MSP430F5308IRGCR Overview
The MSP430F5308IRGCR is a low-power, 16-bit microcontroller engineered for industrial and battery-powered control tasks. It combines a compact package with multiple integrated peripherals to reduce system size and BOM. The device targets designers who need efficient processing, precise analog conversion, and flexible serial connectivity in constrained power budgets. For sourcing and vendor details, see IC Manufacturer.
MSP430F5308IRGCR Technical Specifications
| Parameter | Value |
|---|---|
| CPU Architecture | 16?bit RISC MSP430 core |
| Maximum Operating Frequency | Up to 25 MHz |
| Flash Memory (non-volatile) | 64 KB |
| SRAM | 2 KB |
| ADC Resolution | 12?bit successive approximation (SAR) |
| Timers | Three 16?bit timers |
| Supply Voltage Range | 1.8 V to 3.6 V |
| Operating Temperature | -40 ??C to +85 ??C |
| Package | 64?pin QFN (IRGCR) |
| Peripherals | USART, SPI, I2C, DMA controller |
MSP430F5308IRGCR Key Features
- 16-bit RISC core delivers predictable instruction timing and compact code density for lower memory needs and faster real-time response.
- Low-power modes reduce energy draw in standby and active states, extending battery life in portable and remote systems.
- Integrated 12-bit ADC enables finer analog resolution for sensor interfacing and control accuracy without external converters.
- Multiple serial interfaces (USART, SPI, I2C) simplify connectivity to peripherals and reduce external component count.
Typical Applications
- Battery-powered sensor nodes requiring low?power sleep states and accurate 12?bit ADC measurements for long-term remote monitoring and telemetry.
- Industrial control modules where a compact 64?pin QFN package, multiple timers, and serial buses reduce board area and simplify integration.
- Motor control front ends that need deterministic 16?bit processing, multiple timers, and DMA support to offload routine data movement for improved throughput.
- Human?machine interfaces (HMIs) and portable instrumentation that demand low power, precise analog conversion, and reliable serial communication.
MSP430F5308IRGCR Advantages vs Typical Alternatives
The device offers a balance of power efficiency, integrated analog, and compact packaging compared with larger 32?bit microcontrollers. Its 16?bit core yields smaller code size and lower dynamic current for similar control tasks, while on?chip ADC and multiple serial ports reduce BOM and board area. For applications where energy per operation, real?time determinism, and minimal external components matter, this MCU provides more focused efficiency and simpler hardware integration than many general?purpose alternatives.
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MSP430F5308IRGCR Brand Info
The MSP430F5308IRGCR is part of the MSP430 microcontroller family from Texas Instruments. TI positions these devices for low?power embedded systems with a focus on mixed?signal integration, broad toolchain support, and industrial reliability for designers and sourcing teams.
FAQ
What is the core architecture?
The device uses a 16?bit RISC MSP430 core, designed for low power and efficient code density. This architecture is optimized for tight loop execution and predictable timing in control applications.
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Which development tools support it?
Standard MSP430 toolchains such as TI??s Code Composer Studio and common third?party compilers/debuggers support development, providing debugger, flash programming, and performance analysis utilities.
What voltage ranges are supported?
Supply operation is supported across a wide single?supply range suitable for battery and industrial rails. Designers should adhere to 1.8 V to 3.6 V operating limits and reference the datasheet for peripheral voltage constraints.
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How many ADC bits does it have?
The integrated ADC provides 12?bit resolution, enabling more precise sensor measurements and improved control fidelity compared with typical 10?bit converters in similar classes.
Where can I find the full datasheet?
Download the official datasheet and device documentation from the manufacturer??s product page to confirm detailed electrical characteristics, pin assignments, and recommended PCB layout practices before design or procurement.




