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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. /

See us at PCIM 2024 on Booth 7-640 ... Microchip Makes it Easier to Design an On-Board Charger Solution
Designers can speed time to market for their on-board charger application with key technologies from one supplier, including the control, gate drive and power stage

Easily Incorporate Embedded Security Using Microchip’s PIC32CK 32-bit Microcontrollers with Hardware Security Module
The new family of mid-range MCUs provides designers with a higher level of security and flexibility

maXTouch® Touchscreen Controller Family Expands with Additional Security Features for Touchscreen Payment Systems
Microchip’s ATMXT2952TD 2.0 family of touch controllers offer cryptographic authentication and data encryption

Integrated Actuation Power Solution Aims to Simplify Aviation Industry’s Transition to More Electric Aircraft
Microchip introduces configurable family of companion driver boards using its Hybrid Power Drive modules available in silicon carbide (SiC) or silicon (Si) technology

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

Microchip Technology Introduces ECC608 TrustMANAGER with Kudelski IoT keySTREAM
Cloud-based software as a service leverages secure authentication ICs to enable self-service custom PKI, streamlined in-field provisioning and lifecycle management for IoT devices

Microchip Technology Expands Its Serial SRAM Portfolio to Larger Densities and Increased Speeds
Product line offers a lower-cost alternative to parallel SRAM with up to 4 Mb density and 143 MHz SPI/SQI™ communications

Microchip Technology Expands TrustFLEX Family with CEC1736 Real-time Platform Root of Trust Devices
TrustFLEX devices along with the Trust Platform Design Suite tool will simplify the enablement of root of trust from concept to production in wide range of applications

Microchip Technology Releases Qi® v2.0 Standards-Compliant dsPIC33-Based Reference Design
Wireless dual-pad charging design supports both Extended Power Profile and Magnetic Power Profile with a single controller

Microchip Technology Releases Next Generation of Easily Configurable Enterprise Storage Backplane Management Processors for Data Center and Storage Applications
Updated EEC1005 family of Universal Backplane Management devices complies with latest SFF-TA-1005 V. 1.4 specifications

Microchip Launches New dsPIC® DSC-Based Integrated Motor Drivers that Bring Controllers, Gate Drivers and Communications to a Single Device
A corresponding ecosystem of support tools will help simplify motor control system development and accelerate time to market

Microchip Expands its mSiC™ Solutions with the 3.3 kV XIFM Plug-and-Play mSiC Gate Driver to Accelerate the Adoption of High-Voltage SiC Power Modules
The highly integrated 3.3 kV XIFM plug-and-play digital gate driver is designed to work out-of-the-box with high-voltage SiC-based power modules to simplify and speed system integration

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