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公开(公告)号:US20230322627A1
公开(公告)日:2023-10-12
申请号:US18199660
申请日:2023-05-19
申请人: Albert Chin-Tang WEY
发明人: Albert Chin-Tang WEY
CPC分类号: C04B35/18 , A61N5/06 , C04B35/64 , A61N2005/065 , A61N2005/066 , C04B2235/3217 , C04B2235/3241 , C04B2235/3272 , C04B2235/3418 , C04B2235/3463 , C04B2235/6562 , C04B2235/6567 , C04B2235/9646
摘要: This invention relates to a ceramic composite that may be used for various purposes including for assembly into a therapeutic device for treating a human or animal body with irradiation of nonthermal far infrared (FIR) radiation. More specifically, while all FIR-related prior art is only radiating broadband blackbody thermal radiation, said ceramic composite can emit not only the usual blackbody thermal radiation but also the inventive nonthermal FIR-photon radiation in the 3 - 16 µm wavelength spectrum. As a result, the overall measurable radiation in 8 - 14 µm wavelength range from said ceramic composite has an approximated blackbody temperature that is at least 1° C. higher than the actual temperature of said ceramic composite, signifying an effective emissivity greater than 1.0, while 1.0 emissivity is a theoretical limit assigned to an ideal black body and thus unsurpassable. It is an outcome of adding the 3 - 16 µm band of nonthermal FIR-photon radiation to the continuous 4 - 1,000 µm band of blackbody thermal radiation.
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公开(公告)号:US20240003747A1
公开(公告)日:2024-01-04
申请号:US18370289
申请日:2023-09-19
申请人: Albert Chin-Tang WEY
发明人: Albert Chin-Tang WEY
CPC分类号: G01J5/53 , G01J5/485 , G01J5/026 , G01J2005/0077
摘要: The present invention generally relates to devices, systems, and methods for detecting and measuring the radiant power and emissivity of nonthermal far infrared radiation (FIR) in 3-16 μm wavelength spectrum from the surface of a FIR-photons emitting object and, more specifically, in 8-14 μm wavelength range.
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公开(公告)号:US20230080964A1
公开(公告)日:2023-03-16
申请号:US17473799
申请日:2021-09-13
申请人: Albert Chin-Tang WEY
发明人: Albert Chin-Tang WEY
摘要: This invention relates to a ceramic module for assembly into a therapeutic device for treating a human or animal body with irradiation of far infrared. More specifically, said ceramic module can simultaneously emit blackbody-like thermal radiation and stimulated FIR-photons radiation in 3-16 μm wavelength spectrum, while the overall radiation in 8-14 μm wavelength range is measured to be an approximated blackbody radiation at a temperature that is at least 1 °K. (or 1 °C.) higher than the actual body temperature of said ceramic module, signifying an effective emissivity greater than 1.0. Said ceramic module may be used alone or serve as components of a therapeutic device for increasing physiologic performance, immune competence, health, and mean lifespan of human or animal.
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