MSP430FR6989IPZ FRAM Microcontroller MCU – IPZ Package

  • Integrated controller reduces system complexity and accelerates development, delivering responsive control for embedded projects, MSP430FR6989IPZ (6989)
  • Deterministic execution and ample on-chip resources improve predictability, ensuring consistent latency for time-critical control loops.
  • Low-power and compact footprint reduces energy and board space, improving battery life and integration.
  • Ideal for handheld sensing or wearable monitoring, enabling longer run-time and reliable data capture in the field.
  • Manufacturing audits, qualification testing, and robust silicon yield ensure dependable operation across temperature and lifecycle.
SKU: MSP430FR6989IPZ Category: Brand:
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MSP430FR6989IPZ Overview

The MSP430FR6989IPZ is a low?power, FRAM?based 16?bit microcontroller intended for battery?sensitive industrial and portable designs. For a fully accurate, spec?validated description this content must reference the official product sheet. Once the sheet is attached, the write?up will use only documented numerical values and features to produce detailed technical copy for engineers and sourcing specialists. For manufacturer reference visit IC Manufacturer.

MSP430FR6989IPZ Technical Specifications

Parameter Value (see sheet)
Core Refer to supplied product sheet for CPU architecture and maximum frequency
Nonvolatile Memory (FRAM) See product sheet for capacity (KB)
Volatile Memory (RAM) See product sheet for capacity (KB)
Operating Voltage Documented on the product sheet (V)
Operating Temperature Range Refer to product sheet (??C)
Packages Package types and pin counts are listed on the product sheet
Interfaces eUSCI, timers, ADC/DAC details available on sheet
Power Modes Low?power modes and currents are specified in the sheet
Certifications / Standards See product sheet for compliance and qualification data

MSP430FR6989IPZ Key Features

  • Single 16?bit CPU core: enables compact code and efficient control for real?time tasks.
  • Nonvolatile FRAM memory: supports fast writes and high endurance compared to traditional flash.
  • Multiple low?power modes: reduces battery drain and extends field lifetime in portable systems.
  • Integrated analog and serial peripherals: simplifies system integration and lowers BOM count.

Typical Applications

  • Battery?powered sensor nodes and portable instruments where nonvolatile FRAM reduces write latency and improves endurance over flash, enabling frequent data logging without wear concerns.
  • Industrial control endpoints requiring low standby current and reliable nonvolatile storage for configuration and runtime data across power cycles and brownout events.
  • Human?machine interface panels and metering systems that need robust analog front?ends and serial connectivity to support displays, sensors, and fieldbus links.
  • Education and rapid prototyping platforms where flexible peripheral sets and quick nonvolatile writes shorten development cycles and simplify iterative testing.

MSP430FR6989IPZ Advantages vs Typical Alternatives

The device emphasizes nonvolatile FRAM for faster writes and higher endurance compared to flash?based alternatives, which benefits frequent data logging and configuration updates. Its ultra?low power sleep and standby states provide better battery life than many comparable microcontrollers. Integrated mixed?signal peripherals reduce external components and lower system cost versus discrete solutions. For exact quantitative advantages (memory sizes, current figures, clock rates, and package options), consult the official product sheet to match parameters precisely to competing parts.

MSP430FR6989IPZ Brand Info

The MSP430FR6989IPZ is part of the MSP430 FRAM microcontroller family from Texas Instruments. Texas Instruments provides extensive development support, reference designs, and software libraries for rapid integration. The brand focuses on low?power embedded platforms and long?term availability for industrial and consumer applications.

FAQ

What is the core architecture?

The core architecture and maximum CPU frequency are specified on the official product sheet; consult it for exact instruction?set details, clock limits, and performance figures.

How much FRAM and RAM does it include?

Exact FRAM and RAM capacities vary by device variant and are documented on the product sheet; use those values to check whether the on?chip memory meets application storage requirements.

Which communication interfaces are available?

Peripheral types such as UART, SPI, I2C (eUSCI) and timers are listed on the product sheet; confirm the count and modes on the sheet to match your system topology.

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What are the power supply requirements?

Nominal operating voltage range and recommended decoupling are defined in the product sheet; review the sheet for minimum/maximum VDD and low?power current figures before designing power rails.

Where can I find application notes and development tools?

Texas Instruments publishes application notes, reference designs, and development kits on its website; the product sheet also references relevant resources for evaluation and firmware development.

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