MSP430FR2155TPTR Overview
The MSP430FR2155TPTR is a low-power, 16-bit microcontroller family member that uses nonvolatile FRAM for fast, endurance-rich code and data storage. To generate a precise, spec-accurate datasheet-style description, I need the official product sheet because this output will strictly mirror documented values without inventing numbers. Once the sheet is supplied I will produce a fully validated technical summary, pinout, electrical characteristics and application guidance tuned for engineers and sourcing teams. For original manufacturer reference see IC Manufacturer.
MSP430FR2155TPTR Technical Specifications
| Parameter | Value / Note |
|---|---|
| CPU architecture | 16?bit RISC MSP430 core (refer to sheet for clock limits) |
| Memory type | FRAM nonvolatile (exact capacity per datasheet) |
| Operating voltage | 1.8 V to 3.6 V (common range for MSP430 family; confirm on sheet) |
| Maximum CPU clock | Refer to datasheet for documented maximum MHz |
| Package | TPTR suffix indicates a specific package variant; check sheet for package type and pin count |
| Ambient temperature range | Ambient and industrial ranges listed in datasheet; consult product sheet for exact ??C limits |
| Peripherals | Integrated timers, serial interfaces and analog peripherals ?C confirm detailed counts on sheet |
| Nonvolatile endurance | FRAM endurance and retention metrics are documented in the official product sheet |
| I/O count | Number of general-purpose I/O pins given on datasheet (package dependent) |
| Typical standby/active currents | Power consumption numbers and low-power modes listed explicitly in the datasheet |
MSP430FR2155TPTR Key Features
- FRAM nonvolatile memory ?? enables faster writes and higher endurance compared with conventional flash, reducing code- and data-update latency.
- 16?bit RISC core ?? provides compact code density and deterministic interrupt response for real-time embedded control tasks.
- Low-voltage operation ?? supports battery-friendly voltages typically used in portable and energy-constrained systems.
- Integrated peripherals ?? on-chip timers, serial interfaces and analog blocks reduce BOM count and simplify PCB routing when compared to discrete solutions.
Typical Applications
- Battery-powered sensors and portable instruments that require ultra?low power standby, frequent data logging and robust nonvolatile storage for firmware and parameters.
- Energy metering and industrial sensing nodes where frequent small writes and high endurance nonvolatile memory reduce maintenance and increase lifetime.
- Human?machine interface panels and control buttons that need deterministic response, persistent configuration storage, and minimal wake-up current.
- IoT edge nodes and wireless sensor endpoints that benefit from reduced code-update times, resilient FRAM data retention, and integrated peripheral sets to minimize BOM.
MSP430FR2155TPTR Advantages vs Typical Alternatives
The core advantage is the combination of FRAM with the MSP430 16?bit architecture, delivering faster write times and far greater write endurance than typical flash-based microcontrollers. Compared with similar-density flash MCUs, this model reduces latency for frequent nonvolatile updates and improves reliability for configuration storage. The device also emphasizes low-voltage operation and integrated peripherals, which can lower system power and parts count when compared to solutions that require external memory or discrete analog components.
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MSP430FR2155TPTR Brand Info
The MSP430FR2155TPTR is part of the MSP430 family produced by Texas Instruments. Texas Instruments positions this series for low-power embedded designs that need reliable nonvolatile storage and compact 16?bit processing. The MSP430 line is widely used across portable, industrial and metering applications.
FAQ
What is the manufacturer?
The device is produced by Texas Instruments. Confirm manufacturer part marking and ordering codes on the official product sheet or TI ordering information for authorized sourcing.
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How to verify package and pinout?
Check the product datasheet mechanical and pinout drawings for the TPTR package variant to confirm pad layout, pin numbering, and thermal recommendations before PCB layout.
Where can I find electrical characteristics?
Refer to the electrical characteristics table in the official datasheet for supply currents, voltage limits, timing and ADC or comparator specifications to design reliable power and I/O circuits.
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What information is needed to place an order?
Use the full part number including package and temperature suffixes from the datasheet or TI product listing; include quantity, packaging type and any distribution approvals when contacting suppliers.
Can this MCU be programmed in-circuit?
Programming and debug interfaces are described in the device documentation; consult the datasheet and user guide for supported debug ports, programming voltage requirements and recommended tools.



