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AM28F256-150JCB

产品描述256 Kilobit (32 K x 8-Bit) CMOS 12.0 Volt, Bulk Erase Flash Memory
产品类别存储    存储   
文件大小254KB,共35页
制造商AMD(超微)
官网地址http://www.amd.com
下载文档 详细参数 全文预览

AM28F256-150JCB概述

256 Kilobit (32 K x 8-Bit) CMOS 12.0 Volt, Bulk Erase Flash Memory

AM28F256-150JCB规格参数

参数名称属性值
是否无铅含铅
是否Rohs认证不符合
厂商名称AMD(超微)
零件包装代码QFJ
包装说明QCCJ, LDCC32,.5X.6
针数32
Reach Compliance Codeunknow
ECCN代码EAR99
最长访问时间150 ns
其他特性BULK ERASE
命令用户界面YES
数据轮询NO
耐久性10000 Write/Erase Cycles
JESD-30 代码R-PQCC-J32
JESD-609代码e0
长度13.97 mm
内存密度262144 bi
内存集成电路类型FLASH
内存宽度8
功能数量1
端子数量32
字数32768 words
字数代码32000
工作模式ASYNCHRONOUS
最高工作温度70 °C
最低工作温度
组织32KX8
封装主体材料PLASTIC/EPOXY
封装代码QCCJ
封装等效代码LDCC32,.5X.6
封装形状RECTANGULAR
封装形式CHIP CARRIER
并行/串行PARALLEL
峰值回流温度(摄氏度)NOT SPECIFIED
电源5 V
编程电压12 V
认证状态Not Qualified
座面最大高度3.556 mm
最大待机电流0.0001 A
最大压摆率0.03 mA
最大供电电压 (Vsup)5.5 V
最小供电电压 (Vsup)4.5 V
标称供电电压 (Vsup)5 V
表面贴装YES
技术CMOS
温度等级COMMERCIAL
端子面层Tin/Lead (Sn/Pb)
端子形式J BEND
端子节距1.27 mm
端子位置QUAD
处于峰值回流温度下的最长时间NOT SPECIFIED
切换位NO
类型NOR TYPE
宽度11.43 mm

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FINAL
Am28F256
256 Kilobit (32 K x 8-Bit)
CMOS 12.0 Volt, Bulk Erase Flash Memory
DISTINCTIVE CHARACTERISTICS
s
High performance
— 70 ns maximum access time
s
CMOS Low power consumption
— 30 mA maximum active current
— 100 µA maximum standby current
— No data retention power consumption
s
Compatible with JEDEC-standard byte-wide
32-Pin EPROM pinouts
— 32-pin PDIP
— 32-pin PLCC
— 32-pin TSOP
s
10,000 write/erase cycles minimum
s
Write and erase voltage 12.0 V
±5%
s
Latch-up protected to 100 mA
from –1 V to V
CC
+1 V
s
Flasherase Electrical Bulk Chip-Erase
— One second typical chip-erase
s
Flashrite Programming
— 10 µs typical byte-program
— 0.5 second typical chip program
s
Command register architecture for
microprocessor/microcontroller compatible
write interface
s
On-chip address and data latches
s
Advanced CMOS flash memory technology
— Low cost single transistor memory cell
s
Automatic write/erase pulse stop timer
GENERAL DESCRIPTION
The Am28F256 is a 256 K Flash memory organized as
32 Kbytes of 8 bits each. AMD’s Flash memories offer
the most cost-effective and reliable read/write non-
volatile random access memory. The Am28F256 is
packaged in 32-pin PDIP PLCC, and TSOP versions. It
,
is designed to be reprogrammed and erased in-system
or in standard EPROM programmers. The Am28F256
is erased when shipped from the factory.
The standard Am28F256 offers access times as fast as
70 ns, allowing operation of high-speed microproces-
sors without wait states. To eliminate bus contention,
the Am28F256 has separate chip enable (CE
#
) and
output enable (OE
#
) controls.
AMD’s Flash memories augment EPROM functionality
with in-circuit electrical erasure and programming. The
Am28F256 uses a command register to manage this
functionality, while maintaining a standard JEDEC
Flash Standard 32-pin pinout. The command register
allows for 100% TTL level control inputs and fixed
power supply levels during erase and programming.
AMD’s Flash technology reliably stores memor y
contents even after 10,000 erase and program cycles.
Publication#
11560
Rev:
G
Amendment/+2
Issue Date:
January 1998
The AMD cell is designed to optimize the erase and
programming mechanisms. In addition, the combina-
tion of advanced tunnel oxide processing and low
internal electric fields for erase and programming
operations produces reliable cycling. The Am28F256
uses a 12.0V
±
5% V
PP
high voltage input to perform
the Flasherase and Flashrite algorithms.
The highest degree of latch-up protection is achieved
with AMD’s proprietar y non-epi process. Latch-up
protection is provided for stresses up to 100 milliamps
on address and data pins from –1 V to V
CC
+1 V.
The Am28F256 is byte programmable using 10 µs
programming pulses in accordance with AMD’s
Flashrite programming algorithm. The typical room
temperature programming time of the Am28F256 is a
half a second. The entire chip is bulk erased using
10 ms erase pulses according to AMD’s Flasherase
alrogithm. Typical erasure at room temperature is
accomplished in less than one second. The windowed
package and the 15-20 minutes required for EPROM
erasure using ultra-violet light are eliminated.
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