LMH6723, LMH6724
SNOSA83I –AUGUST 2003–REVISED AUGUST 2014
www.ti.com
±5V Electrical Characteristics (continued)
Unless otherwise specified, AV = +2, RF = 1200Ω, RL = 100Ω. Boldface limits apply at temperature extremes.(1)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
MISCELLANEOUS PERFORMANCE
RIN+
RIN−
Input Resistance
Non-Inverting
100
500
kΩ
Input Resistance
(Output Resistance of Input Buffer)
Inverting
Ω
CIN
Input Capacitance
Output Resistance
Output Voltage Range
Non-Inverting
Closed Loop
RL = ∞
1.5
pF
ROUT
VO
0.01
Ω
LMH6723
LMH6724
±4
±3.9
±4.1
±4.1
3.7
V
±4
±3.85
VOL
Output Voltage Range, High
Output Voltage Range, Low
RL = 100Ω
RL = 100Ω
3.6
3.5
V
V
−3.25
−3.1
−3.45
CMVR
IO
Input Voltage Range
Output Current
Common Mode, CMRR > 50 dB
Sourcing, VOUT = 0
±4.0
95
70
110
110
mA
Sinking, VOUT = 0
−80
−70
6.6 ±2.5V Electrical Characteristics
Unless otherwise specified, AV = +2, RF = 1200Ω, RL = 100Ω. Boldface limits apply at temperature extremes.(1)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
FREQUENCY DOMAIN RESPONSE
SSBW
LSBW
UGBW
.1dB BW
DG
−3 dB Bandwidth Small Signal
−3 dB Bandwidth Large Signal
−3 dB Bandwidth Unity Gain
.1 dB Bandwidth
VOUT = 0.5 VPP
210
125
290
100
.03%
0.1
MHz
MHz
MHz
MHz
VOUT = 2.0 VPP
95
VOUT = 0.5 VPP, AV = 1 V/V
VOUT = 0.5 VPP
Differential Gain
RL = 150Ω, 4.43 MHz
RL = 150Ω, 4.43 MHz
DP
Differential Phase
deg
TIME DOMAIN RESPONSE
TRS
SR
Rise and Fall Time
Slew Rate
2V Step
2V Step
4
ns
275
400
V/μs
DISTORTION AND NOISE RESPONSE
HD2
HD3
2nd Harmonic Distortion
3rd Harmonic Distortion
2 VPP, 5 MHz
2 VPP, 5 MHz
−67
−67
dBc
dBc
EQUIVALENT INPUT NOISE
VN
Non-Inverting Voltage
Inverting Current
>1 MHz
>1MHz
>1MHz
4.3
6
nV/√Hz
pA/√Hz
pA/√Hz
NICN
ICN
Non-Inverting Current
6
(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 TJ = TA. No ensured specification of parametric performance is indicated in the electrical
tables under conditions of internal self heating where TJ > TA. See Application and Implementation for information on temperature
derating of this device. Min/Max ratings are based on product characterization and simulation. Individual parameters are tested as
noted.
6
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