Rogin
Jurgen Rogin, Meilen CH
Patent application number | Description | Published |
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20100182091 | METHOD AND APPARATUS TO LINEARIZE TRANSCONDUCTORS BY PREDISTORTION - A transconductor for providing an output current that is linear in the input voltage (Vin) comprises a main output transconductor (Ms, Mc) and a model transconductor (Msr | 07-22-2010 |
20120206199 | Method and apparatus to linearize transconductors by predistortion - A transconductor for providing an output current that is linear in the input voltage (Vin) comprises a main output transconductor (Ms, Mc) and a model transconductor (Msr | 08-16-2012 |
Martin I Rogin, Libertyville, IL US
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20160091120 | RELEASABLE CONNECTOR FOR SUPPORTING A FLEXIBLE CONDUIT - A flexible conduit having a rigid portion, a flexible portion and a releasable connector secured to the rigid portion to support the flexible conduit. The releasable connector includes a male member and a female member. One of the two members includes at least one biased plungers and the other includes at least one detent. The plungers and detents are vertically spaced along the longitudinal axes of the members. A clevis may be used to secure the releasable connector to the rigid portion of the flexible conduit. A second support connected to the male and female members may be used. Also a method of supporting a flexible conduit with a releasable connector. | 03-31-2016 |
Peter Rogin, Saarbruecken DE
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20100155974 | METHOD AND DEVICE FOR PRODUCING STRUCTURED OPTICAL MATERIALS - The invention relates to a method for producing structured optical materials. It also relates to a device for producing structured optical materials, and to use of the method. | 06-24-2010 |
20100321784 | Optical Elements with Gradient Structure - The invention relates to optical elements with gradient structure, in particular for holographic applications, wherein the gradient structure is formed by a refractive index gradient and a method for production of said optical elements with gradient structure. | 12-23-2010 |
Peter Rogin, Sulzbach DE
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20100203308 | Production of a flexible, gas-tight,and transparent composite film - The invention relates to a method for the production of a flexible, gas-tight, and transparent composite film, comprising a transparent carrier layer made of plastic and a glass-like layer. The method comprises the following steps: a) a temperature-resistant substrate is coated with a lacquer comprising glass or glass-forming pre-stages by a wet chemical process, b) the coating is thermally compressed to form the glass-like layer, c) the transparent carrier layer made of plastic is applied onto the glass-like layer and bonded thereto, and d) the composite of the carrier layer and the glass-like layer is separated from the substrate. The composite films obtained in this way are suitable as encapsulation material or packing material, particularly for the use in displays, illumination and photovoltaics, for example for light-emitting diodes, solar cells, displays, or electronic circuits. | 08-12-2010 |
Peter Rogin, Saarbrucken DE
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20120279712 | Magnetic Composite Particles - Magnetic composite particles can be used as proppants and allow for deliberate heating by applying an alternating magnetic field. | 11-08-2012 |
20150331160 | SECURITY DEVICE - A security device for improving the security against falsification of articles has a carrier element. Arranged on the upper side of the carrier element are a large number of diffractive surface elements. The surface elements respectively form a number of surface element groups, surface structures of which are made to match one another in such a way that they show a point of the symbol to be represented over an entire observation sphere. By changing the angle of incidence of the light and/or the angle of observation of an observer, a continuous movement of the symbol in the observation sphere is perceived by the observer. | 11-19-2015 |
20150352881 | SECURITY DEVICE - A security device includes a plurality of diffractive surface elements arranged on a carrier element. Each individual diffractive surface element can have a three-dimensional surface structure. A portion of the plurality of the diffractive surface elements can form a first surface element group. An orientation of the diffractive surface elements in the first surface element group can be matched to each other wherein they make a first point of an associated symbol to be represented visible. A plurality of additional surface element groups each can make a respective additional point of the symbol to be represented visible. The symbol can include a sum of all points represented by the first surface element group and the plurality of additional surface element groups. A movement of the symbol can be perceived by the continuous change in an angle of incidence of the light or an observation angle. | 12-10-2015 |