MSP430F4270IRGZT Overview
The MSP430F4270IRGZT is a low-power 16-bit microcontroller optimized for energy-sensitive industrial designs. It combines a compact CPU core with integrated analog and digital peripherals to reduce external components and board area. With multiple A/D and timer resources, the device targets mixed-signal control, sensing and display tasks where lower power and tighter integration matter. Reference and sourcing engineers can verify availability and ordering details at IC Manufacturer.
MSP430F4270IRGZT Technical Specifications
| Parameter | Value |
|---|---|
| Core | 16-bit RISC CPU |
| Maximum CPU Clock | 25 MHz |
| Flash Memory | 256 KB |
| SRAM | 16 KB |
| Analog-to-Digital Converter | 12-bit ADC |
| Digital-to-Analog Converter | 2 ?? 12-bit DAC |
| Operating Voltage Range | 1.8 V to 3.6 V |
| Temperature Range | -40 ??C to 85 ??C |
| Package | 100-pin LQFP (RGT suffix) |
| Peripherals | Timers, UART, SPI, I2C, LCD controller |
MSP430F4270IRGZT Key Features
- Low-power 16-bit core delivers efficient instruction throughput for longer battery life in portable and remote systems.
- High-resolution 12-bit ADC enables more precise sensor readings, improving control accuracy compared with lower-resolution alternatives.
- Integrated DACs and LCD controller reduce external component count and lower BOM cost while simplifying board layout.
- Wide operating voltage support (1.8?C3.6 V) provides more flexibility across single-cell and regulated power domains.
Typical Applications
- Battery-powered sensor nodes and data loggers where lower active and standby currents extend operating time between charges or battery replacements.
- Industrial measurement equipment that requires 12-bit conversion accuracy and integrated peripherals to minimize external analog front-end complexity.
- Human-machine interfaces with segment or dot-matrix displays that use the on-chip LCD controller to reduce PCB routing and cost.
- Embedded control for motor drivers, lighting, or HVAC subsystems where compact MCU integration and multiple timers simplify system design.
MSP430F4270IRGZT Advantages vs Typical Alternatives
The device combines lower power consumption with higher on-chip integration compared with many general-purpose 8-bit MCUs. Designers gain up to 12-bit analog resolution and dual DAC outputs without adding discrete converters. The 16-bit core offers finer control over arithmetic and control tasks than 8-bit parts and often requires fewer cycles for comparable algorithms. The broad voltage range and integrated LCD support further reduce external components and system cost while improving reliability in industrial and portable applications.
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MSP430F4270IRGZT Brand Info
Taken from the original manufacturer, this microcontroller is part of the MSP430 family from Texas Instruments. The family is known for ultra-low-power 16-bit MCUs and a broad ecosystem of development tools, software libraries, and technical documentation that accelerate time to market for industrial and battery-powered applications.
FAQ
What core architecture does it use?
It uses a 16-bit RISC architecture typical of the MSP430 family. That architecture emphasizes low active current and fast wake-up times for energy-efficient embedded control tasks.
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What analog precision is available?
The MCU provides a 12-bit analog-to-digital converter and dual 12-bit DACs. These on-chip converters help achieve finer measurement and control resolution compared with 8-bit ADC/DAC alternatives.
What power supply voltages are supported?
The device operates across a wide voltage window from 1.8 volts up to 3.6 volts, enabling use with single-cell lithium systems and standard 3.3 V regulated rails.
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Which packages are offered for sourcing?
This part is available in a high-pin-count LQFP package to support many I/O lines and integrated peripherals. Check distributor listings for exact package codes and lead-free status.
Where can engineers find development tools?
Developers can use the MSP430 toolchain, evaluation modules, and software libraries from the manufacturer??s ecosystem. These tools speed evaluation, prototyping, and production firmware development.



