U.S. patents available from 1976 to present.
U.S. patent applications available from 2005 to present.

Method and apparatus for powering an electrodeless lamp with reduced radio frequency interference

Patent 5910710 Issued on June 8, 1999. Estimated Expiration Date: Icon_subject November 22, 2016. Estimated Expiration Date is calculated based on simple USPTO term provisions. It does not account for terminal disclaimers, term adjustments, failure to pay maintenance fees, or other factors which might affect the term of a patent.

Patent References

3662140

Microwave harmonic absorption filter
Patent #: 4060778
Issued on: 11/29/1977
Inventor: Hefni, et al.

Microwave systems for eliminating spurious signals from pulsed source
Patent #: 4069456
Issued on: 01/17/1978
Inventor: Bensussan ,   et al.

Method and apparatus for igniting electrodeless discharge lamp
Patent #: 4359668
Issued on: 11/16/1982
Inventor: Ury

Millimeter wave microstrip surface mounted attenuator
Patent #: 4716389
Issued on: 12/29/1987
Inventor: Gawronski ,   et al.

Deep UV lamp bulb with improved fill
Patent #: 4859906
Issued on: 08/22/1989
Inventor: Ury ,   et al.

Electrodeless lamp energized by microwave energy
Patent #: 4894592
Issued on: 01/16/1990
Inventor: Ervin, et al.

Electrodless hid lamp with microwave power coupler
Patent #: 5070277
Issued on: 12/03/1991
Inventor: Lapatovich

Electrodeless HID lamp with lamp capsule
Patent #: 5113121
Issued on: 05/12/1992
Inventor: Lapatovich, et al.

Microwave lamp with rotating field
Patent #: 5227698
Issued on: 07/13/1993
Inventor: Simpson, et al.

More ...

Inventor

Application

No. 754858 filed on 11/22/1996

US Classes:

315/248, Induction-type discharge device load315/39, Discharge device load with distributed parameter-type transmission line (e.g., wave-guide, coaxial cable)315/236, Electromagnetic influenced discharge device load315/344Electromagnetic influenced discharge device

Examiners

Primary: Wong, Don
Assistant: Philogene, Haissa

Attorney, Agent or Firm

International Class

H05B 041/16

Abstract

An electrodeless lamp waveguide structure includes tuned absorbers for spurious RF signals. A lamp waveguide with an integral frequency selective attenuation includes resonant absorbers positioned within the waveguide to absorb spurious out-of-band RF energy. The absorbers have a negligible effect on energy at the selected frequency used to excite plasma in the lamp. In a first embodiment, one or more thin slabs of lossy magnetic material are affixed to the sidewalls of the waveguide at approximately one quarter wavelength of the spurious signal from an end wall of the waveguide. The positioning of the lossy material optimizes absorption of power from the spurious signal. In a second embodiment, one or more thin slabs of lossy magnetic material are used in conjunction with band rejection waveguide filter elements. In a third embodiment, one or more microstrip filter elements are tuned to the frequency of the spurious signal and positioned within the waveguide to couple and absorb the spurious signal's energy. All three embodiments absorb negligible energy at the selected frequency and so do not significantly diminish the energy efficiency of the lamp.

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