AT90CAN128-16MU

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MCU 8-bit AVR RISC 128KB Flash 3.3V/5V 64-Pin QFN EP Tray

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AT90CAN128-16MU DataSheet

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AT90CAN128-16MU Details

The AT90CAN128-16MU is a powerful 8-bit microcontroller from Microchip Technology, featuring advanced CAN controller capabilities and extensive memory space. This device is ideal for industrial automation, motor control, and communication systems applications where high performance, reliability, and robustness are crucial.

Key Features

  • 8-bit Microcontroller: Offers powerful processing capabilities for demanding applications.
  • 128 KB Flash Memory: Provides ample storage space for program data and code.
  • 4 KB EEPROM: Enables secure non-volatile data storage.
  • 4 KB SRAM: Offers temporary storage for data processing and manipulation.
  • CAN Controller: Supports advanced CAN communication protocols and interfaces.
  • 16 MHz Clock Speed: Enables high-speed processing and responsive operation.
  • 32 General-Purpose I/O Pins: Provides flexibility for configuring various peripheral connections.
  • 8-Channel 10-bit ADC: Enables accurate analog-to-digital conversions.
  • USART, SPI, and I2C Interfaces: Offers multiple communication protocols for connectivity and data exchange.

Applications

  • Automotive Electronics: Enables reliable and high-speed processing in automotive systems.
  • Industrial Automation: Suitable for industrial control and monitoring applications requiring robust operation.
  • Motor Control: Provides precise control and regulation for motor-driven systems.

Where to Use

The AT90CAN128-16MU is suitable for use in demanding applications where high performance, reliability, and robustness are critical. Some potential application areas include:

  • Automotive systems requiring advanced processing and communication capabilities.
  • Industrial control and monitoring applications demanding precise regulation and control.
  • Motor-driven systems requiring precise motor control and regulation.

How to Use

The AT90CAN128-16MU can be used in conjunction with various peripherals, interfaces, and software modules to create custom application solutions. For detailed usage instructions and guidelines, refer to the datasheet.

Application Circuit

The application circuit diagram for the AT90CAN128-16MU illustrates how to connect the microcontroller to various peripherals and interfaces. It includes connections for power supply, ground, and communication bus lines, ensuring proper operation and reliable data transmission.

(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)

Equivalents

  • ATmega1284: A similar microcontroller from Microchip Technology offering comparable features and performance.
  • PIC32MX795F512L: An alternative microcontroller from Microchip Technology with equivalent functionality.

Complementary

The AT90CAN128-16MU can be complemented by other Microchip Technology products, such as the CAN controller ICs or the 8-bit microcontrollers from the AVR family. When selecting complementary components, ensure that their features and specifications align with your specific application requirements for optimal performance and compatibility.

Frequently Asked Questions

Q: What is the maximum clock frequency supported by the AT90CAN128-16MU?

A: The AT90CAN128-16MU supports a maximum clock frequency of 16 MHz. For more details, refer to the datasheet for specific operating conditions and limitations.

Q: Is the AT90CAN128-16MU compatible with CAN2.0B protocols?

A: Yes, the AT90CAN128-16MU is compatible with CAN 2.0B protocols. For more information on its CAN controller capabilities and features, refer to the datasheet.

AT90CAN128-16MU

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Program Memory Size (KB) 128 RAM (bytes) 4
Data EEPROM (bytes) 4096 Pin Count ! 64
Operation Voltage Max.(V) 5.5 Operation Voltage Min.(V) 2.7
Timers 0 x 8-bit - 0 x 16-bit Max ADC Resolution (bits) 10
ADC Channels 8 Zero Cross Detect No
Number of Comparators 1 SPI 1 -SPI
I2C 1 -I2C Stand alone PWM 7
Low Power No Numerically Controlled Oscillator (NCO) 0
Data Signal Modulator (DSM) 0

Datasheet PDF

Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.

Preliminary Specification AT90CAN128-16MU PDF Download

FAQs

What is AT90CAN128-16MU?

The AT90CAN128-16MU is a high-performance, 8-bit microcontroller from Atmel (now Microchip Technology). It is part of the AVR family and features a high-speed CAN (Controller Area Network) controller, making it suitable for automotive and industrial applications requiring robust communication capabilities.

How Does AT90CAN128-16MU Work?

The AT90CAN128-16MU operates as a versatile microcontroller with a wide range of features and peripherals. It integrates a powerful CPU, flash memory for program storage, EEPROM for data storage, and various communication interfaces. The CAN controller enables seamless communication with other nodes in a CAN network, facilitating reliable data exchange.

How Many Pins does AT90CAN128-16MU have and What are the Functions of the Pinout Configuration?

The AT90CAN128-16MU is housed in a 64-pin QFN (Quad Flat No-Lead) package. The pinout configuration includes:

  • VCC: Power supply pin.
  • GND: Ground pin.
  • RXD, TXD: Serial communication pins.
  • CANRx, CANTx: CAN communication pins.
  • ADC0-ADC7: Analog-to-Digital Converter input pins.
  • OC0A-OC3A: Timer Output Compare pins.
  • RESET: Reset pin.
  • XTAL1, XTAL2: Crystal oscillator pins.

What are the Pros and Cons of AT90CAN128-16MU?

Pros:

  • High-Performance CPU: Features a fast and efficient 8-bit AVR microcontroller core.
  • Integrated CAN Controller: Allows for reliable communication in automotive and industrial applications.
  • Rich Peripheral Set: Offers a wide range of I/O options, timers, and communication interfaces.
  • Flash and EEPROM Memory: Provides program and data storage options on-chip.
  • Robust Development Ecosystem: Supported by a comprehensive set of development tools and libraries.

Cons:

  • Complexity: May have a steeper learning curve due to the extensive feature set.
  • Cost: Higher cost compared to simpler microcontrollers with fewer peripherals.
  • Power Consumption: Depending on the application, power consumption may be a consideration.

Are There Any Equivalents/Alternatives to AT90CAN128-16MU for Recommendation?

  • The ATmega128 from Atmel/Microchip is a similar 8-bit microcontroller with a different set of peripherals.
  • Alternatives to the AT90CAN128-16MU include the PIC18F2580 from Microchip and the STM32F103 from STMicroelectronics.

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