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CAT24WC64 - (CAT24WC32 / CAT24WC64) 32K / 64K-Bit IC Serial CMOS EEPROM

This page provides the datasheet information for the CAT24WC64, a member of the CAT24WC32 (CAT24WC32 / CAT24WC64) 32K / 64K-Bit IC Serial CMOS EEPROM family.

Datasheet Summary

Description

The CAT24WC32/64 is a 32K/64K-bit Serial CMOS E2PROM internally organized as 4096/8192 words of 8 bits each.

Catalyst’s advanced CMOS technology substantially reduces device power requirements.

Features

  • h S 400 KHza I C bus compatible.
  • t volt read and write operation a5.5 1.8 to Cascadable . D for up to eight devices w page write buffer w 32/64-Byte Self-timed write cycle with auto-clear 2 I I I I I 2 I Commercial, industrial, automotive and extended automotive temperature ranges I Write protection.
  • Entire array protected when WP at VIH I 1,000,000 Program/erase cycles I 100 year data retention I 8-pin DIP or 8-pin SOIC I Schmitt trigger inputs for noise protection.

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Datasheet preview – CAT24WC64

Datasheet Details

Part number CAT24WC64
Manufacturer Catalyst Semiconductor
File Size 486.56 KB
Description (CAT24WC32 / CAT24WC64) 32K / 64K-Bit IC Serial CMOS EEPROM
Datasheet download datasheet CAT24WC64 Datasheet
Additional preview pages of the CAT24WC64 datasheet.
Other Datasheets by Catalyst Semiconductor

Full PDF Text Transcription

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w m o c . CAT24WC32/64 U 4 32K/64K-Bit I C Serial t CMOS EEPROM e e FEATURES h S 400 KHza I C bus compatible* t volt read and write operation a5.5 1.8 to Cascadable .D for up to eight devices w page write buffer w 32/64-Byte Self-timed write cycle with auto-clear 2 I I I I I 2 I Commercial, industrial, automotive and extended automotive temperature ranges I Write protection – Entire array protected when WP at VIH I 1,000,000 Program/erase cycles I 100 year data retention I 8-pin DIP or 8-pin SOIC I Schmitt trigger inputs for noise protection DESCRIPTION The CAT24WC32/64 is a 32K/64K-bit Serial CMOS E2PROM internally organized as 4096/8192 words of 8 bits each. Catalyst’s advanced CMOS technology substantially reduces device power requirements.
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