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24AA01 Datasheet PDF

Part Series:24AA01 Series
Category:EEPROM
Description:EEPROM Serial-I2C 1Kbit 128 x 8 1.8V/2.5V/3.3V/5V 5Pin SOT-23 T/R
Document:24AA014-I/MS Datasheet PDF (570 Pages)

24AA01 Datasheet PDF EEPROM

48 Pages
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EEPROM Serial-I2C 1Kbit 128 x 8 2.5V/3.3V/5V 8Pin MSOP T/R
42 Pages
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EEPROM Serial-I2C 1Kbit 128 x 8 1.8V/2.5V/3.3V/5V 5Pin SOT
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EEPROM Serial-I2C 1Kbit 128 x 8 1.8V/2.5V/3.3V/5V 8Pin TSSOP Tube
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EEPROM Serial-I2C 1Kbit 128 x 8 1.8V/2.5V/3.3V/5V 8Pin MSOP Tube
34 Pages
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EEPROM Serial-I2C 1Kbit 128 x 8 1.8V/2.5V/3.3V/5V 8Pin MSOP T/R
28 Pages
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24AA01T-I/OT - Microchip Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Frequency
0.4 MHz
Number of Pins
5 Pin
Supply Voltage (DC)
5.00 V, 5.50 V (max)
Operating Voltage
1.7V ~ 5.5V
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24AA01T-I/OT - Microchip Function Overview

The 24AA01T-I/OT is a 1Kbit I²C™ Electrically Erasable Programmable Read-only Memory (EEPROM). The device is organized as one block of 128 x 8-bit memory with a 2-wire serial interface. Low-voltage design permits operation down to 1.7V with standby and active currents of only 1µA and 1mA, respectively. The 24XX01 also has a page write capability for up to 8bytes of data. The 24XX01 supports a bidirectional, 2-wire bus and data transmission protocol. A device that sends data onto the bus is defined as transmitter, while defining a device receiving data as a receiver. The bus has to be controlled by a master device which generates the Serial Clock (SCL), controls the bus access and generates the Start and Stop conditions, while the 24XX01 works as slave. Both master and slave can operate as transmitter or receiver, but the master device determines which mode is activated.
Low-power CMOS technology
2-wire Serial interface and I²C™ compatible
Schmitt-trigger inputs for noise suppression
Output slope control to eliminate ground bounce
100kHz and 400kHz compatibility
Page write time 3ms, typical
More than 1 million erase/write cycles
>200 Years data retention
Factory programmable available
ESD sensitive device, take proper precaution while handling the device.
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