DS3231MZ+TRL I2C Real-Time Clock (RTC)

Featured Product from LCSC Electronics Technology (HK) Limited

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The DS3231MZ+TRL is an advanced, highly accurate I2C real-time clock (RTC) designed to meet the needs of engineers working in low-power and temperature-sensitive environments. It comes with a built-in crystal oscillator, eliminating the need for external components and enhancing overall reliability. This RTC is packaged in a compact SOIC-8 form factor, making it perfect for space-constrained industrial applications. The DS3231MZ+TRL is ideal for applications where precise timekeeping is critical, such as in embedded systems, medical devices, and industrial control systems.

For engineers, the DS3231MZ+TRL simplifies circuit design, offering high accuracy with minimal external components. Its low power consumption ensures extended battery life, which is crucial for remote or battery-powered devices. The integrated temperature compensation feature also ensures that timekeeping accuracy is maintained across a wide temperature range, addressing the challenges of temperature-sensitive applications. By using this component, engineers can reduce design complexity while improving the overall performance and reliability of their time-sensitive applications.

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Key Features and Benefits:

  • High Accuracy: Provides precise timekeeping with an integrated crystal oscillator.
  • I2C Interface: Simple connection and communication via the I2C bus.
  • Low Power Consumption: Ideal for battery-powered and energy-efficient designs.
  • Integrated Temperature Compensation: Maintains accuracy across a wide temperature range.
  • Compact SOIC-8 Package: Space-efficient design for small-form-factor applications.
  • Ideal for Industrial and Embedded Systems: Suitable for a wide range of low-power, temperature-sensitive applications.

The DS3231MZ+TRL is an excellent choice for engineers looking to integrate a reliable, accurate RTC into their designs, saving them time and resources while ensuring dependable performance in time-sensitive applications.