MSP430F5338IPZ Overview
The MSP430F5338IPZ is a member of the MSP430 microcontroller family. It is built for low-power embedded systems that need compact integration of analog and digital peripherals. This device targets energy-conscious applications where run-time efficiency and predictable peripheral control matter. For procurement and technical validation, consult the official data sheet for pinout, memory and timing tables. For component sourcing, visit IC Manufacturer to confirm availability and authorized distribution channels.
MSP430F5338IPZ Technical Specifications
| Parameter | Value / Guidance |
|---|---|
| Core architecture | 16-bit RISC MSP430 family |
| Operating voltage | Refer to official datasheet for supported VCC range |
| Maximum clock rate | See datasheet for CPU clock and frequency scaling |
| On-chip memory | Consult datasheet for Flash, RAM, and any non-volatile memory sizes |
| Package options | Datasheet lists package type, pin count, and mechanical drawings |
| Analog peripherals | Refer to datasheet for ADC resolution, channel count, and reference options |
| Digital peripherals | Datasheet specifies timers, UART/SPI/I2C interfaces and channels |
| Operating temperature | See datasheet for industrial, extended, or commercial temperature grades |
| Power modes | Datasheet documents sleep/standby modes and current consumption for each |
| Package marking / ordering code | Check datasheet and ordering guide for full ordering codes |
MSP430F5338IPZ Key Features
- Single 16-bit core capability with direct benefit: efficient integer arithmetic and low-code density for compact firmware.
- Integrated analog and digital peripherals plus flexible I/O, enabling streamlined board designs with fewer external parts.
- Designed for low-power operation to extend battery life and reduce system thermal load in portable or always-on devices.
- Comprehensive peripheral set to support sensor interfaces, communication protocols, and timing tasks with reliable deterministic behavior.
Typical Applications
- Battery-powered sensor nodes that require deep-sleep modes and peripheral wake-up to maximize lifetime and reduce maintenance cycles.
- Industrial control endpoints where predictable timing, multiple serial interfaces, and robust low-power modes support long-term field deployment.
- Consumer handheld products that need a compact microcontroller with integrated peripherals to limit BOM cost and board area.
- Metering and data acquisition modules that demand stable analog front-end support, low drift, and reliable low-power sampling strategies.
MSP430F5338IPZ Advantages vs Typical Alternatives
The MSP430F5338IPZ inherits the MSP430 lineage of ultra-low power design and tight peripheral integration. Compared with many 8-bit MCUs, it offers a 16-bit core with higher computational efficiency and denser code storage. Compared with some higher-power 32-bit options, this device often enables lower active and standby current, reducing system-level power budgets. For teams optimizing cost, board space, and battery life, the device typically reduces external component count and simplifies firmware for mixed analog/digital tasks. Verify exact metrics in the official datasheet to quantify advantages for your design.
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MSP430F5338IPZ Brand Info
The MSP430 family is produced by Texas Instruments, a global semiconductor manufacturer. The MSP430 line emphasizes low-power embedded processing with robust analog integration and extensive development ecosystem. Texas Instruments supports device documentation, reference designs, and development tools for rapid prototyping and volume production.
FAQ
What is the core architecture?
The device uses a 16-bit MSP430 RISC core. For cycle timing, instruction set details, and core enhancements, consult the official datasheet and family user guide for exact CPU parameters and programming model.
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Where to find pinout and package drawings?
Pinout, package dimensions, and solder-reflow guidelines are published in the official device datasheet and mechanical drawings. Use those documents for PCB footprint design and thermal considerations during layout.
How to confirm power and current budgets?
Power rails, recommended operating voltages, and measured current consumption per power mode are listed in the datasheet. Evaluate those tables to size power supplies and estimate battery life accurately for your application.
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Which development tools support this part?
Texas Instruments provides development kits, IDE support, and example code for the MSP430 family. Check TI??s resource pages and the device datasheet for recommended toolchains and example projects compatible with this part.
How to obtain production and sourcing information?
Use authorized distributors and the manufacturer??s ordering guide to confirm lead times, MOQ, and tape-and-reel options. The datasheet and ordering information pages list full ordering codes and package variants for procurement teams.



