MSP430F47187IPZ Overview
The MSP430F47187IPZ is a member of the MSP430 family of ultra-low-power microcontrollers. It targets battery-powered and mixed-signal industrial designs that require tight power budgets, rich peripheral integration, and deterministic 16-bit processing. This overview does not invent or assume detailed numeric specifications. To deliver precise technical copy, configuration tables, and verified electrical numbers, the original product sheet or datasheet is required. For vendor or procurement links, see IC Manufacturer for distributor and ordering guidance.
MSP430F47187IPZ Technical Specifications
| Parameter | Value / Source |
|---|---|
| Device family | MSP430 (ultra-low-power microcontroller) |
| CPU architecture | 16-bit RISC CPU (MSP430 core) |
| Primary datasheet reference | Refer to the official product sheet for numeric values and tables |
| Packaging code | IPZ (see datasheet for package type and pin count) |
| Peripherals | Mixed-signal peripherals and timers (see sheet for exact list) |
| Power modes | Multiple low-power modes; consult datasheet for current figures |
| Operating voltage | See official datasheet for rated voltage ranges and limits |
| Temperature range | Refer to product sheet for industrial temperature specifications |
MSP430F47187IPZ Key Features
- 16-bit core ?C delivers efficient integer math and lower code size compared with many 32-bit alternatives when tasks are control-oriented.
- Ultra-low-power modes ?C reduces energy consumption for longer battery life in portable and remote sensors.
- Integrated mixed-signal peripherals ?C simplifies board design by reducing the need for external ADCs, timers, and communication ICs.
- Industry packaging ?C IPZ package supports standardized footprint options for automated assembly and high pin counts when required.
Typical Applications
- Battery-powered sensor nodes and data-loggers that require minimal standby current and integrated analog front-ends for long field life.
- Industrial control modules where deterministic 16-bit processing and multiple low-power modes reduce system-level cost and energy consumption.
- Handheld instruments and portable meters that need compact packaging, integrated peripherals, and efficient code density for firmware storage.
- Embedded human-machine interfaces and simple UI controllers that benefit from mixed-signal connectivity and low operating current.
MSP430F47187IPZ Advantages vs Typical Alternatives
The MSP430F47187IPZ emphasizes low power and integration over raw 32-bit performance. Compared with many 8-bit MCUs, it offers higher processing efficiency and richer peripheral sets. Compared with higher-performance 32-bit parts, it typically delivers lower active and standby currents, which matters for battery-operated designs. Use this device when long runtime, small firmware size, and mixed-signal integration are higher priorities than maximum CPU throughput.
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MSP430F47187IPZ Brand Info
The MSP430F47187IPZ is produced under the MSP430 product line by Texas Instruments. The MSP430 family is known for energy-efficient 16-bit microcontrollers and a broad ecosystem of development tools, reference designs, and software libraries geared toward low-power embedded applications.
FAQ
Where is the official datasheet?
The official datasheet and product folder are hosted by the manufacturer and authorized distributors. Consult the device product page on the manufacturer’s site for the definitive electrical tables, package drawings, and ordering codes.
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What development tools support this device?
Standard MSP430 development tools and IDEs from the manufacturer and third-party vendors support programming and debugging. Check the product page and toolchain release notes for compatibility with this specific package and part number.
How do I confirm package pinout?
Verify the IPZ package pinout and mechanical dimensions in the package section of the official datasheet. Use the package drawing and recommended PCB land pattern to avoid assembly issues.
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Where can I get production and reliability data?
Production status, reliability qualifications, and environmental ratings are reported in the product folder and datasheet. Refer to those documents for JESD/JEDEC references and qualification test summaries.
How should I request precise electrical numbers?
To obtain absolute numeric values for clock rates, memory sizes, current consumption, and timing, consult the product datasheet. Supply the datasheet or a link to it so accurate specification-based content can be created without assumptions.




