ON Semiconductor Introduces DSP-Based System-on-Chip for Hearing Health Solutions
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ON Semiconductor Introduces DSP-Based System-on-Chip for Hearing Health Solutions

Next-generation Ezairo® 7100 optimizes performance, size and power consumption while offering an open-programmable architecture

PHOENIX — (BUSINESS WIRE) — October 28, 2013 — ON Semiconductor (Nasdaq: ONNN), driving energy efficient innovations, has launched the Ezairo 7100 series of integrated circuits and packaged hybrids for advanced hearing aids and hearing implant devices. With five times the processing power of previous systems, the system-on-chip (SoC) provides built-in flexibility to support evolving algorithm, wireless and system-level needs.

Ezairo 7100 is one of the industry’s most integrated and power efficient single chip solutions. Its unique quad-core architecture is constructed of a 24-bit open-programmable CFX DSP core. Inclusion of the ARM® Cortex-M3 processor supports wireless protocols and complements the DSP core with special error-correction and audio coding support. The system also features a HEAR configurable accelerator engine, dedicated for audio processing tasks, and a new Filter Engine which implements efficient time-domain filters. When combined with non-volatile memory and wireless transceivers, it forms a complete hardware platform.

“In Ezairo 7100, major signal processing capabilities are hardwired in logic blocks while the programmable DSP enables additional signal processing capabilities to be implemented in software,” said Michel De Mey, senior director, hearing and audio solutions at ON Semiconductor. “The open architecture is designed specifically for hearing aids and hearing implant devices and allows manufacturers to respond quickly to shifting market needs.”

Manufactured using 65 nanometer (nm) process technology, the series integrates analog front-end circuitry with an unmatched input dynamic range of 110 decibel (dB) that enables high sound precision and quality. A programmable Filter Engine supports an ultra-low delay audio path of 44 μs for superior performance of features such as occlusion management. The addition of an integrated wireless controller, compatible with NFMI and RF wireless technologies, supports efficient data transfer to and from wireless transceivers.

The new wireless-ready series extends the company’s successful open-programmable DSP-based systems including the Ezairo 5900 and Ezairo 6200 series. The Ezairo 7100 series is available as die or packaged integrated circuits.

As part of ON Semiconductor’s commitment to offering completely tailored solutions, a full suite of development tools, training and full technical support is available. In addition, the company’s network of solution partners is also available to offer development support that enables manufacturers to quickly supplement and broaden their hearing aid product portfolios. Additional product information can be found at: www.onsemi.com/ezairo

About ON Semiconductor

ON Semiconductor (Nasdaq: ONNN) is driving energy efficient innovations, empowering design engineers to reduce global energy use. The company offers a comprehensive portfolio of energy efficient power and signal management, logic, discrete and custom solutions to help customers solve their unique design challenges in automotive, communications, computing, consumer, industrial, LED lighting, medical, military/aerospace and power supply applications. ON Semiconductor operates a responsive, reliable, world-class supply chain and quality program, and a network of manufacturing facilities, sales offices and design centers in key markets throughout North America, Europe, and the Asia Pacific regions. For more information, visit http://www.onsemi.com.

ON Semiconductor and the ON Semiconductor logo are registered trademarks of Semiconductor Components Industries, LLC. All other brand and product names appearing in this document are registered trademarks or trademarks of their respective holders. Although the company references its Web site in this news release, such information on the Web site is not to be incorporated herein.



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