Protz
Carsten Protz, Altenkrempe DE
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20140026352 | VACUUM SWEEPING MACHINE HAVING A SUCTION EXTRACTION SYSTEM FOR A SIDE BROOM - A vacuum sweeping machine having a chassis, which is configured for moving the vacuum sweeping machine over a surface to be cleaned, a sweeping roller, a suction extraction device, a side broom and a connecting line. The sweeping roller, which is driven in rotation, is mounted on the chassis and surrounded by the sweeping-roller housing. The sweeping roller extends along its rotational axis between a first and a second side wall of the sweeping-roller housing. The suction extraction device has a suction side that is connected to the sweeping-roller housing for the purpose of suction extraction of dust-laden air. The side broom, which is driven in rotation and mounted on the chassis, is surrounded by an enclosure. The connecting line is provided between the sweeping-roller housing and the enclosure. Coupling of the connecting line to the sweeping-roller housing is provided in one of the side walls. | 01-30-2014 |
Jonathan M. Protz, Durham, NC US
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20090275031 | Biomolecular nano device - Methods for measuring environmental parameters using chemical recording are provided. In some embodiments, the methods include generating a polymer comprising an ordered series of chemical units, wherein the position and number of each chemical unit in the polymer is indicative of a reading of the environmental state variable at a given point in time. The presently disclosed subject matter also provides compositions that can be employed in and/or that employ the disclosed methods for recording environmental state variables. | 11-05-2009 |
20110154822 | MICRO-SCALE ENGINES, COMPONENTS, AND METHODS FOR GENERATING POWER - Heat engines suitable for large-scale or micro-scale fabrication supply power from a power turbine. The power turbine is driven in part by an ejector in which a working fluid is utilized as a motive flow. Fuel utilized for combustion may also be utilized as a phase-changing working fluid and as the motive flow driving the ejector. Heat exchangers particularly suitable for micro-scale implementation are also disclosed. | 06-30-2011 |
Jonathan Michael Protz, Durham, NC US
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20090284126 | Vacuum Electronic Devices and Cavities and Fabrication Methods Therefor - The present invention relates to the formation of a vacuum electronics circuit by the fusion bonding of multiple substrate wafers, e.g., silicon, copper, or other suitable conductive material, each etched using DRIE, cut using EDM, or machined by other suitable means. Other aspects of the invention relate to the alignment of a cathode with tube by fusion bonding the cathode wafer to a tube built using the fabrication methods described herein. Yet other aspects involve the alignment of dies or wafers during the fabrication of a vacuum electronics device using the “lego” technique outlined herein. In yet other aspects, fabrication methods are described. | 11-19-2009 |
Meinhard Protz, Bomlitz DE
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20100308498 | METHOD AND DEVICE FOR THE HANDLING AND THERMALLY TREATING BAG OR FILM PACKAGES - Method for handling and heat treatment rectangular bag or film packs with a smaller thickness than length and width, having two longer and two shorter lateral edges, characterized by an orientation of the film packs, in which one main extension plane of the film pack containing the lateral edges forms during handling and/or heat treatment an angle of less than 60° with the vertical and the longer edges are oriented substantially horizontally. | 12-09-2010 |
Rudolf Protz, Hoehenkirchen-Siegertsbrunn DE
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20100110557 | Tactical Radiating Device for Directed Energy - A tactical radiating device for directed energy includes at least two generators of high energy directed beams. At least one beam combining system combines high energy directed beams emitted by the generators into a combined high energy beam. A focusing device focuses the combined high energy beam. | 05-06-2010 |
20140307440 | Radiating Element for Focussed Energy - A radiation emitter includes a device for coupling radiation from at least one radiation generator and a radiation combining device that combines the radiation to bundled radiation. The radiation combining device includes a telescopic optic with a collimation reflector and a secondary reflector. The radiation combining device is configured to accept directional radiation from a plurality of light conducting devices from at least one radiation generator. | 10-16-2014 |
20140313569 | Illumination Device and Method for Controlling the Illumination Device - An illumination device for illuminating a target to be combated includes a laser light source for emitting light along a beam path, a first modulator in the beam path and configured to manipulate a direction of the beam path in a first plane, a phase plate in the beam path having a variety of different optical thicknesses, and a control device connected to the light source and the first modulator and is configured to activate the first modulator using different frequencies, so that the beam path is deflected over a control period of time up to a first angle. | 10-23-2014 |
20140338863 | Supply Module for Supplying an Effector System and Effector System with a Supply Module - A supply module for supplying a weapon system includes an electric storage device and a thermal storage device that stores coolant. The supply module also includes at least one electrical connection via which power can be transferred from the electric storage device to the effector system, and at least one thermal connection via which the coolant can be transferred from the thermal storage device to the effector system. | 11-20-2014 |
Rudolf Protz, Hoehenkirchen/siegertsbrunn DE
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20090097508 | Fiber Laser Arrangement Having A High Beaming Power - A fiber laser arrangement having a high beaming power includes a plurality of continuously operating coherent individual fiber lasers. Pumping energy generated by a common master oscillator operated in the longitudinal mode is distributed to the fiber lasers by way of a fiber splitter, in a branched manner. An integrated electro-optical phase shifter is assigned to each individual fiber laser, and can be controlled by an electronic control system. By appropriate displacements of the optical phases in individual phases of the fiber laser arrangement atmospheric turbulence effects on the propagation path of the laser radiation to a target are compensated in order to obtain an optimal focusing of the entire laser radiation onto the remote target. | 04-16-2009 |