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AD8210YRZ Fiches technique(PDF) 3 Page - Analog Devices

No de pièce AD8210YRZ
Description  High Voltage, Bidirectional Current Shunt Monitor
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Fabricant  AD [Analog Devices]
Site Internet  http://www.analog.com
Logo AD - Analog Devices

AD8210YRZ Fiches technique(HTML) 3 Page - Analog Devices

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AD8210
Rev. 0 | Page 3 of 16
SPECIFICATIONS
TA = operating temperature range, VS = 5 V, unless otherwise noted.
Table 1.
AD8210 SOIC1
Parameter
Min
Typ
Max
Unit
Conditions
GAIN
Initial
20
V/V
Accuracy
±0.5
%
25°C, VO ≥ 0.1 V dc
Accuracy Over Temperature
±0.7
%
TA
Gain Drift
20
ppm/°C
VOLTAGE OFFSET
Offset Voltage (RTI)
±1.0
mV
25°C
Over Temperature (RTI)
±1.8
mV
TA
Offset Drift
±8.0
μV/°C
INPUT
Input Impedance
Differential
2
Common Mode
5
V common mode > 5 V
Common Mode
3.5
V common mode < 5 V
Common-Mode Input Voltage Range
−2
+65
V
Common mode, continuous
Differential Input Voltage Range
250
mV
Differential2
Common-Mode Rejection
100
120
dB
TA, f = dc, VCM > 5 V
80
95
dB
TA, f = dc to 100 kHz3, VCM < 5 V
80
dB
TA, f = 100 kHz3, VCM > 5 V
80
dB
TA, f = 40 kHz3, VCM > 5 V
OUTPUT
Output Voltage Range
0.05
4.9
V
RL = 25 kΩ
Output Impedance
2
Ω
DYNAMIC RESPONSE
Small Signal −3 dB Bandwidth
450
kHz
Slew Rate
3
V/μs
NOISE
0.1 Hz to 10 Hz, RTI
7
μV p-p
Spectral Density, 1 kHz, RTI
70
nV/√Hz
OFFSET ADJUSTMENT
Ratiometric Accuracy4
0.499
0.501
V/V
Divider to supplies
Accuracy, RTO
±0.6
mV/V
Voltage applied to VREF1 and VREF2 in parallel
Output Offset Adjustment Range
0.05
4.9
V
VS = 5 V
VREF Input Voltage Range
0.0
VS
V
VREF Divider Resistor Values
24
32
40
POWER SUPPLY
Operating Range
4.5
5.0
5.5
V
Quiescent Current Over Temperature
2
mA
VCM > 5 V5
Power Supply Rejection Ratio
80
dB
TEMPERATURE RANGE
For Specified Performance
−40
+125
°C
1 TMIN to TMAX = −40°C to +125°C.
2 Differential input voltage range = ±125 mV with half-scale output offset.
3 Source imbalance <2 Ω.
4 The offset adjustment is ratiometric to the power supply when VREF1 and VREF2 are used as a divider between the supplies.
5 When the input common mode is less than 5 V, the supply current increases. This can be calculated with the following formula: IS = −0.7 (VCM) + 4.2 (see Fi
).
gure 21


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