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FETs are suited for multiple wireless applications.

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June 13, 2008 - Measuring 1.0 x 0.5 x 0.25 mm, VMMK-1218 and -1225 low profile devices do not require negative voltage to operate, and leverage chip scale packaging technology which enables miniaturization. Model VMMK-1225 supports 0.5-26.5 GHz frequency ranges with noise figure of less than 0.95 dB and 12 dB available gains under 50 W conditions at 12 GHz. Model VMMK-1218 operates from 0.5-18 GHz with noise figure of less than 0.85 dB and 9 dB available gains under 50 W conditions at 10 GHz.

(Archive News Story - Products mentioned in this Archive News Story may or may not be available from the manufacturer.)
Original Press release

Avago Technologies
350 West Trimble Road, Building 90
San Jose, CA, 95131
USA



Avago Technologies Delivers Industry's Smallest FETs for Multiple Wireless Applications


Leverages New Chip Scale Packaging Innovation to Reduce Size of the Device

SAN JOSE, Calif., April 7, 2008
Avago Technologies today announced the industry's smallest packaged field effect transistors (FETs). Measuring a mere 1.0 x 0.5 x 0.25mm, these ultra small, low-profile discrete low noise devices occupy less than 5% the volume of a standard SOT-343 package. The new VMMK-1218 and -1225 leverage Avago's innovative chip scale packaging technology which enables miniaturization of transistors with high-frequency operation and superior thermal dissipation. These revolutionary devices do not require negative voltage to operate, resulting in lower costs and ease of use for RF designers. The company is a leading supplier of analog interface components for communications, industrial and consumer applications.

The VMMK-1225 supports 0.5 to 26.5 GHz frequency ranges with a noise figure of less than 0.95 dB and 12 dB available gain under 50 ohms conditions at 12 GHz. The FET also offers 23 dBm output third-order intercept and 8 dBm output power. The VMMK-1218 operates from 0.5 to 18 GHz with a noise figure of less than 0.85 dB and 9 dB available gain under 50 ohms conditions at 10 GHz. The FET also offers 22 dBm output third-order intercept and 12 dBm output power.

The size and performance of these transistors make it suitable for a variety of wireless applications, including commercial radios, UWB, radar, base stations, military communications, RF sensors, WiMAX, satellite communications or any DC-26 GHz application requiring small-sized components.

Pricing and Availability
Pricing for Avago Technologies' VMMK-1218 and -1225 begin at $1.19 and $1.32 respectively in 1000-9999 quantities. These new FETs are currently available through Avago's direct sales and worldwide distributor partners.

Avago's RF/Microwave Solutions
With three decades of radio frequency (RF) and microwave design and manufacturing experience, Avago Technologies can help its customers meet the most demanding technical specifications and pass the most difficult regulatory tests around the world. Avago's reliable RF/microwave components target wireless infrastructure, wireless data (GPS/WLAN/WiMAX), handset, digital TV, VSAT and datalink applications and offer numerous benefits, including small packages, excellent power efficiency and industry-leading performance specifications. More information is available at www.avagotech.com/rf.

About Avago Technologies
Avago Technologies is a leading supplier of analog interface components for communications, industrial and consumer applications. By leveraging its core competencies in III-V compound and silicon semiconductor design and processing, the company provides an extensive range of analog, mixed signal and optoelectronics components and subsystems to more than 40,000 customers. Backed by strong customer service support, the company's products serve four diverse end markets: industrial and automotive, wired infrastructure, wireless communications, and computer peripherals. Avago has a global employee presence and heritage of technical innovation dating back 40 years to its Hewlett-Packard roots. Information about Avago is available on the Web at www.avagotech.com.
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