AD673

NOT RECOMMENDED FOR NEW DESIGNS

8-bit Successive Approximation, ADC

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Overview

  • Operates on +5 V and –12 V to –15 V Supplies
  • MIL-STD-883 Compliant Version Available
  • Complete 8-Bit A/D Converter with Reference, Clock and Comparator
  • No Missing Codes Over Temperature
  • 30 ms Maximum Conversion Time
  • Full 8- or 16-Bit Microprocessor Bus Interface
  • Unipolar and Bipolar Inputs

The AD673 is a complete 8-bit successive approximation analog-to-digital converter consisting of a DAC, voltage reference, clock, comparator, successive approximation register (SAR) and 3-state output buffers-all fabricated on a single chip. No external components are required to perform a full ac-curacy 8-bit conversion in 20 µs.

The AD673 incorporates advanced integrated circuit design and processing technologies. The successive approximation function is implemented with I2L (integrated injection logic). Laser trimming of the high stability SiCr thin-film resistor ladder network insures high accuracy, which is maintained with a temperature compensated sub-surface Zener reference.

Operating on supplies of +5 V and −12 V to −15 V, the AD673 will accept analog inputs of 0 V to +10 V or −5 V to +5 V. The trailing edge of a positive pulse on the CONVERT line initiates the 20 µs conversion cycle. DATA READY indicates completion of the conversion.

The AD673 is available in two versions. The AD673J as specified over the 0°C to +70°C temperature range and the AD673S guarantees ±1/2 LSB relative accuracy and no missing codes from −55°C to +125°C.

Two package configurations are offered. All versions are also offered in a 20-pin hermetically sealed ceramic DIP. The AD673J is also available in a 20-pin plastic DIP.

AD673
8-bit Successive Approximation, ADC
AD673 Functional Block Diagram
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