MSP430FR2672TRHBT 16-bit FRAM Microcontroller (TRHBT Package)

  • Efficient 16-bit microcontroller delivering deterministic control for responsive embedded behavior.
  • Integrated FRAM preserves configuration, measurements across power cycles for reliability.
  • Low-power operation extends battery life, enabling smaller batteries, compact designs.
  • Ideal for industrial sensors, handling noisy inputs while minimizing maintenance.
  • MSP430FR2672TRHBT undergoes production testing, ensuring robust operation across deployed environments.
SKU: MSP430FR2672TRHBT Category: Brand:
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MSP430FR2672TRHBT Overview

The MSP430FR2672TRHBT is a low?power, 16?bit microcontroller from the MSP430 FRAM family that combines nonvolatile FRAM with a compact peripheral set for efficient embedded control. It targets battery?sensitive and real?time systems where retention, write endurance, and fast writes matter more than block?erase flash behavior. Use cases include sensor nodes, industrial controls, and portable instrumentation. For ordering and corporate support, refer to IC Manufacturer.

MSP430FR2672TRHBT Technical Specifications

ParameterValue
CPU Architecture16?bit RISC MSP430 core (single core)
Maximum CPU Frequency16 MHz
Nonvolatile Memory (FRAM)32 KB
SRAM (RAM)2 KB
Supply Voltage1.8 V to 3.6 V
ADC Resolution12?bit
TimersUp to 3 ?? 16?bit timer modules
Communication InterfacesUSART/SPI/I2C (multiple)
Operating Temperature-40 ??C to +85 ??C
Package64?pin package (TRHBT option)

MSP430FR2672TRHBT Key Features

  • Single 16?bit core delivering compact code density and deterministic control for embedded tasks.
  • Integrated FRAM for fast nonvolatile writes and high endurance, enabling frequent on?the?fly data logging without erase cycles.
  • Low supply range (1.8?C3.6 V) and ultralow active and standby currents for longer battery life in portable designs.
  • On?chip 12?bit ADC and multiple timers increase integration and reduce external component count for mixed?signal applications.

Typical Applications

  • Battery?powered sensor nodes where low standby current and rapid nonvolatile data logging extend field life and simplify firmware updates.
  • Portable medical devices that need reliable nonvolatile storage and deterministic response for patient monitoring and event capture.
  • Industrial control and metering systems requiring robust temperature range operation and frequent configuration writes without flash wear?out concerns.
  • Consumer handheld instruments that benefit from compact code, integrated ADC performance, and persistent state retention after power loss.

MSP430FR2672TRHBT Advantages vs Typical Alternatives

The device combines FRAM nonvolatile memory with a 16?bit MSP430 core, offering faster, lower?energy writes and far higher write endurance compared with flash?based alternatives. With a typical maximum clock of 16 MHz and a 1.8?C3.6 V supply window, it often yields better battery life and simpler firmware for frequent?write applications. Integrated ADC and multiple timers reduce BOM count versus using separate analog front ends.

MSP430FR2672TRHBT Brand Info

The MSP430FR2672TRHBT is part of the MSP430 FRAM microcontroller family from Texas Instruments. TI provides silicon, development tools, and software examples tailored to low?power embedded designs, plus production support and authorized distribution channels for industrial and commercial volume sourcing.

FAQ

What memory type is used?

The device uses embedded FRAM (ferroelectric RAM) for code and data, enabling fast nonvolatile writes, high endurance, and simplified in?field data logging without block erase cycles.

What is the operating voltage range?

This microcontroller operates across a nominal 1.8 V to 3.6 V supply range, allowing direct use with common single?cell lithium and coin?cell systems while supporting low?power modes for extended runtime.

Which analog resources are available?

On?chip analog includes a 12?bit ADC and multiple comparator/timer peripherals, enabling precise sensor sampling and timing without adding external ADC components for many applications.

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Which package is offered by TRHBT?

The TRHBT suffix denotes a 64?pin package option suitable for dense I/O and peripheral access; consult the formal product datasheet for mechanical drawings and pin?out details for board layout.

Where to find development resources?

Development kits, reference schematics, and software examples are provided by the manufacturer to accelerate evaluation. Refer to the official device datasheet and development tool documentation for complete setup and recommended development flow.

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