AD5542CR Analog Devices Inc, AD5542CR Datasheet - Page 3

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AD5542CR

Manufacturer Part Number
AD5542CR
Description
D/A Converter (D-A) IC
Manufacturer
Analog Devices Inc
Datasheets

Specifications of AD5542CR

Mounting Type
Surface Mount
Interface Type
Serial
No. Of Bits
16 Bit
Package / Case
14-SOIC
Rohs Status
RoHS non-compliant
Design Resources
High Precision Digital-to-Analog Conversion Using the 16-Bit AD5542/1, ADR421, and AD8628 (CN0079) How to Achieve High Precision Voltage Level Setting Using AD5541A/42A (CN0169)
Settling Time
1µs
Number Of Bits
16
Data Interface
Serial
Number Of Converters
1
Voltage Supply Source
Single Supply
Power Dissipation (max)
6.05mW
Operating Temperature
-40°C ~ 85°C
Number Of Channels
1
Resolution
16b
Single Supply Voltage (typ)
5V
Dual Supply Voltage (typ)
Not RequiredV
Architecture
R-2R
Power Supply Requirement
Single
Output Type
Voltage
Integral Nonlinearity Error
±1LSB
Single Supply Voltage (min)
4.5V
Single Supply Voltage (max)
5.5V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
14
Package Type
SOIC N
Lead Free Status / Rohs Status
Not Compliant

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SPECIFICATIONS
V
Table 1.
Parameter
STATIC PERFORMANCE
OUTPUT CHARACTERISTICS
DAC REFERENCE INPUT
LOGIC INPUTS
REFERENCE
DD
Resolution
Relative Accuracy (INL)
Differential Nonlinearity (DNL)
Gain Error
Gain Error Temperature Coefficient
Unipolar Zero Code Error
Unipolar Zero Code Temperature Coefficient
AD5542
Output Voltage Range
Output Voltage Settling Time
Slew Rate
Digital-to-Analog Glitch Impulse
Digital Feedthrough
DAC Output Impedance
Power Supply Rejection Ratio
Reference Input Range
Reference Input Resistance
Input Current
Input Low Voltage, V
Input High Voltage, V
Input Capacitance
Hysteresis Voltage
Reference −3 dB Bandwidth
Reference Feedthrough
Signal-to-Noise Ratio
Reference Input Capacitance
= 2.7 V to 5.5 V, 2.5 V ≤ V
Bipolar Resistor Matching
Bipolar Zero Offset Error
Bipolar Zero Temperature Coefficient
Bipolar Zero Code Offset Error
Bipolar Gain Error
Bipolar Gain Temperature Coefficient
1
3
3
3
INL
INH
2
REF
≤ V
DD
, AGND = DGND = 0 V. All specifications T
Min
16
0
−V
2.0
9
7.5
2.4
REF
Typ
±0.5
±0.5
±0.5
±0.5
+0.5
±0.1
±0.3
±0.05
1.000
±0.0015
±1
±0.2
±1
+1
±0.1
1
17
1.1
0.2
6.25
0.15
2.2
1
92
26
26
Rev. C | Page 3 of 20
±5
±5
±1
Max
±1.0
±2.0
±4.0
±1.0
±1.5
±2
±3
±0.7
±1.5
±0.0076
±6
±5
±6
±6
V
V
±1.0
V
0.8
10
REF
REF
DD
− 1 LSB
− 1 LSB
A
= T
Unit
Bits
LSB
LSB
LSB
LSB
LSB
LSB
LSB
ppm/°C
LSB
LSB
ppm/°C
Ω/Ω
%
LSB
LSB
ppm/°C
LSB
LSB
LSB
LSB
ppm/°C
V
V
μs
V/μs
nV-sec
nV-sec
LSB
V
μA
V
V
pF
V
MHz
mV p-p
dB
pF
pF
MIN
to T
MAX
Test Conditions
B, J grades
A grade
T
T
R
T
T
T
Unipolar operation
AD5542 bipolar operation
To 1/2 LSB of FS, C
C
Tolerance typically 20%
ΔV
Unipolar operation
AD5542, bipolar operation
All 1s loaded
Code 0xFFFF
L, C grades
Guaranteed monotonic
J grade
Ratio error
1 LSB change around the major carry
All 1s loaded to DAC, V
All 0s loaded, V
Code 0x0000
, unless otherwise noted.
A
A
FB
A
A
A
L
= 25°C
= 25°C
= 25°C
= 25°C
= 25°C
= 10 pF, measured from 0% to 63%
/R
DD
INV
± 10%
, typically R
AD5541/AD5542
REF
= 1 V p-p at 100 kHz
FB
L
= 10 pF
= R
REF
INV
= 2.5 V
= 28 kΩ

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