MSP430G2332IPW14R Overview
The MSP430G2332IPW14R is a low-power, 16-bit microcontroller for compact industrial and battery-powered designs. It combines a small 14-pin package with a 16-bit RISC core, multiple low-power modes, and integrated peripherals for analog and serial interfacing. Typical uses include sensor nodes, simple controllers, and low-cost embedded designs where lower power and smaller footprint matter. For sourcing and supplier details visit IC Manufacturer.
MSP430G2332IPW14R Technical Specifications
| Core architecture | 16-bit RISC CPU |
| Max CPU frequency | 16 MHz |
| Operating voltage | 1.8 V to 3.6 V |
| Package type | PW (14-pin TSSOP) |
| Pin count | 14 pins |
| Program memory (Flash) | 2 KB |
| RAM (SRAM) | 128 B |
| ADC | 10-bit, up to 8 channels |
| Timers | 1 ?? Timer_A with 3 CCRs |
| Serial interface | 1 ?? USI (I2C/SPI capable) |
| Low-power modes | 5 low-power modes (LPM0?CLPM4) |
| Operating temp range | -40 ??C to +85 ??C |
MSP430G2332IPW14R Key Features
- 16-bit core that delivers compact code density and faster arithmetic than many 8-bit alternatives.
- Low-voltage operation from 1.8 V to 3.6 V, which matters for battery life and compatibility with modern sensor supplies.
- 10-bit ADC integrated on-chip to digitize analog sensors without an external converter, reducing board area and BOM cost.
- Timer_A with capture/compare registers that simplifies precise PWM and timing compared to software-only timing approaches.
- USI serial block that supports I2C or SPI protocols for flexible peripheral interfacing and faster system integration.
- Five low-power modes that enable lower standby currents and longer battery life than many general-purpose microcontrollers.
- Small 14-pin TSSOP package offering a smaller footprint and lower cost versus larger pin-count packages.
Typical Applications
- Battery-powered sensor modules that require ultra-low standby current, local 10-bit ADC conversion, and a compact 14-pin footprint for space-constrained enclosures.
- Simple industrial controllers where deterministic Timer_A events, I2C or SPI peripheral links, and 1.8 V to 3.6 V compatibility simplify system design and reduce components.
- Portable medical or wearable devices that need a small package, lower power draw in sleep modes, and an integrated ADC to measure analog signals directly.
- Consumer electronics user interfaces with limited I/O, where the MCU provides debouncing, PWM-driven indicators, and low-power idle between user interactions.
MSP430G2332IPW14R Advantages vs Typical Alternatives
The device favors lower power and smaller size over raw peripheral count. Compared to many 8-bit parts, it uses a 16-bit RISC core for denser code and faster math. Compared to larger MCUs, it offers a smaller 14-pin package and fewer pins to route, which reduces board area and cost. The integrated 10-bit ADC and USI block mean fewer external components, and the five low-power modes enable longer battery life in typical embedded tasks.
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MSP430G2332IPW14R Brand Info
T.I. supplies the MSP430G2332IPW14R as part of its MSP430 family. The brand is Texas Instruments, known for industrial-grade mixed-signal ICs and long-term availability. This part aligns with TI??s focus on low-power microcontrollers for sensor, portable, and embedded applications.
FAQ
What is the maximum clock speed?
The maximum internal clock frequency is 16 MHz. Designers can scale the clock lower for reduced power consumption and use the DCO or external clock sources depending on timing needs.
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Which serial interfaces are available?
This device provides a USI block that can be configured for I2C or SPI operation. That single serial block lets you connect common peripheral ICs without adding a separate UART peripheral.
How many ADC channels are supported?
The on-chip ADC offers 10-bit resolution and supports multiple input channels. You can digitize several analog sensors directly, which reduces component count and simplifies PCB routing.
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What power modes are available for battery designs?
There are five low-power modes (LPM0?CLPM4). Each mode progressively turns off system resources to minimize current draw, giving designers flexibility for optimizing active versus standby energy use.
Which package should I order for compact PCBs?
The PW package is a 14-pin TSSOP. It is well suited for compact PCBs and surface-mount assembly while keeping a low component footprint and easy routing for modest I/O counts.



