MSP430F2013QRSATEP Overview
The MSP430F2013QRSATEP is a member of a low?power 16?bit microcontroller family designed for efficient control tasks. To create an accurate, engineer?grade product brief I need the official product sheet to extract exact electrical limits, memory sizes, peripheral counts and package drawings. This ensures precise sourcing, BOM comparison and thermal planning. For corporate sourcing or web publishing, link back to the authoritative listing at IC Manufacturer only after specifications are verified against the supplied document.
MSP430F2013QRSATEP Technical Specifications
| Parameter | Value (from product sheet) |
|---|---|
| CPU architecture | Refer to the supplied product sheet for the exact 16?bit core and instruction set details. |
| Operating voltage | Consult the vendor sheet for VCC range and recommended operating conditions. |
| Flash memory size | Specify the on?chip Flash capacity as stated on the datasheet. |
| SRAM/RAM size | Use the datasheet value for RAM bytes available to application code and data. |
| Maximum clock frequency | Exact DCO or external clock limits are available only in the official sheet. |
| Peripherals | List timers, serial interfaces (USI/SPI/I2C), ADC/Comparator and other peripherals from the sheet. |
| Package & pins | Refer to the package code QRSATEP for pin count, package type and mechanical drawing in the sheet. |
| Operating temperature | Use the datasheet specified ambient and junction temperature ranges for thermal design. |
| Power consumption | Idle and active current figures must be taken from the product sheet for accurate power budgeting. |
| ESD & reliability | Check the datasheet for handling, ESD sensitivity and recommended footprint guidelines. |
MSP430F2013QRSATEP Key Features
- 16?bit core ?? efficient instruction throughput for embedded control tasks with lower code size compared with 8?bit alternatives.
- On?chip nonvolatile memory ?? integrated Flash enables field reprogramming and simplifies firmware updates without external memory.
- Integrated peripherals ?? timers and serial interfaces reduce BOM by replacing external timing and UART/SPI/I2C ICs.
- Ultra?low power modes ?? supports duty?cycled operation for longer battery life in sensor and metering designs.
Typical Applications
- Battery?powered sensor nodes where long standby life and occasional active computations are required for wireless or wired telemetry.
- Industrial control panels that need a compact MCU with on?chip Flash for firmware storage and deterministic Timer_A control.
- Consumer handheld electronics that demand minimal BOM count and on?chip serial interfaces for peripheral communication and configuration.
- Metering and portable instrumentation where predictable low power consumption and on?chip nonvolatile storage support calibration and logging.
MSP430F2013QRSATEP Advantages vs Typical Alternatives
The device combines a 16?bit core and integrated peripherals to deliver greater computational efficiency and smaller code size than many 8?bit microcontrollers. With on?chip nonvolatile memory and low?power modes it offers more direct system integration, which reduces external components and BOM cost. For designs prioritizing power budget and compact PCB real estate, this family often provides a clearer tradeoff compared with larger 32?bit MCUs or discrete peripheral implementations.
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MSP430F2013QRSATEP Brand Info
The MSP430 series is produced by Texas Instruments, a global semiconductor manufacturer focused on analog and embedded processing. TI positions this family for ultra?low?power embedded control and mixed?signal applications, with broad developer resources and production supply chain support for prototyping through volume manufacturing.
FAQ
What package does QRSATEP denote?
Package details such as type, body size, and pin mapping are specified on the product sheet. Use the datasheet mechanical drawing to confirm footprint and PCB land pattern before layout.
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How much Flash and RAM are available?
Exact on?chip Flash and RAM quantities appear on the official datasheet. Use those figures for code size planning and to determine whether external memory is required.
Which serial interfaces are supported?
The datasheet lists supported serial peripherals (for example USI, SPI, I2C or UART variants). Consult it to verify protocol support and pin multiplexing for your design.
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What are the power consumption figures?
Idle and active current measurements, plus low?power mode specifications, are provided in the electrical characteristics table of the product sheet. Use them for battery life calculations and regulator sizing.
Where can I get full electrical specs?
All electrical limits, timing diagrams and absolute maximum ratings are in the official product sheet. Extract those numbers directly to ensure full compliance with your application requirements.



