MSP430FR2532IRGER Overview
The MSP430FR2532IRGER is a low-power, 16-bit MCU built with non-volatile FRAM memory and an energy-efficient MSP430 CPU. It combines deterministic real-time control with integrated analog and digital peripherals for compact embedded designs. The device targets battery-powered and industrial control uses where lower standby current and faster non-volatile writes matter. For procurement and detailed ordering information visit IC Manufacturer.
MSP430FR2532IRGER Technical Specifications
| Parameter | Value |
|---|---|
| CPU Architecture | 16-bit MSP430 core |
| Non-volatile Memory | FRAM (on-chip) |
| Maximum CPU Frequency | Up to 16 MHz |
| Operating Voltage | 1.8 V to 3.6 V |
| Operating Temperature | -40 ??C to +85 ??C (industrial) |
| Package Type | 20-pin VQFN (RGE) |
| Low-Power Modes | Multiple LPM states with sub-??A standby currents |
| Integrated Peripherals | Timers, ADC, comparators, serial eUSCI modules (UART/SPI/I2C) |
| GPIO Count | Multiple digital I/O pins (package dependent) |
| Write Endurance / Data Retention | FRAM characteristics: fast writes and high endurance vs typical flash |
MSP430FR2532IRGER Key Features
- 16-bit MSP430 core for compact code and efficient control in real-time tasks.
- On-chip FRAM that enables faster non-volatile writes and higher endurance compared with flash, reducing firmware update time.
- Ultra-low-power operation with multiple low-power modes to extend battery life in duty-cycled systems.
- Integrated analog and serial peripherals (ADC, comparators, eUSCI) to minimize external components and accelerate system integration.
Typical Applications
- Battery-powered sensors and data loggers where low standby current and fast FRAM writes reduce power drain and improve reliability over flash-based alternatives.
- Industrial control nodes requiring robust non-volatile storage, deterministic control timing, and wide temperature operation from -40 ??C to +85 ??C.
- Human-machine interfaces with compact MCU footprints where integrated ADCs and serial interfaces reduce board area and BOM cost.
- Portable medical monitors and wearable devices that need low power, fast non-volatile parameters storage, and reliable operation across varied supply voltages.
MSP430FR2532IRGER Advantages vs Typical Alternatives
The device pairs a 16-bit core with FRAM to deliver faster non-volatile writes and greater endurance than flash-based MCUs. It runs at up to 16 MHz while operating from 1.8 V to 3.6 V, offering wider input range than some narrow-voltage competitors. Multiple low-power modes provide lower standby currents than many mainstream microcontrollers, helping designs meet stricter battery life targets. Integrated analog and serial modules reduce component count and speed time-to-market for control and sensing applications.
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MSP430FR2532IRGER Brand Info
The MSP430FR2532IRGER is produced by Texas Instruments, a longstanding semiconductor vendor focused on analog and embedded processing. The MSP430 family emphasizes ultra-low-power MCU solutions, FRAM-based non-volatile memory technology, and broad toolchain support for rapid development and deployment.
FAQ
What memory type does it use?
The device uses on-chip FRAM non-volatile memory. FRAM provides faster write times and far higher endurance than typical flash, which benefits frequent data logging and runtime configuration storage.
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What voltage range is supported?
It operates from 1.8 V to 3.6 V. This range supports common battery chemistries and standard 3.3 V systems and keeps the MCU compatible with many mixed-signal front ends.
Which serial interfaces are available?
On-chip serial communication is provided by eUSCI modules that support UART, SPI, and I2C modes. These interfaces enable connectivity with sensors, memories, and host controllers without adding external bridge chips.
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Is it suitable for industrial temperatures?
Yes. The device supports industrial temperature operation from -40 ??C up to +85 ??C, making it suitable for factory automation, industrial sensors, and harsh-environment deployments.
How does FRAM help battery-powered designs?
FRAM reduces write energy and time compared with flash, enabling short, infrequent power-on events to store data. Combined with multiple low-power modes, this lowers average system power and extends battery life in portable applications.



