MSP430F2416TPMR Overview
The MSP430F2416TPMR is an ultra-low-power, 16-bit microcontroller designed for compact embedded control and sensing tasks. It combines a 16?bit RISC core with integrated mixed-signal peripherals to reduce external components and board area. Typical strengths include low active and standby currents, on-chip flash memory, and multiple timers and serial interfaces for real-time control. Engineers and sourcing teams can explore component availability and support at IC Manufacturer.
MSP430F2416TPMR Technical Specifications
| Parameter | Value |
| CPU | 16?bit RISC core |
| Maximum CPU Clock | 16 MHz |
| Flash Memory | 16 KB |
| RAM | 512 B |
| Operating Voltage | 1.8 V to 3.6 V |
| Temperature Range | -40 ??C to +85 ??C |
| ADC Resolution | 10?bit |
| Timers | 2 ?? 16?bit Timer_A |
| Serial Interfaces | USCI module supporting UART, SPI, I2C |
| Low?Power Modes | Multiple LPM states for standby and retention |
| On?chip Peripherals | Comparator, watchdog, hardware multiplier |
| Package Type (suffix) | TPMR (commercial package code) |
MSP430F2416TPMR Key Features
- Low-power 16?bit core ?? balances processing throughput with minimal active current for battery-powered systems.
- Integrated flash and RAM ?? reduces BOM and simplifies firmware storage and runtime data handling on compact PCBs.
- Multiple timers and real-time peripherals ?? enable precise PWM, scheduling, and measurement without extra ICs.
- USCI serial module ?? supports UART, SPI, and I2C to interface with sensors, memory, and communication transceivers.
- 10?bit ADC ?? provides analog measurement resolution suitable for many sensing applications with fewer external components.
- Wide supply range ?? operates across 1.8?C3.6 V, making it compatible with single-cell and multi-rail designs.
- Robust low-power modes ?? several LPM states let designs trade latency for ultra-low standby consumption.
- On-chip comparator and multiplier ?? offloads simple signal conditioning and math operations from software for faster response.
Typical Applications
- Battery-powered sensor nodes for industrial monitoring, where low active and standby current extend battery life and reduce maintenance intervals.
- Human-machine interfaces in portable instruments, providing responsive buttons, displays, and serial connectivity while minimizing power draw.
- Motor and power control tasks that need real-time timers and PWM outputs combined with compact firmware storage on a single package.
- Communications bridges and protocol translators that require UART, SPI, or I2C masters and slaves with small code footprint and predictable timing.
MSP430F2416TPMR Advantages vs Typical Alternatives
The device offers a favorable balance of low power, integrated peripherals, and modest memory compared with many 8?bit MCUs and higher?end 32?bit devices. Its 16?bit core delivers more arithmetic headroom than 8?bit parts while consuming far less power than many 32?bit alternatives. On?chip ADC, timers, and serial interfaces reduce external IC count and board cost. The moderate flash and RAM sizes match many embedded control tasks without forcing a larger package or higher system power.
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MSP430F2416TPMR Brand Info
The MSP430F2416TPMR is part of the MSP430 family produced by Texas Instruments. Texas Instruments positions this line for ultra?low?power embedded control, offering broad ecosystem support including compilers, debuggers, and application notes. The brand emphasizes low energy per operation and wide peripheral integration for industrial and portable designs.
FAQ
What is the core architecture?
The device uses a 16?bit RISC architecture. This offers efficient code density and lower power consumption compared with many wider cores, making it suitable for control and sensing tasks.
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What voltage range does it support?
It operates across a nominal range of 1.8 V to 3.6 V. This makes the device compatible with single?cell batteries and common logic rails without extra regulation in many designs.
Which serial protocols are available?
The on?chip USCI module supports UART, SPI, and I2C modes. Designers can connect sensors, external memory, and comms modules using standard serial interfaces with minimal firmware overhead.
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How many timers and what resolution?
The device includes multiple timers, including at least two 16?bit Timer_A units. These provide high resolution for PWM generation, event capture, and scheduling in real?time control applications.
Is it suitable for battery?powered designs?
Yes. The microcontroller offers several low?power modes and low active currents. Its supply range and energy?efficient core make it well suited to battery?operated sensors and portable instruments.



