MSP430F2617TPM Overview
The MSP430F2617TPM is a low-power, 16-bit microcontroller suited for precision control and mixed-signal applications. It integrates a compact CPU core with on-chip Flash, RAM, multi-channel analog conversion, multiple timers, and serial communications to reduce board count and design time. The device targets systems that need more analog resolution and lower active/standby current compared with many 8-bit options. For procurement and reference, see IC Manufacturer.
MSP430F2617TPM Technical Specifications
| CPU architecture | 16-bit RISC |
| Operating voltage | 1.8 V to 3.6 V |
| Maximum CPU clock | 16 MHz |
| Flash memory | 62 KB |
| SRAM | 2 KB |
| ADC resolution | 12-bit |
| ADC channels | Multiple single-ended/ differential inputs |
| Serial interfaces | USCI for UART, SPI, I2C |
| Timers | Timer_A and Timer_B (multiple CCRs) |
| DMA | Integrated DMA controller |
| Temperature range | -40 ??C to +85 ??C |
| Typical packages | TSSOP/TQFP style package options |
MSP430F2617TPM Key Features
- Single 16-bit core with efficient instruction set for higher processing throughput per clock compared to 8-bit MCUs.
- On-chip 12-bit ADC with multiple inputs to support faster and more accurate sensor digitization.
- Integrated Flash and SRAM combination that enables compact firmware and data storage without external memory.
- Multiple timers and DMA to offload routine transfers and timing tasks, improving system efficiency and reducing CPU load.
Typical Applications
- Battery-powered instrumentation where ultra-low standby current and accurate 12-bit analog measurement extend runtime and improve data quality over many 8-bit alternatives.
- Motor control subsystems that require precise timing, multiple capture/compare channels, and deterministic interrupt handling for stable closed-loop control.
- Industrial sensor nodes combining analog front end with serial connectivity, simplifying board-level integration and reducing BOM count in distributed sensing.
- Embedded human-machine interfaces where mixed-signal performance and multiple serial ports provide reliable communication and responsive control.
MSP430F2617TPM Advantages vs Typical Alternatives
The device delivers a 16-bit processing core and integrated 12-bit analog conversion, offering better numeric range and precision than many 8-bit microcontrollers. On-chip Flash and SRAM reduce the need for external memory, lowering BOM and board area. Multiple timers, DMA, and serial interfaces provide tighter peripheral integration and higher system efficiency, which helps designers meet power, size, and performance targets more easily than with discrete-component alternatives.
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MSP430F2617TPM Brand Info
The MSP430F2617TPM is part of the MSP430 family produced by Texas Instruments. The brand is known for low-power embedded processors and robust documentation, development kits, and software tools tailored for industrial and battery-operated applications.
FAQ
What core does it use?
The device uses a 16-bit RISC CPU core designed for compact code density and efficient execution. This architecture typically yields more processing capability per clock compared with many 8-bit microcontrollers.
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What is the ADC resolution?
The microcontroller includes a 12-bit analog-to-digital converter, enabling finer measurement steps and improved signal representation for sensors and analog inputs when compared to lower-resolution ADCs.
Which serial interfaces are supported?
On-chip serial functionality includes a USCI module that supports UART, SPI, and I2C modes, enabling flexible communications with peripherals, sensors, and other system nodes without external transceivers.
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Does it support DMA transfers?
Yes, an integrated DMA controller is available to move data between peripherals and memory while the CPU can remain in low-power modes, improving throughput and reducing active energy consumption.
What operating voltages are supported?
The device operates across a low-voltage range down to about 1.8 V and up to approximately 3.6 V, which supports common battery chemistries and 3.3 V logic environments in embedded designs.



