MSP430F155IPMR Overview
The MSP430F155IPMR is a low-power, 16-bit microcontroller designed for embedded control and measurement tasks. It combines a single 16-bit RISC CPU with integrated analog and digital peripherals to reduce external component count and simplify board design. The device targets battery-powered and industrial systems that need efficient code density and long run-time between power cycles. For procurement and detailed ordering information visit IC Manufacturer.
MSP430F155IPMR Technical Specifications
| CPU core | 16-bit MSP430 RISC |
| Package | TSSOP (IPMR packaging) |
| Package pins | 28 pins |
| Supply voltage | 1.8?C3.6 V |
| Operating temperature | -40 ??C to +85 ??C |
| On-chip non-volatile memory | Flash memory (device-specific density) |
| On-chip volatile memory | SRAM (device-specific density) |
| Analog | Integrated ADC (10-bit class) |
| Timers | Multiple 16-bit timers |
| Peripherals | Serial interfaces and GPIO |
MSP430F155IPMR Key Features
- Single 16-bit core ?C delivers compact code and efficient control for timing-critical embedded tasks.
- Low-voltage operation ?C supports 1.8?C3.6 V supply range for longer battery life and broad system compatibility.
- Integrated analog conversion ?C on-chip ADC enables accurate signal measurement with fewer external components.
- Multiple 16-bit timers ?C provide flexible PWM generation, capture/compare, and timebase functions for control and power management.
Typical Applications
- Battery-powered measurement modules requiring long standby time and compact sensor interface, where low supply current extends service intervals.
- Industrial process controllers that need deterministic timing, integrated analog inputs, and robust operation across -40 ??C to +85 ??C environments.
- Portable instrumentation that consolidates MCU, ADC, and timers to reduce PCB area and lower BOM cost while maintaining measurement accuracy.
- Motor control and power-management front ends where multiple 16-bit timers and efficient code execution provide finer control and faster response.
MSP430F155IPMR Advantages vs Typical Alternatives
The part offers a focused balance of low power and integrated analog/digital peripherals compared with many 8-bit MCUs and higher-power 32-bit options. Its 16-bit core gives better arithmetic efficiency than typical 8-bit controllers, while the low-voltage range and sleep modes reduce system energy use versus many general-purpose MCUs. The TSSOP-28 package and on-chip ADC/timers lower external BOM and board area compared to separate MCU plus ADC solutions.
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MSP430F155IPMR Brand Info
The MSP430 series is produced by Texas Instruments. The family is known for low-power 16-bit microcontrollers tailored to portable and industrial designs. TI positions these devices for designers who prioritize minimal power consumption, integrated analog peripherals, and a mature development ecosystem spanning compilers, debuggers, and reference designs.
FAQ
What core architecture does it use?
The device uses the 16-bit MSP430 RISC architecture. This core delivers efficient instruction density and predictable execution for embedded timing and control tasks without the overhead of higher-word-width architectures.
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What voltage range does it support?
It supports a low-voltage supply range suitable for battery and low-power systems. The specified range allows designers to run at lower voltages to extend battery life and to interface with common sensor voltages.
Which package is the part offered in?
The IPMR suffix indicates a TSSOP-style package supplied in tape-and-reel. This package provides a compact footprint with 28 pins to support multiple GPIO and peripheral connections on small PCBs.
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Does it include analog inputs?
Yes. The device integrates an on-chip ADC in the 10-bit class. That integration reduces the need for external converters and simplifies analog front-end design for sensor measurement.
Where is this device typically used?
Engineers commonly select it for low-power portable instrumentation, handheld meters, industrial controllers, and motor-control front ends where integrated timing and analog features lower system cost and board area.



