DAC8408 Analog Devices, DAC8408 Datasheet

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DAC8408

Manufacturer Part Number
DAC8408
Description
Quad 8-Bit Multiplying CMOS D/A Converter with Memory
Manufacturer
Analog Devices
Datasheet

Specifications of DAC8408

Resolution (bits)
8bit
Dac Update Rate
5.26MSPS
Dac Settling Time
190ns
Max Pos Supply (v)
+5.5V
Single-supply
Yes
Dac Type
Current Out
Dac Input Format
Par

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a
REV. A
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
GENERAL DESCRIPTION
The DAC8408 is a monolithic quad 8-bit multiplying digital-to-
analog CMOS converter. Each DAC has its own reference input,
feedback resistor, and onboard data latches that feature
read/write capability. The readback function serves as memory
for those systems requiring self-diagnostics.
FEATURES
Four DACs in a 28 Pin, 0.6 Inch Wide DIP or 28-Pin JEDEC
Guaranteed Monotonic
DACs Matched to Within 1%
Microprocessor Compatible
Read/Write Capability (with Memory)
TTL/CMOS Compatible
Four-Quadrant Multiplication
Single-Supply Operation (+5 V)
Low Power Consumption
Latch-Up Resistant
Available In Die Form
APPLICATIONS
Voltage Set Points in Automatic Test Equipment
Systems Requiring Data Access for Self-Diagnostics
Industrial Automation
Multichannel Microprocessor-Controlled Systems
Digitally Controlled Op Amp Offset Adjustment
Process Control
Digital Attenuators
1/4 LSB Endpoint Linearity
Plastic Chip Carrier
DAC8408
FUNCTIONAL BLOCK DIAGRAM
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 617/329-4700
A common 8-bit TTL/CMOS compatible input port is used to
load data into any of the four DAC data-latches. Control lines
DS1, DS2, and A/B determine which DAC will accept data.
Data loading is similar to that of a RAMs write cycle. Data can
be read back onto the same data bus with control line R/W. The
DAC8408 is bus compatible with most 8-bit microprocessors,
including the 6800, 8080, 8085, and Z80. The DAC8408 oper-
ates on a single +5 volt supply and dissipates less than 20 mW.
The DAC8408 is manufactured using PMI’s highly stable,
thin-film resistors on an advanced oxide-isolated, silicon-gate,
CMOS process. PMI’s improved latch-up resistant design elimi-
nates the need for external protective Schottky diodes.
Model
DAC8408GP
DAC8408ET
DAC8408AT
DAC8408FT
DAC8408BT
DAC8408FPC
DAC8408FS
DAC8408FP
NOTES
1
2
3
Burn-in is available on commercial and industrial temperature range parts
in cerdip, plastic DIP, and TO-can packages. For outline information see Pack-
age Information section.
For devices processed in total compliance to MIL-STD-883, add /883 after
part number. Consult factory for 883 data sheet.
For availability and burn-in information on SO and PLCC packages, contact
your local sales office.
Quad 8-Bit Multiplying CMOS
D/A Converter with Memory
2
2
3
INL
1/4 LSB
1/4 LSB
1/4 LSB
1/2 LSB
1/2 LSB
1/2 LSB
1/2 LSB
1/2 LSB
ORDERING INFORMATION
DNL
1/2 LSB 0 C to +70 C
1/2 LSB –40 C to +85 C
1/2 LSB –55 C to +125 C
1 LSB
1 LSB
1 LSB
1 LSB
1 LSB
Temperature
Range
–40 C to +85 C
–55 C to +125 C
–40 C to +85 C
–40 C to +85 C
–40 C to +85 C
DAC8408
Fax: 617/326-8703
1
Package
Description
28-Pin Plastic DIP
28-Pin Cerdip
28-Pin Cerdip
28-Pin Cerdip
28-Pin Cerdip
28-Contact PLCC
28-Pin SOL
28-Pin Plastic DIP

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DAC8408 Summary of contents

Page 1

... R/W. The DAC8408 is bus compatible with most 8-bit microprocessors, including the 6800, 8080, 8085, and Z80. The DAC8408 oper- ates on a single +5 volt supply and dissipates less than 20 mW. The DAC8408 is manufactured using PMI’s highly stable, thin-film resistors on an advanced oxide-isolated, silicon-gate, CMOS process. PMI’ ...

Page 2

... Data Strobe to Output Valid Time Output Data to Deselect Time Read Select to Strobe Set-Up Time Read Select to Strobe Hold Time Specifications subject to change without notice REF = +70 C apply for DAC8408GP, unless otherwise noted. A Symbol Conditions N INL DAC8408A/E/G DAC8408B/F/H DNL DAC8408A/E/G DAC8408B/F/H ...

Page 3

... Industrial Grade (ET, FT, FP, FPC, FS) . – +85 C Military Grade (AT, BT – +125 C Junction Temperature . . . . . . . . . . . . . . . . . . . . . . . . . +150 C Storage Temperature . . . . . . . . . . . . . . . . . . . – +150 C Lead Temperature (Soldering, 10 sec +300 C REV REF = +70 C apply for DAC8408GP, unless otherwise noted. A Symbol Conditions + ...

Page 4

... ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000 V readily accumulate on the human body and test equipment and can discharge without detection. Although the DAC8408 features proprietary ESD protection circuitry, permanent damage may occur on devices subjected to high energy electrostatic discharges. Therefore, proper ESD precautions are recommended to avoid performance degradation or loss of functionality ...

Page 5

... C, unless otherwise noted. Specifications apply for REF OUT A Conditions Using Internal R FB Using Internal R FB All Digital Inputs = +10 V 1.6 mA Sink 400 A Source –5– DAC8408 DAC8408G Limits Units 8 Bits min 1/2 LSB max 1 LSB max 1 LSB max 0.001 %FSR/% max 30 nA max ...

Page 6

... DAC8408 TYPICAL PERFORMANCE CHARACTERISTICS Supply Current vs. Logic Level Analog Crosstalk vs. Frequency –6– REV. A ...

Page 7

... DAC from another DAC’s reference input expressed as a ratio in dB. DIGITAL CROSSTALK Digital Crosstalk is the glitch energy transferred to the output of one DAC due to a change in digital input code from other DACs specified in nVs OUT 1A OUT 1B –7– DAC8408 to REF ...

Page 8

... DAC8408 CIRCUIT INFORMATION The DAC8408 combines four identical 8-bit CMOS DACs onto a single monolithic chip. Each DAC has its own reference input, feedback resistor, and on-board data latches. It also fea- tures a read/write function that serves as an accessible memory location for digital-input data words. The DAC’s three-state readback drivers place the data word back onto the data bus ...

Page 9

... Low State High State Irrelevant –9– DAC8408 Mode DAC WRITE A WRITE B WRITE C WRITE D READ A READ B READ C READ D WRITE A&C WRITE B&D HOLD A/B/C/D HOLD A/B/C/D HOLD A/B/C/D ...

Page 10

... DAC8408 BASIC APPLICATIONS Some basic circuit configurations are shown in Figures 6 and 7. Figure 6 shows the DAC8408 connected in a unipolar configu- ration (2-Quadrant Multiplication), and Table I shows the Code Table. Resistors R1, R2, R3, and R4 are used to trim full scale output. Full-scale output voltage = V REF or V (255/256) with all digital inputs high ...

Page 11

... REF REF 128 REV. A APPLICATION HINTS General Ground Management transient voltages be- tween AGND and DGND can appear as noise at the DAC8408’s analog output. Note that in Figures 5 and OUT 2C 127 ommended that AGND and DGND be tied together at the +V REF 128 DAC8408 socket ...

Page 12

... DAC8408 SINGLE SUPPLY, VOLTAGE OUTPUT OPERATION The DAC8408 can be connected with a single +5 V supply to produce DAC output voltages from +1 Figure 8, the DAC8408 R-2R ladder is inverted from its normal connec- tion. A +1.500 V reference is connected to the current output pin and the normal V ...

Page 13

... Hz (1 LSB ON full-scale frequency of 19.132 kHz (all bits ON), which is equivalent to a 256 to 1 dynamic range. The frequency is determined by f the ladder resistance ( the DAC8408, and C is 1000 pF. IN Note that from device to device, the resistance R some tuning may be necessary. ...

Page 14

... DAC8408 Figure 11. A Digitally Programmable, Low-Distortion Sinewave Oscillator A LOW-DISTORTION, PROGRAMMABLE SINEWAVE OSCILLATOR By varying the previous state-variable filter topology slightly, one can obtain a very low distortion sinewave oscillator with programmable frequency feature as shown in Figure 11. Again, DAC B and DAC D in tandem control the oscillating frequency based on the relationship f = 1/2 RC ...

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