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AT24C32D-STUM-T

I²C-Compatible (2-Wire) Serial EEPROM

The AT24C32D-STUM-T is a i²c-compatible (2-wire) serial eeprom from Microchip Technology. View the full AT24C32D-STUM-T datasheet below including electrical characteristics, absolute maximum ratings.

Manufacturer

Microchip Technology

Category

I²C-Compatible (2-Wire) Serial EEPROM

Overview

Part: AT24C32D — Microchip Type: I²C-Compatible (2-Wire) Serial EEPROM Description: 32-Kbit (4,096 x 8) Serial EEPROM with I²C-compatible interface, supporting 100 kHz, 400 kHz, and 1 MHz clock speeds, operating from 1.7V to 5.5V.

Operating Conditions:

  • Supply voltage: 1.7V to 5.5V
  • Operating temperature: -40°C to +85°C
  • Clock frequency: up to 1 MHz (2.5V to 5.5V)

Absolute Maximum Ratings:

  • Max supply voltage: 6.25V
  • Max DC output current: 5.0 mA
  • Max storage temperature: +150°C

Key Specs:

  • Supply Current (Read): 1.0 mA (max, VCC = 5.0V, 400 kHz)
  • Supply Current (Write): 3.0 mA (max, VCC = 5.0V, 400 kHz)
  • Standby Current: 6.0 μA (max, VCC = 5.0V)
  • Clock Frequency (fSCL): 1000 kHz (max, 2.5V, 5.0V)
  • Write Cycle Time (tWR): 5 ms (max)
  • Write Endurance: 1,000,000 write cycles
  • Data Retention: 100 years
  • Input/Output Capacitance (SDA): 8 pF (max)

Features:

  • Low-Voltage and Standard-Voltage Operation
  • Schmitt Triggers, Filtered Inputs for Noise Suppression
  • Bidirectional Data Transfer Protocol
  • Write-Protect Pin for Full Array Hardware Data Protection
  • 32-Byte Page Write Mode
  • Random and Sequential Read Modes
  • Green Package Options (Lead-free/Halide-free/RoHS compliant)

Applications:

  • Industrial applications
  • Commercial applications

Package:

  • 8-Lead SOIC
  • 8-Lead TSSOP
  • 8-Pad UDFN
  • 8-Pad XDFN
  • 5-Lead SOT23
  • 8-Ball VFBGA

Features

  • Low-Voltage and Standard-Voltage Operation:
  • -VCC = 1.7V to 5.5V
  • Internally Organized as 4,096 x 8 (32K)
  • Industrial Temperature Range: -40°C to +85°C
  • I 2 C-Compatible (2-Wire) Serial Interface:
  • -100 kHz Standard mode, 1.7V to 5.5V
  • -400 kHz Fast mode, 1.7V to 5.5V
  • -1 MHz Fast Mode Plus (FM+), 2.5V to 5.5V
  • Schmitt Triggers, Filtered Inputs for Noise Suppression
  • Bidirectional Data Transfer Protocol
  • Write -Protect Pin for Full Array Hardware Data Protection
  • Ultra Low Active Current (3 mA maximum) and Standby Current (6 μA maximum)
  • 32-Byte Page Write Mode:
  • -Partial page writes allowed
  • Random and Sequential Read Modes
  • Self -Timed Write Cycle within 5 ms Maximum
  • High Reliability:
  • -Endurance: 1,000,000 write cycles
  • -Data retention: 100 years
  • Green Package Options (Lead-free/Halide-free/RoHS compliant)
  • Die Sale Options: Wafer Form and Bumped Wafers

Pin Configuration

The descriptions of the pins are listed in Table 2-1.

Table 2-1. Pin Function Table

Name8 - Lead SOIC8 - Lead TSSOP8 - Pad UDFN (1)8-Pad XDFN5-Lead SOT238 - Ball VFBGAFunction
A0 (2)1111-1Device Address Input
A1 (2)2222-2Device Address Input
A2 (2)3333-3Device Address Input
GND444424Ground
SDA555535Serial Data
SCL666616Serial Clock
WP (2)777757Write-Protect
VCC888848Device Power Supply
  1. The exposed pad on this package can be connected to GND or left floating.
  2. If the A0, A1, A2 or WP pins are not driven, they are internally pulled down to GND. In order to operate in a wide variety of application environments, the pull -down mechanism is intentionally designed to be somewhat strong. Once these pins are biased above the CMOS input buffer's trip point (~0.5 x V CC ), the pull -down mechanism disengages. Microchip recommends connecting these pins to a known state whenever possible.

Electrical Characteristics

ParameterSymbolMinimumTypical (1)MaximumUnitsTest Conditions
Supply VoltageVCC11.7-5.5V
Supply CurrentICC1-0.41.0mAVCC = 5.0V, Read at 400 kHz
Supply CurrentICC2-2.03.0mAVCC = 5.0V, Write at 400 kHz
Standby CurrentISB1--1.0μAVCC = 1.7V, VIN = VCC or GND
Standby Current--6.0μAVCC = 5.0V, VIN = VCC or GND
Input Leakage CurrentI LI-0.103.0μAVIN = VCC or GND; VCC = 5.0V
Output Leakage CurrentILO-0.053.0μAVOUT = VCC or GND; VCC = 5.0V
Input Low LevelVIL-0.6-VCC x 0.3VNote 2
Input High LevelVIHVCC x 0.7-VCC + 0.5VNote 2
...........continuedMaximum Units
Output Low LevelVOL1--0.2
Output Low LevelVOL2--0.4
  1. Typical values characterized at T A = +25°C unless otherwise noted.
  2. This parameter is characterized but is not 100% tested in production.

Absolute Maximum Ratings

Temperature under bias

-55°C to +125°C

Storage temperature

-65°C to +150°C

VCC

6.25V

Voltage on any pin with respect to ground

-1.0V to +7.0V

DC output current

5.0 mA

ESD protection

3kV

Note: Stresses above those listed under 'Absolute Maximum Ratings' may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operation listings of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.

Package Information

UnitsMILLIMETERSMILLIMETERSMILLIMETERS
Dimension LimitsDimension LimitsMINNOMMAX
Contact PitchE1.27 BSC
Contact Pad SpacingC5.40
Contact Pad Width (X8)X10.60
Contact Pad Length (X8)Y11.55
  • Dimensioning and tolerancing per ASME Y14.5M 1.

BSC: Basic Dimension. Theoretically exact value shown without tolerances.

Microchip Technology Drawing C04-2057-SN Rev B

© 2017 Microchip Technology Inc.

©

Packaging Diagrams and Parameters

Related Variants

The following components are covered by the same datasheet.

Part NumberManufacturerPackage
AT24C32DMicrochip Technology
AT24C32D-CUM-TMicrochip Technology
AT24C32D-SSHM-TMicrochip Technology8-Lead SOIC
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