MSP430F6723IPN Overview
The MSP430F6723IPN is a low-power, 16-bit microcontroller designed for precision control and mixed-signal applications. It combines a reduced-instruction-set CPU with on-chip memory and integrated analog and digital peripherals for compact system designs. Typical uses include battery-powered instrumentation, industrial sensors, and metrology where low power and precise timing matter. For parts, distribution, and manufacturer details see IC Manufacturer.
MSP430F6723IPN Technical Specifications
| Core architecture | 16-bit RISC CPU |
| Maximum CPU clock | 25 MHz |
| Flash memory | 128 KB |
| SRAM | 8 KB |
| Operating voltage | 1.8 ?C 3.6 V |
| Temperature range | -40 ?C +85 ??C |
| ADC resolution | 12-bit, up to 200 ksps |
| General-purpose I/O | Up to 80 pins |
| Package | 100-pin LQFP (IPN) |
| Low-power modes | Multiple sleep/standby modes |
MSP430F6723IPN Key Features
- Single 16-bit RISC core for efficient integer and control tasks; improves code density compared with 32-bit alternatives.
- On-chip Flash and SRAM provide integrated program and data storage; reduces external memory needs and BOM cost.
- 12-bit ADC with up to 200 ksps throughput; useful for higher-resolution sensor measurement and control loops.
- Wide operating voltage range (1.8?C3.6 V); supports both single-cell battery systems and multi-rail designs.
- Multiple low-power modes that minimize active current; extends battery life in portable applications.
- Large I/O count and a high-pin-count package allow direct interfacing to many peripherals and sensors without external expanders.
- Industrial temperature rating (-40 to +85 ??C) for reliable operation in harsh environments.
- Integrated timers and peripheral set designed for deterministic control and real-time tasks in embedded systems.
Typical Applications
- Battery-powered data loggers and portable instrumentation that need low active current and long sleep intervals while maintaining high measurement accuracy and reliable flash storage.
- Industrial sensor nodes that require stable operation across -40 to +85 ??C and need multiple I/O lines for inputs, outputs, and sensor multiplexing without extra hardware.
- Precision metering and energy monitoring where a 12-bit ADC and reliable on-chip memory enable accurate sampling, local processing, and secure firmware updates.
- Motor control and embedded motion systems that benefit from a compact MCU with real-time timers, deterministic control loops, and integrated analog resources to reduce board complexity.
MSP430F6723IPN Advantages vs Typical Alternatives
The device combines low-power operation with a compact, high-pin-count package, making it more energy-efficient for battery systems than many 32-bit microcontrollers. Its 16-bit core provides better code density and lower flash usage versus larger cores. Integrated 12-bit ADC and multiple timers reduce external components compared with discrete-sensor front-ends. The broad supply range and industrial temperature rating make it more adaptable for fielded systems where voltage and ambient conditions vary.
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MSP430F6723IPN Brand Info
The MSP430F6723IPN is part of the MSP430 MCU family from Texas Instruments. The brand delivers low-power microcontrollers and analog integration aimed at industrial and portable designs. TI supports the device with documentation, development tools, and ecosystem components tailored for rapid prototyping and production deployment.
FAQ
What core does it use?
The microcontroller uses a 16-bit RISC core optimized for low-power control and efficient code density. This core favors integer math and compact firmware for embedded systems.
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What supply voltages are supported?
It operates across a wide voltage range from 1.8 to 3.6 volts. That range supports single-cell batteries, regulated 3.3 V systems, and many mixed-signal environments without extra regulators.
Is the ADC suitable for sensor work?
Yes. The integrated 12-bit ADC with up to 200 ksps sampling rate fits many sensor and data-acquisition tasks. It enables higher resolution measurements than 8-bit converters for precise monitoring.
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Can it run from battery for long periods?
Yes. The device includes multiple low-power and standby modes to minimize current draw. Designers can use sleep modes and wake-on-interrupt to extend battery life significantly.
Where to get development tools?
Development tools, reference designs, and technical documentation are available from the manufacturer and authorized distributors. These resources speed firmware development and hardware validation for production.



