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EDI7P512FLG0602I15

Description
Flash Card, 512KX8, 150ns, PC CARD-68
Categorystorage    storage   
File Size120KB,12 Pages
ManufacturerMicrosemi
Websitehttps://www.microsemi.com
Download Datasheet Parametric View All

EDI7P512FLG0602I15 Overview

Flash Card, 512KX8, 150ns, PC CARD-68

EDI7P512FLG0602I15 Parametric

Parameter NameAttribute value
package instructionPC CARD-68
Reach Compliance Codeunknown
Maximum access time150 ns
JESD-30 codeX-XXMA-X68
memory density4194304 bit
Memory IC TypeFLASH CARD
memory width8
Number of functions1
Number of terminals68
word count524288 words
character code512000
Operating modeASYNCHRONOUS
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
organize512KX8
Package body materialUNSPECIFIED
Package shapeUNSPECIFIED
Package formMICROELECTRONIC ASSEMBLY
Parallel/SerialPARALLEL
Programming voltage12 V
Certification statusNot Qualified
Maximum supply voltage (Vsup)5.25 V
Minimum supply voltage (Vsup)4.75 V
Nominal supply voltage (Vsup)5 V
surface mountNO
technologyCMOS
Temperature levelINDUSTRIAL
Terminal formUNSPECIFIED
Terminal locationUNSPECIFIED
typeNOR TYPE
PCMCIA Flash Memory Card
FLG Series
PCMCIA Flash Memory Card
General Description
256KILOBYTE through 5 MEGABYTE (Intel based)
Features
WEDC’s FLG Series Flash memory cards offer low/medium
density linear Flash solid state storage solutions for code and
data storage, high performance disk emulation and execute in
place (XIP) applications in mobile PC and dedicated
(embedded) equipment.
FLG series cards conform to PCMCIA international standard.
The card’s control logic provides the system interface and
controls the internal Flash memories. Card can be
read/written in byte-wide or word-wide mode which allows
for flexible integration into various systems. Combined with
file management software, such as Flash Translation Layer
(FTL), FLG Flash cards provide removable high-performance
disk emulation.
The FLG series cards contain separate 2kB EEPROM
memory for Card Information Structure (CIS) which can be
used for easy identification of card characteristics.
The WEDC FLG series is based on Intel 28F010 or 28F020
Flash memories.
Note: Standard options include attribute memory. Cards
without attribute memory are available. Cards are also
available with or without a hardware write protect switch.
Low cost Low/Medium Density Linear Flash
Card
Supports 5V systems with 12V VPP.
•Based
on Intel CMOS Components
•Fast
Read Performance
- 150ns Maximum Access Time
x8/ x16 Data Interface
Quick-Pulse Programming Algorithm
- typical 10µs Byte-Program
100,000 Erase/Program Cycles
PC Card Standard Type I Form Factor
Architecture Overview
WEDC’s FLG series is designed to support from 2 to 20, 1Mb or 2MB components, providing a wide range of
density options. Cards are based on the 28F010 (1Mb) or 28F020 components which work with 5V Vcc / 12V Vpp
applications. Device codes are
B4h
and
BDh
respectively. Systems should be able to recognize both codes. Cards
utilizing the1Mb components provide densities ranging from 256KB to 2.5MB in 256KB increments, cards utilizing
2Mb components provide densities ranging from 512KB to 5MB in 512KB increments.
In support of the PC Card 95 standard for word wide access devices are paired. Write, read and erase operations
can be performed as either a word or byte wide operation . By multiplexing A0, CE1# and CE2#, 8-bit hosts can
access all data on data lines DQ0 - DQ7. The FLG series cards conform to the PC Card Standard (PCMCIA) and
JEIDA, providing electrical and physical compatibility. The PC Card form factor offers an industry standard pinout
and mechanical outline, allowing density upgrades without system design changes.
WEDC’s standard cards are shipped with WEDC’s Logo. Cards are also available with blank housings (no Logo).
The blank housings are available in both a recessed (for label) and flat housing. Please contact WEDC sales
representative for further information on Custom artwork.
PC Card Products
White Electronic Designs
One Research Drive Westborough, MA 01581
http://www.whiteedc.com
July 28, 1999
1
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