LT1792AIN8#PBF

4
LT1792
E
LECTR
IC
AL C CHARA TERIST
ICS
The denotes specifications which apply over the temperature range
–40°C T
A
85°C. V
S
=
±
15V, V
CM
= 0V, unless otherwise noted. (Notes 8, 9)
SYMBOL PARAMETER CONDITIONS (Note 2) MIN TYP MAX MIN TYP MAX UNITS
V
OS
Input Offset Voltage 0.5 1.0 1.2 3.7 mV
V
S
= ±5V 0.8 1.4 1.5 4.2 mV
V
OS
Average Input Offset (Note 6) 410 740 µV/°C
Temp
Voltage Drift
I
OS
Input Offset Current 300 800 300 800 pA
I
B
Input Bias Current 1200 4000 1200 4000 pA
V
CM
Input Voltage Range 12.6 13.0 12.6 13.0 V
10.0 10.5 10.0 10.5 V
CMRR Common Mode Rejection Ratio V
CM
= –10V to 12.6V 80 103 78 98 dB
PSRR Power Supply Rejection Ratio V
S
= ±4.5V to ±20V 83 98 79 96 dB
A
VOL
Large-Signal Voltage Gain V
O
= ±12V, R
L
= 10k 850 3300 750 3000 V/mV
V
O
= ±10V, R
L
= 1k 400 2200 300 2000 V/mV
V
OUT
Output Voltage Swing R
L
= 10k ±12.8 ±13.1 ±12.8 ±13.1 V
R
L
= 1k ±11.8 ±12.1 ±11.8 ±12.1 V
SR Slew Rate R
L
2k 2.0 3.0 2.0 3.0 V/µs
GBW Gain-Bandwidth Product f
O
= 100kHz 2.9 4.3 2.9 4.3 MHz
I
S
Supply Current 4.2 5.40 4.2 5.40 mA
V
S
= ±5V 4.2 5.35 4.2 5.35 mA
Note 6: This parameter is not 100% tested.
Note 7: Slew rate is measured in A
V
= –1; input signal is ±7.5V, output
measured at ±2.5V.
Note 8: The LT1792AC and LT1792C are guaranteed to meet specified
performance from 0°C to 70°C and are designed, characterized and
expected to meet these extended temperature limits, but are not tested at
–40°C and 85°C. The LT1792I is guaranteed to meet the extended
temperature limits. The LT1792AC and LT1792AI grade are 100%
temperature tested for the specified temperature range.
Note 9: The LT1792 is measured in an automated tester in less than one
second after application of power. Depending on the package used,
power dissipation, heat sinking, and air flow conditions, the fully
warmed-up chip temperature can be 10°C to 50°C higher than the
ambient temperature.
Note 1: Absolute Maximum Ratings are those values beyond which the
life of a device may be impaired.
Note 2: Typical parameters are defined as the 60% yield of parameter
distributions of individual amplifiers.
Note 3: Warmed-up I
B
and I
OS
readings are extrapolated to a chip
temperature of 32°C from 25°C measurements and 32°C characterization
data.
Note 4: Current noise is calculated from the formula:
i
n
= (2qI
B
)
1/2
where q = 1.6 • 10
–19
coulomb. The noise of source resistors up to 200M
swamps the contribution of current noise.
Note 5: Input voltage range functionality is assured by testing offset
voltage at the input voltage range limits to a maximum of 2.3mV
(A grade), to 2.8mV (C grade).
LT1792AC/LT1792AI LT1792C/LT1792I
5
LT1792
CCHARA TERIST
ICS
UW
AT
Y
P
I
CA
LPER
F
O
R
C
E
TIME (SEC)
0
VOLTAGE NOISE (1µV/DIV)
8
1792 G01
2
4
6
10
0.1Hz to 10Hz Voltage Noise
TEMPERATURE (°C)
–75
0
1
3
4
5
10
7
–25
25
50
1792 G03
2
8
9
6
–50 0
75
100
125
VOLTAGE NOISE (AT 1kHz) (nV/Hz)
V
S
= ±15V
Voltage Noise
vs Chip Temperature
Voltage Gain vs Frequency
FREQUENCY (Hz)
0.01
VOLTAGE GAIN (dB)
100
140
180
1M
1792 G08
60
20
80
120
160
40
0
–20
1
100
10k
100M
Common Mode Limit
vs Temperature
TEMPERATURE (°C)
–60
COMMON MODE LIMIT
REFERRED TO POWER SUPPLY (V)
2.0
1.0
V
+
0
100
1792 G05
4.0
3.0
1.5
0.5
3.5
2.5
V
+2.0
–20
20
60
140
V
+
= 5V TO 20V
V
= –5V TO –20V
Input Bias and Offset Current
Over the Common Mode Range
COMMON-MODE RANGE (V)
–15
INPUT BIAS AND OFFSET CURRENTS (pA)
400
300
200
100
0
–10 –5 0 5
1792 G22
10 15
T
A
= 25°C
V
S
= ±15V
NOT WARMED UP
OFFSET CURRENT
BIAS CURRENT
Common Mode Rejection Ratio
vs Frequency
FREQUENCY (Hz)
40
COMMON MODE REJECTION RATIO (dB)
80
120
20
60
100
1k 100k 1M 10M
1792 G06
0
10k
T
A
= 25°C
V
S
= ±15V
FREQUENCY (Hz)
110
1
10
100
100 10k1k
1792 G02
RMS VOLTAGE NOISE DENSITY (nV/Hz)
V
S
= ±15V
T
A
= 25°C
1/f CORNER
30Hz
Voltage Noise vs Frequency
Input Bias and Offset Current
vs Chip Temperature
TEMPERATURE (°C)
–75
INPUT BIAS AND OFFSET CURRENT (nA)
1
I
B
I
OS
10
125
1792 G04
0.1
0.3
3
0.03
0.01
–25 25 7550 0 50 100
100
30
V
S
= ±15V
FREQUENCY (Hz)
10
POWER SUPPLY REJECTION RATIO (dB)
120
100
80
60
40
20
0
100
1k 10k 100k
1792 G07
1M 10M
T
A
= 25°C
+PSRR
PSRR
Power Supply Rejection Ratio
vs Frequency
6
LT1792
CCHARA TERIST
ICS
UW
AT
Y
P
I
CA
LPER
F
O
R
C
E
Warm-Up Drift
TIME AFTER POWER ON (MINUTES)
0
0
CHANGE IN OFFSET VOLTAGE (µV)
15
30
45
60
90
1
234
1792 G15
56
75
SO-8 PACKAGE
N8 PACKAGE
V
S
= ±15V
T
A
= 25°C
Output Voltage Swing
vs Load Current
OUTPUT CURRENT (mA)
–10
OUTPUT VOLTAGE SWING (V)
V
+
0.8
1.0
1.2
1.4
1.6
2.0
1.8
1.6
1.4
1.2
V
+1.0
6
1792 G12
–8
–2
2
10
–6 –4
048
25°C
–55°C
125°C
–55°C
25°C
125°C
V
S
= ±5V TO ±20V
I
SINK
I
SOURCE
Small-Signal Transient Response
1µs/DIV
20mV/DIV
A
V
= 1
C
L
= 10pF
V
S
= ±15V, ±5V
1792 G10
5µs/DIV
5V/DIV
A
V
= 1
C
L
= 10pF
R
L
= 2k
V
S
= ±15V
1792 G11
Large-Signal Transient Response
FREQUENCY (MHz)
0.1
–10
VOLTAGE GAIN (dB)
PHASE SHIFT (DEG)
30
40
50
1 10 100
1792 G09
20
10
0
180
200
100
80
120
140
160
PHASE
GAIN
T
A
= 25°C
V
S
= ±15V
C
L
= 10pF
Gain and Phase Shift
vs Frequency
Slew Rate and Gain-Bandwidth
Product vs Temperature
TEMPERATURE (
°
C)
–75
0
SLEW RATE (V/µs)
GAIN-BANDWIDTH PRODUCT (f
O
= 100kHz) (MHz)
1
2
3
4
–25 25
75
125
1792 G14
5
6
0
2
4
6
SR
8
10
12
–50 0
50
100
V
S
=
±
15V
GBWP
Capacitive Load Handling
CAPACITIVE LOAD (pF)
0.1
OVERSHOOT (%)
30
A
V
= 10
A
V
= 1
40
50
1000
1792 G13
20
10
0
1
10
100
10000
V
S
= ±15V
T
A
= 25°C
R
L
10k
V
O
= 100mV
P-P
A
V
= 10
R
F
= 10k
C
F
= 20pF
FREQUENCY (Hz)
20 100
0.0001
TOTAL HARMONIC DISTROTION + NOISE (%)
0.01
1
1k 20k10k
1792 G16
0.001
0.1
Z
L
= 2k

15pF
V
O
= 20V
P-P
A
V
= 1, 10, 100
MEASUREMENT BANDWIDTH
= 10Hz TO 80kHz
A
V
= 100
NOISE FLOOR
A
V
= 10 A
V
= 1
THD and Noise vs Frequency for
Noninverting Gain
THD and Noise vs Frequency for
Inverting Gain
FREQUENCY (Hz)
20 100
0.0001
TOTAL HARMONIC DISTROTION + NOISE (%)
0.01
1
1k 20k10k
1792 G17
0.001
0.1
Z
L
= 2k

15pF
V
O
= 20V
P-P
A
V
= –1, –10, –100
MEASUREMENT BANDWIDTH
= 10Hz TO 80kHz
A
V
= –100
NOISE FLOOR
A
V
= –10
A
V
= –1

LT1792AIN8#PBF

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Precision Amplifiers L N, Prec, JFET In Op Amp
Lifecycle:
New from this manufacturer.
Delivery:
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Payment:
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