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28F004SC

Intel

BYTE-WIDE SmartVoltage FlashFile MEMORY


28F004SC
28F004SC

PDF File 28F004SC PDF File


Description
E n n n PRELIMINARY BYTE-WIDE SmartVoltage FlashFile™ MEMORY FAMILY 4, 8, AND 16 MBIT 28F004SC, 28F008SC, 28F016SC Includes Commercial and Extended Temperature Specifications SmartVoltage Technology  2.
7 V (Read-Only), 3.
3 V or 5 V V CC and 3.
3 V, 5 V, or 12 V V PP High-Performance  4, 8 Mbit 85 ns Read Access Time  16 Mbit 95 ns Read Access Time Enhanced Data Protection Features  Absolute Protection with V PP = GND  Flexible Block Locking  Block Write Lockout during Power Transitions Enhanced Automated Suspend Options  Program Suspend to Read  Block Erase Suspend to Program  Block Erase Suspend to Read Industry-Standard Packaging  40-Lead TSOP, 44-Lead PSOP and 40 Bump µBGA* CSP n n n n n n High-Density 64-Kbyte Symmetrical Erase Block Architecture  4 Mbit: Eight Blocks  8 Mbit: Sixteen Blocks  16 Mbit: Thirty-Two Blocks Extended Cycling Capability  100,000 Block Erase Cycles Low Power Management  Deep Power-Down Mode  Automatic Power Savings Mode Decreases ICC in Static Mode Automated Program and Block Erase  Command User Interface  Status Register SRAM-Compatible Write Interface ETOX™ V Nonvolatile Flash Technology n n Intel’s byte-wide SmartVoltage FlashFile™ memory family renders a variety of density offerings in the same package.
The 4-, 8-, and 16-Mbit byte-wide FlashFile memories provide high-density, low-cost, nonvolatile, read/write storage solutions for a wide range of applications.
Their symmetrically-blocked architecture, flexible voltage, and extended cycling provide highly flexible components suitable for resident flash arrays, SIMMs, and memory cards.
Enhanced suspend capabilities provide an ideal solution for code or data storage applications.
For secure code storage applications, such as networking, where code is either directly executed out of flash or downloaded to DRAM, the 4-, 8-, and 16-Mbit FlashFile memories offer three levels of protection: absolute protection with VPP at GND, selective hardware block locking, or f...



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