MSP430F6736IPZR Overview
The MSP430F6736IPZR belongs to a family of ultra?low?power, 16?bit microcontrollers designed for embedded and industrial control. It targets applications that need long battery life, precise analog measurement, and broad peripheral integration. The device emphasizes low active and standby power, flexible peripheral interfaces, and scalable I/O for system integration. For sourcing and supplier information visit IC Manufacturer.
MSP430F6736IPZR Technical Specifications
| Parameter | Specification (sheet required) |
|---|---|
| Device family | MSP430 16?bit ultra?low?power MCU family |
| CPU core | MSP430 16?bit RISC |
| Operating voltage | Refer to device datasheet for full Vrange and absolute limits |
| Nonvolatile memory | See factory datasheet for flash density and organization |
| SRAM | See datasheet for on?chip RAM size and retention characteristics |
| Packages | Package code IPZR ?? consult datasheet for dimensions and pinout |
| Peripherals | Integrated analog and digital peripherals; consult datasheet for ADC, timers, UART, SPI, I2C counts |
| Temperature range | Refer to datasheet for specified ambient and junction ranges |
| Power modes | Multiple low?power modes supported; see datasheet for current consumption values |
| Clocking | Flexible internal and external clocking options; check datasheet for maximum CPU clock |
MSP430F6736IPZR Key Features
- Ultra?low?power core ?? extends battery life in portable and remote systems.
- Integrated analog ?? on?chip ADC and analog features reduce external component count and improve measurement accuracy.
- Rich digital peripherals ?? multiple serial interfaces enable easier integration with sensors, power stages, and communications modules.
- Multiple low?power modes ?? provide predictable power management for duty?cycled applications and energy?constrained designs.
Typical Applications
- Battery?powered metering and sensor nodes requiring long operational life and accurate analog measurement in constrained form factors.
- Industrial control modules that need deterministic I/O, reliable low?power standby, and robust analog front?end integration for process monitoring.
- Portable instrumentation where compact integration of ADCs, timers, and serial interfaces reduces board area and overall BOM cost.
- Communications edge devices that require low active?power consumption between bursts of data and flexible peripheral connectivity to multiple buses.
MSP430F6736IPZR Advantages vs Typical Alternatives
The device offers a focused combination of ultra?low?power operation and integrated analog peripherals, which can translate into lower system power and reduced component count compared with MCU alternatives that depend on external ADCs or power management. The family?level architecture supports efficient code density and multiple low?power modes, making it suitable where energy efficiency and robust peripheral sets matter more than raw CPU throughput.
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MSP430F6736IPZR Brand Info
The MSP430F6736IPZR is part of the MSP430 microcontroller family from Texas Instruments. TI provides comprehensive documentation, development tools, and ecosystem support, including reference designs and software libraries tailored to low?power embedded applications.
FAQ
What core architecture does it use?
The device uses the MSP430 16?bit RISC core family architecture. This core emphasizes low dynamic power and efficient code density for embedded control and measurement tasks.
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Where can I find the pinout?
Pinout and package mechanical drawings are published in the official product datasheet and package guide. Refer to those documents for exact pin assignments and recommended PCB land patterns.
How is low?power behavior specified?
Low?power behavior, including current consumption in each low?power mode, is listed in the electrical characteristics section of the datasheet. Use those figures for power budgeting and battery life projection.
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What peripherals are available?
The device family integrates analog and digital peripherals such as ADCs, timers, and serial interfaces. Exact counts and performance details are specified in the datasheet and peripheral chapters.
Where to get development tools?
Development tools, reference code, and evaluation boards are available from the manufacturer and authorized distributors. Check the official product page and TI software repositories for SDKs and example projects.



