DAC8420
PRODUCTIONQuad 12-Bit Serial Voltage Output DAC
- Part Models
- 7
- 1ku List Price
- Starting From $57.62
Part Details
- Guaranteed monotonic over temperature
- Excellent matching between DACs
- Unipolar or bipolar operation
- Buffered voltage outputs
- High speed serial digital interface
- Reset-to-zero scale or midscale
- Wide supply range, +5 V only to ±15 V
- Low power consumption (35 mW maximum)
- Available in 16-Lead PDIP, SOIC, and CERDIP packages
The DAC8420 is a quad, 12-bit voltage-output DAC with serial digital interface in a 16-lead package. Utilizing BiCMOS technology, this monolithic device features unusually high circuit density and low power consumption. The simple, easy-to-use serial digital input and fully buffered analog voltage outputs require no external components to achieve a specified performance.
The 3-wire serial digital input is easily interfaced to micro-processors running at 10 MHz with minimal additional circuitry. Each DAC is addressed individually by a 16-bit serial word consisting of a 12-bit data word and an address header. The user-programmable reset control CLR forces all four DAC outputs to either zero scale or midscale, asynchronously overriding the current DAC register values. The output voltage range, determined by the inputs VREFHI and VREFLO, is set by the user for positive or negative unipolar or bipolar signal swings within the supplies, allowing considerable design flexibility.
The DAC8420 is available in 16-lead PDIP, SOIC, and CERDIP packages. Operation is specified with supplies ranging from +5 V only to ±15 V, with references of +2.5 V to ±10 V, respectively. Power dissipation when operating from ±15 V supplies is less than 255 mW (maximum) and only 35 mW (maximum) with a +5 V supply.
Applications
- Software controlled calibration
- Servo controls
- Process control and automation
- ATE
Documentation
Solutions Bulletin & Brochure 1
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal. View our quality and reliability program and certifications for more information.
Part Model | Pin/Package Drawing | Documentation | CAD Symbols, Footprints, and 3D Models |
---|---|---|---|
DAC8420EPZ | 16-Lead PDIP | ||
DAC8420ESZ | 16-Lead SOIC Wide | ||
DAC8420ESZ-REEL | 16-Lead SOIC Wide | ||
DAC8420FPZ | 16-Lead PDIP | ||
DAC8420FQ | 16-Lead CerDIP | ||
DAC8420FSZ | 16-Lead SOIC Wide | ||
DAC8420FSZ-REEL | 16-Lead SOIC Wide |
Part Models | Product Lifecycle | PCN |
---|---|---|
Mar 29, 2021 - 21_0033 Assembly Site Transfer for 14/16L 300_MIL PDIP to Cirtek |
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DAC8420EPZ | PRODUCTION | |
Aug 19, 2009 - 07_0024 Package Material Changes for SOT23, MiniSO, MQFP, PDIP, PLCC, SOIC (narrow and wide body), SSOP, TSSOP and TSSOP exposed pad |
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DAC8420EPZ | PRODUCTION | |
DAC8420FPZ | PRODUCTION | |
Jun 13, 2008 - 08_0065 Transfer of product to 8" H6 Thin Film Process with Polyimide Layer |
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DAC8420EPZ | PRODUCTION | |
DAC8420ESZ | PRODUCTION | |
DAC8420ESZ-REEL | PRODUCTION | |
DAC8420FPZ | PRODUCTION | |
DAC8420FQ | ||
DAC8420FSZ | PRODUCTION | |
Aug 4, 2010 - 10_0117 Halogen Free Material Change for SOIC_W Products at Carsem |
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DAC8420ESZ | PRODUCTION | |
DAC8420ESZ-REEL | PRODUCTION | |
DAC8420FSZ | PRODUCTION | |
Nov 7, 2012 - 12_0199 Qualification of New Conductive Silver-Filled Glass Die Attach Adhesive for Cerdip and Ceramic Flatpack (Cerpack) Packages. |
||
DAC8420FQ | ||
Nov 9, 2011 - 11_0050 Transfer of ADI Hermetics Assembly location from Paranaque, Manila to General Trias, Cavite Philippines |
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DAC8420FQ | ||
Nov 9, 2011 - 11_0182 Test Site Transfer from Analog Devices Philippines Inc in Paranaque to Analog Devices General Trias in Cavite, Philippines |
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DAC8420FQ |
This is the most up-to-date revision of the Data Sheet.
Hardware Ecosystem
Tools & Simulations
Precision DAC Error Budget Tool
The Precision DAC Error Budget Tool is a web application that calculates the DC Accuracy of precision DAC signal chains. It shows how the static errors accumulate throughout your signal chain to quickly evaluate the design tradeoffs. Calculations include the DC errors introduced by Voltage References, Operation Amplifiers and Precision DACs.
Open Tool