The ATMEGA88-15MT belongs to the category of microcontrollers and is widely used in various electronic applications. Known for its versatile characteristics, compact package, and essential features, the ATMEGA88-15MT comes in a specific packaging/quantity configuration.
The ATMEGA88-15MT microcontroller features: - High-performance, low-power AVR® 8-bit microcontroller - Advanced RISC architecture with 131 powerful instructions - Operating voltage: 2.7V - 5.5V - Speed grade: 15MHz - Flash memory: 8KB - SRAM: 1KB - EEPROM: 512 bytes - I/O pins: 23 - Communication interfaces: UART, SPI, I2C - Analog-to-Digital Converter (ADC) channels: 8 - Timers/counters: 3
The ATMEGA88-15MT features a precise pin configuration that includes power supply pins, digital I/O pins, analog input pins, communication interface pins, and other control pins. The detailed pinout diagram can be found in the product datasheet.
The ATMEGA88-15MT operates based on the AVR® RISC architecture, executing instructions with high efficiency and minimal power consumption. It integrates a CPU core, flash memory, SRAM, and various peripherals to perform tasks as per the programmed instructions.
The ATMEGA88-15MT finds extensive use in the following application fields: - Home automation systems - Industrial control and monitoring - Sensor interfacing and data acquisition - Consumer electronics and IoT devices - Educational and hobbyist projects
For applications requiring different specifications or enhanced capabilities, alternative models to consider include: - ATMEGA328P: Higher memory and I/O capabilities - ATMEGA16U4: USB connectivity and advanced communication features - PIC16F877A: Competing microcontroller with similar capabilities
In conclusion, the ATMEGA88-15MT microcontroller offers a balance of performance, power efficiency, and versatility, making it suitable for a wide range of embedded system applications.
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What is the ATMEGA88-15MT microcontroller used for?
What are the key features of the ATMEGA88-15MT?
How is the ATMEGA88-15MT programmed?
Can the ATMEGA88-15MT be used for real-time applications?
What communication interfaces does the ATMEGA88-15MT support?
Is the ATMEGA88-15MT suitable for low-power applications?
What kind of technical support is available for the ATMEGA88-15MT?
Can the ATMEGA88-15MT be used in industrial automation applications?
Are there any known limitations or issues with the ATMEGA88-15MT?
What are some common projects or applications that use the ATMEGA88-15MT?