MSP430F47177IPZR Overview
The MSP430F47177IPZR is a low-power 16-bit microcontroller designed for embedded sensing and control. It combines a 16-bit RISC core with integrated analog and digital peripherals to reduce board count and speed development. The device targets battery-powered and industrial designs that need more on-chip memory and a wider range of peripherals than basic microcontrollers. Engineers will value the balance of power efficiency, mixed-signal integration, and pin count for dense applications. For sourcing and manufacturer details visit IC Manufacturer.
MSP430F47177IPZR Technical Specifications
| CPU architecture | 16-bit RISC |
| Maximum clock | 25 MHz |
| Flash memory | 128 KB |
| SRAM | 8 KB |
| ADC resolution | 12-bit |
| Operating voltage | 1.8 ?C 3.6 V |
| Operating temperature | -40 to +85 ??C |
| Package / pins | 64-pin TSSOP (IPZR) |
| DMA channels | Multiple on-chip |
| On-chip peripherals | Timers, comparators, serial interfaces, DAC/ADC |
MSP430F47177IPZR Key Features
- Single 16-bit RISC core delivering higher code density and efficient integer math for control tasks.
- Integrated 12-bit ADC that improves analog measurement resolution for sensors and instrumentation.
- On-chip Flash and SRAM that lower BOM cost and improve reliability by reducing external memory dependencies.
- Wide supply range and extended temperature support for robust operation in battery and industrial systems.
Typical Applications
- Battery-powered sensor nodes that require ultralow power consumption and on-chip ADC for analog sensor acquisition and local processing over long field lifetimes.
- Industrial control modules that need deterministic timer resources, mixed-signal peripherals, and wide temperature range for stable operation on factory floors.
- Portable medical instruments where compact package, precise analog conversion, and reliable on-chip memory enable compact, certified designs.
- Metering and energy monitoring devices that require accurate measurement, low standby current, and integrated interfaces for data logging and communication to gateways.
MSP430F47177IPZR Advantages vs Typical Alternatives
The device offers a stronger integration level compared with many baseline 8-bit microcontrollers. It combines a 16-bit core and higher ADC resolution for better measurement accuracy and more efficient math. On-chip Flash and SRAM reduce external memory needs, lowering cost and board area. The power envelope and operating voltage range make it a practical choice for battery and industrial systems. Designers gain more peripheral integration per pin compared to simpler alternatives, which can shorten development time and increase system reliability.
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MSP430F47177IPZR Brand Info
The MSP430 family is a product line from Texas Instruments focused on ultralow-power embedded MCUs. Texas Instruments positions these devices for low-power sensing, metering, and portable applications, emphasizing long battery life, flexible mixed-signal peripherals, and broad development tool support.
FAQ
What core does it use?
The device uses a 16-bit RISC core optimized for low-power embedded control. The architecture favors compact code and efficient integer operations for real-time control and signal processing.
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What voltage range is supported?
It supports a wide operating voltage range suitable for battery and regulated systems. This enables reliable operation across common supply rails used in portable and industrial products.
Is on-chip analog available?
Yes. The part includes an integrated analog front end with a 12-bit ADC and other mixed-signal peripherals. This reduces the need for external converters in measurement designs.
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What package does IPZR indicate?
The IPZR suffix denotes the 64-pin TSSOP package variant, which gives a compact footprint while providing a higher pin count for more GPIO and peripheral routing on small PCBs.
Is this suited for low-temperature environments?
Yes. The device supports industrial temperature operation, which makes it suitable for outdoor, industrial, or automotive-adjacent systems that require robust thermal performance.



