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HI-8282A - ARINC 429 SERIAL TRANSMITTER AND DUAL RECEIVER

Download the HI-8282A datasheet PDF. This datasheet also covers the HI8 variant, as both devices belong to the same arinc 429 serial transmitter and dual receiver family and are provided as variant models within a single manufacturer datasheet.

Description

The HI-8282A is a silicon gate CMOS device for interfacing the ARINC 429 serial data bus to a 16-bit parallel data bus.

Two receivers and an independent transmitter are provided.

Features

  • ! ARINC specification 429 compatible ! 16-Bit parallel data bus ! Direct receiver interface to ARINC bus ! Timing control 10 times the data rate ! Selectable data clocks ! Receiver error rejection per ARINC specification 429 ! Automatic transmitter data timing ! Self test mode ! Parity functions ! Low power, single 5 volt supply ! Industrial & full military temperature ranges.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (HI8-282.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number HI-8282A
Manufacturer Holt Integrated Circuits
File Size 688.61 KB
Description ARINC 429 SERIAL TRANSMITTER AND DUAL RECEIVER
Datasheet download datasheet HI-8282A Datasheet

Full PDF Text Transcription

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HI-8282A May 2001 ARINC 429 SERIAL TRANSMITTER AND DUAL RECEIVER FEATURES ! ARINC specification 429 compatible ! 16-Bit parallel data bus ! Direct receiver interface to ARINC bus ! Timing control 10 times the data rate ! Selectable data clocks ! Receiver error rejection per ARINC specification 429 ! Automatic transmitter data timing ! Self test mode ! Parity functions ! Low power, single 5 volt supply ! Industrial & full military temperature ranges GENERAL DESCRIPTION The HI-8282A is a silicon gate CMOS device for interfacing the ARINC 429 serial data bus to a 16-bit parallel data bus. Two receivers and an independent transmitter are provided. The receiver input circuitry and logic are designed to meet the ARINC 429 specifications for loading, level detection, timing, and protocol.
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