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Microchip Adds 12 Products to its Wireless Portfolio to Further Reduce Barriers to Bluetooth® Integration for Designers at Every Skill Level
Company’s portfolio additions join the only Bluetooth Low Energy offering of its kind spanning modules, System-on-Chip (SoC) products and plug-and-play options

System designers face many barriers when adding Bluetooth® functionality to their products, from skill and resource limitations to budget constraints to time-to-market pressures to challenging performance and integration requirements. Microchip Technology (Nasdaq: MCHP) has expanded its Bluetooth Low Energy portfolio with 12 new products, aimed at providing designers with an extensive array of choices to tackle their unique challenges, effectively lowering barriers across designs spanning from the simplest to the most advanced. These additions include the RF-ready WBZ350 module and the PIC32CX-BZ3 SoC that offers the lowest entry point available for integrating a Bluetooth Low Energy microcontroller (MCU) into product designs. For a list of all 12 products see Microchip’s Bluetooth Low Energy web page.

“The power of choice is increasingly critical when adding Bluetooth to any type of product. Developers need options and the ability to switch between them as their skills and application needs evolve,” said Rishi Vasuki, vice president of Microchip’s wireless solutions business unit. “No other provider makes a Bluetooth Low Energy product that is as easy to use as our plug-and-play modules or provides the same breadth of choices for more advanced designs. And, this is all available from a single supplier who reduces the need to trade functionality for simplicity or innovation for fast development.”

In addition to its Bluetooth MCUs, Microchip introduced the RNBD350 plug-and-play module that reduces the cost and complexity barriers to adding Bluetooth Low Energy connectivity to product designs. These modules minimize the time, money and engineering resources required for RF design optimization, regulatory certification and software development. For experienced engineers who are looking for more flexibility, Microchip offers robust wireless, multi-protocol MCU System-on-Chip (SoC) options.

Sample applications for Microchip’s Bluetooth Low Energy parts include IoT smart home and building systems, Industrial IoT (IIoT) solutions and automotive designs. Designers using the newly expanded Bluetooth Low Energy portfolio for entry-level applications benefit from an easy development process, including in-house support services and development tools, without compromising Bluetooth functionality. They also benefit from Microchip’s extensive MCU expertise for product selection assistance and the opportunity to easily switch to more advanced industrial-grade Bluetooth Low Energy options when they are ready to address more sophisticated design challenges.

Developers can also tap into Microchip’s expanding wireless portfolio for end-to-end solutions. The portfolio offers a range of products in popular wireless technologies like Wi-Fi®, Zigbee®, Thread and sub-GHz that are designed to work seamlessly with the Bluetooth portfolio.

Development Tools

Microchip supports customers with a comprehensive offering of developments tools, software and mobile app source code for iOS® and Android® platforms, building block modules application examples and demos, along with free design check services, to jumpstart product development.

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.


2024070201 / 02.07.2024 / Electronic-components / Microchip Technology Inc. /

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

Microchip Expands 64-bit Portfolio with High-Performance, Post-Quantum Security-Enabled PIC64HX Microprocessors
The RISC-V®-based MPUs support mission-critical intelligent edge applications with TSN Ethernet switching and AI capabilities

Microchip’s RTG4™ FPGAs with Lead-Free Flip-Chip Bumps Achieve Highest Space Qualification
QML Class V designation recognizes exceptional reliability and longevity for critical space missions

Microchip Releases 20 Advanced Wi-Fi® Products for Industrial and Commercial Applications
Company’s wireless connectivity portfolio represents one of the industry’s most extensive selection of Wi-Fi solutions and comprehensive support systems

New VelocityDRIVE™ Software Platform and Automotive-Qualified Multi-Gigabit Ethernet Switches for Software-Defined Vehicles

New Family of Voltage-Controlled Saw Oscillators With Ultra-Low Phase Noise Performance for Radar Applications
Microchip’s VCSO 101765 devices are available in 320 MHz and 400 MHz with a small form factor

New Solution from Microchip Makes it Easier to Build Sophisticated Graphical User Interfaces for MPLAB® Harmony v3 and Linux® Environments

Functional Safety Certification for Microchip’s PolarFire® FPGAs Speeds Time to Market
Certified tool flow and safety data package available for both IEC 61508 SIL 3 and ISO 26262 ASIL D standards

Expanded Single Pair Ethernet Portfolio with 100BASE-T1 and 1000BASE-T1 PHY Transceivers for Network Interoperability
Microchip’s LAN887x PHYs offer extended reach up to 40m and are designed to be compliant with industry standards

Microchip Technology Adds ECC20x and SHA10x Families of Secure Authentication ICs to TrustFLEX Platform
Pre-Configured CryptoAuthentication™ ICs help reduce development time and minimize design costs

Microchip and Acacia Collaborate to Enable Optimized Terabit-Scale Data Center Interconnect Systems
The companies enable an interoperable coherent optics ecosystem that can help streamline the development of data center interconnect and metro transport systems.

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