MSP430FR60471IPZR Overview
The MSP430FR60471IPZR is a member of the MSP430 FRAM microcontroller family and targets low?power embedded control and sensing tasks. To create a fully accurate, sheet?based product description tied strictly to published data, I need the product sheet contents. Once supplied, I will produce a concise, comparison?oriented datasheet summary that highlights memory sizes, clock rates, I/O counts, power consumption, packaging, and integrated peripherals for sourcing and design decisions. For reference and sourcing links see IC Manufacturer.
MSP430FR60471IPZR Technical Specifications
| Parameter | Value (from sheet) |
|---|---|
| Device family | – |
| Core architecture | – |
| Nonvolatile memory type | – |
| Nonvolatile memory size | – |
| Active clock / maximum CPU speed | – |
| RAM (SRAM) size | – |
| Digital I/O count | – |
| ADC resolution and channels | – |
| Timers (type and count) | – |
| Communication interfaces (UART/SPI/I2C) | – |
| Operating voltage range | – |
| Typical active current | – |
| Low?power mode current | – |
| Package type and pin count | – |
| Operating temperature range | – |
MSP430FR60471IPZR Key Features
- Single 16?bit MSP430 core ?? optimized for predictable, low?power control and short interrupt latency.
- FRAM nonvolatile memory ?? enables fast writes and higher endurance than typical flash; useful for frequent data logging and state retention.
- Flexible peripheral mix ?? multiple timers and serial interfaces simplify integration with sensors and power management circuits.
- Multiple low?power modes ?? reduce standby and idle energy so battery?operated systems run longer between charges.
Typical Applications
- Battery?powered sensor nodes for industrial monitoring where nonvolatile FRAM supports frequent data logging without wear limitations and extends device lifetime.
- Portable medical instruments that require low standby current, deterministic wakeup, and reliable nonvolatile storage for patient data and configuration settings.
- Motor control and power?management subsystems where mixed analog/digital peripherals and low latency control benefit real?time responsiveness and energy efficiency.
- Human?machine interfaces and keypad controllers that need multiple GPIOs, timers for debounce, and nonvolatile parameter storage across power cycles.
MSP430FR60471IPZR Advantages vs Typical Alternatives
The MSP430FR60471IPZR brings FRAM endurance and fast write performance that often outperform flash?based MCUs for frequent logging and configuration updates. Its low?power modes and 16?bit architecture deliver lower standby and active energy per instruction compared with many 8? and 32?bit options for similar control tasks. Integration of timers, ADCs, and serial ports reduces external components and board area, resulting in fewer BOM items and simpler sourcing for volume production.
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MSP430FR60471IPZR Brand Info
The MSP430FR60471IPZR is part of the MSP430 portfolio from Texas Instruments. The brand emphasizes low?power embedded controllers, extensive application notes, and a mature toolchain. TI provides development kits, reference designs, and long?term availability guidance suitable for industrial and medical projects.
FAQ
What package options exist?
I cannot confirm package options until the product sheet is available. Once the sheet is supplied I will list all package codes, pin counts, and mechanical dimensions with exact measurements for board layout and thermal planning.
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What are the memory sizes?
Memory sizes and types (FRAM and SRAM) must be taken directly from the product sheet. Provide the datasheet and I will extract precise nonvolatile and volatile memory capacities and present them in a comparison table.
How does power consumption compare?
Power numbers vary by operating mode and clock rate. Send the sheet and I will summarize typical active current, standby currents for each low?power mode, and comparative power use versus common alternatives.
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Which interfaces are supported?
The datasheet contains the definitive list of integrated peripherals such as UART, SPI, I2C, timers, and ADC channels. After receiving the sheet I will detail counts, supported speeds, and recommended use cases.
Can you provide a BOM and sourcing note?
Yes. With the product sheet I will prepare a concise BOM entry, common substitute part numbers, packaging and ordering codes, and sourcing tips for volume buys and lead?time management.



