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AD5694R 数据表(PDF) 3 Page - Analog Devices

部件名 AD5694R
功能描述  Quad, 16-/12-Bit nanoDAC with I2C Interface
Download  24 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

AD5694R 数据表(HTML) 3 Page - Analog Devices

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Data Sheet
AD5696/AD5694
Rev. A | Page 3 of 24
SPECIFICATIONS
VDD = 2.7 V to 5.5 V; VREF = 2.5 V; 1.8 V ≤ VLOGIC ≤ 5.5 V; RL = 2 kΩ; CL = 200 pF; all specifications TMIN to TMAX, unless otherwise noted.
Table 2.
A Grade
B Grade
Parameter
Min
Typ
Max
Min
Typ
Max
Unit
Test Conditions/Comments1
STATIC PERFORMANCE2
AD5696
Resolution
16
16
Bits
Relative Accuracy
±2
±8
±1
±2
LSB
Gain = 2
±2
±8
±1
±3
LSB
Gain = 1
Differential Nonlinearity
±1
±1
LSB
Guaranteed monotonic by
design
AD5694
Resolution
12
12
Bits
Relative Accuracy
±0.12
±2
±0.12
±1
LSB
Differential Nonlinearity
±1
±1
LSB
Guaranteed monotonic by
design
Zero-Code Error
0.4
4
0.4
1.5
mV
All 0s loaded to DAC register
Offset Error
+0.1
±4
+0.1
±1.5
mV
Full-Scale Error
+0.01
±0.2
+0.01
±0.1
% of FSR
All 1s loaded to DAC register
Gain Error
±0.02
±0.2
±0.02
±0.1
% of FSR
Total Unadjusted Error
±0.01
±0.25
±0.01
±0.1
% of FSR
Gain = 2
±0.25
±0.2
% of FSR
Gain = 1
Offset Error Drift3
±1
±1
µV/°C
Gain Temperature
Coefficient3
±1
±1
ppm
Of FSR/°C
DC Power Supply Rejection
Ratio3
0.15
0.15
mV/V
DAC code = midscale; VDD =
5 V ± 10%
DC Crosstalk3
±2
±2
µV
Due to single channel, full-
scale output change
±3
±3
µV/mA
Due to load current change
±2
±2
µV
Due to power-down (per
channel)
OUTPUT CHARACTERISTICS3
Output Voltage Range
0
VREF
0
VREF
V
Gain = 1
0
2 × VREF
0
2 × VREF
V
Gain = 2 (see Figure 20)
Capacitive Load Stability
2
2
nF
RL = ∞
10
10
nF
RL = 1 kΩ
Resistive Load4
1
1
kΩ
Load Regulation
DAC code = midscale
80
80
µV/mA
5 V ± 10%; −30 mA ≤ IOUT
+30 mA
80
80
µV/mA
3 V ± 10%; −20 mA ≤ IOUT
+20 mA
Short-Circuit Current5
40
40
mA
Load Impedance at Rails6
25
25
See Figure 20
Power-Up Time
2.5
2.5
µs
Coming out of power-down
mode; VDD = 5 V
REFERENCE INPUT
Reference Current
90
90
µA
VREF = VDD = 5.5 V, gain = 1
180
180
µA
VREF = VDD = 5.5 V, gain = 2
Reference Input Range
1
VDD
1
VDD
V
Gain = 1
1
VDD/2
1
VDD/2
V
Gain = 2
Reference Input Impedance
16
16
kΩ
Gain = 2
32
32
kΩ
Gain = 1


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