ADDAC80 Analog Devices, ADDAC80 Datasheet - Page 7

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ADDAC80

Manufacturer Part Number
ADDAC80
Description
Complete Low Cost Hybrid 12-Bit D/A Converter 0 to +70 C
Manufacturer
Analog Devices
Datasheet

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Model
ADDAC80N-CBI-V
ADDAC80D-CBI-V
ADDAC85D-CBI-V
ADDAC87D-CBI-V
ADDAC80-CBI-V
ADDAC80-CBI-I
ADDAC80-CCD-V
ADDAC80-CCD-I
ADDAC80Z-CBI-V
ADDAC80Z-CBI-I
ADDAC80Z-CCD-V
ADDAC80Z-CCD-I
ADDAC85C-CBI-V
ADDAC85C-CBI-I
ADDAC85-CBI-V
ADDAC85-CBI-I
ADDAC85LD-CBI-V
ADDAC85LD-CBI-I
ADDAC85MIL-CBI-V
ADDAC85MIL-CBI-I
ADDAC85C-CCD-V
ADDAC85C-CCD-I
ADDAC85-CCD-V
ADDAC85-CCD-I
ADDAC85MILCBII8
ADDAC85MILCBIV8
ADDAC87-CBI-V
ADDAC87-CBI-I
ADDAC87-CBII883
ADDAC87-CBIV883
NOTES
1
2
3
PRODUCT OFFERING
Analog Devices has developed a number of technologies to
support products within the data acquisition market. In serving
the market new products are implemented with the technology
best suited to the application. The DAC80 series of products was
first implemented in hybrid form and now it is available in a single
monolithic chip. We will provide both the hybrid and mono-
lithic versions of the family so that in existing designs changes to
documentation or product qualification will not have to be done.
Specifications and ordering information for both versions are
delineated in this data sheet.
DIGITAL INPUT CODES
The ADDAC80 Series accepts complementary digital input
code in binary (CBI) format. The CBI model may be connected
by the user for anyone of three complementary codes: CSB,
COB or CTC.
For outline information see Package Information section.
Z-Suffix devices guarantee performance of 0 V to +5 V and ± 5 V spans with minimum supply voltages of ± 11.4 V.
These models have been discontinued. This is for historical information only.
3
3
3
3
3
2
3
2
3
2
3
2
3
3
3
3
3
Input
Code
Binary
Binary
Binary
Binary
Binary
Binary
Binary Coded Decimal
Binary Coded Decimal
Binary
Binary
Binary Coded Decimal
Binary Coded Decimal
Binary
Binary
Binary
Binary
Binary
Binary
Binary
Binary
Binary Coded Decimal
Binary Coded Decimal
Binary Coded Decimal
Binary Coded Decimal
Binary
Binary
Binary
Binary
Binary
Binary
Output
Mode
Voltage
Voltage
Voltage
Voltage
Voltage
Current
Voltage
Current
Voltage
Current
Voltage
Current
Voltage
Current
Voltage
Current
Current
Voltage
Voltage
Current
Current
Voltage
Voltage
Current
Voltage
Current
Voltage
Current
Voltage
Current
ORDERING GUIDE
Technology
Monolithic
Monolithic
Monolithic
Monolithic
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Hybrid
Digital Input
MSB
000000000000
011111111111
100000000000
111111111111
Invert the MSB of the COB code with an external inverter to obtain CTC code.
LSB
ADDAC80/ADDAC85/ADDAC87
Temperature
Range
0°C to 70°C
0°C to 70°C
–25°C to +85°C
–55°Cto +125°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
0°C to 70°C
–25°C to +85°C
–25°C to +85°C
–25°C to +85°C
–25°C to +85°C
–55°C to +125°C
–55°C to +125°C
0°C to 70°C
0°C to 70°C
–25°C to +85°C
–25°C to +85°C
–55°C to +125°C
–55°C to +125°C
–55°C to +125°C
–55°C to +125°C
–55°C to +125°C
–55°C to +125°C
Table I. Digital Input Codes
CSB
Compl.
Straight
Binary
+Full-Scale
+1/2 Full-Scale
Midscale
Zero
Linearity
Error
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/4 LSB
± 1/4 LSB
± 1/2 LSB
± 1/2 LSB
± 1/4 LSB
± 1/4 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/4 LSB
± 1/4 LSB
± 1/4 LSB
± 1/4 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
± 1/2 LSB
+Full-Scale
Analog Input
COB
Compl.
Offset
Binary
Zero
–1 LSB
–Full-Scale
Package
Option
N-24A
D-24
D-24
D-24
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
DH-24A
–1 LSB
CTC
Compl.
Two’s
Compl.
–Full-Scale
+Full-Scale
Zero
1

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