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AT24C02D - I2C-Compatible (2-wire) Serial EEPROM

Download the AT24C02D datasheet PDF. This datasheet also covers the AT24C01D variant, as both devices belong to the same i2c-compatible (2-wire) serial eeprom family and are provided as variant models within a single manufacturer datasheet.

General Description

The Atmel® AT24C01D/02D provides 1,024/2,048 bits of Serial Electrically Erasable and Programmable Read-Only Memory (EEPROM) organized as 128/256 words of eight bits each.

The device’s cascadable feature allows up to eight devices to share a common 2-wire bus.

Key Features

  • Low Voltage Operation ̶ 1.7V (VCC = 1.7V to 3.6V).
  • Internally Organized 128 x 8 (1K) or 256 x 8 (2K).
  • I2C-Compatible (2-wire) Serial Interface ̶ 100kHz Standard Mode, 1.7V to 3.6V ̶ 400kHz Fast Mode, 1.7V to 3.6V ̶ 1MHz Fast Mode Plus (FM+), 2.5V to 3.6V.
  • Schmitt Triggers, Filtered Inputs for Noise Suppression.
  • Bidirectional Data Transfer Protocol.
  • Write Protect Pin for Full Array Hardware Data Protection.
  • Ultra Low Active Current (1mA max) and Standby Current.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (AT24C01D-ATMEL.pdf) that lists specifications for multiple related part numbers.

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
AT24C01D and AT24C02D I2C-Compatible (2-wire) Serial EEPROM 1-Kbit (128 x 8) or 2-Kbit (256 x 8) DATASHEET Features  Low Voltage Operation ̶ 1.7V (VCC = 1.7V to 3.6V)  Internally Organized 128 x 8 (1K) or 256 x 8 (2K)  I2C-Compatible (2-wire) Serial Interface ̶ 100kHz Standard Mode, 1.7V to 3.6V ̶ 400kHz Fast Mode, 1.7V to 3.6V ̶ 1MHz Fast Mode Plus (FM+), 2.5V to 3.6V  Schmitt Triggers, Filtered Inputs for Noise Suppression  Bidirectional Data Transfer Protocol  Write Protect Pin for Full Array Hardware Data Protection  Ultra Low Active Current (1mA max) and Standby Current (0.