DS3231MPMB1

DS3231MPMB1 Peripheral Module


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Description

The DS3231MPMB1 peripheral module provides the necessary hardware to interface the DS3231M real-time clock (RTC) to any system that utilizes Pmod™-compatible expansion ports configurable for I²C communication. The IC is a low-cost and extremely accurate I²C RTC. The device incorporates a battery input and maintains accurate timekeeping when main power to the device is interrupted. The integration of the micro-electromechanical systems (MEMS) resonator enhances the long-term accuracy of the device and reduces the piece-part count in a manufacturing line. The device is available in the same footprint as the popular DS3231 RTC.

Refer to the DS3231M IC data sheet for detailed information regarding operation of the IC.
DS3231MPMB1 Board Photo DS3231MPMB1 Board Photo Enlarge+

Key Features

  • High Accuracy Time-of-Day and Date (±5ppm) from -40°C to +85°C
  • 32.768kHz Square-Wave Output
  • Digital Temp Sensor with ±3°C Accuracy
  • 6-Pin Pmod-Compatible Connector (I²C)
  • Example Software Written in C for Portability
  • Secondary Header Allows Daisy-Chaining of Additional Modules on the I²C Bus
  • RoHS Compliant
  • Proven PCB Layout
  • Fully Assembled and Tested

Applications/Uses

  • Industrial Applications
  • Portable Instruments
  • Power Meters
Part NumberInput TypeOutput TypePrimary FunctionMain FeatureInterfaceBoard TypeBudgetary
Price
See Notes
DS3231MPMB1 I2CI2CReal-time ClockAccuratePmodPmod$19.95 @1
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Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific and version-specific prices and delivery, please see the price and availability page or contact an authorized distributor.

Device   Fab Process   Technology   Sample size   Rejects   FIT at 25°C   FIT at 55°C  

Note : The failure rates are summarized by technology and mapped to the associated material part numbers. The failure rates are highly dependent on the number of units tested.

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