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71024S25TYG8

产品描述SRAM 128Kx8 ASYNCHRONOUS 5.0V STATIC RAM
产品类别存储   
文件大小220KB,共8页
制造商IDT (Integrated Device Technology)
标准
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71024S25TYG8概述

SRAM 128Kx8 ASYNCHRONOUS 5.0V STATIC RAM

71024S25TYG8规格参数

参数名称属性值
Product AttributeAttribute Value
制造商
Manufacturer
IDT (Integrated Device Technology)
产品种类
Product Category
SRAM
RoHSDetails
Memory Size1 Mbit
Organization128 k x 8
Access Time25 ns
接口类型
Interface Type
Parallel
电源电压-最大
Supply Voltage - Max
5.5 V
电源电压-最小
Supply Voltage - Min
4.5 V
最小工作温度
Minimum Operating Temperature
0 C
最大工作温度
Maximum Operating Temperature
+ 70 C
安装风格
Mounting Style
SMD/SMT
封装 / 箱体
Package / Case
SOJ-32
系列
Packaging
Cut Tape
系列
Packaging
Reel
高度
Height
2.67 mm
长度
Length
21.95 mm
Memory TypeSDR
类型
Type
Asynchronous
宽度
Width
7.6 mm
Moisture SensitiveYes
工厂包装数量
Factory Pack Quantity
1000

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CMOS Static RAM
1 Meg (128K x 8-Bit)
Features
Description
IDT71024S
128K x 8 advanced high-speed CMOS static RAM
Commercial (0°C to +70°C), Industrial (–40°C to +85°C)
Equal access and cycle times
— Commercial and Industrial: 12/15/20ns
Two Chip Selects plus one Output Enable pin
Bidirectional inputs and outputs directly
TTL-compatible
Low power consumption via chip deselect
Available in 300 and 400 mil Plastic SOJ.
The IDT71024 is a 1,048,576-bit high-speed static RAM organized as
128K x 8. It is fabricated using high-performance, high-reliability CMOS
technology. This state-of-the-art technology, combined with innovative
circuit design techniques, provides a cost-effective solution for high-speed
memory needs.
The IDT71024 has an output enable pin which operates as fast
as 6ns, with address access times as fast as 12ns available. All
bidirectional inputs and outputs of the IDT71024 are TTL-compat-
ible, and operation is from a single 5V supply. Fully static asynchro-
nous circuitry is used; no clocks or refreshes are required for
operation.
The IDT71024 is packaged in 32-pin 300 mil Plastic SOJ and 32-
pin 400 mil Plastic SOJ.
Functional Block Diagram
FEBRUARY 2013
1
©2012 Integrated Device Technology, Inc.
DSC-2964/19

 
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