MSP430F6779AIPZ Overview
The MSP430F6779AIPZ is a microcontroller-class device requiring accurate datasheet detail to produce a precise product description, technical table, and verified comparisons. To ensure fidelity to the component??s published specifications, provide the official product sheet or a direct datasheet link. Once the sheet is available, I will extract package, memory, clock, peripheral counts, analog performance, and power figures and craft a concise, engineer-focused summary aligned to sourcing and design needs. Refer to the vendor resource at IC Manufacturer for official ordering and compliance documents.
MSP430F6779AIPZ Technical Specifications
| Parameter | Value (from datasheet) |
|---|---|
| Device family / core | (to be populated from sheet) |
| Operating voltage range | (to be populated from sheet) |
| Maximum CPU clock frequency | (to be populated from sheet) |
| Program memory (Flash/FRAM) | (to be populated from sheet) |
| RAM (SRAM) | (to be populated from sheet) |
| ADC resolution and channels | (to be populated from sheet) |
| Number of timers / PWM outputs | (to be populated from sheet) |
| Digital communication interfaces | (to be populated from sheet) |
| Package type and pin count | (to be populated from sheet) |
| Operating temperature range | (to be populated from sheet) |
MSP430F6779AIPZ Key Features
- The main 16-bit MSP430 core delivers deterministic instruction execution, useful for low-latency control loops.
- Integrated mixed-signal peripherals enable sensor interfacing without extra ICs, reducing board area and BOM cost.
- Low-power operating modes extend battery life in portable or remote systems by minimizing active and standby current.
- Flexible serial interfaces support common protocols for easier integration into existing communication architectures.
Typical Applications
- Battery-powered sensor nodes where ultra-low-power sleep modes and fast wake-up times extend operational lifetime over months or years.
- Industrial control endpoints requiring deterministic timing, on-chip analog conversion, and robust serial connectivity for fieldbus or sensor networks.
- Portable medical instruments that need compact microcontroller integration, low standby consumption, and reliable analog front-end support.
- Consumer appliance control panels where cost, low-power idle behavior, and peripheral integration lower manufacturing complexity and unit cost.
MSP430F6779AIPZ Advantages vs Typical Alternatives
The MSP430 architecture often offers lower active and standby current than many 8- and 32-bit alternatives, improving power efficiency for battery-operated systems. Its integrated analog and timer peripherals reduce the need for external components, simplifying BOM and PCB area versus discrete solutions. The 16-bit core provides a balance of processing efficiency and deterministic control compared with higher-power 32-bit MCUs. For designs focused on low energy per operation and high peripheral integration, this device family typically presents a compelling trade-off in efficiency, cost, and integration.
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MSP430F6779AIPZ Brand Info
The MSP430 series is produced by Texas Instruments, a global semiconductor supplier known for analog and embedded processing solutions. This product line emphasizes ultra-low-power microcontrollers with integrated analog and digital peripherals for industrial and portable applications. Documentation, design tools, and support resources are available from Texas Instruments to aid rapid evaluation and deployment.
FAQ
What is the core architecture?
The device uses the MSP430 family??s 16-bit RISC core architecture. This core is optimized for low-power operation and deterministic instruction timing for control applications.
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Where to find the full datasheet?
Obtain the complete datasheet and technical reference from the official vendor website or authorized distributor pages to view verified electrical characteristics, pinouts, and timing diagrams needed for design and compliance.
How to confirm package and pinout?
Check the mechanical and package drawings in the datasheet for exact dimensions, pin assignments, and recommended PCB land patterns before creating production artwork or placing the part.
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What development tools are recommended?
Use vendor-supplied development kits, IDEs, and debugger tools listed on the manufacturer website for code development, programming, and in-circuit debugging to accelerate bring-up.
Where are compliance and ordering details?
Refer to the ordering information, RoHS status, and compliance tables in the official product page to confirm part numbers, packaging options, and regulatory data for procurement and qualification.



