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AD587

Analog Devices

High Precision 10V Reference


AD587
AD587

PDF File AD587 PDF File


Description
FEATURES Laser trimmed to high accuracy 10.
000 V ± 5 mV (U grade) Trimmed temperature coefficient 5 ppm/°C maximum (U grade) Noise-reduction capability Low quiescent current: 4 mA maximum Output trim capability MIL-STD-883-compliant versions available GENERAL DESCRIPTION The AD587 represents a major advance in state-of-the-art monolithic voltage references.
Using a proprietary ionimplanted buried Zener diode and laser wafer trimming of high stability thin-film resistors, the AD587 provides outstanding performance at low cost.
The AD587 offers much higher performance than most other 10 V references.
Because the AD587 uses an industry-standard pinout, many systems can be upgraded instantly with the AD587.
The buried Zener approach to reference design provides lower noise and drift than band gap voltage references.
The AD587 offers a noise-reduction pin that can be used to further reduce the noise level generated by the buried Zener.
The AD587 is recommended for use as a reference for 8-bit, 10-bit, 12-bit, 14-bit, or 16-bit DACs that require an external precision reference.
The device is also ideal for successive approximation or integrating ADCs with up to 14 bits of accuracy.
In general, it offers better performance than standard on-chip references.
The AD587J and AD587K are specified for operation from 0°C to 70°C, and the AD587U is specified for operation from −55°C to +125°C.
The AD587JQ and AD587UQ models are available in 8-lead CERDIP.
Other models are available in an 8-lead SOIC package for surface-mount applications, or in an 8-lead PDIP.
High Precision 10 V Reference AD587 FUNCTIONAL BLOCK DIAGRAM +VIN NOISE REDUCTION 28 RS A1 6 VOUT RF RT 5 TRIM RI AD587 4 GND NOTE PIN 1, PIN 3, AND PIN 7 ARE INTERNAL TEST POINTS.
NO CONNECTIONS TO THESE POINTS.
Figure 1.
00530-001 PRODUCT HIGHLIGHTS 1.
Laser trimming of both initial accuracy and temperature coefficients.
This laser trimming results in very low errors over temperature without the use of external c...



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