MSP430FR5994IRGZT Overview
The MSP430FR5994IRGZT is a low-power, 16?bit microcontroller built with non?volatile FRAM memory and a feature set aimed at industrial control and metering. It combines a compact package with a rich peripheral mix to enable real-time control, analog sensing, and secure system tasks. Use this device when you need lower energy per operation, faster non?volatile writes, and deterministic behavior for stateful embedded designs. Learn more at IC Manufacturer.
MSP430FR5994IRGZT Technical Specifications
| Parameter | Value |
|---|---|
| CPU | 16?bit RISC core |
| Non?volatile Memory | 256 KB FRAM |
| SRAM | 16 KB |
| Maximum CPU Frequency | 16 MHz |
| Operating Voltage | 1.8 V to 3.6 V |
| ADC Resolution | 12?bit |
| GPIO / I/O Pins | 70 available I/Os (package-dependent) |
| Package | 100?pin LQFP / VQFN style (IRGZT suffix) |
| Temperature Range | -40 ??C to +85 ??C |
| Timers / PWM | Multiple 16?bit timers for PWM and capture/compare |
| Communication Interfaces | SPI, I2C, UART, enhanced serial modules |
MSP430FR5994IRGZT Key Features
- FRAM non?volatile memory for fast, wear?resistant writes and preserved data across power cycles, reducing EEPROM or external flash needs.
- 16?bit core delivering balanced computational efficiency and compact code density for real?time control tasks.
- Low operating voltage and optimized power modes to extend battery life and lower system energy consumption in portable and metered designs.
- Rich analog integration including a 12?bit ADC and multiple comparators, simplifying sensor interfacing and reducing external component count.
Typical Applications
- Smart meters and energy monitoring where fast, frequent non?volatile logging and low energy per write are needed to store usage data reliably over years.
- Industrial control nodes that require deterministic state retention during power interruptions and a mix of analog inputs plus real?time timers for process control.
- Portable medical devices that rely on low supply voltage, long battery life, and secure retention of calibration or patient data between sessions.
- Motor control and power conversion front ends that benefit from multiple 16?bit timers, PWM outputs, and integrated analog measurements for closed?loop control.
MSP430FR5994IRGZT Advantages vs Typical Alternatives
The FRAM?based MCU offers faster non?volatile writes, lower energy per write, and higher write endurance than EEPROM or NOR flash alternatives. The 16?bit core delivers more compact code compared with many 32?bit options for simple control tasks, and the integrated analog and timer peripherals reduce BOM and board area. For low?voltage systems, the device runs from 1.8?C3.6 V and supports deep low?power modes, yielding longer battery runtimes versus typical microcontrollers with higher quiescent currents.
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MSP430FR5994IRGZT Brand Info
The device is part of the MSP430 family produced by Texas Instruments. TI positions this line for ultra?low?power embedded applications that require non?volatile memory integration and robust analog peripherals. The brand emphasizes long lifecycle availability and broad ecosystem support for development tools, IDEs, and code libraries.
FAQ
What type of memory does it use?
The device uses on?chip FRAM (ferroelectric RAM), which provides non?volatile storage with high endurance, near?RAM speed writes, and low energy per write compared to EEPROM or flash.
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What supply voltages are supported?
It operates across a low?voltage range suitable for battery powered designs. The supported range allows flexible supply options and compatibility with many sensor front ends.
Can it handle precision analog sensing?
Yes. The MCU integrates a 12?bit ADC and analog comparators that support multi?channel sensor measurement and reduce the need for external ADC components in many designs.
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Is it suitable for industrial temperatures?
The device is rated for industrial ambient ranges and supports robust operation down to -40 ??C and up to +85 ??C, making it appropriate for field and factory environments.
What are typical communication options?
Multiple serial interfaces are available, including SPI, I2C, and UART. These allow easy integration with sensors, power metering ICs, and host processors in industrial and consumer systems.



