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AD5726 Ver la hoja de datos (PDF) - Analog Devices

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AD5726 Datasheet PDF : 20 Pages
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Data Sheet
AD5726
SPECIFICATIONS
AVDD = +5 V ± 5%, AVSS = 0 V or −5 V ± 5%, VREFP = +2.5 V, VREFN = 0 V or −2.5 V, RLOAD = 2 kΩ. All specifications TMIN to TMAX, unless
otherwise noted.1
Table 1.
Parameter
ACCURACY
Resolution
Relative Accuracy (INL)
Differential Nonlinearity (DNL)
Linearity Matching
Zero-Scale Error
Full-Scale Error
Zero-Scale Error
Full-Scale Error
Zero-Scale Temperature Coefficient3
Full-Scale Temperature Coefficient3
REFERENCE INPUT
VREFP
Reference Input Range 4
Input Current
VREFN
Reference Input Range4
Input Current
Large Signal Bandwidth3
OUTPUT CHARACTERISTICS3
Output Current
DIGITAL INPUTS
Input High Voltage, VIH
Input Low Voltage, VIL
Input Current3
Input Capacitance3
POWER SUPPLY CHARACTERISTICS
Power Supply Sensitivity3
AIDD
AISS
Power Dissipation
Value
12
±1
±1
±1
±1
±6
±6
±12
±12
±10
±10
VREFN + 2.5
AVDD − 2.5
±0.75
AVSS
0V
VREFP − 2.5
−1.0
160
±1.25
2.4
0.8
10
5
0.002
1.5
1.5
30
Unit
Bits
LSB max
LSB max
LSB max
LSB typ
LSB max
LSB max
LSB max
LSB max
ppm FSR/°C typ
ppm FSR/°C typ
V min
V max
mA max
V min
V min
V max
mA max
kHz typ
mA max
V min
V max
µA max
pF typ
%/% max
mA/channel max
mA/channel max
mW max
Test Conditions/Comments
Y grade, AVSS = −5 V, outputs unloaded
Y grade, AVSS = 0 V2
Guaranteed monotonic
AVSS = −5 V
AVSS = −5 V
AVSS = 0 V2
AVSS = 0 V2
AVSS = −5 V
AVSS = −5 V
Typically 0.25 mA
AVSS = 0 V
Typically −0.6 mA, AVSS = −5 V
−3 dB, VREFP = 0 V to 10 V p-p
AVSS = −5 V
Typically 0.0004%/%
Outputs unloaded, typically 0.75 mA, VIL = DGND, VIH = 5 V
Outputs unloaded, typically 0.75 mA, VIL = DGND, VIH = 5 V
Outputs unloaded, typically 15 mW, AVSS = 0 V
1 All supplies can be varied ±5% and operation is guaranteed. Device is tested with AVDD = 4.75 V.
2 For single-supply operation (VREFN = 0 V, AVSS = 0 V), due to internal offset errors, INL and DNL are measured beginning at Code 0x005.
3 Guaranteed by design and characterization, not production tested.
4 Operation is guaranteed over this reference range, but linearity is neither tested nor guaranteed.
Rev. C | Page 3 of 20

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