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11AA161

Microchip Technology
Part Number 11AA161
Manufacturer Microchip Technology
Description EEPROM
Published Mar 25, 2015
Detailed Description 11AA010/11LC010 11AA020/11LC020 11AA040/11LC040 11AA080/11LC080 11AA160/11LC160 11AA161/11LC161 1-Kbit to 16-Kbit UNI/...
Datasheet PDF File 11AA161 PDF File

11AA161
11AA161


Overview
11AA010/11LC010 11AA020/11LC020 11AA040/11LC040 11AA080/11LC080 11AA160/11LC160 11AA161/11LC161 1-Kbit to 16-Kbit UNI/O® Serial EEPROM Family Data Sheet Features • Single I/O, UNI/O® Serial Interface Bus • Low-Power CMOS Technology: - 1 mA active current, typical - 1 µA standby current (max.
) (I-temp) • 128 x 8 through 2,048 x 8 Bit Organizations • Schmitt Trigger Inputs for Noise Suppression • Output Slope Control to Eliminate Ground Bounce • 100 kbps Max.
Bit Rate – Equivalent to 100 kHz Clock Frequency • Self-Timed Write Cycle (including Auto-Erase) • Page-Write Buffer for up to 16 Bytes • STATUS Register for Added Control: - Write enable latch bit - Write-In-Progress bit • Block Write Protection: - Protect none, 1/4, 1/2 or all of array • Built-in Write Protection: - Power-on/off data protection circuitry - Write enable latch • High Reliability: - Endurance: 1,000,000 erase/write cycles - Data retention: > 200 years - ESD protection: > 4,000V • RoHS Compliant • Available Temperature Ranges: - Industrial (I): - Extended (E): -40°C to +85°C -40°C to +125°C • Automotive AEC-Q100 Qualified Packages • 3-lead SOT-23 and TO-92 Packages • 4-lead Chip Scale Package • 8-lead PDIP, SOIC, MSOP and TDFN Packages Pin Function Table Name Function SCIO VSS VCC Serial Clock, Data Input/Output Ground Supply Voltage Description The Microchip Technology Inc.
11AAXXX/11LCXXX (11XX(1)) devices are a family of 1-Kbit through 16-Kbit Serial Electrically Erasable PROMs.
The devices are organized in blocks of x8-bit memory and support the patented(2) single I/O UNI/O® serial bus.
By using Manchester encoding techniques, the clock and data are combined into a single, serial bit stream (SCIO), where the clock signal is extracted by the receiver to correctly decode the timing and value of each bit.
Low-voltage design permits operation down to 1.
8V (for 11AAXXX devices), with standby and active currents of only 1 µA and 1 mA, respectively.
Note 1: 11XX is...



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