Deniz K. Armani - Burbank CA, US Tobias J. Kippenberg - Bremen, DE Sean M. Spillane - Pasadena CA, US Kerry J. Vahala - San Gabriel CA, US
Assignee:
California Institute of Technology - Pasadena CA
International Classification:
H01S 3/08
US Classification:
372 92, 372 94, 372 67, 372 19
Abstract:
A micro-cavity resonator including a micro-cavity capable of high and ultra-high Q values and a silicon substrate. Portions of the silicon substrate located below a periphery of the micro-cavity are removed to form a pillar, which supports the micro-cavity. Optical energy travels along an inner surface of the micro-cavity.
Andrea Martin - Pasadena CA, US Deniz Armani - Burbank CA, US Lan Yang - Pasadena CA, US Kerry Vahala - San Gabriel CA, US
International Classification:
G02B006/12
US Classification:
385014000, 264001100
Abstract:
Polymer micro-resonators and methods of fabricating the same. A liquid polymer material is applied to a micro-resonator master that includes at least one micro-resonator, such as a disk or toroid micro-resonator. The liquid molding material is cured or set to form a mold that is derived from the master. A replica of the master micro-resonator is cast using the mold, and the replicated micro-toroid resonator(s) are separated from the mold. The polymer micro-resonators can have Q factors up to about 5×10. The mold and replica materials can be a silicone material, such as polydimethylsiloxane.
Kerry Vahala - Pasadena CA, US Lan Yang - Pasadena CA, US Deniz Armani - Burbank CA, US
International Classification:
H01S003/06
US Classification:
372067000
Abstract:
A micro-cavity resonator including a micro-cavity having a doped sol gel layer or solution applied thereto. The dopant can be various rare earth elements, such as erbium. The micro-cavity can be a spherical or disk or toroid shaped micro-cavity. Certain cavities are capable of high and ultra-high Q factors. Optical energy travels along an inner surface of the coated micro-cavity at a wavelength influenced or determined by the dopant in the coating.
Deniz K Armani - Pasadena CA, US Monish J. Doshi - Irvine CA, US Gregory B. Noll - Burbank CA, US Jonathon M. Smith - Santa Monica CA, US
International Classification:
G02B 6/38
US Classification:
385 74
Abstract:
An expanded beam fiber optic connection system is disclosed which overcomes the problems associated with known expanded beam fiber optic connection systems. In particular, the expanded beam fiber optic connection system in accordance with the present invention includes a pair of mating fiber optic connectors. Each fiber optic connector includes a connector body and fiber optic termini. In accordance with an important aspect of the invention, the fiber optic termini utilize expanded beam technology and are configured with virtually the same form factor as existing physical contact fiber optic termini. The configuration of the expanded beam termini provides several benefits. First, existing physical contact fiber optic connection systems can be updated in the field by simply replacing the existing physical contact fiber optic termini with the new expanded beam fiber optic termini in accordance with the present invention and re-using the existing connector body, thus significantly reducing cost of upgrading existing physical contact type fiber optic connection systems. Secondly, since the same connector bodies are used for both the physical contact termini and the expanded beam termini, the number of components for the two types of fiber optic connection systems is reduced, thus reducing manufacturing costs.
Ryan Judy - Santa Barbara CA, US Deniz Armani - Pasadena CA, US
International Classification:
H05K 9/00
US Classification:
174381, 174382
Abstract:
An electromagnetic interference shield enclosure with an extended edge defining a sleeve, the enclosure and sleeve having an outer protective layer and an inner shielding layer to shield electronic devices from electromagnetic interference. The outer layer and inner layer may be transparent to view the electronic device. A magnet system may be provided to allow the device to be operated while in the enclosure. The auxiliary cable with filtering mechanisms may be provided inside the sleeve to allow access and transfer of data from the electronic device while still in the enclosure.
- Santa Barbara CA, US Deniz Armani - Pasadena CA, US
International Classification:
H05K 9/00
US Classification:
174378, 29428
Abstract:
An electromagnetic interference shield having a main enclosure and optionally at least one auxiliary enclosure. The auxiliary enclosure and the main enclosure have an interior that is continuous with each other. The auxiliary enclosure is made of elastic Faraday material. The outer layer and inner layer may be transparent to view the electronic device. An auxiliary cable with filtering mechanisms may be provided inside a sleeve to allow access and transfer of data from the electronic device while still in the main enclosure.
Smp Engineering
Director of Engineering
Glenair Oct 2013 - May 2017
Director of Research and Development
Glenair Sep 2007 - Sep 2013
Senior Scientist
Xponent Photonics Jun 2006 - Sep 2007
Senior Technical Staff
Hrl Laboratories, Llc Jun 2005 - Jun 2006
Senior Technical Staff
Education:
Caltech 2000 - 2005
Doctorates, Doctor of Philosophy, Electrical Engineering
University of Illinois at Urbana - Champaign 1996 - 2000
Bachelors, Bachelor of Science, Electrical Engineering
Skills:
Product Development Optics Electronics Semiconductors Engineering Manufacturing R&D Matlab Sensors Mems Zemax Cross Functional Team Leadership Cst Microwave Studio Signal Processing Labview Engineering Management Applied Research Systems Engineering Technology Development Optical Design International Project Management Technical Management Technology Management Aerospace Simulations
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