Birkholz, DE
Christian Birkholz, Lippetal DE
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20130010395 | OVERVOLTAGE PROTECTION DEVICE - An overvoltage protection device for protecting electrical low-voltage installations, having a lower device part and at least one upper device part, wherein the lower device part has input and output terminals for the electrical conductors to be connected and contact elements connected to the input and output terminals. The upper device part has at least one overvoltage protection element. An intermediate device part is additionally provided which can be fitted onto the lower device part and onto which the upper device part can be fitted. The intermediate device part has mating contact elements corresponding to the contact elements of the lower device part and also has contact elements connected to the mating contact elements. The intermediate part has at least one longitudinal element connected between two mating contact elements, and the upper device part has mating contact elements corresponding to the contact elements of the intermediate device part. | 01-10-2013 |
Holger Birkholz, Faulbach DE
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20090250902 | LIFTING DEVICE - The invention relates to a lifting device ( | 10-08-2009 |
20090309332 | FOOT DEVICE FOR SUPPORTING A SUPPORT DEVICE OR LIFTING DEVICE - The invention relates to a foot device ( | 12-17-2009 |
20090321696 | LIFTING DEVICE - The invention relates to a lifting device ( | 12-31-2009 |
20100001244 | LIFTING DEVICE - The invention relates to a lifting device ( | 01-07-2010 |
20130187106 | LIFTING DEVICE - The invention relates to a lifting device, comprising a shank tube and a support tube movable with respect thereto, wherein on the shank tube a lifting gear mechanism is arranged which comprises an input shaft arrangement for connecting a drive device and an output shaft arrangement for driving a lifting spindle, wherein the input shaft arrangement comprises a hollow shaft and an axially movable gearshift shaft which is arranged coaxially with respect to the hollow shaft, wherein the hollow shaft serves for the rotationally fixed arrangement of a large-diameter gearwheel, and the gearshift shaft serves for the rotationally fixed arrangement of a small-diameter gearwheel, and engagement devices are provided on the hollow and gearshift shafts which can be put in coupling engagement by axial movement in order to change the transmission ratio. | 07-25-2013 |
Joerg Birkholz, Sarstedt DE
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20110056758 | ELECTROCHEMICAL ACCUMULATOR AND VEHICLE COMPRISING AN ELECTROCHEMICAL ACCUMULATOR - An electrochemical accumulator includes a plurality of electrochemical cells, each of which has a casing. The accumulator also includes a cover, a housing which is closed by the cover, an electrolyte in the housing, and at least one connecting pole for making electrical contact with the accumulator, where the connecting pole is electrically connected to a group of the electrochemical cells. The accumulator also includes a cooling air area for holding cooling air for cooling the cells and a degassing area for holding a gas which emerges from the cells in the event of a defect. The cooling air area and the degassing area are separated from one another in a gas-tight manner and the cooling air area and the degassing area are passed out of the housing independently of one another. The cooling air area has channels which are guided on the casings of the cells outside the cells. | 03-10-2011 |
Joerg Birkholz, Drasdo DE
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20120153314 | LIGHT SIGNAL - A light signal contains a semiconductor light source and a convex lens system for representing signal aspects, especially on rail-bound traffic routes. In order to eliminate the need for monochrome semiconductor light sources, the semiconductor light source is a white point light source. A signal aspect-specific color filter is provided in the aperture region of the point light source. | 06-21-2012 |
20120162997 | LIGHT SIGNAL - A light signal contains a semiconductor light source and an optical system for representing signal aspects (properties), especially on rail-bound traffic routes. In order to obtain the advantageous properties of filament light signals, especially with respect to the beam spread in horizontal direction, the semiconductor light source is configured as a point light source, especially as an individual LED—light-emitting diode—or as an individual HLED—high current LED—and the optical system has an axially symmetric cylindrical lens and a rotationally symmetric convex lens, especially a Fresnel lens. | 06-28-2012 |
Joerg Birkholz, Sarstedt Lower Saxony DE
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20160049630 | LEAD FRAME FOR A BATTERY MODULE - The present disclosure includes a battery module having a power assembly that includes a plurality of battery cells and a plurality of bus bars that electrically couples a terminal of each of the plurality of battery cells to a terminal of an adjacent battery cell of the plurality of battery cells. The battery module also includes a lead frame that includes a plurality of cell taps respectively electrically coupled to the plurality of bus bars of the power assembly, and a plurality of leads that extends from the plurality of cell taps. The lead frame also includes a plurality of broken interconnects that electrically isolates the plurality of cell taps from one another and electrically isolates the plurality of leads from one another. | 02-18-2016 |
Katrin Birkholz, Erlangen DE
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20140004134 | NF-KB SIGNALING PATHWAY-MANIPULATED DENDRITIC CELLS | 01-02-2014 |
Mario Birkholz, Frankfurt (oder) DE
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20120280393 | Electromechanical Microswitch for Switching an Electrical Signal, Microelectromechanical System, Integrated Circuit, and Method for Producing an Integrated Circuit - The invention relates to a microelectromechanical system with an electromechanical microswitch for switching an electrical signal in particular a radio frequency signal, in particular in a GHz range, comprising a multi-level conductive path layer stack arranged on a substrate, wherein conductive paths of the multi-level conductive path layer stack arranged in different conductive levels are insulated from one another through electrically insulating layers and electrically connected with one another through via contacts, an electromechanical switch which is integrated in a recess of the multi-level conductive path layer stack and which includes a contact pivot, an opposite contact and at least one drive electrode for the contact pivot, wherein the contact pivot, the opposite contact and the at least one drive electrode respectively form a portion of a conductive level of the multi-level layer stack. | 11-08-2012 |
Mario Birkholz, Frankfurt DE
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20140000344 | MEMS-Microviscometer | 01-02-2014 |
Martin Birkholz, Berlin DE
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20120085633 | DRIVE MECHANISM FOR ELECTRIC SWITCHING DEVICES HAVING THREE SEPARATE POSITIONS - A switching device assembly has an encapsulation housing. Movable active conductors are located inside the encapsulation housing. A drive unit with a gearbox is located outside of the encapsulation housing. The gearbox is part of a kinematic chain for moving an active conductor. The kinematic chain penetrates the encapsulation housing. In order to reverse the direction of a movement of the gearbox that can be transmitted, the gearbox is turned around a reversing axis and coupled into the kinematic chain. | 04-12-2012 |
Volker Birkholz, Neumunster DE
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20090104301 | DEVICE FOR MELT SPINNING OF A LINEAR FILAMENT BUNDLE - A device for melt spinning a linear filament bundle has a spinning shaft for mounting a longitudinal spinning nozzle group, having a nozzle plate including a plurality of nozzle openings on a bottom, and an inlet plate having at least one inlet channel on a top. A distribution chamber is provided between the inlet plate and the nozzle plate, which is connected to the inlet channel in the inlet plate and the nozzle openings in the nozzle plate. The inlet plate has multiple inlet channels provided at a distance to one another in longitudinal direction of the spinning shaft. Multiple distribution chambers arranged next to one another are provided in longitudinal direction of the spinning shaft. The inlet channels each end in one of the distribution chambers. | 04-23-2009 |
20100015266 | DEVICE FOR MELT-SPINNING SYNTHETIC FILAMENTS - A device for melt-spinning synthetic filaments includes a spin-die manifold for holding at least one bank of spinnerets and heating device for heating the bank of spinnerets. At least one spinneret with second heating device for heating the spinning pump is allocated to the bank of spinnerets and the spinning pump and bank of spinnerets are interconnected by a melt line. To achieve a user-friendly arrangement for the bank of spinnerets and the spinning pump, the pump and the second heating device are held by a separate pump support which is placed at a distance from the spin-die manifold. This allows the spinning pump to be heated independently of the spin-die manifold. | 01-21-2010 |
20110059196 | DEVICE FOR MELT SPINNING MULTICOMPONENT FIBERS - A device for melt spinning multi-component fibers including at least two melt inlets for introducing separately guided melt components is presented. The device includes a feed plate having a plurality of feed channels for distributing the melt components, a distributor block associated with the feed plate, and a nozzle plate adjoining the distributor block and including a plurality of nozzle bores, wherein the distributor block has several thin distributor plates stacked on top of each other and each have a hole pattern with multiple distribution openings. The thin distributor plates are configured inside the distributor block such that a plurality of melt channels form, which connect the feed channels of the feed plate to the nozzle bores of the nozzle plate. In order to implement high flow volumes, multiple distributor plates having identical hole patterns of the distribution openings are stacked in a tightly sealing manner inside the distributor block. | 03-10-2011 |
20130295208 | Spinneret Bundle - A spinneret bundle for producing fibers from a polymer melt includes an elongated nozzle plate that has a feed channel on an upper face and at least one row of nozzle bores that are arranged next to one another on a lower face. A distributing plate lies on the upper face of the nozzle plate and has a distributing chamber that faces the feed channel and a melt inlet that is connected to the distributing chamber. A perforated plate with a plurality of through-bores is provided between the distributing chamber of the distributing plate and the feed channel of the nozzle plate in order to achieve a redistribution and uniformity of the melt when the melt is introduced into the feed channel. | 11-07-2013 |