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AD22057 View Datasheet(PDF) - Analog Devices

Part Name
Description
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AD22057 Datasheet PDF : 9 Pages
1 2 3 4 5 6 7 8 9
AD22057–SPECIFICATIONS (TA = +25؇C, VS = +5 V, VCM = 0, RL = 10 kunless otherwise noted)
Parameter
Comments
Test Conditions
Min Typ Max Units
INPUTS (PINS 1 AND 8)
+CMR
CMR
CMRRLF
CMRRHF
RINCM
RMATCH
RINDIFF
PREAMPLIFIER
GCL
VO
RO
OUTPUT BUFFER
GCL
VO
RO
OVERALL SYSTEM
G
VOS
OFS
IOSC
BW–3 dB
SR
NSD
PSR
VOS
G
Positive Common-Mode Range TA = TMIN to TMAX
Negative Common-Mode Range TA = TMIN to +85°C
Common-Mode Rejection Ratio f 10 Hz
Common-Mode Rejection Ratio f = 1 kHz
Common-Mode Input Resistance Pin 1 or Pin 8 to Pin 2
Matching of Resistances
Differential Input Resistance
Pin 1 to Pin 8
Closed-Loop Gain1
Output Voltage Range (Pin 3)
Output Resistance2
Closed-Loop Gain1
Output Voltage Range3
Output Resistance (Pin 5)
RLOAD 10 k
VO 0.1 V dc
Gain1
Gain Drift
Input Offset Voltage4
Offset Drift
Midscale Offset (Pin 7) Scaling
Input Resistance
Short-Circuit Output Current
–3 dB Bandwidth
Slew Rate
Noise Spectral Density4
Power Supply Rejection
Input Offset Voltage4
Gain
VO 0.1 V dc
TA = TMIN to TMAX
TA = TMIN to TMAX
Pin 7 to Pin 2
TA = TMIN to TMAX
VO = +1 V dc
f = 100 Hz to 10 kHz
VS = 5 V, VO = 1 V to 4.2 V
VS = 24 V, VO = 1 V to 22 V
TA = TMIN to TMAX
–1.0
80
80
180
280
9.7
+0.01
97
1.94
+0.02
19.9
–62.5
–1
–12.5
0.49
2.5
7
5
20
90
90
240
± 0.5
400
10.0
100
2.0
2.0
20.0
0.03
0.50
3.0
11
30
0.2
0.2
+24 V
V
dB
dB
300 k
%
k
10.3 V/V
+4.8 V
103 k
2.06 V/V
+4.8 V
20.1
+62.5
1
+12.5
0.51
25
27
V/V
ppm/°C
mV
µV/°C
V/V
k
mA
mA
kHz
V/µs
µV/Hz
20.0 µV/V
0.05 %/V
POWER SUPPLY
VS
IS
TEMPERATURE RANGE
TOP
PACKAGE
Operating Range
Quiescent Supply Range5
Operating Temperature Range
8-Lead SOIC (R-8)
TA = TMIN to TMAX
TA = +25°C, VS = +5 V
3
5
36 V
200 500 µA
–40
+125 °C
AD22057RZ
NOTES
1Specified for default mode i.e., with no external components. The overall gain is trimmed to ± 0.5% while the individual gains of A1 and A2 may be subject to a
maximum ± 3% tolerance. Note that the actual gain in a particular application can be modified by the use of external resistor networks.
2The actual output resistance of A1 is only a few ohms, but access to this output, via Pin 3, is always through a 100 k resistor, which is trimmed to ± 3%.
3For VCM 20 V. For VCM > 20 V, VOL Ӎ 1 mV/V × VCM.
4Referred to the input (Pins 1 and 8).
5With VDM = 0 V. Differential mode signals are referred to as VDM, while VCM refers to common-mode voltages.
Specifications subject to change without notice.
–2–
REV. B
 

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