LT6552
4
6552f
5V ELECTRICAL CHARACTERISTICS The q denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at TA = 25°C. VS = 5V, 0V; Figure 1 shows the DC test circuit,
VREF = VCM = 1V, VDIFF = 0V, VSHDN = V
+, unless otherwise noted. RL = RF + RG = 1k. (Note 6)
SYMBOL
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
VOS
Input Offset Voltage
Both Inputs (Note 7)
5
20
mV
q
25
mV
VOS/T
Input VOS Drift
q
40
V/°C
IB
Input Bias Current
Any Input
q
20
50
uA
IOS
Input Offset Current
Either Input Pair
q
15
uA
en
Input Noise Voltage Density
f = 10kHz
55
nV/
√Hz
in
Input Noise Current Density
f = 10kHz
0.7
pA/
√Hz
RIN
Input Resistance
Common Mode, VCM = 0V to 3V
300
k
CMRR
Common Mode Rejection Ratio
VCM = 0V to 3V
q
58
83
dB
Input Range
q
03
V
PSRR
Power Supply Rejection
VS = 3V to 12V
q
48
54
dB
Minimum Supply (Note 8)
q
3V
GE
Gain Error
VO = 0.5V to 3.5V, RL = 1k
q
13
%
RL = 150
q
13
%
VOH
Swing High
(VDIFF = 0.6V), VREF(Pin 1) = 0V, AV = 10
RL = 1k
q
4.8
4.875
V
RL = 150
q
3.6
4.3
V
RL = 75, 0°C ≤ TA ≤ 70°C (Only)
q
2.75
3.4
V
VOL
Swing Low
(VDIFF = –0.1V), VREF (Pin 1) = 0V, AV = 10
RL = 1k
q
850
mV
ISINK = 5mA
q
65
120
mV
ISINK = 10mA
q
110
200
mV
SR
Slew Rate
VOUT = 0.5V to 3.5V
Measure from 1V to 3V, RL = 150, AV = 2
450
V/
s
FPBW
Full-Power Bandwidth (Note 9)
VO = 2VP-P
70
MHz
BW
Small-Signal –3dB Bandwidth
AV = 2, RL = 150
70
MHz
tr, tf
Rise Time, Fall Time
5V, 0V; AV = 50, VO = 0.5V to 3.5V,
125
175
ns
20% to 80%, RL = 1k
tS
Settling Time to 3%
AV = 2, VOUT = 2V, Positive Step
20
ns
Settling Time to 1%
RL = 150
30
ns
Differential Gain
AV = 2, RL = 150, Output Black Level = 1V
0.25
%
Differential Phase
AV = 2, RL = 150, Output Black Level = 1V
0.04
Deg
ISC
Short-Circuit Current
VOUT = 0V, VDIFF = 1V
50
70
mA
0
°C ≤ TA ≤ 70°C
q
45
mA
–40
°C ≤ TA ≤ 85°C
q
35
mA
IS
Supply Current
13.5
14.5
mA
q
16
mA
Supply Current Shutdown
VSHDN = 0.5V
q
400
900
A
VL
Shutdown Pin Input Low Voltage
q
0.5
V
VH
Shutdown Pin Input High Voltage
q
4.7
V
Shutdown Pin Current
VSHDN = 0.5V
q
60
A
VSHDN = 4.7V
q
410
A