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harsh environment fiber optic components with 53 percent relative market share ($328 million), as detailed in Figure 1. The European region held second-place and the Asia Pacific occupied third-place. “Over the 2009-2019 period, however, consumption of these components will expand faster in the European and the Asia Pacific regions,” Montgomery said.

Harsh Environment Defined Harsh Environment (HE) is defined, by ElectroniCast, as environment beyond the limits normally encountered by commercial telecom, datacom and commercial intra-equipment fiber data links; extremes of

- Temperature; above or below (-40 to +75) degrees C

- Shock and vibration - Tensile strength (e.g., for fiber-guided missiles, tethered sensors, etc.)

- High electromagnetic or radio-frequency (EMI/ RFI/EMP) interference

- Corrosive and/or solvent surroundings - Atomic and other Radiation - External pressure extremes

- Rough handling during installation/deployment - Others

Necessary rough handling during installation or deployment also qualifies as a “harsh environment”.

SEE DATA FIGURE

This market forecast and analysis report is available immediately from ElectroniCast Consultants. For detailed information on this or other services provided by ElectroniCast, please contact Theresa Hosking, Marketing/ Sales; thosking@electronicastconsultants.com (Telephone/USA: 707/275-9397)

RFMD Achieves Milestone in Commercialization of High-Performance Photovoltaic Cells

2010-03-16

RF Micro Devices, Inc. a global leader in the design and manufacture of high-performance radio frequency components and compound semiconductor technologies, today announced it has successfully manufactured the industry’s first photovoltaic cell using high-volume six-inch gallium arsenide (GaAs) machinery.

The photovoltaic (PV) cell was manufactured in RFMD’s existing high-volume, six-inch GaAs wafer fabrication facilities in Greensboro, NC, with no fabrication equipment modifications. This achievement represents the first in a series of milestone achievements anticipated by RFMD related to the commercialization of high-performance multijunction PV cells.

RFMD is a pioneer in compound semiconductor manufacturing with a proven ability to commercialize new technologies. On July 1, 2009, RFMD announced it had entered into a cooperative agreement with the U.S. Department of Energy’s National Renewable Energy Laboratory (NREL) to develop a commercially viable and high volume-capable compound semiconductor-based process for high-performance multijunction PV cells.

NREL Director Dan Arvizu said, “NREL’s collaboration with RFMD demonstrates our commitment to developing the best technologies for renewable energy and aligning with the most capable partners to commercialize and deploy each technology. We applaud RFMD’s successful achievement of

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