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MSP430F5256 - Mixed-Signal Microcontrollers

Download the MSP430F5256 datasheet PDF. This datasheet also covers the MSP430F5259 variant, as both devices belong to the same mixed-signal microcontrollers family and are provided as variant models within a single manufacturer datasheet.

General Description

Using an "always-on" ultra-low-power system controller can significantly reduce power consumption on portable devices like handsets and tablets.

Key Features

  • 1.
  • Dual-Supply Voltage Device.
  • Primary Supply (AVCC, DVCC).
  • Powered From External Supply: 3.6 V Down to 1.8 V.
  • Up to 18 General-Purpose I/Os With up to 8 External Interrupts.
  • Low-Voltage Interface Supply (DVIO).
  • Powered From Separate External Supply: 1.62 V to 1.98 V.
  • Up to 35 General-Purpose I/Os With up to 16 External Interrupts.
  • Serial Communications.
  • Ultra-Low Power Consumption.
  • Active Mode (AM): All Sy.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (MSP430F5259-etcTI.pdf) that lists specifications for multiple related part numbers.

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
Product Folder Order Now Technical Documents Tools & Software Support & Community MSP430F5259, MSP430F5258, MSP430F5257, MSP430F5256 MSP430F5255, MSP430F5254, MSP430F5253, MSP430F5252 SLAS903C – MAY 2013 – REVISED SEPTEMBER 2018 MSP430F525x Mixed-Signal Microcontrollers 1 Device Overview 1.1 Features 1 • Dual-Supply Voltage Device – Primary Supply (AVCC, DVCC) – Powered From External Supply: 3.6 V Down to 1.8 V – Up to 18 General-Purpose I/Os With up to 8 External Interrupts – Low-Voltage Interface Supply (DVIO) – Powered From Separate External Supply: 1.62 V to 1.98 V – Up to 35 General-Purpose I/Os With up to 16 External Interrupts – Serial Communications • Ultra-Low Power Consumption – Active Mode (AM): All System Clocks Active 290 µA/MHz at 8 MHz, 3.