WO2023002374 - MICROWAVE DEVICE

National phase entry is expected:
Publication Number WO/2023/002374
Publication Date 26.01.2023
International Application No. PCT/IB2022/056651
International Filing Date 19.07.2022
Title **
[English] MICROWAVE DEVICE
[French] DISPOSITIF À MICRO-ONDES
Applicants **
METAMATERIAL INC. 1 Research Drive Dartmouth, Nova Scotia B2Y 4M9, CA
Inventors
PALA, Ragip 5880 W. Las Positas Blvd. Suite 37 Pleasanton, California 94588, US
URZHUMOV, Yaroslav 601 12th Avenue NW Apt. F2 Issaquah, Washington 98027, US
Priority Data
17/443,100   20.07.2021   US
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Quotation for National Phase entry

Country StagesTotal
China Filing1393
EPO Filing, Examination9663
Japan Filing590
South Korea Filing575
USA Filing, Examination4310
MasterCard Visa

Total: 16531

The term for entry into the National Phase has expired. This quotation is for informational purposes only

Abstract[English] A microwave device includes a microwave cavity, a frame, and a window having an electrically insulating substrate and a structure of metallic wires supported by the substrate. The frame defines a perimeter of an opening in the microwave cavity and the frame is conductive and grounded. The window spans the opening and is arranged to reflect RF radiation back into the cavity and to shield the outside of the microwave cavity from RF radiation. The window is optically transparent. Each metallic wire of the structure is electrically connected to the frame and the width of each metallic wire is between 100 nanometres and 30 micrometres.[French] Un dispositif à micro-ondes comprend une cavité à micro-ondes, un cadre et une fenêtre ayant un substrat électriquement isolant et une structure de fils métalliques soutenus par le substrat. Le cadre définit un périmètre d'une ouverture dans la cavité de micro-ondes et le cadre est conducteur et mis à la terre. La fenêtre couvre l'ouverture et est agencée de façon à réfléchir le rayonnement RF dans la cavité et à protéger l'extérieur de la cavité de micro-ondes contre un rayonnement RF. La fenêtre est optiquement transparente. Chaque fil métallique de la structure est électriquement relié au cadre et la largeur de chaque fil métallique est comprise entre 100 nanomètres et 30 micromètres.
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