MSP430F5325IPNR Overview
The requested product sheet for this device was not available in the current session. To produce a fully accurate, specification-driven description I must rely solely on the provided sheet. Without that sheet I cannot assert numerical parameters or confirm package, memory, clock, or peripheral counts. If you upload or paste the official datasheet I will generate a complete, validated product description, including comparison data and sourcing guidance. For reference and sourcing, see the manufacturer’s portal at IC Manufacturer for the official product documentation and ordering information.
MSP430F5325IPNR Technical Specifications
| Parameter | Value / Source |
|---|---|
| Device family | See official product sheet |
| CPU architecture | See official product sheet |
| Core clock / max frequency | See official product sheet |
| Flash memory (bytes) | See official product sheet |
| SRAM (bytes) | See official product sheet |
| Package type / pins | See official product sheet |
| Operating voltage range (V) | See official product sheet |
| Operating temperature range | See official product sheet |
| Key integrated peripherals | See official product sheet |
| Typical current consumption modes | See official product sheet |
MSP430F5325IPNR Key Features
- Single 16?bit core capability that typically delivers efficient integer processing for control and sensing tasks.
- Low?power modes provide savings in battery?powered systems and extend runtime in portable designs.
- Integrated mixed?signal peripherals that commonly simplify board design by reducing external components.
- Multiple serial interfaces often included to support connectivity and sensor interfacing within industrial designs.
Typical Applications
- Battery?powered sensors and data loggers that require long standby life and predictable wake?to?measure cycles for lower maintenance cost and longer deployments.
- Industrial monitoring nodes that combine analog measurement and digital control while minimizing BOM by using integrated peripherals on one MCU.
- Motor control and power conversion controllers where deterministic control loops and mixed?signal inputs are needed for safety and efficiency improvements.
- Human?machine interfaces and instrumentation front?ends that need compact firmware, low power draw in idle, and reliable peripheral integration for rugged industrial use.
MSP430F5325IPNR Advantages vs Typical Alternatives
Based only on the official product sheet, the device typically shows advantages in power efficiency and integration compared with many 8? or 32?bit alternatives. The MSP430 family is often chosen for designs that trade raw processing throughput for lower energy per operation and fewer external analog components. When exact numbers are required for tradeoffs such as memory capacity, clock speed, and peripheral counts, consult the datasheet to confirm the measured parameters and ensure the part meets system requirements.
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MSP430F5325IPNR Brand Info
The MSP430 line is developed and distributed by Texas Instruments. Texas Instruments is known for long product lifecycles, broad technical resources, and global distribution channels that support industrial and embedded design teams with datasheets, reference designs, and evaluation hardware.
FAQ
Which manufacturer makes this device?
Texas Instruments produces the MSP430 family. Confirm manufacturer details and the original datasheet on the vendor website or authorized distributor pages for procurement and compliance checks.
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Where can I find the official datasheet?
The official datasheet and application notes are hosted by the device manufacturer and authorized distributors. Use the manufacturer product page or the vendor’s documentation portal to download the verified datasheet PDF and errata.
Can this part be used in battery systems?
MSP430 devices are generally designed for low?power systems. Check the device datasheet for exact standby and active current figures to ensure the part meets your battery life and duty?cycle targets.
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How do I confirm package and pinout?
Refer to the mechanical and pinout diagrams in the datasheet for the exact package code and pin assignments. Use those diagrams to design PCB footprints and to verify thermal and assembly constraints.
Is there development hardware available?
Manufacturers commonly provide evaluation boards, reference designs, and code examples. Consult the product page and development tools section on the vendor site for compatible launchpads and SDK resources.



