V
= +1
A
V
= +2
A
V
= +5
A
V
= +10
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
PHASE
(
°
)
1
10 100 1000
-21
-18
-15
-12
-9
-6
-3
0
3
V
OUT
= 0.25 V
PP
GAIN
PHASE
-100
-80
-60
-40
-20
0
20
40
60
A
V
= -1
A
V
= -2
A
V
= -5
A
V
= -10
1
10 100
1000
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
V
S
= 2.7V
-18
-15
-12
-9
-6
-3
0
3
-200
-160
-120
-80
-40
0
40
80
PHASE
(
°
)
GAIN
PHASE
0.25 V
PP
1 V
PP
2 V
PP
2.5 3 3.5 4 4.5 5
50
75
100
125
150
-3 dB BW (MHz)
V
S
(V)
A
V
= +2
0.25 V
PP
1 V
PP
2 V
PP
1
10 100 1000
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
V
S
= 5V
GAIN
PHASE
0.25 V
PP
1 V
PP
2 V
PP
-18
-15
-12
-9
-6
-3
0
3
-200
-160
-120
-80
-40
0
40
80
PHASE
(
°
)
1
10 100
1000
FREQUENCY (MHz)
NORMALIZED GAIN (dB)
V
S
= 3.3V
-18
-15
-12
-9
-6
-3
0
3
-200
-160
-120
-80
-40
0
40
80
PHASE
(
°
)
GAIN
PHASE
0.25 V
PP
1 V
PP
2 V
PP
LMH6601, LMH6601-Q1
SNOSAK9E JUNE 2006REVISED MARCH 2013
www.ti.com
TYPICAL PERFORMANCE CHARACTERISTICS
Unless otherwise noted, all data is with A
V
= +2, R
F
= R
G
= 604, V
S
= 3.3V, V
OUT
= V
S
/2, SD tied to V
+
, R
L
= 150 to V
, T =
25°C.
Frequency Response for Various Output Amplitudes Frequency Response for Various Output Amplitudes
Figure 3. Figure 4.
3 dB BW
vs.
Frequency Response for Various Output Amplitudes Supply Voltage for Various Output Swings
Figure 5. Figure 6.
Non-inverting Frequency Response for Various Gain Inverting Frequency Response for Various Gain
Figure 7. Figure 8.
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