Patents by Inventor Winfried Bernhard
Winfried Bernhard has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
-
Patent number: 7872333Abstract: A layer system is described including a silicon layer and a passivation layer which is applied at least regionally to the silicon layer's surface, the passivation layer having a first, at least largely inorganic partial layer and a second partial layer, the second partial layer being made of an organic compound including silicon or containing such a material. In particular, the second partial layer is structured in the form of a “self-assembled monolayer.” Furthermore, a method is described for creating a passivation layer on a silicon layer, a first, inorganic partial layer being created on the silicon layer and a second partial layer, containing an organic compound including silicon or being made thereof, being created at least in certain areas on the first partial layer. Both partial layers form the passivation layer. The described layer system or the described method is particularly suited for creating self-supporting structures in silicon.Type: GrantFiled: May 6, 2003Date of Patent: January 18, 2011Assignee: Robert Bosch GmbHInventors: Franz Laermer, Lutz Mueller, Winfried Bernhard
-
Patent number: 7279759Abstract: A micromechanical sensor and a method for manufacturing a micromechanical sensor which has at least one membrane are provided. The membrane is made of a first material which is accommodated in a surrounding second material, and the membrane is configured for sensing a medium surrounding it. The membrane is reinforced, at least partly, by a third material at break-sensitive points on the membrane rim. Reinforcement of the membrane rim increases the stability and thus also the service life of the membrane and the sensor.Type: GrantFiled: February 18, 2004Date of Patent: October 9, 2007Assignee: Robert Bosch GmbHInventors: Roland Müller-Fiedler, Hans Hecht, Joerg Muchow, Matthias Fuertsch, Andreas Stratmann, Heribert Weber, Winfried Bernhard, Detlef Gruen, Andreas Duell, Rainer Schink, Ulrich Wagner, Christoph Schelling
-
Publication number: 20060108576Abstract: A layer system is described including a silicon layer and a passivation layer which is applied at least regionally to the silicon layer's surface, the passivation layer having a first, at least largely inorganic partial layer and a second partial layer, the second partial layer being made of an organic compound including silicon or containing such a material. In particular, the second partial layer is structured in the form of a “self-assembled monolayer.” Furthermore, a method is described for creating a passivation layer on a silicon layer, a first, inorganic partial layer being created on the silicon layer and a second partial layer, containing an organic compound including silicon or being made thereof, being created at least in certain areas on the first partial layer. Both partial layers form the passivation layer. The described layer system or the described method is particularly suited for creating self-supporting structures in silicon.Type: ApplicationFiled: May 6, 2003Publication date: May 25, 2006Inventors: Franz Laermer, Lutz Mueller, Winfried Bernhard
-
Patent number: 6986307Abstract: A bridge-type ignition element for initiating the ignition of pyrotechnical materials lying above it by heating when an electric current is passed through it. The bridge-type element is essentially made up of a resistance layer applied to a substrate, a reactive layer, applied on top of that, made of especially an oxidizable metal and a polymeric cover layer situated on top of that, whose material is selected in such a way that it is able to react exothermally at an elevated temperature with the oxidizable material of the reactive layer. The polymeric cover layer makes possible not only a lower energy requirement but also achieves corrosion protection from the surroundings and from the pyrotechnical material.Type: GrantFiled: September 2, 2003Date of Patent: January 17, 2006Assignee: Robert Bosch GmbHInventors: Winfried Bernhard, Lutz Mueller, Ulrich Kunz
-
Patent number: 6810815Abstract: A bridge igniter having a resistance layer which has a given electrical resistance and which can be heated by an electrical current, an electrical insulating layer that is disposed on the resistance layer and has a given thermal conductivity, a reactive layer that is disposed on the insulating layer, the insulating layer transmitting the heat that is produced in the resistance layer to the reactive layer, thereby causing the latter to undergo an exothermic reaction, and a pyrotechnic layer that is disposed on or above the reactive layer and that may be set off by the exothermic reaction of the reactive layer.Type: GrantFiled: April 15, 2003Date of Patent: November 2, 2004Assignee: Robert Bosch GmbHInventors: Roland Mueller-Fiedler, Winfried Bernhard, Ulrich Kunz
-
Publication number: 20040134371Abstract: A bridge-type ignition element for initiating the ignition of pyrotechnical materials lying above it by heating when an electric current is passed through it. The bridge-type element is essentially made up of a resistance layer applied to a substrate, a reactive layer, applied on top of that, made of especially an oxidizable metal and a polymeric cover layer situated on top of that, whose material is selected in such a way that it is able to react exothermally at an elevated temperature with the oxidizable material of the reactive layer. The polymeric cover layer makes possible not only a lower energy requirement but also achieves corrosion protection from the surroundings and from the pyrotechnical material.Type: ApplicationFiled: September 2, 2003Publication date: July 15, 2004Inventors: Winfried Bernhard, Lutz Mueller, Ulrich Kunz
-
Patent number: 6668104Abstract: An optical sensor for detecting wetting of a surface (11), In particular of a vehicle window, has at least one transmitter (13) and at least one receiver (15) for electromagnetic waves, the surface being located in a sensor region (16) between the at least one transmitter (13) and the at least one receiver (15). The development of wetting on the sensor region (16) of the surface (11) causes a signal change. The optical sensor has a light-carrying element (18), in which the electromagnetic waves are guided bidirectionally into the sensor region (16) and out of the sensor region (16), and a retroreflector (10) is disposed in the sensor region (16) in such a way that it returns the electromagnetic waves, reflected before the surface (11), back to the surface (11) and from there to the light-carrying element (18).Type: GrantFiled: July 24, 2000Date of Patent: December 23, 2003Assignee: Robert Bosch GmbHInventors: Roland Mueller-Fiedler, Helmut Sautter, Winfried Bernhard, Andre Mueller, Lutz Mueller, Rainer Schink
-
Patent number: 6654530Abstract: An optical waveguide is described which has a core and a sheath, each of which is made of a fully fluorinated fluorocarbon material. In particular, a fully fluorinated Teflon material such as Teflon AF 1600 or Teflon AF 2400, or a mixture thereof, is suitable as the fully fluorinated fluorocarbon. The optical waveguide is optically transparent around the 1300 nm and/or 1550 nm wave band. Furthermore, the core of the optical waveguide may have a refractive index that is higher than the refractive index of the sheath. The optical waveguide is suitable for use as, for example, an integrated optical waveguide for transmitting information in optical telecommunications.Type: GrantFiled: October 30, 2001Date of Patent: November 25, 2003Assignee: Robert Bosch GmbHInventors: Roland Mueller-Fiedler, Winfried Bernhard, Lutz Mueller, Oliver Roesch
-
Publication number: 20030164106Abstract: The present invention relates to a bridge igniter 1 having: a resistance layer 3 which has a given electrical resistance and which can be heated by an electrical current; an electrical insulating layer 4 that is disposed on the resistance layer 3 and has a given thermal conductivity; a reactive layer that is disposed on the insulating layer, the insulating layer 4 transmitting the heat that is produced in the resistance layer 3 to the reactive layer 5, thereby causing the latter to undergo an exothermic reaction; and a pyrotechnic layer 7 that is disposed on or above the reactive layer 5 and that may be set off by the exothermic reaction of the reactive layer 5.Type: ApplicationFiled: April 15, 2003Publication date: September 4, 2003Inventors: Roland Mueller-Fiedler, Winfried Bernhard, Ulrich Kunz
-
Patent number: 6605804Abstract: An optical sensor is provided for determining a physical and/or chemical parameter of a sample, having at least one optical transmitter and at least one optical receiver, and having a sensitive element which is arranged in a beam path between the transmitter and the receiver and is exposable to the sample, and which changes its absorption and/or its refractive index for electromagnetic radiation of a specific wavelength in response to a change in parameters of the sample, in particular, a gas-sensitive element, and possibly having an evaluation unit arranged downstream of the receiver. The transmitter and the receiver can be coupled to the sensitive element via at least one optical waveguide. Provision is made for the transmitter (12) and for the receiver (14) to be coupled to the sensitive element via at least one optical waveguide (26, 28).Type: GrantFiled: January 23, 2001Date of Patent: August 12, 2003Assignee: Robert Bosch GmbHInventors: Roland Muller-Fiedler, Helmut Sautter, Joachim Schneider, Anton Pfefferseder, Winfried Bernhard, Andre Mueller, Andreas Hensel, Ulrich Oppelt, Lutz Mueller
-
Patent number: 6295158Abstract: The thermooptic modulator includes a wave guide (1) having a switching section (4), a refracting section (5) bordering the switching section (4) and extending transversely to a signal propagation direction (14) in the wave guide and a first heating element (8) extending on the refracting section (5) along a boundary (6) between the wave guide (1) and the refracting section (5). In order to improve signal suppression when the modulator is switched to an impermable state, a second heating element (9) is provided extending on the wave guide (1) along the boundary (6).Type: GrantFiled: April 24, 2000Date of Patent: September 25, 2001Assignee: Robert Bosch GmbHInventors: Roland Mueller-Fiedler, Winfried Bernhard