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ATMEGA88A-MUR

ATMEGA88A-MUR

Product Overview

Category

The ATMEGA88A-MUR belongs to the category of microcontrollers.

Use

It is used for embedded systems, industrial control, and various other applications that require a microcontroller.

Characteristics

  • Low-power consumption
  • High-performance, low-power Atmel® AVR® 8-bit microcontroller
  • Advanced RISC architecture

Package

The ATMEGA88A-MUR is available in a surface-mount package.

Essence

The essence of ATMEGA88A-MUR lies in its efficient processing capabilities and low power consumption, making it suitable for battery-powered applications.

Packaging/Quantity

It is typically available in reels with a specific quantity per reel.

Specifications

  • Operating Voltage: 1.8 - 5.5V
  • Flash Memory: 8KB
  • SRAM: 1KB
  • EEPROM: 512 bytes
  • Digital I/O Pins: 23
  • Analog Input Pins: 8
  • Communication Interfaces: UART, SPI, I2C
  • Clock Speed: Up to 20MHz

Detailed Pin Configuration

The detailed pin configuration of ATMEGA88A-MUR can be found in the datasheet provided by the manufacturer.

Functional Features

  • Advanced RISC architecture
  • High endurance non-volatile memory segments
  • Power-on reset and programmable brown-out detection
  • Internal calibrated oscillator
  • Multiple sleep modes for power reduction

Advantages and Disadvantages

Advantages

  • Low power consumption
  • High-performance processing
  • Versatile communication interfaces

Disadvantages

  • Limited memory compared to higher-end microcontrollers
  • Limited number of I/O pins

Working Principles

The ATMEGA88A-MUR operates based on the principles of the AVR® RISC architecture, utilizing its internal components to execute programmed instructions and interact with external devices through its I/O pins and communication interfaces.

Detailed Application Field Plans

The ATMEGA88A-MUR is well-suited for applications such as: - Battery-powered devices - Industrial automation - Sensor interfacing - Home automation

Detailed and Complete Alternative Models

Some alternative models to ATMEGA88A-MUR include: - ATMEGA328P - ATMEGA16A - ATMEGA32U4

In conclusion, the ATMEGA88A-MUR is a versatile microcontroller with low power consumption and high performance, making it suitable for a wide range of embedded system applications.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací ATMEGA88A-MUR v technických řešeních

  1. What is the operating voltage range of ATMEGA88A-MUR?

    • The operating voltage range of ATMEGA88A-MUR is 2.7V to 5.5V.
  2. What are the key features of ATMEGA88A-MUR?

    • Some key features of ATMEGA88A-MUR include 8KB of in-system programmable flash, 1KB of EEPROM, 23 general-purpose I/O lines, and a wide operating voltage range.
  3. Can ATMEGA88A-MUR be used for battery-powered applications?

    • Yes, ATMEGA88A-MUR's low power consumption and wide operating voltage range make it suitable for battery-powered applications.
  4. What communication interfaces does ATMEGA88A-MUR support?

    • ATMEGA88A-MUR supports SPI, I2C, and USART communication interfaces.
  5. Is ATMEGA88A-MUR suitable for motor control applications?

    • Yes, ATMEGA88A-MUR can be used for motor control applications due to its PWM (Pulse Width Modulation) outputs and timer/counters.
  6. What development tools are available for programming ATMEGA88A-MUR?

    • Development tools such as Atmel Studio and AVR-GCC can be used for programming ATMEGA88A-MUR.
  7. Does ATMEGA88A-MUR have built-in analog-to-digital converters (ADC)?

    • Yes, ATMEGA88A-MUR has an 10-bit ADC with up to 8 channels for analog input.
  8. What is the maximum clock frequency supported by ATMEGA88A-MUR?

    • ATMEGA88A-MUR supports a maximum clock frequency of 20MHz.
  9. Can ATMEGA88A-MUR be used in industrial automation applications?

    • Yes, ATMEGA88A-MUR's robust features and wide operating voltage range make it suitable for industrial automation applications.
  10. Are there any specific design considerations when using ATMEGA88A-MUR in technical solutions?

    • Design considerations include proper decoupling, PCB layout for signal integrity, and attention to power supply stability to ensure optimal performance of ATMEGA88A-MUR in technical solutions.