MSP430F2618TPN Overview
The MSP430F2618TPN is a 16-bit, ultra-low-power microcontroller designed for industrial and battery-powered systems that demand efficient processing and integrated analog/peripheral resources. It combines a low-power CPU core with on-chip peripherals such as a 12-bit ADC, multiple timers, serial interfaces, and comparator functions to reduce board-level components. The TPN package provides a compact footprint for space-constrained designs. For sourcing and further product support visit IC Manufacturer.
MSP430F2618TPN Technical Specifications
| CPU Architecture | 16-bit RISC |
| Program Memory (Flash) | 62 KB |
| RAM | 2 KB |
| Maximum Core Clock | 16 MHz |
| ADC Resolution | 12-bit |
| Operating Voltage | 1.8 V to 3.6 V |
| Packages | TPN (TSSOP variant) |
| Low-Power Modes | Several sleep/standby modes (multiple ??A-class currents) |
| Serial Interfaces | USART/USCI modules for UART/SPI/I2C |
| Timers | Multiple 16-bit timer/capture-compare modules |
MSP430F2618TPN Key Features
- 16-bit RISC core that delivers balanced processing for control tasks with low energy per instruction.
- On-chip 12-bit ADC for higher-resolution analog measurement without external ADCs, reducing component count.
- Multiple serial interfaces (UART/SPI/I2C) allowing flexible communication and easy integration with sensors and peripherals.
- Low-power modes that extend battery life by minimizing active current and offering several standby levels for efficient energy management.
- Integrated timers and capture/compare for precise event timing, PWM generation, and real-time control in embedded systems.
Typical Applications
- Battery-powered sensors and metering devices that require low quiescent current and local signal conversion with a 12-bit ADC for accurate measurements over long duty cycles.
- Industrial control nodes where deterministic timer functions and multiple serial interfaces simplify connectivity to field buses and peripheral modules while minimizing external logic.
- Handheld instrumentation that benefits from a 16-bit core for efficient arithmetic and a compact TPN package to save PCB area without sacrificing peripheral integration.
- Embedded motor or actuator control systems requiring precise PWM generation and capture/compare timing for deterministic control loops and position sensing.
MSP430F2618TPN Advantages vs Typical Alternatives
The MSP430F2618TPN combines a 16-bit RISC core with integrated analog and serial peripherals to offer a more compact BOM versus solutions that separate MCU and ADC functions. Its ultra-low-power modes reduce average system current compared to many 8-bit alternatives, and the 12-bit ADC provides higher resolution than common 8- or 10-bit converters. With multiple communication channels and timer resources on-chip, it supports tighter integration and fewer external components, delivering better power density and lower system cost.
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MSP430F2618TPN Brand Info
The MSP430F2618TPN is a member of the MSP430 microcontroller family from Texas Instruments. The MSP430 lineup is known for ultra-low-power performance, integrated analog/peripheral functions, and broad support for industrial and portable applications, enabling reliable designs and long field lifetimes.
FAQ
What core does it use?
It uses a 16-bit RISC core optimized for low-power embedded control, providing efficient instruction throughput and compact code density for typical sensor and control algorithms.
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What ADC capabilities exist?
The device includes a 12-bit ADC for higher-resolution analog-to-digital conversion, enabling more accurate sensor readings and reduced need for external converters in measurement systems.
Which serial interfaces are available?
On-chip serial modules support common protocols such as UART, SPI, and I2C via USCI/USART modules, allowing straightforward interfacing with displays, sensors, and external memory.
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How does the package help PCB design?
The TPN package provides a compact, low-profile footprint suitable for space-constrained PCBs while keeping peripheral pins accessible for signal routing and board-level integration.
Is it suitable for battery-powered designs?
Yes. The MCU supports multiple low-power modes and operates across a wide voltage range, making it well suited for battery-powered and energy-sensitive applications where long operating life is critical.



