Fessler
Bernhard Fessler, Kressbronn Am Bodensee DE
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20150080169 | POWERSHIFT TRANSMISSION - An automatic powershift transmission having a variable-speed transmission ( | 03-19-2015 |
Dietmar Fessler, Langen Bei Bregenz AT
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20150083016 | CABLEWAY SYSTEM FOR TRANSPORTING PERSONS OR GOODS - A cableway system for the transport of persons or goods has two pairs of track cables, which extend between two terminal stations, such as a valley station and a mountain station. Transport vehicles, such as gondolas, are moved along the track cables by at least one traction cable. The track cables run in a curved path in the region of at least one tower and the traction cable is guided in the region of the at least one tower via carrying rollers. At least some of the carrying rollers for the traction cable, which are located in the region of the at least one tower, are adjustable in terms of their position in relation to the two track cables. | 03-26-2015 |
Eric Fessler, Belfort FR
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20150372625 | SYSTEM FOR SUPPLYING ELECTRICAL POWER TO A LOAD AND CORRESPONDING POWER SUPPLY METHOD - This system for supplying electrical power to a load includes an asynchronous generator including a cage rotor intended to be driven by motor means and a rectifier adapted to rectify the voltage delivered by the generator. The rectifier is a rectifier employing unidirectional electronic components. The power supply system further includes a reactive power source for magnetizing the asynchronous generator. | 12-24-2015 |
Harald Fessler, Arbon CH
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20120240889 | MECHANICAL VARIABLE VALVE ACTUATION SYSTEM FOR 2-STROKE AND 4-STROKE ENGINE OPERATIONS - The invention relates to a mechanical variable valve actuation (VVA) system for the control and actuation of the valves of an internal combustion engine. The system according to the present invention realizes the control of the valve lift by means of a fixed pivot part for an oscillating rocker suitable to actuate the valve, the oscillating rocker being actuated by means of an eccentric control element. | 09-27-2012 |
Julia Fessler, Feldkirchen DE
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20090005785 | MOUNTING FOR A BONE DRILL AND BONE DRILL MOUNTING SYSTEM - A mounting device for arranging a medical apparatus on a bone includes a fastening portion for fixing the mounting device to the bone. The fastening portion is configured to interface with the bone and operative to fix the mounting device to the bone using a vacuum. | 01-01-2009 |
20090240141 | SYSTEM FOR NAVIGATION-ASSISTED SHOULDER OPERATIONS AND NAVIGATION METHOD FOR POSITIONING NAVIGATED TREATMENT APPARATUSES WITH RESPECT TO A BONE - The present application relates to a system for navigation-assisted shoulder operations in which the humeral component is partially replaced with a prosthesis, comprising: | 09-24-2009 |
Marc Fessler, Eberstadt DE
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20120210952 | MOTOR VEHICLE WITH A COMBUSTION ENGINE, AND METHOD OF OPERATING A COMBUSTION ENGINE - A motor vehicle includes a combustion engine and an intake tract for feeding air to the combustion engine. A compressor is arranged in the intake tract for compressing air, and a turbine is arranged in the intake tract downstream of the compressor and powered by air compressed in the compressor. | 08-23-2012 |
20120324884 | DRIVE WITH AN INTERNAL COMBUSTION ENGINE AND AN EXPANSION MACHINE WITH GAS RETURN - A drive for a vehicle includes an internal combustion engine having a combustion chamber delimited by a cylinder and a piston, a compressed gas store connectable with the combustion chamber for storing a gas compressed in the combustion chamber, a separate expansion machine for expanding compressed gas from the combustion chamber or from the compressed gas store by performing mechanical work, and devices for supplying gas from the expansion machine into the combustion chamber or into an intake passage of the internal combustion engine. The drive may, alternatively or in addition, also include devices for heating the compressed gas from the combustion chamber or from the compressed gas store before the compressed gas enters into the expansion machine. | 12-27-2012 |
Thilo Fessler, Hard AT
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20140283397 | CONSTRUCTION LASER SYSTEM HAVING A ROTATION LASER AND A LASER RECEIVER, WITH FUNCTIONALITY FOR AUTOMATIC DETERMINATION OF THE LASER RECEIVER DIRECTION - A construction laser system includes a rotation laser and a laser receiver. To determine a direction in which the laser receiver lies in sight of the rotation laser, a digital code respectively assigned uniquely to the respective rotation angle ranges includes a state value sequence based on a defined sequence of states relating to the laser beam. In the respective rotation angle ranges, the corresponding sequence of states is respectively generated by successively occurring crossings of the respective rotation angle range. On the receiver side, an output signal is generated as a function of incidence of the laser beam. With the aid of an output signal sequence of successively generated output signals, which is acquired by the evaluation unit, the state value sequence corresponding to the acquired output signal sequence is identified, permitting final determination of the corresponding rotation angle range in which the laser receiver lies. | 09-25-2014 |
20140283399 | CONSTRUCTION LASER SYSTEM WITH AN AT LEAST PARTIALLY AUTOMATICALLY RUNNING RECALIBRATION FUNCTIONALITY FOR A BEAM LEVELLING FUNCTIONALITY - A construction laser system includes a rotating laser with self-leveling and a laser receiver. The system performs a self-leveling recalibration process by which-the self-leveling is checked automatically for quality and the related calibration data is updated automatically. A sequence of N calibration measurements is defined, where N is greater than or equal to three. The calibration measurements are obtained by the rotating laser and the laser receiver with a respective azimuthal alignment of the stand while the position of the laser receiver remains unchanged. As part of each calibration measurement, one output signal dependent on the laser beam impingement position is detected. The respective output signals or specified impingement positions are evaluated in pairs correlated with the respective I-th azimuthal alignments. The quality of the beam leveling functionality is thereby checked. If the requirements are not met, the previously stored calibration data can then be updated automatically. | 09-25-2014 |