Adelmann
Christoph Adelmann, Leuven BE
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20080308881 | Method for Controlled Formation of a Gate Dielectric Stack - The present disclosure relates to methods for forming a gate stack in a MOSFET device and to MOSFET devices obtainable through such methods. In exemplary methods described herein, a rare-earth-containing layer is deposited on a layer of a silicon-containing dielectric material. Before these layers are annealed, a gate electrode material is deposited on the rare-earth-containing layer. Annealing is performed after the deposition of the gate electrode material, such that a rare earth silicate layer is formed. | 12-18-2008 |
20140231968 | Conformal Anti-Reflective Coating - In one aspect, a method is disclosed that includes providing a substrate having a topography that comprises a relief and providing an anti-reflective film conformally over the substrate using a molecular layer deposition step. The anti-reflective film may be formed of a compound selected from the group consisting of: (i) an organic compound chemically bound to an inorganic compound, where one of the organic compound and the inorganic compound is bound to the substrate and where the organic compound absorbs light at at least one wavelength selected in the range 150-500 nm, or (ii) a monodisperse organic compound absorbing light at at least one wavelength selected in the range 150-500 nm. The method further includes providing a photoresist layer on the anti-reflective film. | 08-21-2014 |
Christoph Adelmann, Wilsele BE
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20110147900 | DIELECTRIC LAYER FOR FLASH MEMORY DEVICE AND METHOD FOR MANUFACTURING THEREOF - The present disclosure is related to a dielectric layer comprising a rare-earth aluminate (RE | 06-23-2011 |
20140034894 | Insulator Material for Use in RRAM - The present disclosure relates generally to Hf-comprising materials for use in, for example, the insulator of a RRAM device, and to methods for making such materials. In one aspect, the disclosure provides a method for the manufacture of a layer of material over a substrate, said method including | 02-06-2014 |
20150091142 | Layer Deposition on III-V Semiconductors - The present disclosure relates to a method ( | 04-02-2015 |
20150097187 | SELECTOR FOR RRAM - The disclosed technology generally relates to semiconductor devices and more particularly to selector devices for memory devices having a resistance switching element, particularly resistive random access memory (RRAM) devices. In one aspect, a selector device includes a first barrier structure comprising a first metal and a first semiconductor or a first low bandgap dielectric material, and a second barrier structure comprising a second metal and a second semiconductor or a second low bandgap dielectric material. The selector device additionally includes an insulator interposed between the first semiconductor or the first low bandgap dielectric material and the second semiconductor or the second low bandgap dielectric material. The first barrier structure, the insulator, and the second barrier structure are stacked to form a metal/semiconductor or low bandgap dielectric/insulator/semiconductor or low bandgap dielectric/metal structure. | 04-09-2015 |
Christopher James Adelmann, Louisville, KY US
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20150201465 | OVEN RANGE APPLIANCE - The present subject matter provides an oven range appliance. The oven range appliance includes a cabinet. The cabinet defines a width. A cooktop is positioned at a top portion of the cabinet. The cooktop includes a ceramic panel. The ceramic panel defines a width. The width of the ceramic panel is about equal to the width of the cabinet. Thus, the ceramic panel can extend across the width of the cabinet. | 07-16-2015 |
Jeff Adelmann, Livonia, MI US
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20100031769 | VEHICLE SHIFT MODULE ASSEMBLY - A shift module assembly for controlling the movement of a vehicle transmission out of a park condition responsive to a condition of the ignition system of the vehicle and responsive to a position of the vehicle brake pedal includes a moveable swing arm adapted to selectively control the condition of the vehicle transmission. The swing arm is in a park position when the vehicle transmission is in the park condition. The swing arm is locked in an immobile position by a solenoid operated armature shaft when the swing arm is placed in the park position. The armature shaft is in direct contact with said swing arm when said swing arm is in the locked position. The armature shaft releases the swing arm from the locked position upon actuation of the vehicle ignition system and depression of the vehicle brake pedal. The swing arm includes a stress line that will cause the swing arm to break along the stress line before, the swing arm is moved out of the park position if excessive force is applied to the swing arm. In addition, the swing arm is capable of both rotational and rocking movement about a common pivot point. | 02-11-2010 |
20110132126 | VEHICLE SHIFT MODULE ASSEMBLY - A shift module assembly for controlling the movement of a vehicle transmission out of a park condition responsive to a condition of the ignition system of the vehicle and responsive to a position of the vehicle brake pedal includes a moveable swing arm adapted to selectively control the condition of the vehicle transmission. The swing arm is in a park position when the vehicle transmission is in the park condition. The swing arm is locked in an immobile position by a solenoid operated armature shaft when the swing arm is placed in the park position. The armature shaft is in direct contact with said swing arm when said swing arm is in the locked position. The armature shaft releases the swing arm from the locked position upon actuation of the vehicle ignition system and depression of the vehicle brake pedal. The swing arm includes a stress line that will cause the swing arm to break along the stress line before the swing arm is moved out of the park position if excessive force is applied to the swing arm. In addition, the swing arm is capable of both rotational and rocking movement about a common pivot point. | 06-09-2011 |
Joe Adelmann, Cambridge, MA US
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20140180730 | METHODS AND SYSTEMS FOR DRIVER IDENTIFICATION - A method of determining vehicle entry information for a user includes obtaining a yaw measurement using a mobile device, determining, using a processor, a first time span associated with a user entering a vehicle, and determining, using the processor, a second time span associated with a user exiting the vehicle. The method also includes determining that a change in magnitude over a portion of the yaw measurement is greater than a predetermined threshold over at least one of the first time span or the second time span and determining an angular change of the yaw measurement over the predetermined threshold. The method further includes associating right hand entry with the vehicle entry information if the angular orientation of the yaw measurement is clockwise and associating left hand entry with the vehicle entry information if the angular orientation of the yaw measurement is counter-clockwise. | 06-26-2014 |
20140180731 | METHODS AND SYSTEMS FOR DRIVER IDENTIFICATION - A method of determining vehicle entry information for a user includes obtaining a yaw measurement using a mobile device, determining, using a processor, a first time span associated with a user entering a vehicle, and determining, using the processor, a second time span associated with a user exiting the vehicle. The method also includes determining that a change in magnitude over a portion of the yaw measurement is greater than a predetermined threshold over at least one of the first time span or the second time span and determining an angular change of the yaw measurement over the predetermined threshold. The method further includes associating right hand entry with the vehicle entry information if the angular orientation of the yaw measurement is clockwise and associating left hand entry with the vehicle entry information if the angular orientation of the yaw measurement is counter-clockwise. | 06-26-2014 |
20140370919 | METHODS AND SYSTEMS FOR DRIVER IDENTIFICATION - A method of determining a position of a mobile device in a vehicle includes obtaining accelerometer data collected using a accelerometer in the mobile device, obtaining angular orientation data collected using a gyroscope in the mobile device, and determining a start time of a driving event. The method also includes determining an entry side for the mobile device prior to the driving event, detecting an acceleration event, aligning the mobile device to a reference frame of the vehicle, and determining a front/back location of the mobile device. The method further includes detecting a braking event, determining an end time of the driving event, determining an exit side for the mobile device after the driving event, and determining the position of the mobile device during at least a portion of the driving event. | 12-18-2014 |
Robert Adelmann, Zurich CH
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20110297748 | METHOD AND PORTABLE APPARATUS FOR RECOGNIZING BAR CODES - A method for optical recording of a linear barcode pattern and determination of a symbol sequence as defined by the barcode pattern from a blurred raw image and includes the following steps: taking a raw image of the barcode pattern, preprocessing the raw image to generate a series of output patterns, comparing the output pattern with stored reference patterns, wherein the reference patterns correspond to blurred images of sharp nominal patterns and each reference pattern is provided with at least one symbol, determining for each of the output patterns the reference pattern which most closely resembles the output pattern outputting, transmitting or storing the symbols corresponding to the determined reference pattern and following the sequence of output patterns, as a symbol sequence. | 12-08-2011 |