DS1225AB-70+ Real-Time Clock (RTC) Module – 8-Pin DIP Package

  • The DS1225AB-70+ offers reliable memory storage for critical data retention needs.
  • With a specified access time, it ensures quick data retrieval for efficient operations.
  • This device features a compact design, saving valuable board space in various applications.
  • Ideal for embedded systems, it enhances functionality in devices needing consistent data access.
  • Designed for durability, it supports long-term use in demanding environments without failure.
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DS1225AB-70+ Overview

The DS1225AB-70+ is a high-performance, low-power SRAM with integrated battery backup, designed to provide reliable memory retention in critical applications. It combines non-volatile memory with fast read/write speeds, making it ideal for systems requiring frequent data updates without compromising on data integrity. This device supports a wide range of operating conditions, ensuring consistent performance in various environments. For more information, visit IC Manufacturer.

DS1225AB-70+ Key Features

  • Non-Volatile Memory: Retains data during power loss, ensuring critical information is preserved without a power supply.
  • Fast Access Times: Offers quick read and write cycles, enhancing system responsiveness and performance.
  • Low Power Consumption: Designed for energy-efficient operation, reducing power costs in battery-powered applications.
  • Wide Operating Temperature Range: Functions effectively in diverse environmental conditions, ensuring reliability in various applications.

DS1225AB-70+ Technical Specifications

Parameter Value
Memory Type SRAM with Battery Backup
Access Time 70 ns
Operating Voltage 3V to 5V
Memory Density 32 Kbits
Data Retention 10 years
Temperature Range -40??C to +85??C
Package Type SOIC
Pin Count 28

DS1225AB-70+ Advantages vs Typical Alternatives

The DS1225AB-70+ outperforms typical alternatives by offering superior data retention, enhanced access speeds, and lower power consumption. Its integrated battery ensures data integrity even during power interruptions, making it a reliable choice for applications that require both speed and durability.

Typical Applications

  • Industrial Automation: Utilized in programmable logic controllers (PLCs) for storing configuration settings and operational data, ensuring swift recovery after power failures.
  • Telecommunications equipment for maintaining critical configuration data.
  • Medical devices that require reliable memory for patient data and operational logs.
  • Consumer electronics where fast memory access is essential for user experience and functionality.

DS1225AB-70+ Brand Info

The DS1225AB-70+ is produced by a renowned manufacturer in the semiconductor industry, recognized for its innovative solutions in memory technology. This product reflects the brand’s commitment to quality and reliability, making it a trusted choice among engineers and developers in various sectors.

FAQ

What is the primary function of the DS1225AB-70+?

The primary function of this device is to serve as a non-volatile memory solution that retains critical data during power outages, making it essential for applications where data integrity is paramount.

What applications are best suited for this memory device?

This SRAM is particularly well-suited for industrial automation, telecommunications, medical devices, and consumer electronics, where quick access to retained data is crucial for performance.

How does the battery backup feature work?

The integrated battery backup allows the device to maintain data integrity when external power is lost, ensuring that all information is securely stored for future retrieval.

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产品中间询盘

Can the DS1225AB-70+ operate in extreme temperatures?

Yes, the device is designed to function effectively within a wide temperature range, from -40??C to +85??C, ensuring reliability in diverse operating environments.

Is the memory capacity adequate for high-demand applications?

With a memory density of 32 Kbits, the DS1225AB-70+ is suitable for various applications. However, for high-demand scenarios, evaluating specific memory requirements is recommended.

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