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AD5660CRM-3 데이터시트(PDF) 5 Page - Analog Devices

부품명 AD5660CRM-3
상세설명  3 V/5 V, 16-Bit nanoDACTM D/A with 10 ppm/째C Max On-Chip Reference in SOT-23
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제조업체  AD [Analog Devices]
홈페이지  http://www.analog.com
Logo AD - Analog Devices

AD5660CRM-3 데이터시트(HTML) 5 Page - Analog Devices

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Preliminary Technical Data
AD5660
Rev. PrJ | Page 5 of 20
AD5660X-1–SPECIFICATIONS
VDD = 2.7 V to 3.6 V; RL = 2 kΩ to GND; CL = 200 pF to GND; all specifications TMIN to TMAX, unless otherwise noted.
Table 2.
Parameter
A Grade
B Grade
C Grade
Unit
B Version 4
Conditions/Comments
STATIC PERFORMANCE5
Resolution
16
16
16
Bits min
Relative Accuracy
±32
±16
±16
LSB max
See Figure 4
Differential Nonlinearity
±1
±1
±1
LSB max
Guaranteed Monotonic by Design. See Figure 5.
Zero Code Error
+5
+5
+5
mV typ
All Zeroes Loaded to DAC
+20
+20
+20
mV max
Register. See Figure 8.
Full-Scale Error
−0.15
−0.15
−0.15
% of FSR typ
All Ones Loaded to DAC
−1.25
−1.25
−1.25
% of FSR max
Register. See Figure 8.
Gain Error
±1.25
±1.25
±1.25
% of FSR max
Zero Code Error Drift6
±20
±20
±20
µV/°C typ
Gain Temperature Coefficient
±5
±5
±5
ppm typ
of FSR/°C
OUTPUT CHARACTERISTICS3
Output Voltage Range
0
0
V min
VDD
VDD
VDD
V max
Output Voltage Settling Time
8
8
8
µs typ
To ±0.003% FSR 0200H to FD00H
10
10
10
µs max
RL = 2 kΩ; 0 pF<CL<200 pF See Figure 18.
12
12
12
µs typ
RL = 2 kΩ; CL = 500 pF
Slew Rate
1
1
1
V/µs typ
Capacitive Load Stability
470
470
470
pF typ
RL = ∞
1000
1000
1000
pF typ
RL = 2 kΩ
Output Noise
100
100
100
nV/√Hz typ
DAC code = 8400H, 10 kHz
Output Drift
tbd
ppm/°C typ
Digital-to-Analog Glitch Impulse
10
10
10
nV-s typ
1 LSB Change Around Major Carry. See Figure 21.
Digital Feedthrough
0.5
0.5
0.5
nV-s typ
DC Output Impedance
1
1
1
Ω typ
Short Circuit Current
20
20
20
mA typ
VDD = 3 V
Power-Up Time
10
10
10
ms typ
Coming Out of Power-Down Mode. VDD = 3 V
REFERENCE OUTPUT
Output Voltage
AD5660x-1
1.248
1.248
1.248
V min
1.252
1.252
1.252
V max
Reference TC
±25
±25
±10
ppm/°C max
LOGIC INPUTS3
Input Current
±1
±1
±1
µA max
VINL, Input Low Voltage
0.8
0.8
0.8
V max
VDD = 3 V
VINH, Input High Voltage
2
2
2
V min
VDD = 3 V
Pin Capacitance
3
3
3
pF max


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