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IS61NLP102436A-166TQLI-TR

产品描述sram 36m (2mx18) 166mhz sync sram 3.3v
产品类别半导体    其他集成电路(IC)   
文件大小169KB,共18页
制造商All Sensors
标准  
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IS61NLP102436A-166TQLI-TR概述

sram 36m (2mx18) 166mhz sync sram 3.3v

IS61NLP102436A-166TQLI-TR规格参数

参数名称属性值
ManufactureISSI
产品种类
Product Category
SRAM
RoHSYes
Memory Size36 Mbi
Access Time3.5 ns
电源电压-最大
Supply Voltage - Max
3.465 V
Supply Voltage - Mi3.135 V
Maximum Operating Curre450 mA
最大工作温度
Maximum Operating Temperature
+ 85 C
最小工作温度
Minimum Operating Temperature
- 40 C
安装风格
Mounting Style
SMD/SMT
封装 / 箱体
Package / Case
TQFP-100
系列
Packaging
Reel
Maximum Clock Frequency166 MHz
工厂包装数量
Factory Pack Quantity
800
类型
Type
Synchronous

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IS61NLP102436A/IS61NVP102436A
IS61NLP204818A/IS61NVP204818A
1Mb x 36 and 2Mb x 18
36Mb, PIPELINE 'NO WAIT' STATE BUS SRAM
FEATURES
• 100 percent bus utilization
• No wait cycles between Read and Write
• Internal self-timed write cycle
• Individual Byte Write Control
• Single R/W (Read/Write) control pin
• Clock controlled, registered address,
data and control
• Interleaved or linear burst sequence control using
MODE input
• Three chip enables for simple depth expansion
and address pipelining
• Power Down mode
• Common data inputs and data outputs
CKE
pin to enable clock and suspend operation
• JEDEC 100-pin TQFP package
• Power supply:
NVP: V
DD
2.5V (± 5%), V
DDQ
2.5V (± 5%)
NLP: V
DD
3.3V (± 5%), V
DDQ
3.3V/2.5V (± 5%)
• Industrial temperature available
• Lead-free available
FEBRUARY 2012
DESCRIPTION
The 36 Meg 'NLP/NVP' product family feature high-speed,
low-power synchronous static RAMs designed to provide
a burstable, high-performance, 'no wait' state, device for
networking and communications applications. They are
organized as 1M words by 36 bits and 2M words by 18 bits,
fabricated with
ISSI
's advanced CMOS technology.
Incorporating a 'no wait' state feature, wait cycles are
eliminated when the bus switches from read to write, or
write to read. This device integrates a 2-bit burst counter,
high-speed SRAM core, and high-drive capability outputs
into a single monolithic circuit.
All synchronous inputs pass through registers are controlled
by a positive-edge-triggered single clock input. Operations
may be suspended and all synchronous inputs ignored
when Clock Enable,
CKE
is HIGH. In this state the internal
device will hold their previous values.
All Read, Write and Deselect cycles are initiated by the
ADV input. When the ADV is HIGH the internal burst
counter is incremented. New external addresses can be
loaded when ADV is LOW.
Write cycles are internally self-timed and are initiated by
the rising edge of the clock inputs and when
WE
is LOW.
Separate byte enables allow individual bytes to be written.
A burst mode pin (MODE) defines the order of the burst
sequence. When tied HIGH, the interleaved burst sequence
is selected. When tied LOW, the linear burst sequence is
selected.
FAST ACCESS TIME
Symbol
t
KQ
t
KC
Parameter
Clock Access Time
Cycle Time
Frequency
-200
3.1
5
200
-166
3.5
6
166
Units
ns
ns
MHz
Copyright © 2012 Integrated Silicon Solution, Inc. All rights reserved. ISSI reserves the right to make changes to this specification and its products at any time without notice. ISSI assumes no liability
arising out of the application or use of any information, products or services described herein. Customers are advised to obtain the latest version of this device specification before relying on any
published information and before placing orders for products.
Integrated Silicon Solution, Inc. does not recommend the use of any of its products in life support applications where the failure or malfunction of the product can reasonably be expected to cause failure
of the life support system or to significantly affect its safety or effectiveness. Products are not authorized for use in such applications unless Integrated Silicon Solution, Inc. receives written assurance to
its satisfaction, that:
a.) the risk of injury or damage has been minimized;
b.) the user assume all such risks; and
c.) potential liability of Integrated Silicon Solution, Inc is adequately protected under the circumstances
Integrated Silicon Solution, Inc.
Rev. B
02/02/2012
1

 
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