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PDF AT27LV256A-90RC Data sheet ( Hoja de datos )

Número de pieza AT27LV256A-90RC
Descripción 256K 32K x 8 Low Voltage OTP CMOS EPROM
Fabricantes ATMEL Corporation 
Logotipo ATMEL Corporation Logotipo



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AT27LV256A
Features
Fast Read Access Time - 70 ns
•• Dual Voltage Range Operation
Low Voltage Power Supply Range, 3.0V to 3.6V
or Standard 5V ± 10% Supply Range
Pin Compatible with JEDEC Standard AT27C256
•• Low Power CMOS Operation
20 µA max. (less than 1 µA typical) Standby for VCC = 3.6V
29 mW max. Active at 5 MHz for VCC = 3.6V
JEDEC Standard Packages
32-Lead PLCC
28-Lead 330-mil SOIC
28-Lead TSOP
High Reliability CMOS Technology
2,000V ESD Protection
200 mA Latchup Immunity
RapidProgramming Algorithm - 100 µs/byte (typical)
CMOS and TTL Compatible Inputs and Outputs
JEDEC Standard for LVTTL
Integrated Product Identification Code
•• Commercial and Industrial Temperature Ranges
Description
The AT27LV256A is a high performance, low power, low voltage 262,144 bit one-time
programmable read only memory (OTP EPROM) organized as 32K by 8 bits. It re-
quires only one supply in the range of 3.0V to 3.6V in normal read mode operation,
making it ideal for fast, portable systems using battery power.
Atmel’s innovative design techniques provide fast speeds that rival 5V parts while
keeping the low power consumption of a 3.3V supply. At VCC = 3.0V, any byte can be
accessed in less than 70 ns. With a typical power dissipation of only 18 mW at 5 MHz
and VCC = 3.3V, the AT27LV256A consumes less than one fifth the power of a stand-
ard 5V EPROM.
Pin Configurations
SOIC Top View
(continued)
Pin Name Function
A0 - A14
Addresses
O0 - O7
Outputs
CE Chip Enable
OE Output Enable
NC No Connect
PLCC Top View
256K (32K x 8)
Low Voltage
OTP
CMOS EPROM
AT27LV256A
TSOP Top View
Type 1
Note:PLCC Package Pins 1 and 17
are DON’T CONNECT.
0547A
3-75

1 page




AT27LV256A-90RC pdf
AT27LV256A
AC Characteristics for Read Operation (VCC = 3.0V to 3.6V and 4.5V to 5.5V)
AT27LV256A
-70 -90 -12 -15
Symbol
tACC (3)
tCE (2)
tOE (2, 3)
tDF (4, 5)
Parameter
Address to Output Delay
CE to Output Delay
OE to Output Delay
OE or CE High to Output Float,
whichever occurred first
Condition
CE = OE = VIL
OE = VIL
CE = VIL
Min Max Min Max Min Max Min Max Units
70 90 120 150 ns
70 90 120 150 ns
50 50
50 60 ns
40 40
40 50 ns
tOH
Output Hold from Address, CE or
OE, whichever occurred first
0 0 0 0 ns
Notes: 2, 3, 4, 5. - see AC Waveforms for Read Operation.
AC Waveforms for Read Operation (1)
Notes: 1. Timing measurement references are 0.8V and 2.0V.
Input AC drive levels are 0.45V and 2.4V, unless
otherwise specified.
2. OE may be delayed up to tCE - tOE after the falling edge
of CE without impact on tCE .
3. OE may be delayed up to tACC - tOE after the
address is valid without impact on tACC .
4. This parameter is only sampled and is not 100% tested.
5. Output float is defined as the point when data is no longer
driven.
3-79

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