MSP430F6726IPZ Overview
The MSP430F6726IPZ is a low-power, 16?bit microcontroller designed for mixed-signal industrial applications. It combines an efficient 16?bit RISC CPU with integrated analog and digital peripherals for real-time control, sensor interfacing, and communications. The device supports a wide supply range and multiple low?power modes to extend battery life or reduce system thermal load. For sourcing and component information, visit IC Manufacturer.
MSP430F6726IPZ Technical Specifications
| Parameter | Value |
|---|---|
| CPU architecture | 16?bit RISC |
| Maximum operating frequency | 25 MHz |
| Core supply voltage (VCC) | 1.8 ?C 3.6 V |
| Flash memory | 256 KB |
| SRAM | 16 KB |
| ADC resolution | 12?bit |
| DMA channels | 8 channels |
| Package | 100?pin LQFP |
| Operating temperature range | -40 ??C to +85 ??C |
| Number of timers | 3 ?? Timer_A / advanced timer blocks |
| Communication interfaces | Multiple UART/SPI/I2C (eUSCI modules) |
MSP430F6726IPZ Key Features
- 16?bit RISC core that delivers tighter code density and faster integer performance compared with older 8?bit MCUs.
- Up to 25 MHz system clock enabling higher throughput for signal processing and control loops.
- 12?bit ADC for precise sensor measurements and improved resolution over 10?bit converters.
- Multiple low?power modes to reduce energy consumption in active, standby, and sleep states for longer battery life.
- On?chip DMA with multiple channels to offload data movement from the CPU and lower system latency.
- Extensive peripheral set including timers and serial controllers for flexible real?time control and communication.
- Industrial temperature range suited for harsh environments and reliable operation compared with consumer?grade parts.
- Ample flash and RAM to host complex firmware, bootloader logic, and in?field upgrade code without external memory.
Typical Applications
- Precision sensor hubs and data loggers that need a low?power microcontroller with a 12?bit ADC for accurate analog measurement and local data handling over extended deployments.
- Motor and power control in industrial drives where deterministic timers, DMA support and a 16?bit core provide tighter control loops and reduced CPU overhead.
- Embedded communications gateways that require multiple UART/SPI/I2C interfaces and robust flash memory for protocol stacks and firmware updates in field equipment.
- Battery?powered or energy?harvesting instruments where multiple low?power modes and wide supply range extend operating time compared with higher?consumption MCUs.
MSP430F6726IPZ Advantages vs Typical Alternatives
The device pairs a compact 16?bit RISC core with industry?grade analog and DMA features for more efficient real?time system designs. Compared to many 8?bit controllers, it delivers higher code density and faster arithmetic performance while using similar or lower power per operation. The integrated 12?bit ADC, multiple timers, and several serial interfaces reduce BOM count versus solutions that require external converters or bridge ICs. For applications needing both low power and high integration, this part often provides a better balance of performance, peripheral richness, and energy efficiency.
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MSP430F6726IPZ Brand Info
The MSP430F6726IPZ is part of the MSP430 family from Texas Instruments. TI positions these microcontrollers for ultra?low?power and mixed?signal applications. The brand emphasizes reliable industrial performance, extensive development tools, and long product support for embedded system designers and sourcing teams.
FAQ
What CPU architecture is used?
The microcontroller uses a 16?bit RISC architecture. This provides improved code density and more efficient integer performance compared with many 8?bit MCUs.
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What is the supply voltage range?
The device operates across a wide supply range of approximately 1.8 to 3.6 volts, enabling compatibility with common battery chemistries and low?voltage systems.
Does it include an ADC and what resolution?
Yes. A 12?bit analog?to?digital converter is integrated on?chip, supporting higher measurement resolution for sensors than typical 10?bit converters.
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How many DMA channels are available?
The MCU provides multiple DMA channels to offload memory transfers from the CPU, improving data throughput and reducing interrupt overhead for time?sensitive tasks.
What temperature range is supported?
The device is specified for industrial operation, covering approximately -40 ??C to +85 ??C, making it suitable for many field and factory?automation environments.



