MSP430F5328IRGCT Overview
The MSP430F5328IRGCT is a low?power, 16?bit microcontroller designed for industrial and embedded control. It combines a tight power budget with a predictable execution model and integrated peripherals for sensing, communication, and timing. The device targets designs that need more efficient power use, compact integration, and deterministic performance compared with older 8? or 32?bit alternatives. For procurement and detailed sourcing visit IC Manufacturer.
MSP430F5328IRGCT Technical Specifications
| Core | 16?bit RISC CPU |
| Maximum core clock | Up to 25 MHz |
| Operating voltage | 1.8 V to 3.6 V |
| Flash memory | 32 KB |
| SRAM | 4 KB |
| ADC | 12?bit, multi?channel |
| Timers | Multiple 16?bit timers (PWM/capture/compare) |
| Communication | USCI modules: UART, SPI, I2C |
| DMA | Integrated DMA channels for peripheral transfers |
| Package | 64?pin TQFP (IRGCT) |
| Temperature range | Industrial (?40 ??C to +85 ??C) |
| Typical applications | Embedded control, sensor interfaces, communication nodes |
MSP430F5328IRGCT Key Features
- One 16?bit RISC core delivering balanced compute and low power for real?time control with predictable instruction timing.
- Integrated 12?bit ADC and multiple timers for precise sensing and timing, which matters for measurement accuracy and closed?loop control.
- Low operating voltage (1.8?C3.6 V) and advanced low?power modes for longer battery life and lower system standby current compared with many 32?bit alternatives.
- Multiple serial interfaces (UART, SPI, I2C) and DMA support enable higher throughput and reduced CPU overhead for data movement and communication.
Typical Applications
- Industrial sensor node where low standby current and a 12?bit ADC provide stable measurements and extended field life for wired or battery systems.
- Precision motor control for small industrial actuators using multiple 16?bit timers and PWM outputs to achieve finer speed and torque regulation.
- Battery?powered metering and data loggers that need efficient flash storage, low power modes, and deterministic sampling intervals for accurate records.
- Embedded communication gateway where UART, SPI, and I2C interfaces connect multiple peripherals and sensors with minimal CPU load via DMA.
MSP430F5328IRGCT Advantages vs Typical Alternatives
The device balances low power and real?time control better than many general?purpose 8?bit controllers. It offers more deterministic timing and more integrated analog and timer resources than typical low?end MCUs. Compared to higher?clock 32?bit parts, it often consumes less energy at equivalent control tasks, and it integrates relevant peripherals??ADCs, multiple timers, and serial modules??reducing bill?of?materials and PCB area.
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MSP430F5328IRGCT Brand Info
MSP430F5328IRGCT is part of Texas Instruments’ MSP430 microcontroller family. TI positions this family for ultralow?power embedded control and sensing. The brand emphasizes energy efficiency, robust peripheral integration, and broad toolchain support for industrial and battery?sensitive applications.
FAQ
What core does it use?
The device uses a 16?bit RISC MSP430 CPU core. This core is optimized for low power and predictable instruction timing. It suits control loops and real?time sensing tasks.
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What is the supply voltage?
Supply voltage ranges from 1.8 V to 3.6 V. This range supports both single?cell battery systems and common 3.3 V industrial rails while enabling low?power operation.
Does it include ADC functionality?
Yes. It integrates a 12?bit ADC with multiple channels. That ADC supports accurate sampling for sensors and control tasks without adding an external converter.
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How many serial interfaces are available?
Multiple USCI serial modules are provided. These support UART, SPI, and I2C protocols to connect sensors, displays, and communication modules with low software overhead.
Is the part suitable for industrial use?
Yes. The device is offered in a 64?pin industrial package and supports an industrial temperature range. It is suitable for harsh environments and long?life embedded systems.



