Atmel Microcontroller with ADC

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Description

Atmel Microcontroller with ADC

Atmel microcontroller with ADC(MCUs) provide a diverse range of integrated designs, advanced technology, and pioneering innovation that make them well-suited for modern connected products. In the age of the Internet of Things (IoT), MCUs play a crucial role in enabling machine-to-machine (M2M) communication. With extensive experience and expertise in the industry, Atmel microcontroller with ADC offers proven architectures designed for low power consumption, high-speed connectivity, efficient data transmission, and robust interface capabilities. Our array of configuration options allows developers to create comprehensive system solutions for various applications. Additionally, Atmel microcontroller with ADC support easy implementation of capacitive touch technology for buttons, sliders, and wheels (BSW). Furthermore, these MCUs offer wireless and security features. Whatever your target market or device may be, Atmel has an exceptional solution tailored to your specific needs both now and in the future.

Details of Atmel microcontroller with ADC:

  • The product features an onboard AVR Atmega32 Atmel microcontroller with ADC.
  • The In-System Programming (ISP) Connector for Atmel Standard uses 10 pins.
  • The I/O Port can be accessed through 0.1″ holes and connected to external interfaces via 10 pin Box Headers.
  • The reset switch can be toggled to reboot the system.
  • Incorporated into the system is a LM7805 power regulator.
  • Alternative power source via USB
  • An advanced gain-stage technology is incorporated into 12-bit analog-to-digital converters (ADCs) to achieve high accuracy and a combined throughput of 4MSPS.
  • Highly efficient 12-bit digital-to-analog converters (DACs) featuring strong drive capabilities and additional functions to decrease reliance on external components.
  • The Event System allows for reliable inter-peripheral signaling in real-time with a response time that is always 100% predictable.
  • To lessen the burden on the CPU, all peripherals have the ability to utilize direct memory access (DMA) for transferring data.
  • Utilizing Atmel’s picoPower® technology enables true 1.6V functionality, as well as the ability for RTC operation with a minimal current of 100nA while retaining full SRAM, resulting in an incredibly rapid wake-up time.
  • AVR XMEGA devices have a high level of integration, combining multiple features such as Advanced Encryption Standard (AES) and Data Encryption Standard (DES) crypto modules, up to 32 pulse-width modulation (PWM) outputs, 8 UARTs, 4 TWI (I2C), and 4 serial peripheral interface (SPI) channels. Additionally, these devices include a cyclic redundancy check (CRC) generator module and other useful capabilities.
  • With the AVR Software Library, you’ll have access to a comprehensive set of device drivers and communication stacks. This saves valuable time and allows you to prioritize your design tasks without any added development effort.
  • The inclusion of Atmel QTouch® Sensing-QTouch Library support allows for effortless implementation of durable capacitive touch sensing interfaces, including buttons, sliders, and wheels.
  • USB connectivity offers full-speed operation without external crystals, 31 endpoints, and a special multi-packet feature that optimizes data transfer rates while reducing CPU usage.
  • The AVR XMEGA E line includes the advanced XMEGA Custom Logic (XCL) module. This component contains dual 8-bit timers/counters and a pair of lookup tables, which are utilized for creating custom glue logic.
  • The purpose of the XCL is to minimize the BOM and PCB size by taking over the role of external circuit components, including delay elements, RS-latches, D-latches, D-flip-flops, chip-select logic, and various logic gates such as AND, NAND, OR, NOR, XOR, XNOR, NOT, and MUX.
  • Furthermore, when used in conjunction with the USART, it allows for the implementation of personalized communication protocols.
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