DAC0800 - 8-Bit D/A Converter
Datasheet Packaging Samples & Pricing Reliability Knowledge Base

Features
Fast settling output current: 100 ns
Full scale error: ±1 LSB
Nonlinearity over temperature: ±0.1%
Full scale current drift: ±10 ppm/°C
High output compliance: -10V to +18V
Complementary current outputs
Interface directly with TTL, CMOS, PMOS and others
2 quadrant wide range multiplying capability
Wide power supply range: ±4.5V to ±18V
Low power consumption: 33 mW at ±5V
Low cost

General Description


The DAC0800 series are monolithic 8-bit high-speed current-output digital-to-analog converters (DAC) featuring typical settling times of 100 ns. More...


  Typical Application
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ParametersValues
Resolution 8 bits
Pin and Function Compatible Family None
Channels 1 Channels
Interface Type Parallel
Settling Time 100 ns
Reference Source External
Temperature Min -55 deg C
Temperature Max 125 deg C
OtherSupply Voltage ±5V to ±15V
Tsettling Conditions 1/2 LSB
Data Converter Type DAC


Typical Performance


click for larger image


  Also Recommended
DAC0802Upgrade
Block Diagram
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Datasheet
RoHS Compliance Information Size in KbytesDate Click link below to Download
DAC0800/DAC0802 8-Bit Digital-to-Analog Converters 782
Kbytes
15-Sep-06 Download

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Package Availability, Models, Samples & Pricing
Part NumberPackageFactory Lead TimeModelsSamples &
Electronic
Orders
Budgetary PricingStd
Pack
Size
Package
Marking
Format
TypePinsSpec.MSL
Rating
Peak
Reflow
RoHS
Report
CAD
Symbols
WeeksQtyQty$US each
DAC0800LCMSOIC NARROW16NOPB
STD
1
1
260
235
RoHS N/A Full productionN/A
Samples
Buy Now
1K+$0.53rail
of
48
NSUZXYTTE#
DAC0800LCM
8 weeks1000
DAC0800LCMXSOIC NARROW16NOPB
STD
1
1
260
235
RoHS N/A Full productionN/A
 
Buy Now
1K+$0.53reel
of
2500
NSUZXYTTE#
DAC0800LCM
12 weeks5000
DAC0800LCNMDIP16NOPB
STD
1
1
NA
NA
RoHS N/A Full productionN/A
 
Buy Now
1K+$0.64rail
of
25
NSUZXYYTTE#
DAC0800LCN
DAC-08EP
6 weeks3000

General Description


The DAC0800 series are monolithic 8-bit high-speed current-output digital-to-analog converters (DAC) featuring typical settling times of 100 ns. When used as a multiplying DAC, monotonic performance over a 40 to 1 reference current range is possible. The DAC0800 series also features high compliance complementary current outputs to allow differential output voltages of 20 Vp-p with simple resistor loads. The reference-to-full-scale current matching of better than ±1 LSB eliminates the need for full-scale trims in most applications, while the nonlinearities of better than ±0.1% over temperature minimizes system error accumulations.

The noise immune inputs will accept a variety of logic levels. The performance and characteristics of the device are essentially unchanged over the ±4.5V to ±18V power supply range and power consumption at only 33 mW with ±5V supplies is independent of logic input levels.

The DAC0800, DAC0802, DAC0800C and DAC0802C are a direct replacement for the DAC-08, DAC-08A, DAC-08C, and DAC-08H, respectively. For single supply operation, refer to AN-1525.

Reliability Metrics


Part Number Process EFR Reject EFR Sample Size PPM LTA Rejects LTA Device Hours FITS MTTF (Hours)
DAC0800 MDCSLM04404600353250011002356520
DAC0800LCMSLM04404600353250011002356520
DAC0800LCMXSLM04404600353250011002356520
DAC0800LCNSLM04404600353250011002356520

Note: The Early Failure Rates (EFR) were calculated as point estimate PPM based on rejects and sample size for EFR. The Long Term Failure Rates were calculated at 60% confidence using the Arrhenius equation at 0.7eV activation energy and derating the assumed stress temperature of 150°C to an application temperature of 55°C.

For more information on Reliability Metrics, please click here.


Application Notes


TitleSize in Kbytes Date Click link below to Download
AN-1525: Application Note 1525 Single Supply Operation of the DAC0800 and DAC0802 465
Kbytes
15-Sep-06 Download
AN-1525 (Chinese): Application Note 1525 Single Supply Operation of the DAC0800 and DAC0802
257 Kbytes  
AN-597: Current Feedback Amplifiers 187
Kbytes
5-Aug-95 Download

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[Information as of 7-Nov-2009]