AD7711ANZ Analog Devices Inc, AD7711ANZ Datasheet - Page 3

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AD7711ANZ

Manufacturer Part Number
AD7711ANZ
Description
24 BIT SIGMA DELTA ADC IC
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD7711ANZ

Rohs Compliant
YES
Number Of Bits
24
Sampling Rate (per Second)
1.03k
Data Interface
Serial
Number Of Converters
1
Power Dissipation (max)
45mW
Voltage Supply Source
Analog and Digital, Dual ±
Operating Temperature
-40°C ~ 80°C
Mounting Type
Through Hole
Package / Case
24-DIP (0.300", 7.62mm)
Resolution (bits)
24bit
Sampling Rate
19.5kSPS
Input Channel Type
Differential, Single Ended
Supply Voltage Range - Analogue
5V To 10V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD7711ANZ
Manufacturer:
AD
Quantity:
1
Parameter
V
LOGIC INPUTS
LOGIC OUTPUTS
TRANSDUCER BURNOUT
RTD EXCITATION CURRENTS (RTD1, RTD2)
SYSTEM CALIBRATION
NOTES
12
13
14
15
REV. G
The AD7711 is tested with the following V
Guaranteed by design, not production tested.
After calibration, if the analog input exceeds positive full scale, the converter outputs all 1s. If the analog input is less than negative full scale, the device outputs all 0s.
These calibration and span limits apply, provided the absolute voltage on the analog inputs does not exceed AV
BIAS
with AV
The offset calibration limit applies to both the unipolar zero point and the bipolar zero point.
Input Voltage Range
V
Input Current
All Inputs except MCLK IN
MCLK IN Only
V
V
Floating State Leakage Current
Floating State Output Capacitance
Current
Initial Tolerance @ 25∞C
Drift
Output Current
Initial Tolerance @ 25∞C
Drift
Initial Matching @ 25∞C
Drift Matching
Line Regulation (AV
Load Regulation
Output Compliance
Positive Full-Scale Calibration Limit
Negative Full-Scale Calibration Limit
Offset Calibration Limit
Input Span
BIAS
OL
OH
V
V
V
V
INPUT
, Output Low Voltage
, Output High Voltage
INL
INH
INL
INH
Rejection
DD
, Input Low Voltage
, Input Low Voltage
, Input High Voltage
, Input High Voltage
= 5 V and V
12
15
DD
SS
)
= –5 V, V
15
BIAS
13
14
= 0 V.
14
BIAS
voltages. With AV
A, S Versions
AV
or AV
or AV
V
or V
or V
65 to 85
± 10
0.8
2.0
0.8
3.5
0.4
4.0
± 10
9
4.5
± 10
0.1
200
± 20
20
± 1
3
200
200
AV
(1.05 ¥ V
–(1.05 ¥ V
–(1.05 ¥ V
0.8 ¥ V
(2.1 ¥ V
SS
DD
DD
+ 0.85 ¥ V
SS
SS
DD
DD
DD
– 0.85 ¥ V
– 2
+ 3
+ 2.1
REF
REF
= 5 V and V
– 3.5
– 2.1
REF
REF
REF
/GAIN
)/GAIN
)/GAIN
)/GAIN
)/GAIN
1
REF
REF
–3–
SS
= 0 V, V
Unit
V max
V max
V min
dB typ
mA max
V max
V min
V max
V min
V max
V min
mA max
pF typ
mA nom
% typ
%/∞C typ
mA nom
% max
ppm/∞C typ
% max
ppm/∞C typ
nA/V max
nA/V max
V max
V max
V max
V max
V min
V max
V min
BIAS
= 2.5 V; with AV
Matching between RTD1 and RTD2 Current Drift
Conditions/Comments
See V
Whichever Is Smaller; +5 V/–5 V or +10 V/0 V
Nominal AV
Whichever Is Smaller; +5 V/0 V Nominal AV
See V
Whichever Is Greater; +5 V/–5 V or +10 V/0 V
Nominal AV
Whichever Is Greater; +5 V/0 V Nominal AV
Increasing with Gain
I
I
Matching between RTD1 and RTD2 Currents
AV
GAIN Is the Selected PGA Gain (between 1 and 128)
GAIN Is the Selected PGA Gain (between 1 and 128)
GAIN Is the Selected PGA Gain (between 1 and 128)
GAIN Is the Selected PGA Gain (between 1 and 128)
GAIN Is the Selected PGA Gain (between 1 and 128)
SINK
SOURCE
DD
DD
= 1.6 mA
BIAS
BIAS
= 5 V
DD
+ 30 mV or go more negative than V
= 100 mA
Input Section
Input Section
= 10 V and V
DD
DD
/V
/V
SS
SS
SS
= 0 V, V
BIAS
= 5 V, and
AD7711
SS
– 30 mV.
DD
DD
/V
/V
SS
SS

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