ON Semiconductor Introduces a GreenPoint(TM) Reference Design for Notebook Power Adapters; the New 90-Watt Power Adapter Solution Delivers 90 Percent Efficiency and Design Simplicity
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ON Semiconductor Introduces a GreenPoint(TM) Reference Design for Notebook Power Adapters; the New 90-Watt Power Adapter Solution Delivers 90 Percent Efficiency and Design Simplicity

DALLAS—(BUSINESS WIRE)—March 20, 2006— ON Semiconductor (Nasdaq: ONNN), a leading global supplier of power management solutions, today unveiled a GreenPoint(TM) reference design for 90-watt (W) notebook computer power adapters. Employing a single-stage approach, this reference design eliminates the burden of implementing two power processing stages. Providing true energy efficiency, it addresses all functional blocks of the power adapter while achieving low standby power and compliance with CEC, Energy Star and European Code of Conduct (COC) requirements.

"This reference design extends our leadership position of advanced power management semiconductors for efficient notebook power adapters," said Andy Williams, vice president of ON Semiconductor's Power Conversion Products Division. "ON Semiconductor's expertise in high-efficiency power design was used to develop this fully tested notebook adapter solution that can be easily implemented by OEMs intent on delivering energy-efficient end products to the market."

The Reference Design

The new GreenPoint(TM) adapter reference design delivers 90 percent energy efficiency. Utilizing a proprietary single-stage topology, the design requires far fewer components than traditional two-stage approaches. The reference design meets original equipment manufacturers' (OEM) skin temperature requirements and leakage current requirements of less than 100 micro-amperes.

To reduce output ripple and maintain harmonic currents within the class D requirements as specified by IEC1000-3-2, the reference design utilizes a dual loop ripple/power-factor optimization technique developed by Energy Recovery Systems Corp. -- a technology and product development company partnering with ON Semiconductor on the innovative adapter reference design.

The enabling device for the reference design is the NCP1651, an active power factor correction controller designed for operation over the universal input range (85 Vac - 265 Vac) in 50/60 Hz power systems. It provides a low-cost, low-component count solution for isolated AC-DC converters with mid-high output voltage requirements and eases the task of meeting the IEC1000-3-2 harmonic requirements for converters in the range of 50 W - 250 W. The NCP1651 uses a proprietary multiplier design, enabling significantly more accurate operation versus conventional analog multipliers. The device is offered in an SOIC-16 package and priced at $1.82 per unit in 2,500-unit quantities.

Supporting Devices

-- TL431 - Programmable Precision Reference

-- LM358 - Single Supply Dual Operational Amplifier

-- LM393 - Low Offset Voltage Dual Comparators

-- MBR20H100 - 20A 100V H-Series Schottky Rectifier

A documentation package for the adapter reference design is available -- including description, block diagram, specifications and evaluation results. These materials are available at www.onsemi.com, as are the product specifications and other supporting information.

Energy Recovery Systems

ON Semiconductor and Energy Recovery Systems Corp. (ERS) established a formal, cooperative relationship that will continue to enable the delivery of cost-effective high-efficiency power supply solutions to the market. ON Semiconductor chose ERS as a partner for power system designs and some joint development activities, in the area of adapters and computing power, based on ERS' power supply design expertise. ERS chose ON Semiconductor as a strategic partner for silicon solutions, based on ON Semiconductor's leadership in developing superior power management integrated circuits.

"By taking a proprietary design approach, we were able to overcome the shortcomings of single-stage topology, and directly address the specific requirements for notebook power adapters," said Abdul Sher-Jan, president of Energy Recovery Systems. "Together with ON Semiconductor, we worked closely with key customers and focused on the critical performance parameters. The result has been the successful development of a low-cost single-stage solution that delivers the required performance, with lower design complexity as compared to more complex and more common two-stage approaches."

About GreenPoint(TM)

GreenPoint(TM) is ON Semiconductor's family of high-efficiency power supply reference designs that meet existing or emerging energy efficiency standards. GreenPoint(TM) reference designs are available for an ATX power supply, a CRT-TV power supply, an LCD-TV power supply and a notebook adapter. To acquire documentation packages for these designs, visit www.onsemi.com and run a keyword search on "GreenPoint."

About Energy Recovery Systems

Energy Recovery Systems is a Moorpark, Calif.- based technology and product development company. Utilizing its proprietary advanced technologies and design know-how, ERS provides cost-effective power conversion solutions to power supply manufacturers, OEMs and consumers striving to meet the new challenges of the AC/DC power conversion market.

About ON Semiconductor

With its global logistics network and strong portfolio of power semiconductor devices, ON Semiconductor is a preferred supplier of power solutions to engineers, purchasing professionals, distributors, and contract manufacturers in the computer, cell phone, portable devices, automotive, and industrial markets. For more information, please visit ON Semiconductor's Web site at 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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