MSP430F2011TRSAT Overview
The MSP430F2011TRSAT is a low-power, 16?bit microcontroller designed for battery-powered and precision analog systems. It combines a 16?bit RISC core with integrated analog and timing peripherals to deliver efficient control and measurement functions. Typical value propositions include ultra?low power standby and active consumption, compact memory and package options for space-constrained designs, and on?chip analog features for sensor interfacing. Sourcing and procurement specialists can reference the distributor listing at IC Manufacturer for packaging and reel options.
MSP430F2011TRSAT Technical Specifications
| CPU architecture | 16?bit RISC |
| Maximum CPU clock | 16 MHz |
| On?chip Flash memory | 2 KB |
| RAM | 128 bytes |
| Operating voltage range | 1.8 V to 3.6 V |
| Analog converter | 10?bit ADC |
| Timers | Timer_A with multiple capture/compare (3 CCRs) |
| Low?power modes | 5 modes (LPM0?CLPM4) |
| Package pin count | 20 pins |
| Packaging option | Tape and reel (TRS suffix) |
MSP430F2011TRSAT Key Features
- Single 16?bit core that minimizes code size while enabling fast integer arithmetic for control loops and sensor algorithms.
- Integrated 10?bit ADC offers direct sensor interfacing and reduces external component count, improving system reliability and reducing BOM cost.
- Ultra?low power operation with five low?power modes for long battery life in portable and remote devices.
- Compact 20?pin package and tape?and?reel distribution support automated assembly and small footprint PCB designs.
Typical Applications
- Battery?powered sensor nodes that require long standby times and periodic analog measurement with a small PCB footprint for wireless telemetry modules.
- Handheld instrumentation where low active current, on?chip ADC accuracy, and compact package size reduce system power and overall cost.
- Industrial sensor interfaces that need deterministic timing, capture/compare timers for event logging, and robust low?voltage operation in distributed systems.
- Consumer battery management and control applications that demand simple MCU control, analog sampling, and efficient use of limited flash and RAM resources.
MSP430F2011TRSAT Advantages vs Typical Alternatives
The device favors energy efficiency and simplicity compared with higher?end 32?bit MCUs. With a 16?bit core, on?chip 10?bit ADC, and multiple low?power modes, it offers a favorable balance of performance and power for sensor and battery applications. The small 20?pin package and tape?and?reel availability reduce board area and ease high?volume assembly. For projects prioritizing low standby current and tight BOM cost, this part often provides better overall system lifetime and integration than general?purpose alternatives.
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MSP430F2011TRSAT Brand Info
The MSP430 product line is offered by Texas Instruments, a global semiconductor manufacturer known for analog and embedded processing solutions. This member of the MSP430 family emphasizes low power consumption, analog integration, and proven MCU architecture suitable for industrial and consumer sensing applications.
FAQ
What is the operating voltage?
The device operates across a low?voltage range from 1.8 volts to 3.6 volts, providing flexibility for single?cell batteries and common digital rails while ensuring reliable analog measurements.
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How many low?power modes are available?
There are five defined low?power modes (LPM0 through LPM4). These modes let engineers trade CPU activity for minimal standby current to extend battery life in intermittent?wake applications.
Does it include an ADC?
Yes, the microcontroller includes an integrated 10?bit analog?to?digital converter suitable for many sensor interfaces and analog sampling tasks without requiring external ADC components.
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Is it suitable for automated assembly?
Yes, the TRS suffix indicates tape?and?reel packaging, which is compatible with automated pick?and?place processes and high?volume manufacturing workflows.
What memory sizes are on?chip?
The device ships with on?chip nonvolatile Flash and SRAM sized to support compact embedded applications, enabling program storage and working memory within a small footprint for efficient firmware deployment.



