MSP430F2417TPMR Overview
The MSP430F2417TPMR is a low?power, 16?bit microcontroller designed for battery?sensitive and embedded control tasks. It balances compact flash and RAM with integrated analog and timing peripherals for sensor interface, control loops, and serial communications. Use the device where ultra?low active and standby consumption matters. More procurement and technical resources are available from IC Manufacturer.
MSP430F2417TPMR Technical Specifications
| Architecture | 16?bit RISC MSP430 core |
| Program Memory (Flash) | 16 KB |
| RAM | 512 B |
| Operating Voltage | 1.8 V to 3.6 V |
| Maximum CPU Clock | 16 MHz |
| ADC | 10?bit ADC with up to 8 channels |
| Timers | 1 ?? 16?bit Timer_A (capture/compare) |
| I/O Pins | 24 general?purpose I/O |
| Serial Peripherals | USART/USCI variants for UART/SPI/I2C |
| Packages | TSSOP (TPMR tape?and?reel option) |
| Low?Power Modes | Multiple LPM levels (LPM0?CLPM4) |
| Temperature Range | Industrial operating range support |
MSP430F2417TPMR Key Features
- Single 16?bit RISC core for efficient code density and faster integer math, saving flash space and runtime.
- On?chip 16 KB Flash and 512 B RAM for compact application firmware and runtime variables.
- Integrated 10?bit ADC with multiple channels for direct sensor interfacing, reducing external components and board area.
- Timer_A with capture/compare for precise PWM and timing tasks, enabling motor control and power conversion routines.
- Low?voltage operation from 1.8 V to 3.6 V for battery compatibility and system flexibility across 2.5 V and 3.3 V designs.
- Serial peripheral support (UART/SPI/I2C) to connect displays, memory, and sensors without additional bridges.
- Extensive low?power modes that lower standby current and extend battery life in duty?cycled systems.
- Space?efficient TSSOP package with tape?and?reel option for volume assembly and automated pick?and?place.
Typical Applications
- Portable instrumentation and handheld meters that require precise analog sampling and multi?day battery life in a small PCB footprint.
- Battery?powered sensor nodes where low active and standby current extend deployment durations and minimize maintenance visits.
- Power?supply controllers and motor drivers that need pulse?width modulation, capture/compare timing, and local analog feedback processing.
- Industrial control panels and human?machine interfaces with simple serial peripherals, modest code size, and deterministic timing behavior.
MSP430F2417TPMR Advantages vs Typical Alternatives
The part favors lower power and simpler integration compared with higher?clock or more feature?rich MCUs. With a 16?bit core and efficient instruction set, it delivers better code density than many 32?bit alternatives for control tasks under 16 KB of flash. Its built?in ADC and Timer_A reduce the need for external analog and timing ICs, lowering BOM cost and board area. The wide supply range and multiple low?power modes make it more energy?efficient for battery systems than many older 8?bit contenders.
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MSP430F2417TPMR Brand Info
MSP430F2417TPMR is part of the MSP430 family from Texas Instruments. TI positions MSP430 devices for ultra?low?power embedded applications, emphasizing power efficiency, mixed?signal integration, and broad ecosystem support including development tools, reference designs, and application notes.
FAQ
What core does this device use?
The device uses the MSP430 16?bit RISC core. This core is optimized for low power and compact code density. It suits control and sensor applications where energy efficiency and small firmware size matter.
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Where to find the official datasheet?
Obtain the full electrical characteristics, pinout, and programming details from the manufacturer??s datasheet on the Texas Instruments website. The datasheet contains timing diagrams, currents, and recommended operating conditions.
Which package is indicated by TPMR?
The TPMR suffix denotes a TSSOP package supplied in tape?and?reel for automated assembly. Check the datasheet and ordering guide for exact package dimensions and reel quantities before sourcing.
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Does it support UART, SPI, and I2C?
Yes. The device includes serial communication modules that support standard UART, SPI, and I2C topologies. These interfaces enable direct connection to sensors, memories, and peripherals without extra bridge chips.
Is this suitable for low?power battery systems?
Yes. The device offers multiple low?power modes and a broad supply range from 1.8 V to 3.6 V, which makes it suitable for coin?cell, alkaline, or Li?ion battery designs where minimizing average consumption is critical.



