24LC256T-I/SN EEPROM Memory Chip – 256Kb I2C Interface – SOIC-8 Package

  • The 24LC256T-I/SN is a memory device for data storage in electronic systems.
  • It features significant memory capacity, enabling effective data management in various applications.
  • This component comes in a compact package, saving valuable board space in designs.
  • Ideal for embedded systems, it enhances performance in data logging solutions.
  • Designed for reliability, it ensures consistent operation in diverse environments.
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24LC256T-I/SN Overview

The 24LC256T-I/SN is a high-performance EEPROM device designed for a wide range of applications requiring non-volatile data storage. With its 256 Kbit capacity and I2C interface, it provides a reliable solution for engineers seeking efficient memory solutions in embedded systems. Its low power consumption and robust architecture make it suitable for battery-operated devices, enhancing overall system efficiency. For more information, visit IC Manufacturer.

24LC256T-I/SN Key Features

  • 256 Kbit memory capacity allows for extensive data storage needs, making it ideal for applications requiring large amounts of non-volatile memory.
  • I2C interface simplifies integration into existing systems, providing a straightforward method for communication between devices.
  • Low power consumption enhances battery life in portable devices, which is critical for energy-sensitive applications.
  • High endurance with up to 1 million write cycles ensures long-term reliability, making it suitable for frequent data updates.

24LC256T-I/SN Technical Specifications

Parameter Value
Memory Size 256 Kbit
Interface Type I2C
Operating Voltage 1.8V to 5.5V
Maximum Clock Frequency 1MHz
Write Cycle Time 5 ms (typical)
Endurance 1 million write cycles
Data Retention 100 years
Package Type 8-Pin SOIC

24LC256T-I/SN Advantages vs Typical Alternatives

The 24LC256T-I/SN stands out against typical alternatives due to its superior capacity and low power operation. Its I2C interface facilitates easier integration, while its endurance and long data retention ensure reliability in critical applications, making it a preferred choice for engineers.

Typical Applications

  • Embedded Systems: Ideal for storing configuration settings and calibration data in microcontroller-based systems, ensuring quick access and modification of critical parameters.
  • Consumer Electronics: Used in devices such as digital cameras and remote controls for saving user preferences and settings.
  • Industrial Automation: Provides non-volatile memory for sensor data logging and configuration in automated systems.
  • Medical Devices: Utilized for storing patient data and device parameters, ensuring data integrity and accessibility in healthcare applications.

24LC256T-I/SN Brand Info

The 24LC256T-I/SN is produced by a reputable manufacturer known for developing high-quality memory solutions. This device exemplifies the manufacturer??s commitment to providing reliable and efficient memory products tailored to meet the demands of modern electronic applications.

FAQ

What is the maximum clock frequency of the 24LC256T-I/SN?

The maximum clock frequency for the 24LC256T-I/SN is 1MHz, allowing for fast data transfers and efficient communication between the device and the microcontroller.

How long can data be retained in the 24LC256T-I/SN?

Data retention for the 24LC256T-I/SN is up to 100 years, ensuring that stored data remains intact even in the event of power loss.

What type of packaging does the 24LC256T-I/SN come in?

This device is available in an 8-Pin SOIC package, which is compact and suitable for a variety of applications, making it easier to integrate into diverse circuit designs.

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产品中间询盘

Can the 24LC256T-I/SN be used in battery-operated devices?

Yes, its low power consumption makes the 24LC256T-I/SN an excellent choice for battery-operated devices, maximizing battery life while providing reliable memory storage.

What is the write cycle endurance of the 24LC256T-I/SN?

The write cycle endurance of the 24LC256T-I/SN is up to 1 million write cycles, making it highly durable for applications that require frequent data updates.

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