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MSP430F6765AIPZR

MSP430F6765AIPZR

Product Overview

  • Category: Microcontroller
  • Use: Embedded systems, Internet of Things (IoT) devices, and other applications requiring low power consumption and high performance.
  • Characteristics:
    • Low power consumption
    • High performance
    • Integrated peripherals
    • Flexible clocking options
    • Wide operating voltage range
  • Package: LQFP (Low-profile Quad Flat Package)
  • Essence: The MSP430F6765AIPZR is a microcontroller designed for low-power applications that require high performance and integrated peripherals.
  • Packaging/Quantity: Available in tape and reel packaging with a quantity of 2500 units per reel.

Specifications

  • Core: 16-bit RISC CPU
  • Clock Speed: Up to 25 MHz
  • Flash Memory: 256 KB
  • RAM: 16 KB
  • Operating Voltage Range: 1.8V to 3.6V
  • Digital I/O Pins: 54
  • Analog Inputs: 16
  • Communication Interfaces: UART, SPI, I2C
  • Timers: 4x 16-bit timers, 1x 32-bit timer
  • ADC Resolution: 12-bit
  • Temperature Sensor: Yes
  • Operating Temperature Range: -40°C to +85°C

Detailed Pin Configuration

The MSP430F6765AIPZR has a total of 100 pins. Here is the detailed pin configuration:

  • P1.0 to P1.7: Digital I/O or peripheral function pins
  • P2.0 to P2.7: Digital I/O or peripheral function pins
  • P3.0 to P3.7: Digital I/O or peripheral function pins
  • P4.0 to P4.7: Digital I/O or peripheral function pins
  • P5.0 to P5.7: Digital I/O or peripheral function pins
  • P6.0 to P6.7: Digital I/O or peripheral function pins
  • P7.0 to P7.7: Digital I/O or peripheral function pins
  • P8.0 to P8.7: Digital I/O or peripheral function pins
  • P9.0 to P9.7: Digital I/O or peripheral function pins
  • P10.0 to P10.7: Digital I/O or peripheral function pins
  • AVSS: Analog ground
  • AVCC: Analog power supply
  • A0 to A15: Analog input pins
  • REF: Reference voltage input
  • DVSS: Digital ground
  • DVCC: Digital power supply
  • RST/NMI: Reset and non-maskable interrupt pin
  • TEST/SBWTCK: Test and single-wire background debug test clock pin
  • TDI/TCLK: Test data input and test clock pin
  • TDO/TMS: Test data output and test mode select pin
  • TCK/TDI: Test clock and test data input pin
  • TMS/TDO: Test mode select and test data output pin

Functional Features

The MSP430F6765AIPZR offers the following functional features:

  1. Low Power Consumption: The microcontroller is designed to operate at low power levels, making it suitable for battery-powered applications.
  2. High Performance: With a 16-bit RISC CPU and clock speeds up to 25 MHz, the MSP430F6765AIPZR delivers high processing power.
  3. Integrated Peripherals: The microcontroller includes various integrated peripherals such as UART, SPI, I2C, timers, and an ADC, reducing the need for external components.
  4. Flexible Clocking Options: The device supports multiple clock sources and can be configured to operate at different frequencies, allowing for power optimization.
  5. Wide Operating Voltage Range: The MSP430F6765AIPZR can operate within a wide voltage range of 1.8V to 3.6V, providing flexibility in different applications.

Advantages and Disadvantages

Advantages: - Low power consumption enables longer battery life. - High performance allows for efficient execution of complex tasks. - Integrated peripherals reduce the need for external components, saving cost and board space. - Flexible clocking options provide power optimization opportunities. - Wide operating voltage range accommodates various power supply configurations.

Disadvantages: - Limited flash memory and RAM capacity may restrict the complexity of applications. - Availability of alternative models with more features or higher specifications may limit its competitiveness in certain applications.

Working Principles

The MSP430F6765AIPZR operates based on the von Neumann architecture, where program instructions and data are stored in the same memory space. It executes instructions fetched from the flash memory using the 16-bit RISC CPU. The microcontroller interacts with external devices through its integrated peripherals, such as UART, SPI, and I2C interfaces. It

Seznam 10 běžných otázek a odpovědí souvisejících s aplikací MSP430F6765AIPZR v technických řešeních

Sure! Here are 10 common questions and answers related to the application of MSP430F6765AIPZR in technical solutions:

  1. Q: What is MSP430F6765AIPZR? A: MSP430F6765AIPZR is a microcontroller from Texas Instruments' MSP430 family, designed for embedded applications.

  2. Q: What are the key features of MSP430F6765AIPZR? A: Some key features include a 16-bit RISC architecture, low power consumption, integrated peripherals, and a wide operating voltage range.

  3. Q: What are the typical applications of MSP430F6765AIPZR? A: MSP430F6765AIPZR is commonly used in applications such as industrial control systems, smart meters, medical devices, and consumer electronics.

  4. Q: How much flash memory does MSP430F6765AIPZR have? A: MSP430F6765AIPZR has 256KB of flash memory for program storage.

  5. Q: Can MSP430F6765AIPZR communicate with other devices? A: Yes, it has various communication interfaces like UART, SPI, I2C, and USB, allowing it to communicate with other devices.

  6. Q: What is the maximum clock frequency of MSP430F6765AIPZR? A: The maximum clock frequency is 25 MHz, which can be generated using an external crystal oscillator.

  7. Q: Does MSP430F6765AIPZR support analog-to-digital conversion? A: Yes, it has a built-in 12-bit ADC module that can convert analog signals into digital values.

  8. Q: Can MSP430F6765AIPZR operate on battery power? A: Yes, it is designed for low power applications and can operate on battery power, making it suitable for portable devices.

  9. Q: Is MSP430F6765AIPZR programmable in C/C++? A: Yes, you can program MSP430F6765AIPZR using C/C++ programming languages along with the appropriate development tools.

  10. Q: Are there any development boards available for MSP430F6765AIPZR? A: Yes, Texas Instruments provides development boards like the MSP-EXP430F6765 LaunchPad, which can be used for prototyping and evaluation.

Please note that the specific details may vary depending on the version or variant of the microcontroller.