Datasheet

LMH6704
www.ti.com
SNOSAD0C FEBRUARY 2005REVISED MARCH 2013
Electrical Characteristics
(1)
T
A
= +25°C , A
V
= +2, V
S
= ±5V, R
L
= 100; unless specified.
Symbol Parameter Conditions Min
(2)
Typ
(2)
Max
(2)
Units
Dynamic Performance
SSBW V
OUT
= 0.5 V
PP
, A
V
= +1 650
SSBW -3 dB Bandwidth V
OUT
= 0.5 V
PP
450 MHz
LSBW V
OUT
= 2 V
PP
400
GF
0.1dB
0.1 dB Gain Bandwidth V
OUT
= 2 V
PP
200 MHz
SR Slew Rate V
OUT
= 4 V
PP
, 40% to 60%
(3)
3000 V/µs
Rise and Fall Time
TRS/TRL 2V Step 0.9 ns
(10% to 90%)
t
s
Settling Time to 0.1% 2V Step 10 ns
Distortion and Noise Response
HD2L 2
nd
Harmonic Distortion V
OUT
= 2.0 V
PP
, f = 10 MHz 62
dBc
HD2H V
OUT
= 2.0 V
PP
, f = 40 MHz 52
HD3L 3
rd
Harmonic Distortion V
OUT
= 2.0 V
PP
, f = 10 MHz 78
dBc
HD3H V
OUT
= 2.0 V
PP
, f = 40 MHz 65
IMD Two-Tone Intermodulation f = 10 MHz, P
OUT
= 10 dBm/tone 65 dBc
A
V
= +2 10.5
V
N
Output Noise Voltage f = 100 kHz A
V
= +1 9.3 nV/Hz
A
V
= 1 10.5
I
NN
Non-Inverting Input Noise Current 3 pA/Hz
DG Differential Gain R
L
= 150, f = 4.43 MHz .02 %
DP Differential Phase R
L
= 150, f = 4.43 MHz 0.02 deg
Static, DC Performance
1.98 2.00 2.02
A
V
Gain V/V
1.96 2.04
1 +1
Gain Error %
2 +2
2 ±7
V
IO
Input Offset Voltage mV
±8.3
DV
IO
Input Offset Voltage Average Drift 35 μV/°C
Non-Inverting
(4)
5 ±15
I
BN
Input Bias Current μA
±18
±22
I
BI
Input Bias Current Inverting 5
±31
CMIR Common Mode Input Range V
IO
15 mV ±1.9 ±2 V
PSRR Power Supply Rejection Ratio DC 48 52 dB
47
R
L
= ±3.3 ±3.5
±3.18
V
O
Output Voltage Swing V
R
L
= 100 ±3.2 ±3.5
±3.12
I
O
Linear Output Current V
OUT
80 mV ±55 ±90 mA
11.5 12.5
Supply Current (Enabled) DIS = 2V, R
L
=
13.7
I
S
mA
0.25 0.9
Supply Current (Disabled) DIS = 0.8V, R
L
=
0.925
(1) Electrical Table values apply only for factory testing conditions at the temperature indicated. Factory testing conditions result in very
limited self-heating of the device such that T
J
= T
A
. Parametric performance is indicated in the electrical tables under conditions of
internal self-heating where T
J
> T
A
. Min/Max ratings are based on production testing unless otherwise specified.
(2) Typical values represent the most likely parametric norm as determined at the time of characterization. Actual typical values may vary
over time and will also depend on the application and configuration. The typical values are not tested on shipped production material.
(3) Slew Rate is the average of the rising and falling edges.
(4) Negative current implies current flowing out of the device.
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