MSP430FR2475TPT Overview
The MSP430FR2475TPT is an ultra-low-power 16-bit microcontroller built for battery-operated and energy-sensitive industrial designs. It combines nonvolatile FRAM memory with a compact package and multiple on-chip peripherals to accelerate sensor interfacing, control loops, and user interfaces. The part targets applications that need longer battery life, fast nonvolatile writes, and tighter power budgets. For sourcing and additional product options see IC Manufacturer.
MSP430FR2475TPT Technical Specifications
| CPU | 16-bit RISC |
| Maximum clock | Up to 16 MHz |
| Nonvolatile memory | FRAM (tens of kilobytes class) |
| Supply voltage | 1.8 V to 3.6 V |
| Operating temperature | ?40 ??C to +85 ??C |
| Package | TPT tape-and-reel package (small-outline TSSOP style) |
| Low-power modes | Multiple standby and sleep levels (sub-microamp standby currents) |
| Peripherals | Timers, ADC, serial communication blocks (USART/eUSCI style) |
| Nonvolatile write endurance | High write endurance compared with embedded flash |
| Typical active current | Low ??A/MHz-class active consumption |
MSP430FR2475TPT Key Features
- Single 16-bit core: provides compact code density and efficient control performance for low-power embedded tasks.
- FRAM nonvolatile memory: enables fast, low-energy writes and reliable data logging without power cycling delays.
- Multi-mode low-power operation: reduces standby current to sub-microamp levels to extend battery life in remote systems.
- Integrated analog and serial peripherals: simplifies sensor interfacing and reduces component count on industrial PCBs.
Typical Applications
- Battery-powered sensor nodes that require frequent nonvolatile data logging and minimal standby current to maximize field life.
- Handheld instrumentation where fast FRAM writes reduce latency for configuration saves and improve reliability after unexpected power loss.
- Industrial control modules that need deterministic 16-bit processing, onboard timers, and mixed-signal interfaces in a small footprint.
- Consumer metering and utility devices that demand low-energy operation, high write endurance for counters, and robust temperature performance.
MSP430FR2475TPT Advantages vs Typical Alternatives
The device??s FRAM-based architecture offers faster, lower-energy nonvolatile writes compared with typical embedded flash alternatives. It delivers similar or better write endurance and immediate data retention without block-erase cycles. Combined with multiple low-power modes and sub-microamp standby behavior, this part reduces system energy use versus many 8/32?bit flash MCUs. The 16-bit core gives better code density and efficient peripheral control for space- and power-constrained industrial designs.
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MSP430FR2475TPT Brand Info
The MSP430FR2475TPT is part of Texas Instruments?? MSP430 family of ultra-low-power microcontrollers. TI provides development kits, reference designs, and ecosystem tools that speed evaluation, firmware development, and production sourcing for industrial and battery-powered applications.
FAQ
What core architecture is used?
The product uses a 16-bit RISC MSP430 core optimized for low-power embedded control, delivering compact code and responsive interrupt handling for sensor and control tasks.
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Does it support low-voltage operation?
Yes, the device runs from low supply voltages in the 1.8 V to 3.6 V range, enabling direct battery operation and compatibility with common industrial power rails.
How does FRAM benefit my design?
FRAM provides fast, low-energy nonvolatile writes with high write endurance. It eliminates lengthy flash erase cycles and reduces power spikes during data logging and configuration storage.
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Which peripherals are integrated?
The MCU integrates timers, analog-to-digital conversion, and serial communication peripherals suitable for sensor conditioning, control loops, and link-layer interfaces on compact boards.
Is this suitable for harsh temperatures?
Yes, the device is specified for industrial temperature operation, covering typical ranges from ?40 ??C to +85 ??C for reliable field performance in industrial environments.



