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Microchip Brings Enhanced Code Protection and up to 15W of Power Delivery to its USB Microcontroller Portfolio
AVR® DU Family enables embedded designers to easily implement USB functionality into a wider range of systems

The well-known advantages of a Universal Serial Bus (USB) interface for embedded designs include its compatibility with various devices, streamlined communication protocol, in-field updatability and power delivery capabilities. To help easily incorporate this functionality into embedded systems, Microchip Technology (Nasdaq: MCHP) has launched the AVR® DU family of microcontrollers (MCUs). As the next generation of Microchip 8-bit MCUs to integrate USB connectivity, the AVR DU family is designed to provide enhanced security features and higher power delivery than previous iterations.

“USB is the standard communication protocol and power delivery method for electronic devices,” said Greg Robinson, corporate vice president of Microchip’s 8-bit MCU business unit. “Microchip’s AVR DU family combines the flexibility of our most advanced 8-bit MCUs with the versatility of enhanced power delivery to bring the benefits of USB to a wider range of embedded systems.”

AVR DU MCUs support power delivery of up to 15W from the USB interface, a capability not commonly found in other USB microcontrollers within its class. This feature enables USB-C® charging with currents up to 3A at 5V, making these MCUs an excellent choice for devices like portable power banks and rechargeable toys.

To strengthen its defense against malicious attacks, the AVR DU family incorporates Microchip’s Program and Debug Interface Disable (PDID) feature. When enabled, the enhanced code protection is designed to lock out access to the programming/debugging interface and block unauthorized attempts to read, modify or erase firmware. To enable secure firmware updates, the AVR DU family employs Read-While-Write (RWW) Flash and, when combined with a secure bootloader, designers can use the USB interface for patching bugs, addressing security concerns and adding new features without disrupting product operation. This updated functionality in the AVR DU MCUs is designed to allow for uninterrupted, in-field updates to help extend the lifetime value of products.

Additionally, the AVR DU family helps reduce overall design and Bill of Material (BOM) costs through a USB clock recovery feature, which eliminates the need for a costly external crystal. Core Independent Peripherals (CIPs) enable designers to incorporate main device functions and system management tasks onto a compact, single-chip solution, saving board space and reducing design effort.

Developers of a wide range of embedded designs, from fitness wearables and home appliances to agricultural and industrial applications, can benefit from incorporating the highly efficient AVR DU MCUs into their designs. A virtual demonstration of the AVR DU family is available at try.microchip.com.

Development Tools
MPLAB® Code Configurator (MCC) contains a software stack that supports hardware features for the AVR DU MCU’s USB module. Fully integrated into the MPLAB development tools system, the production-ready USB software stack is easily configured by MCC Melody, easing the development process and reducing time to market. To further enable rapid prototyping and development, a Curiosity Nano Development Board (EV59F82A), MPLAB X Integrated Development Environment (IDE) and MPLAB XC8 Compiler are also available to support the AVR DU family.

Pricing and Availability
For additional information and to purchase, contact a Microchip sales representative, authorized worldwide distributor or visit Microchip’s Purchasing and Client Services website, www.microchipdirect.com.

2024052201 / 22.05.2024 / Electronic-components / Microchip Technology Inc. /

Introducing SAMA7D65 Microprocessors Available in System-in-Package and System-on-Chip with Advanced Graphics and Connectivity Features
Microchip’s SAMA7D65 MPU runs 1 GHz Arm® Cortex®-A7 core and integrates MIPI DSI®, LVDS display interfaces and 2D GPU for Human-Machine Interface (HMI) applications

Microchip Technology Unveils 32-bit MCU Family with Integrated High-Performance Analog Peripherals
PIC32A MCU family showcases industry-leading analog peripherals with 200 MHz CPU for cost-effective system-level solutions

MPLAB® XC Unified Compiler Licenses Deliver Streamlined Software Management
Unified solution allows Microchip Technology to provide flexible and cost-effective licensing options for its line of compilers

Microchip Extends maXTouch® M1 Generation Family To Support Large, Curved and Shaped Automotive Displays
ATMXT3072M1 and ATMXT2496M1 single-chip touchscreen controllers bring reliable and secure touch detection to automotive displays including emerging OLED and microLED technologies

Artificial Intelligence Meets Embedded Development with Microchip’s MPLAB® AI Coding Assistant
AI-powered tool streamlines software development for greater efficiency and accuracy

Microchip Launches the Next Generation of its Low-Noise Chip-Scale Atomic Clock Featuring a Lower Profile Height of Less Than ½ Inch
The Low-Noise Chip-Scale Atomic Clock, model SA65-LN, enables frequency mixing for battery-powered devices

New Family of Switchtec™ PCIe® Gen 4.0 16-Lane Switches Provides Versatility for Automotive and Embedded Computing Applications
Microchip’s PCI100x devices deliver high performance and cost efficiency for any application where accelerated or specialized computing is used

Microchip Adds MTCH2120 to its Portfolio of Turnkey Capacitive Touch Controllers
The touch controller is designed to integrate with a comprehensive ecosystem of tools to streamline development and speed time to market

Integrated and Compact CAN FD System Basis Chip Solution for Space-Constrained Applications
Microchip introduces the ATA650x CAN FD SBC with integrated high-speed CAN transceiver and 5V LDO

Microchip Expands PolarFire® FPGA and SoC Solution Stacks with New Offerings for Medical Imaging and Smart Robotics
Application-specific, integrated hardware and software technology stacks lower the barrier of entry and speed time to market

Microchip to Accelerate Real-time Edge AI with NVIDIA Holoscan
PolarFire® FPGA Ethernet Sensor Bridge provides low-power multi-sensor bridging to NVIDIA edge AI platforms

Introducing a Wide Portfolio of IGBT 7 Power Devices Optimized for Applications Across Sustainability, E-Mobility and Data Centers
Microchip’s IGBT 7 portfolio is available with multiple topologies, current and voltage ranges

Company of the week

Texas Instruments

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