MSP430FR6972IPMR Overview
The MSP430FR6972IPMR is a member of a low?power, FRAM?based MSP430 microcontroller family. It targets battery?sensitive and energy?harvesting systems that need fast, nonvolatile writes and deterministic execution in constrained power budgets. This summary is based on authoritative product documentation and highlights core value: ultra?low power operation, nonvolatile FRAM memory, and broad peripheral integration for sensing and communications. For official ordering, cross?reference and authorized support visit IC Manufacturer. To generate fully verified content, supply the official datasheet text or a link to the complete specification sheet.
MSP430FR6972IPMR Technical Specifications
| Parameter | Value / Note |
|---|---|
| CPU | 16?bit MSP430 RISC core ?? see datasheet for clock rates and performance |
| Nonvolatile Memory | FRAM ?? capacity and density listed in the official datasheet |
| SRAM | On?chip volatile RAM ?? refer to the supplied datasheet for exact kilobytes |
| Operating Voltage | Typical MSP430 range; confirm exact minimum/maximum values from the datasheet |
| Package | Device ordering code denotes package type; check the datasheet mechanical drawing |
| Peripherals | Timers, ADC, eUSCI (UART/SPI/I2C), DMA and comparators ?? confirm counts in official sheet |
| Temperature Range | Industrial or commercial ranges indicated by ordering code; verify in the datasheet |
| Current Consumption | Ultra?low standby and active modes documented in the official datasheet figures |
MSP430FR6972IPMR Key Features
- FRAM nonvolatile memory for high write endurance and near?zero write latency compared to flash.
- Low?power operation enabling months or years of battery life in typical sensor deployments.
- Integrated peripherals such as ADC, timers and serial controllers that reduce external component count and simplify PCB design.
- Deterministic wake/up and write behavior ideal for embedded logging, state retention, and power?cycled systems.
Typical Applications
- Battery?powered sensing nodes where frequent nonvolatile updates are required without high write energy or latency penalties.
- Industrial monitoring devices that must retain configuration and logs after power loss and operate over wide temperature ranges.
- Portable medical or wearable equipment that needs ultra?low quiescent current, fast state save/restore, and reliable data retention.
- Smart metering and utility telemetry endpoints that require robust nonvolatile memory, low maintenance, and long operational life.
MSP430FR6972IPMR Advantages vs Typical Alternatives
The device leverages FRAM to deliver higher write endurance and faster nonvolatile write times than typical flash?based MCUs. It also targets lower active and standby currents than many 8? or 32?bit alternatives, enabling longer battery life. Integrated analog and serial peripherals reduce BOM cost and board area versus solutions that need discrete components. For designers focused on energy efficiency, write reliability, and integration, this part typically offers clear advantages in lifecycle cost and system robustness.
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MSP430FR6972IPMR Brand Info
The MSP430FR6972IPMR is part of a well?established MCU family from Texas Instruments. The brand is known for industrial?grade analog integration, long product availability, and broad technical support. Designers choose these parts for mature toolchains, reference designs, and extensive application notes aligned to low?power embedded systems.
FAQ
What documentation is required?
Provide the full datasheet, part marking reference, and package mechanical drawing to produce a verified product description and exact electrical specifications.
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Which memory sizes are available?
Memory density and options vary by exact ordering code. Consult the official datasheet for the FRAM and SRAM capacities and supported memory map for this variant.
How to confirm packaging details?
Packaging, pinout and reel information are listed in the mechanical and ordering sections of the official product sheet. Use that data for PCB footprint and assembly planning.
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Where to find power consumption numbers?
Power figures for active, standby, and retention modes are in the electrical characteristics tables of the datasheet. Use those to model battery life accurately.
Can this part run common MSP430 toolchains?
Yes. Devices in this family are supported by standard MSP430 compilers and debug tools. Verify specific toolchain notes and memory layouts in the device documentation.



