MSP430FR5962IPMR Overview
The MSP430FR5962IPMR is a low-power, 16-bit microcontroller built on non?volatile FRAM memory technology. It combines fast, deterministic write cycles with ultra?low active and standby currents to reduce energy use compared with flash?based alternatives. The device integrates a 16?bit CPU, mixed?signal peripherals, multiple timers and serial interfaces to support real?time sensing and control tasks. For sourcing and additional product resources visit IC Manufacturer.
MSP430FR5962IPMR Technical Specifications
| CPU architecture | 16?bit RISC |
| Non?volatile memory | 64 KB FRAM |
| SRAM | 2 KB |
| Maximum CPU clock | 16 MHz |
| ADC resolution | 12?bit |
| Analog input channels | 16 channels (multiplexed) |
| GPIO count | 48 general?purpose I/O pins |
| Serial interfaces | eUSCI modules for UART, SPI, I2C (multi?mode) |
| Timers | Multiple Timer_A and Timer_B modules for PWM and capture/compare |
| Package | 64?pin VQFN (IPMR suffix) |
| Supply voltage | 1.8 V to 3.6 V |
| Operating temperature | -40 ??C to +85 ??C |
| Non?volatile write endurance | High-cycle FRAM (fast, repeated writes) |
MSP430FR5962IPMR Key Features
- Single 16?bit core with deterministic FRAM writes for frequent non?volatile logging without wear concerns.
- Integrated 12?bit ADC plus multiple analog channels for precision sensing, enabling higher resolution measurements in sensor nodes.
- Low?power modes and sub???A standby currents deliver longer battery life versus many flash?based microcontrollers.
- Rich peripheral set (timers, eUSCI for UART/SPI/I2C) improves integration and reduces BOM count for embedded control designs.
Typical Applications
- Battery?powered sensor nodes and data loggers that require frequent non?volatile storage and long operational life without battery replacement.
- Industrial monitoring modules with mixed analog/digital input where 12?bit ADC accuracy and multiple timers enable reliable process control.
- Wearable and portable medical devices needing low active current, robust non?volatile memory and secure data retention across power cycles.
- Motor and power management controllers that combine PWM timers, GPIO count and serial interfaces for compact, integrated control solutions.
MSP430FR5962IPMR Advantages vs Typical Alternatives
The device offers lower energy per write and far higher write cycle durability because it uses FRAM instead of flash. It also delivers comparable CPU performance at lower active current, making it more efficient for frequent wake?sleep workloads. With integrated 12?bit ADC, multiple timers and multi?mode serial blocks, it reduces external components and board area compared with discrete solutions. These differences translate into fewer power cycles, smaller BOMs and more reliable non?volatile logging in constrained embedded systems.
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MSP430FR5962IPMR Brand Info
The MSP430FR5962IPMR is part of the MSP430 family from Texas Instruments. Known for low?power mixed?signal microcontrollers, the brand emphasizes energy efficiency, robust peripheral integration and wide industrial support for development tools and application notes.
FAQ
What memory type does it use?
The device uses non?volatile FRAM for program and data storage. FRAM enables fast, low?power writes and high endurance compared with flash, which is suited for frequent logging and configuration updates.
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What is the operating voltage range?
This microcontroller operates across a broad supply range from 1.8 V to 3.6 V, allowing compatibility with common battery chemistries and power?rail designs in portable and industrial systems.
Can it handle precision analog inputs?
Yes. It includes a 12?bit ADC with multiple multiplexed analog inputs, enabling mid? to high?resolution sensor measurements for control and monitoring applications.
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Which serial interfaces are available?
Multi?mode eUSCI modules support UART, SPI and I2C protocols. These interfaces provide flexible connectivity to sensors, memory and communication modules without extra controllers.
Is it suitable for low?power designs?
Absolutely. The device supports several low?power modes and maintains very low standby currents. That makes it well suited for battery?driven systems requiring long standby times and frequent brief activity.



