ADDAC80NZ-CBI-V Analog Devices Inc, ADDAC80NZ-CBI-V Datasheet - Page 5

IC DAC 12-BIT BINARY MONO 24-DIP

ADDAC80NZ-CBI-V

Manufacturer Part Number
ADDAC80NZ-CBI-V
Description
IC DAC 12-BIT BINARY MONO 24-DIP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADDAC80NZ-CBI-V

Data Interface
Parallel
Settling Time
2µs
Number Of Bits
12
Number Of Converters
1
Voltage Supply Source
Dual ±
Power Dissipation (max)
300mW
Operating Temperature
0°C ~ 70°C
Mounting Type
Through Hole
Package / Case
24-DIP (0.600", 15.24mm)
Resolution (bits)
12bit
Input Channel Type
Parallel
Supply Current
20mA
Digital Ic Case Style
DIP
No. Of Pins
24
Operating Temperature Range
0°C To +70°C
Msl
MSL 3 - 168 Hours
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Model
TECHNOLOGY
DIGITAL INPUT
TRANSFER CHARACTERISTICS
CONVERSION SPEED
ANALOG OUTPUT
POWER SUPPLY SENSITIVITY
Binary–CBI
BCD–CCD
Logic Levels (TTL Compatible)
ACCURACY
DRIFT (T
Voltage Model (V)
For LSB Change
Current Model (I)
Voltage Models
Current Models
Ranges–Unipolar
Ranges–Bipolar
Output Impedance
Compliance
Internal Reference Voltage (V
±15 V ± 10%, 5 V supply when applicable
V
V
I
I
Linearity Error @ 25°C
Differential Linearity Error @ 25°C
Gain Error
Offset Error
Temperature Range for Guaranteed
Monotonicity
Total Bipolar Drift, max (includes gain,
offset, and linearity drifts)
Total Error (T
Gain
Unipolar Offset
Bipolar Offset
Settling Time to ± 0.01% of FSR
for FSR change (2 kΩ 500 pF load)
Slew Rate
Settling Time to ± 0.01% of FSR
for FSR Change
Ranges–CBI
Ranges–CCD
Output Current
Output Impedance (dc)
Short Circuit Duration
Bipolar
Unipolar
Output Impedance
IH
IL
IH
IL
CBI
CCD
T
CBI
CCD
T
Unipolar
Bipolar
Including Internal Reference
Excluding Internal Reference
with 10 kΩ Feedback
with 5 kΩ Feedback
10 Ω to 100 Ω Load
for 1 kΩ
Max External Current
Tempco of Drift
(V
(V
(Logic “0”)
(Logic “1”)
A
A
IL
IH
@ T
@ T
= 0.8 V)
= 5.5 V)
MIN
MIN
MIN
2
2
to T
to T
to T
MIN
5
MAX
MAX
MAX
to T
)
MAX
6
)
R
4
)
Min
–25
± 5
Indefinite to Common
6.17
2.0
0
ADDAC85LD
Typ
Hybrid
250
–100
± 1/2
± 0.1
± 0.05
± 1
5
3
1.5
20
300
1
± 2.5, ± 5,
± 10, +5,
+10
0.05
–2.0
± 1.0
3.2
6.6
–2.5, +10
6.3
1.5
± 10
± 0.002
Max
12
5.5
0.8
± 1/2
± 1/2
± 1
+85
± 10
± 5
6.43
2.5
± 20
Min
2.0
0
–55
± 5
Indefinite to Common
6.17
ADDAC85MIL
Typ
Hybrid
± 1/2
± 0.1
± 0.05
± 2
5
3
1
± 2.5, ± 5,
± 10, +5,
+10
0.05
–2.0
± 1.0
3.2
6.6
–2.5, +10
6.3
± 10
± 0.002
250
–100
1.5
20
300
1.5
Max
12
5.5
0.8
± 1/2
± 3/4
± 1
+125
± 20
± 10
6.43
2.5
± 20
ADDAC80/ADDAC85/ADDAC87
Min
2.0
0
–55
± 5
Indefinite to Common
2.5
5.0
6.17
ADDAC87
Typ
Hybrid
250
–100
± 1/4
± 1/2
± 0.1
± 0.05
± 15
± 0.13
± 0.12
± 10
± 5
± 1
± 5
5
3
1.5
20
300
1
± 2.5, ± 5,
± 10, +5,
+10
0.05
–2.0
± 1.0
3.2
6.6
–1.5, +10
6.3
1.5
± 5
± 0.002 ± 0.003
Max
12
5.5
0.8
± 1/2
± 3/4
± 1
± 0.2
± 0.1
+125
± 30
± 0.30
± 0.24
± 25
± 10
± 3
± 10
4.1
8.2
6.43
2.5
± 10
Unit
Bits
Digits
V
V
µA
µA
%FSR
%FSR
°C
ppm of FSR/°C
% of FSR
% of FSR
ppm of FSR/°C
ppm of FSR/°C
ppm of FSR/°C
ppm of FSR/°C
µs
µs
µs
V/µs
ns
µs
V
V
mA
mA
mA
kΩ
kΩ
V
V
mA
ppm of V
% of FSR/%V
LSB
LSB
LSB
LSB
LSB
LSB
1
3
3
R
/°C
S

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