EEWORLDEEWORLDEEWORLD

Part Number

Search

71V3577YS85PFG

Description
IC sram 4.5mbit 8.5ns 100tqfp
Categorystorage   
File Size237KB,22 Pages
ManufacturerIDT (Integrated Device Technology, Inc.)
Websitehttp://www.idt.com/
Environmental Compliance  
Download Datasheet View All

71V3577YS85PFG Overview

IC sram 4.5mbit 8.5ns 100tqfp

128K X 36, 256K X 18
3.3V Synchronous SRAMs
3.3V I/O, Flow-Through Outputs
Burst Counter, Single Cycle Deselect
Features
IDT71V3577YS
IDT71V3579YS
IDT71V3577YSA
IDT71V3579YSA
Description
The IDT71V3577/79 are high-speed SRAMs organized as
128K x 36/256K x 18. The IDT71V3577/79 SRAMs contain write, data,
address and control registers. There are no registers in the data output
path (flow-through architecture). Internal logic allows the SRAM to gen-
erate a self-timed write based upon a decision which can be left until the
end of the write cycle.
The burst mode feature offers the highest level of performance to the
system designer, as the IDT71V3577/79 can provide four cycles of data
for a single address presented to the SRAM. An internal burst address
counter accepts the first cycle address from the processor, initiating the
access sequence. The first cycle of output data will flow-through from the
array after a clock-to-data access time delay from the rising clock edge of
the same cycle. If burst mode operation is selected (ADV=LOW), the
subsequent three cycles of output data will be available to the user on the
next three rising clock edges. The order of these three addresses are
defined by the internal burst counter and the
LBO
input pin.
The IDT71V3577/79 SRAMs utilize IDT’s latest high-performance
CMOS process and are packaged in a JEDEC standard 14mm x 20mm
100-pin thin plastic quad flatpack (TQFP) as well as a 119 ball grid array
(BGA) and a 165 fine pitch ball grid array (fBGA).
Input
Input
Input
Input
Input
Input
Input
Input
Input
Input
Input
Input
Input
Input
Input
Output
Input
Input
I/O
Supply
Supply
Synchronous
Synchronous
Synchronous
Asynchronous
Synchronous
Synchronous
Synchronous
N/A
Synchronous
Synchronous
Synchronous
DC
Synchronous
Synchronous
N/A
Synchronous
Asynchronous
Asynchronous
Synchronous
N/A
N/A
128K x 36, 256K x 18 memory configurations
Supports fast access times:
Commercial:
– 6.5ns up to 133MHz clock frequency
– 7.5ns up to 117MHz clock frequency
Commercial and Industrial:
– 8.0ns up to 100MHz clock frequency
– 8.5ns up to 87MHz clock frequency
LBO
input selects interleaved or linear burst mode
Self-timed write cycle with global write control (GW), byte write
enable (BWE), and byte writes (BWx)
3.3V core power supply
Power down controlled by ZZ input
3.3V I/O
Optional - Boundary Scan JTAG Interface (IEEE 1149.1
compliant)
Packaged in a JEDEC Standard 100-pin plastic thin quad
flatpack (TQFP), 119 ball grid array (BGA) and 165 fine pitch ball
grid array
Pin Description Summary
A
0
-A
17
CE
CS
0
,
CS
1
OE
GW
BWE
BW
1
,
BW
2
,
BW
3
,
BW
4
(1)
CLK
ADV
ADSC
ADSP
LBO
TMS
TDI
TCK
TDO
TRST
ZZ
I/O
0
-I/O
31
, I/O
P1
-I/O
P4
V
DD
, V
DDQ
V
SS
Address Inputs
Chip Enable
Chip Selects
Output Enable
Global Write Enable
Byte Write Enable
Individual Byte Write Selects
Clock
Burst Address Advance
Address Status (Cache Controller)
Address Status (Processor)
Linear / Interleaved Burst Order
Test Mode Select
Test Data Input
Test Clock
Test Data Output
JTAG Reset (Optional)
Sleep Mode
Data Input / Output
Core Power, I/O Power
Ground
NOTE:
1.
BW
3
and
BW
4
are not applicable for the IDT71V3579.
1
©2006 Integrated Device Technology, Inc.
APRIL 2006
DSC-6450/0A
6450tbl 01
wince5.0 or 6.0?
We are going to develop embedded home digital products based on WINCE. This product is our first product based on a general operating system, with network and multimedia functions. I would like to kno...
gf0608 Embedded System
What are the transmission distances of Zigbee and Bluetooth respectively? Which one has unlimited distance transmission?
I have seen some articles before that both zigbee and Bluetooth are 2.4G, but the transmission distance of zigbee is about 70 meters, traditional Bluetooth is about 10m, and the manual of Bluetooth 4....
蓝先生 RF/Wirelessly
I have a SOCKET problem on EVC. I'm a newbie and I want to ask the masters for advice. I don't have any points and I don't know why. I just beg you to help me! ! ! ! ! ! ! ! ! ! !
What I'm working on is the PC client of a video server. Now the company needs to switch to the WINCE platform on PDA. For EVC, I only have a simple understanding of the key part, which is the process ...
bjanzhuang Embedded System
SC9012 infrared remote control transmitter circuit
This article will introduce the infrared remote control transmitter circuit in detail. Another chip SC9012 can be said to be a classic infrared remote control transmitter circuit....
rain Analog electronics
Audio encoding and decoding method under wince
I want to realize real-time audio acquisition and encoding and decoding under WINCE5.0. I use the s3c2440 development board. I can realize G.729 encoding and decoding on PC, but the vc library evc can...
huangxu20051207 Embedded System
How should SA improve itself?
I am a trainee SA and I don’t understand many things. My boss in the company is very busy and doesn’t have much time to take care of me. I would like to ask all the experienced seniors how an SA shoul...
雨后的梧桐 Talking about work

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1964  2671  2648  1365  2041  40  54  28  42  35 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号