29F1610A
29F1610A is 16M-BIT [2M x8/1M x16] CMOS SINGLE VOLTAGE FLASH EEPROM manufactured by Macronix.
FEATURES
- -
- -
- -
5V ± 10% write and erase JEDEC-standard EEPROM mands Endurance:100,000 cycles Fast access time: 90/100/120ns Sector erase architecture
- 16 equal sectors of 128k bytes each
- Sector erase time: 1.3 s typical Auto Erase and Auto Program Algorithms
- Automatically erases any one of the sectors or the whole chip with Erase Suspend capability
- Automatically programs and verifies data at specified addresses Status Register feature for detection of program or erase cycle pletion Low VCC write inhibit is equal to or less than 3.2V Software and hardware data protection
- Page program operation
- Internal address and data latches for 128 bytes/64 words per page
- Page programming time: 0.9ms typical
- Byte programming time: 7us in average Low power dissipation
- 30m A typical active current
- 1u A typical standby current CMOS and TTL patible inputs and outputs Sector Protection
- Hardware method that can protect any bination of sectors from write or erase operations. Deep Power-Down Input
- 1u A ICC typical Industry standard surface mount packaging
- 48 lead TSOP, TYPE I
- 44 lead SOP
- -
- -
- -
- -
GENERAL DESCRIPTION
The MX29F1610A is a 16-mega bit Flash memory organized as either 1M wordx16 or 2M bytex8. The MX29F1610A includes 16-128KB(131,072) blocks or 1664KW(65,536) blocks. MXIC's Flash memories offer the most cost-effective and reliable read/write non-volatile random access memory. The MX29F1610A is packaged in 48-pin TSOP or 44-pin SOP. For 48-pin TSOP, CE2 and RY/BY are extra pins pared with 44-pin SOP package. This is to optimize the products (such as solid-state disk drives or flash memory cards) control pin budget. All the above three pins(CE2,RY/BY and PWD) plus one extra VCC pin are not provided in 44-pin SOP. It is designed to be reprogrammed and erased in-system or in-standard EPROM programmers. The standard MX29F1610A offers access times as fast as 90ns,allowing operation of high-speed microprocessors without wait. To eliminate bus...