DS1220AB-150IND+ Real-Time Clock Module – Bulk Pack for Precision Timing

  • The DS1220AB-150IND+ is a real-time clock, providing accurate timekeeping for various applications.
  • It features a low power consumption, ensuring extended battery life in portable devices.
  • This model comes in a compact package, optimizing board space for efficient designs.
  • Ideal for tracking time in embedded systems, enhancing functionality in automation projects.
  • The device is designed for high reliability, ensuring consistent performance in critical applications.
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DS1220AB-150IND+ Overview

The DS1220AB-150IND+ is a high-performance, low-power memory component designed for industrial applications. This device features a combination of non-volatile memory and real-time clock functionality, making it ideal for systems requiring reliable data retention and timekeeping capabilities. With its robust design, the DS1220AB-150IND+ is suited for a variety of applications, ensuring efficient operation in harsh environments. For more information, visit IC Manufacturer.

DS1220AB-150IND+ Key Features

  • Non-volatile memory that retains data even during power loss, providing peace of mind for critical applications.
  • Integrated real-time clock functionality enhances system timing accuracy, crucial for time-sensitive operations.
  • Low power consumption ensures extended battery life, making the device suitable for portable applications.
  • Wide operating temperature range allows reliable performance in diverse environmental conditions.

DS1220AB-150IND+ Technical Specifications

ParameterValue
Memory TypeNon-volatile SRAM
Memory Density256 Kbit
Clock Frequency1 MHz
Operating Voltage3.0V to 5.5V
Data Retention Time10 years
Temperature Range-40??C to +85??C
Package TypeDIP, SOIC
Access Time100 ns

DS1220AB-150IND+ Advantages vs Typical Alternatives

This device offers significant advantages over typical alternatives, including enhanced data retention and integrated real-time clock features. Its low power consumption and wide operating temperature range improve reliability and performance in industrial applications, ensuring it meets rigorous operational demands.

Typical Applications

  • Industrial automation systems, where data integrity and precise timing are essential for controlling equipment and processes effectively.
  • Smart meters that require accurate data logging and low-power operation for extended battery life.
  • Telecommunication devices, ensuring reliable data storage and timekeeping in network management.
  • Automated test equipment, providing accurate data retention and real-time clock functionality for test results.

DS1220AB-150IND+ Brand Info

The DS1220AB-150IND+ is manufactured by a leading provider in the semiconductor industry, renowned for developing innovative solutions that address the needs of various applications. This product exemplifies the commitment to quality and reliability, ensuring that engineers and sourcing specialists can depend on its performance in critical environments.

FAQ

What is the primary function of the DS1220AB-150IND+?

The primary function is to provide non-volatile memory along with a real-time clock, ensuring that critical data and timing information are retained even when power is lost.

What is the operating temperature range of this device?

The device operates effectively within a temperature range of -40??C to +85??C, making it suitable for harsh industrial environments.

How long can data be retained without power?

Data retention time for the DS1220AB-150IND+ is specified for up to 10 years, ensuring that critical information remains accessible over extended periods without power.

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What types of applications are best suited for this device?

This device is ideal for applications in industrial automation, smart meters, telecommunications, and automated test equipment due to its reliability and power efficiency.

What packaging options are available for the DS1220AB-150IND+?

The product is available in multiple packaging options, including DIP and SOIC, allowing flexibility in design and integration into various systems.

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