MSP430F5328IZXHR Overview
The MSP430F5328IZXHR is an industrial-grade, ultra-low-power microcontroller built around a 16-bit MSP430 core. It targets embedded engineers and sourcing specialists who need a compact, deterministic MCU with mixed-signal integration for control, sensing, and communication tasks. The device combines a single 16-bit core, on-chip analog conversion and timer/peripheral resources to simplify board-level design and speed time-to-market. Designers benefit from a broad operating voltage range and industrial temperature rating for robust field deployment. For sourcing and component reference visit IC Manufacturer.
MSP430F5328IZXHR Technical Specifications
| Part number | MSP430F5328IZXHR |
| Manufacturer | Texas Instruments |
| CPU architecture | 16-bit MSP430 core |
| CPU cores | 1 |
| Maximum clock | 25 MHz |
| Operating voltage | 1.8 ?C 3.6 V |
| ADC resolution | 12-bit |
| Temperature range | ?40 ??C to 85 ??C |
| Package suffix | IZXHR |
| On-chip peripherals | Timers, serial interfaces, ADC, DMA |
MSP430F5328IZXHR Key Features
- Single 16-bit MSP430 core that delivers deterministic execution for real-time embedded control.
- 12-bit analog conversion on-chip, enabling accurate sensor interfacing without external ADCs.
- Ultra-low-power architecture that reduces system energy consumption and extends battery life.
- Integrated timers, serial peripherals and DMA support to offload CPU and increase system efficiency.
Typical Applications
- Battery-powered sensor nodes where low power operation and precise 12-bit measurement are required for long field lifetime and accurate data logging.
- Industrial control modules needing a deterministic 16-bit core and robust operating range for motor control or process monitoring in harsh environments.
- Portable instruments that demand compact MCU integration of timers, serial interfaces, and ADC to reduce board space and component count.
- Energy metering and power monitoring where mixed-signal integration and reliable operation across a wide voltage range improve measurement accuracy and reliability.
MSP430F5328IZXHR Advantages vs Typical Alternatives
The device offers a focused balance of ultra-low-power operation and mixed-signal integration versus larger, higher-power MCUs. With a single 16-bit MSP430 core and on-chip 12-bit ADC, it delivers lower energy use and fewer external components compared with 32-bit general-purpose alternatives. The industrial temperature rating and broad supply range make it better suited for fielded systems than many consumer-grade parts. Overall, it provides a more compact and energy-efficient solution for sensing and control tasks where deterministic timing and analog accuracy matter.
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MSP430F5328IZXHR Brand Info
The MSP430F5328IZXHR is part of the MSP430 family from Texas Instruments, a long-established semiconductor vendor focused on low-power microcontrollers. TI positions MSP430 devices for efficient, reliable embedded control with extensive development tools and ecosystem support to accelerate prototyping and production.
FAQ
What core does it use?
The MCU uses a 16-bit MSP430 core optimized for ultra-low-power embedded control, providing deterministic instruction timing suitable for real-time tasks and low-energy applications.
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What analog capability is included?
On-chip 12-bit analog-to-digital conversion supports accurate sensor measurements and reduces the need for external ADCs, simplifying board design and lowering component count.
What supply voltage does it accept?
The device operates across a broad supply range from 1.8 V up to 3.6 V, allowing flexible power arrangements for battery-operated and single-supply industrial systems.
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Is it suitable for industrial use?
Yes. The part is offered in an industrial-grade configuration with an operating temperature range intended for field deployments and applications exposed to wider temperature swings.
What peripherals accelerate tasks?
Integrated timers, serial interfaces and DMA channels are available to offload the CPU, enabling efficient data movement and peripheral control without constant processor involvement.



