AM29F010A
AM29F010A is Uniform Sector Flash Memory manufactured by Advanced Micro Devices.
feature that disables/reenables program and erase operations in any bination of sectors
- Sector protection/unprotection can be implemented using standard PROM programming equipment s Embedded Algorithms
- Embedded Erase algorithm automatically pre-programs and erases the chip or any bination of designated sector
- Embedded Program algorithm automatically programs and verifies data at specified address s Erase Suspend/Resume
- Supports reading data from a sector not being erased s Minimum 100,000 program/erase cycles guaranteed s 20-year data retention at 125°C
- Reliable operation for the life of the system s Package options
- 32-pin PLCC
- 32-pin TSOP s patible with JEDEC standards
- Pinout and software patible with single-power-supply flash
- Superior inadvertent write protection s Data# Polling and Toggle Bits
- Provides a software method of detecting program or erase cycle pletion
This Data Sheet states AMD’s current technical specifications regarding the Products described herein. This Data Sheet may be revised by subsequent versions or modifications due to changes in technical specifications.
Publication# 22181 Rev: B Amendment/0 Issue Date: January 1999
GENERAL DESCRIPTION
The Am29F010A is a 1 Mbit, 5.0 Volt-only Flash memory organized as 131,072 bytes. The Am29F010A is offered in 32-pin PLCC and TSOP packages. The byte-wide data appears on DQ0-DQ7. The device is designed to be programmed in-system with the standard system 5.0 Volt VCC supply. A 12.0 volt VPP is not required for program or erase operations. The device can also be programmed or erased in standard EPROM programmers.
This device is manufactured using AMD’s 0.55 µm process technology, and offers all the features and benefits of the Am29F010, which was manufactured using 0.85 µm process technology. In addition, the Am29F010A offers the erase suspend/erase resume feature
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The standard device offers access times of 45, 55, 70, 90, and 120 ns, allowing high-speed microprocessors to operate...