AD664
NOT RECOMMENDED FOR NEW DESIGNSMonolithic 12-Bit Quad DAC
- Part Models
- 25
- 1ku List Price
- Starting From $109.77
Part Details
- Four Complete Voltage Output DACs
- Date Register Readbck Feature
- "Reset to Zero" Override
- Multiplying Operation
- Double-Buffered Latched
- Surface-mount (LCC, PLCC, and JLCC) and PDIP and SBDIP packages
- MIL-STD-883 Compliant Versions Available
The AD664 is four complete 12-bit, voltage-output digital-toanalog converters (DACs) on one monolithic IC chip. Each DAC has a double buffered input latch structure and a data readback function. All DAC read and write operations occur through a single microprocessor-compatible input/output (I/O) port.
The I/O port accommodates 4-bit, 8-bit, or 12-bit parallel words allowing simple interfacing with a wide variety of microprocessors. A reset to zero control pin is provided to allow a user to simultaneously reset all DAC outputs to zero, regardless of the contents of the input latch. Any one or all of the DACs may be placed in a transparent mode allowing immediate response by the outputs to the input data.
The analog portion of the AD664 consists of four DAC cells, four output amplifiers, a control amplifier, and switches. Each DAC cell is an inverting R-2R type. The output current from each DAC is switched to the on-board application resistors and output amplifier. The output range of each DAC cell is programmed through the digital input/output port and may be set to unipolar (UNI) or bipolar (BIP) range, with a gain of one or two times the reference voltage. All DACs are operated from a single external reference
The functional completeness of the AD664 results from the combination of the Analog Devices, Inc., BiMOS II process, laser trimmed thin film resistors, and double level metal interconnects.
Documentation
Data Sheet 2
Technical Articles 1
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 |
---|---|---|---|
5962-8871901MXA | 28-Lead CerDIP (Side Brazed) | ||
5962-8871902MXA | 28-Lead CerDIP (Side Brazed) | ||
5962-8871903MYA | 44-Lead LCC | ||
AD664AD-BIP | 28-Lead CerDIP (Side Brazed) | ||
AD664AD-UNI | 28-Lead CerDIP (Side Brazed) | ||
AD664AJ | 44-Lead JLCC | ||
AD664BD-BIP | 28-Lead CerDIP (Side Brazed) | ||
AD664BD-UNI | 28-Lead CerDIP (Side Brazed) | ||
AD664BE | 44-Lead LCC | ||
AD664BJ | 44-Lead JLCC | ||
AD664CHIPS | CHIPS OR DIE | ||
AD664JNZ-BIP | 28-Lead PDIP | ||
AD664JNZ-UNI | 28-Lead PDIP | ||
AD664JPZ | 44-Lead PLCC | ||
AD664KNZ-BIP | 28-Lead PDIP | ||
AD664KNZ-UNI | 28-Lead PDIP | ||
AD664KPZ | 44-Lead PLCC | ||
AD664SD-BIP | 28-Lead CerDIP (Side Brazed) | ||
AD664SD-BIP/883B | 28-Lead CerDIP (Side Brazed) | ||
AD664SD-UNI/883B | 28-Lead CerDIP (Side Brazed) | ||
AD664TD-BIP | 28-Lead CerDIP (Side Brazed) | ||
AD664TD-BIP/883B | 28-Lead CerDIP (Side Brazed) | ||
AD664TD-UNI/883B | 28-Lead CerDIP (Side Brazed) | ||
AD664TE/883B | 44-Lead LCC | ||
AD664TJ/883B | 44-Lead JLCC |
Part Models | Product Lifecycle | PCN |
---|---|---|
Apr 9, 2018 - 16_0026 Qualify TeamQuest Technology, Inc. for Burn-in and Life Test of Military and Aerospace Devices |
||
5962-8871901MXA | ||
5962-8871902MXA | ||
5962-8871903MYA | ||
AD664SD-BIP/883B | ||
AD664SD-UNI/883B | ||
AD664TD-BIP/883B | ||
AD664TD-UNI/883B | ||
AD664TE/883B | ||
AD664TJ/883B | ||
Jun 6, 2012 - 12_0066 Add capacity for Burn In of Hermetic, 883 & QMLQ/Class B devices at TSSI Cavite |
||
5962-8871901MXA | ||
5962-8871902MXA | ||
5962-8871903MYA | ||
AD664AJ | PRODUCTION | |
AD664SD-BIP/883B | ||
AD664SD-UNI/883B | ||
AD664TD-BIP/883B | ||
AD664TD-UNI/883B | ||
AD664TE/883B | ||
AD664TJ/883B | ||
Nov 9, 2011 - 11_0050 Transfer of ADI Hermetics Assembly location from Paranaque, Manila to General Trias, Cavite Philippines |
||
5962-8871901MXA | ||
5962-8871902MXA | ||
5962-8871903MYA | ||
AD664AD-BIP | PRODUCTION | |
AD664AD-UNI | PRODUCTION | |
AD664AJ | PRODUCTION | |
AD664BD-BIP | PRODUCTION | |
AD664BD-UNI | PRODUCTION | |
AD664BE | ||
AD664BJ | PRODUCTION | |
AD664SD-BIP | PRODUCTION | |
AD664SD-BIP/883B | ||
AD664SD-UNI/883B | ||
AD664TD-BIP | PRODUCTION | |
AD664TD-BIP/883B | ||
AD664TD-UNI/883B | ||
AD664TE/883B | ||
AD664TJ/883B | ||
Nov 9, 2011 - 11_0182 Test Site Transfer from Analog Devices Philippines Inc in Paranaque to Analog Devices General Trias in Cavite, Philippines |
||
5962-8871901MXA | ||
5962-8871902MXA | ||
5962-8871903MYA | ||
AD664AD-BIP | PRODUCTION | |
AD664AD-UNI | PRODUCTION | |
AD664AJ | PRODUCTION | |
AD664BD-BIP | PRODUCTION | |
AD664BD-UNI | PRODUCTION | |
AD664BE | ||
AD664BJ | PRODUCTION | |
AD664JNZ-BIP | PRODUCTION | |
AD664JNZ-UNI | PRODUCTION | |
AD664KNZ-BIP | PRODUCTION | |
AD664KNZ-UNI | PRODUCTION | |
AD664SD-BIP | PRODUCTION | |
AD664SD-BIP/883B | ||
AD664SD-UNI/883B | ||
AD664TD-BIP | PRODUCTION | |
AD664TD-BIP/883B | ||
AD664TD-UNI/883B | ||
AD664TE/883B | ||
AD664TJ/883B | ||
Mar 7, 2019 - 19_0046 Assembly Transfer of 18,20,24,28 Lead PDIP to Cirtek |
||
AD664JNZ-BIP | PRODUCTION | |
AD664JNZ-UNI | PRODUCTION | |
AD664KNZ-BIP | PRODUCTION | |
AD664KNZ-UNI | 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 |
||
AD664JNZ-BIP | PRODUCTION | |
AD664JNZ-UNI | PRODUCTION | |
AD664KNZ-BIP | PRODUCTION | |
AD664KNZ-UNI | PRODUCTION |
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