The AT90CAN32-15MT1 is a microcontroller belonging to the AT90CAN series, which is designed for use in embedded systems and automotive applications. This entry provides an overview of the product's category, use, characteristics, package, essence, packaging/quantity, specifications, detailed pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models.
The AT90CAN32-15MT1 features the following specifications: - High-performance, Low-power Atmel® AVR® 8-bit Microcontroller - Advanced RISC Architecture - 32K Bytes of In-System Self-Programmable Flash - 1K Bytes EEPROM - 2K Bytes Internal SRAM - Two 8-bit Timer/Counters with Separate Prescaler and Compare Mode - Real Time Counter with Separate Oscillator - Six PWM Channels - 8-channel, 10-bit ADC - JTAG Interface - High-speed SPI - Two-wire Serial Interface (TWI) - Universal Serial Interface (USI) with Start-of-Frame Detection - Full Duplex UART - Master/Slave SPI Serial Interface - Programmable Watchdog Timer with Separate On-chip Oscillator - On-chip Analog Comparator - Interrupt and Wake-up on Pin Change
The detailed pin configuration of the AT90CAN32-15MT1 can be found in the manufacturer's datasheet.
The AT90CAN32-15MT1 operates based on the principles of the AVR® 8-bit microcontroller architecture, utilizing a combination of RISC-based processing, integrated peripherals, and efficient power management to execute embedded system and automotive tasks.
The AT90CAN32-15MT1 is well-suited for various application fields, including: - Automotive body control modules - Industrial automation systems - Consumer electronics - Portable medical devices - Home automation and IoT devices
Alternative models to the AT90CAN32-15MT1 include: - AT90CAN64-16AU - AT90CAN128-16AU - ATmega32M1-AU - ATmega32C1-AU
In conclusion, the AT90CAN32-15MT1 is a versatile microcontroller designed for embedded systems and automotive applications, offering a balance of performance, connectivity, and power efficiency. Its integration of a CAN controller makes it particularly suitable for automotive networking, while its rich set of peripherals and communication interfaces cater to a wide range of embedded system requirements.
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What is the AT90CAN32-15MT1 microcontroller used for?
What are the key features of the AT90CAN32-15MT1?
How can I interface sensors with the AT90CAN32-15MT1?
What programming language is commonly used for the AT90CAN32-15MT1?
Can the AT90CAN32-15MT1 communicate with other microcontrollers or devices?
What are the power requirements for the AT90CAN32-15MT1?
Is the AT90CAN32-15MT1 suitable for automotive applications?
Can the AT90CAN32-15MT1 be used for real-time control applications?
What development tools are available for the AT90CAN32-15MT1?
Are there any application notes or reference designs available for the AT90CAN32-15MT1?