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PDF N02L1618C1A Data sheet ( Hoja de datos )

Número de pieza N02L1618C1A
Descripción 2Mb Ultra-Low Power Asynchronous CMOS SRAM 128K x 16 bit
Fabricantes NanoAmp Solutions 
Logotipo NanoAmp Solutions Logotipo



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NanoAmp Solutions, Inc.
670 North McCarthy Blvd. Suite 220, Milpitas, CA 95035
ph: 408-935-7777, FAX: 408-935-7770
www.nanoamp.com
N02L1618C1A
AdvancewIwnwf.oDartamShaeett4iUo.cnom
2Mb Ultra-Low Power Asynchronous CMOS SRAM
128Kx16 bit
Overview
Features
The N02L1618C1A is an integrated memory
device containing a 2 Mbit Static Random Access
Memory organized as 131,072 words by 16 bits.
The device is designed and fabricated using
NanoAmp’s advanced CMOS technology to
provide both high-speed performance and ultra-low
power. The base design is the same as
NanoAmp’s N02L163WN1A, which is processed to
operate at higher voltages. The device operates
with a single chip enable (CE) control and output
enable (OE) to allow for easy memory expansion.
Byte controls (UB and LB) allow the upper and
lower bytes to be accessed independently. The
N02L1618C1A is optimal for various applications
where low-power is critical such as battery backup
and hand-held devices. The device can operate
over a very wide temperature range of -40oC to
+85oC and is available in JEDEC standard
packages compatible with other standard 128Kb x
16 SRAMs.
Product Family
• Single Wide Power Supply Range
1.65 to 2.2 Volts
• Very low standby current
0.5µA at 1.8V (Typical)
• Very low operating current
1.4mA at 1.8V and 1µs (Typical)
• Very low Page Mode operating current
0.5mA at 1.8V and 1µs (Typical)
• Simple memory control
Single Chip Enable (CE)
Byte control for independent byte operation
Output Enable (OE) for memory expansion
• Low voltage data retention
Vcc = 1.2V
• Very fast output enable access time
30ns OE access time
• Automatic power down to standby mode
• TTL compatible three-state output driver
• Compact space saving BGA package avail-
able
Part Number
Package Type
Operating
Temperature
Power
Supply
(Vcc)
N02L1618C1AB 48 - BGA
N02L1618C1AB2 Green 48-BGA
-40oC to +85oC 1.65V - 2.2V
N02L1618C1AT2 Green 44-TSOP2
N02L1618C1AT 44 - TSOP2
Speed
70/85ns @
1.65V
Standby
Operating
Current (ISB), Current (Icc),
Max Max
10 µA
3 mA @ 1MHz
(DOC# 14-02-012 REV B ECN# 01-1274)
The specifications of this device are subject to change without notice. For latest documentation see http://www.nanoamp.com.
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N02L1618C1A pdf
NanoAmp Solutions, Inc.
Power Savings with Page Mode Operation (WE = VIH)
N02L1618C1A
AdvancewIwnwf.oDartamShaeett4iUo.cnom
Page Address (A4 - A16 )
Word Address (A0 - A3)
CE
Word 1
Open page
Word 2
...
Word 16
OE
LB, UB
Note: Page mode operation is a method of addressing the SRAM to save operating current. The internal
organization of the SRAM is optimized to allow this unique operating mode to be used as a valuable power
saving feature.
The only thing that needs to be done is to address the SRAM in a manner that the internal page is left open
and 16-bit words of data are read from the open page. By treating addresses A0-A3 as the least significant
bits and addressing the 16 words within the open page, power is reduced to the page mode value which is
considerably lower than standard operating currents for low power SRAMs.
Stock No. 23265-A
The specifications of this device are subject to change without notice. For latest documentation see http://www.nanoamp.com.
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N02L1618C1A arduino
NanoAmp Solutions, Inc.
N02L1618C1A
AdvancewIwnwf.oDartamShaeett4iUo.cnom
Ordering Information
N02L1618C1AX-XX X
Temperature I = Industrial, -40°C to 85°C
Performance
70 = 70ns
Package Type
T = 44-pin TSOP II
B = 48-ball BGA
T2 = 44-pin TSOPII Green Package (RoHS Compliant)
B2 = 48-ball BGA Green Package (RoHS Compliant)
Revision History
Revision #
A
B
Date
Apr. 2003
Nov. 2005
Change Description
Initial Release
Added TSOP II Green Pkg. , Green Pkg. Part # and RoHS Compliant
© 2003 Nanoamp Solutions, Inc. All rights reserved.
NanoAmp Solutions, Inc. ("NanoAmp") reserves the right to change or modify the information contained in this data sheet and the products described therein, without prior notice.
NanoAmp does not convey any license under its patent rights nor the rights of others. Charts, drawings and schedules contained in this data sheet are provided for illustration pur-
poses only and they vary depending upon specific applications.
NanoAmp makes no warranty or guarantee regarding suitability of these products for any particular purpose, nor does NanoAmp assume any liability arising out of the application
or use of any product or circuit described herein. NanoAmp does not authorize use of its products as critical components in any application in which the failure of the NanoAmp
product may be expected to result in significant injury or death, including life support systems and critical medical instruments.
Stock No. 23265-A
The specifications of this device are subject to change without notice. For latest documentation see http://www.nanoamp.com.
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