MSP430F2330TRHAT Overview
The MSP430F2330TRHAT is an ultra-low-power, 16-bit microcontroller variant designed for energy-sensitive industrial and portable systems. It combines a low-power RISC core with integrated analog and digital peripherals to reduce board count and shorten development cycles. The package and ordering code target high-volume production with tape-and-reel handling for automated assembly. For sourcing, technical reference, and distributor information consult IC Manufacturer.
MSP430F2330TRHAT Technical Specifications
| Parameter | Value |
|---|---|
| CPU core width | 16-bit |
| Typical max CPU frequency | 16 MHz |
| On-chip Flash memory | 16 KB |
| Static RAM (SRAM) | 512 B |
| ADC resolution | 10-bit |
| Timer module | 16-bit Timer_A |
| Operating voltage range | 1.8 V to 3.6 V |
| Packaging / orderable | Tape-and-reel (TR) variant |
| Number of I/O pins (typical) | 20?C24 general-purpose I/Os |
| Low-power modes | Multiple LPM states for sub-??A standby |
MSP430F2330TRHAT Key Features
- 16-bit RISC core ?? delivers higher code density and lower cycle counts versus 8-bit controllers, improving throughput per MHz.
- Integrated 10-bit ADC ?? enables direct sensor interfacing with better resolution than many basic analog front ends, reducing external component count.
- Low-power operation ?? multiple low-power modes and sub-??A standby reduce average energy use, which matters for battery-powered and energy-harvesting designs.
- Compact flash and RAM ?? on-chip 16 KB Flash and 512 B SRAM balance program space and data needs for typical embedded control tasks without external memory.
Typical Applications
- Battery-powered sensor nodes that require extended field life and consistent analog read accuracy while minimizing system cost and PCB area.
- Industrial control panels where reliable timers, low-power standby, and moderate program memory enable compact firmware and deterministic I/O handling.
- Portable medical devices that need precise 10-bit analog measurements, predictable low-power modes, and small BOM for certification and manufacturing.
- Home and building automation endpoints that demand cost-effective MCU integration, low idle current, and robust timer/ADC support for sensing and control.
MSP430F2330TRHAT Advantages vs Typical Alternatives
The device emphasizes lower active and standby power versus many 8-bit and higher-power 32-bit alternatives, making it superior for long-life battery applications. With a 16-bit core and integrated 10-bit ADC, it achieves higher computational efficiency and better sensor fidelity than basic microcontrollers with only 8-bit cores or discrete ADCs. The tape-and-reel packaged ordering option supports automated assembly and higher-volume sourcing, helping reduce per-unit production costs and lead times for OEMs.
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MSP430F2330TRHAT Brand Info
MSP430F2330TRHAT is part of the MSP430 family from Texas Instruments, a supplier known for low-power mixed-signal microcontrollers. The family focuses on ultra-low-power consumption, integrated analog peripherals, and established ecosystem support for development tools and reference designs.
FAQ
What core does it use?
The device uses a 16-bit RISC core tailored for low-power embedded control, which yields higher instruction density and lower cycle counts versus typical 8-bit cores.
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What is the ADC resolution?
It includes a 10-bit analog-to-digital converter suitable for mid-resolution sensor measurements, reducing the need for external ADC components in many designs.
Is the part available for automated assembly?
Yes, the TR suffix indicates a tape-and-reel ordering variant intended for automated, high-volume pick-and-place assembly in production environments.
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What are the power characteristics?
The microcontroller supports multiple low-power modes, enabling sub-microamp standby currents and efficient active power use, which is important for battery-operated systems.
Where to find development resources?
Official development tools, example code, and hardware reference documents are provided by the manufacturer and its ecosystem partners to accelerate prototyping and firmware development.



