MSP430F5308IRGCT Overview
The MSP430F5308IRGCT is a member of a low-power 16-bit microcontroller family designed for control and mixed-signal applications. To produce a complete, specification-accurate product description, the original datasheet or specification sheet is required. The content below emphasizes the need to use only sheet-verified data and points to where verified technical details will be inserted once available. For sourcing and cross-reference, visit IC Manufacturer.
MSP430F5308IRGCT Technical Specifications
| Parameter | Value / Note |
|---|---|
| Core | 16-bit MSP430 CPU ?? see datasheet for clock rate |
| Supply Voltage | Refer to official sheet for exact voltage range |
| Operating Temperature | Refer to sheet for industrial temperature limits |
| Flash Memory | See datasheet for non-volatile memory size |
| SRAM | See datasheet for RAM size |
| Package | Package code IRGCT ?? consult sheet for pin count and footprint |
| Peripheral Count | See datasheet for timers, ADCs, and serial interfaces |
| Power Modes | Refer to datasheet for low-power mode specifications |
MSP430F5308IRGCT Key Features
- Single 16-bit core offering compact code density and predictable control performance in embedded systems.
- Ultra-low-power design enabling longer battery life and lower thermal dissipation for portable and industrial applications.
- Integrated analog and digital peripherals to reduce external component count and improve system reliability and integration.
- Industrial-grade packaging option for deployment in robust environments where temperature and mechanical stability matter.
Typical Applications
- Battery-powered sensor nodes and data-loggers that require extended run-time and precise low-power control across sleep and active modes.
- Industrial control systems that need deterministic 16-bit processing with integrated peripherals to manage I/O, timing, and analog signals.
- Portable measurement instruments where mixed-signal integration and efficient power management reduce BOM and improve portability.
- Embedded motor and actuator control where compact code, low power draw, and reliable interfacing reduce system complexity and cost.
MSP430F5308IRGCT Advantages vs Typical Alternatives
Compared with many higher?power microcontrollers, this part emphasizes power efficiency and tight integration, which can lower total BOM cost. Its 16?bit architecture provides a balance of code density and control performance versus 8?bit devices, while consuming far less energy than many 32?bit alternatives in similar control roles. For sourcing and design comparison, refer to the official datasheet for verified numeric benchmarks and peripheral counts.
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MSP430F5308IRGCT Brand Info
The MSP430F5308IRGCT is produced by Texas Instruments, a global semiconductor manufacturer. Texas Instruments markets the MSP430 family as low?power, mixed?signal microcontrollers suited to battery?sensitive and control applications. Brand documentation and authorized distribution channels are available from Texas Instruments and listed distributors.
FAQ
What is the core architecture?
The device uses the MSP430 16?bit CPU architecture. For precise clock speeds and cycle timing, consult the official datasheet and timing tables.
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Where to get the full datasheet?
Obtain the complete datasheet from the manufacturer??s website or authorized distributors to ensure you use validated electrical, timing, and packaging data for design and procurement.
Which package does IRGCT represent?
IRGCT is a manufacturer package code. The datasheet provides the exact package type, pin count, and recommended PCB footprint for layout and assembly.
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Is this suitable for industrial use?
Industrial suitability depends on specified operating temperature and qualification info in the datasheet. Verify the device??s industrial rating and temperature range before deployment.
How to compare against other MSP430 parts?
Compare memory sizes, peripheral sets, and power specs listed in each part??s datasheet. Use datasheet tables for accurate, side?by?side technical comparisons and BOM decisions.



