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Bogaerts
Iris Bogaerts, Mechelen BE
| Patent application number | Description | Published |
|---|---|---|
| 20090197072 | PROCESS FOR PRODUCING A HEAT-COMPRESSED MELAMINE FOAM CLEANING IMPLEMENT - The present invention relates to a process for producing a cleaning implement suitable for hard surface cleaning comprising heat-compressing a melamine foam at about 250° C. to about 300° C., for about 1 minute to below about 3 minutes. | 08-06-2009 |
| 20100168260 | POROUS MATERIALS AND PROCESS FOR THEIR PRODUCTION - The present invention relates to a porous material comprising | 07-01-2010 |
| 20100273907 | MODIFIED OPEN-CELL FOAMS AND PROCESS FOR THEIR PRODUCTION - Modified open-cell aminoplastic foams with a density in the range from 5 to 1,000 kg/m | 10-28-2010 |
Jan Bogaerts, Sint Katelijne Waver BE
| Patent application number | Description | Published |
|---|---|---|
| 20090256735 | ANALOG-TO-DIGITAL CONVERSION IN PIXEL ARRAYS - An analog-to-digital converter (ADC) generates an output digital value equivalent to the difference between two analog signal values. The ADC | 10-15-2009 |
| 20100148037 | PIXEL ARRAY WITH SHARED READOUT CIRCUITRY - A pixel array comprises a plurality of photo-sensitive elements arranged in rows and columns and readout circuitry for reading a value of a photo-sensitive element. Shared readout circuitry is provided for a pair of adjacent photo-sensitive elements. Adjacent instances of the shared readout circuitry are staggered with respect to one another. For a layout having shared readout circuitry for a pair of photo-sensitive elements, adjacent instances of the shared readout circuitry are offset by a horizontal distance of one column and a vertical distance of one row of the array. The shared readout circuitry can serve a pair of adjacent photo-sensitive elements in a row or column of the array, or a pair of photo-sensitive elements which are diagonally adjacent in the array. An improved yield and symmetry results from staggering instances of the shared readout circuitry. | 06-17-2010 |
| 20110095926 | ANALOG-TO-DIGITAL CONVERSION IN PIXEL ARRAYS - An analog-to-digital converter (ADC) generates an output digital value equivalent to the difference between two analog signal values. The ADC | 04-28-2011 |
| 20110115663 | Analog-to-digital conversion in pixel array - An analog-to-digital converter generates an output digital value equivalent to the difference between two analog signals. The converter forms part of a set of converters. The converter receives a first analog signal and a second analog signal (V | 05-19-2011 |
| 20110205100 | ANALOG-TO-DIGITAL CONVERSION IN PIXEL ARRAYS - An analog-to-digital converter (ADC) generates an output digital value equivalent to the difference between two analog signal values. The ADC | 08-25-2011 |
Jan Bogaerts US
| Patent application number | Description | Published |
|---|---|---|
| 20110095929 | ANALOG-TO-DIGITAL CONVERSION IN PIXEL ARRAYS - An analog-to-digital converter (ADC) generates an output digital value equivalent to the difference between two analog signal values. The ADC | 04-28-2011 |
Jan Bogaerts, Katelijne Waver BE
| Patent application number | Description | Published |
|---|---|---|
| 20090256060 | PIXEL ARRAY WITH GLOBAL SHUTTER - A pixel comprises a photo-sensitive element for generating charges in response to incident radiation and a sense node. A transfer gate is positioned between the photo-sensitive element and the sense node for controlling transfer of charges to the sense node. A reset switch is connected to the sense node for resetting the sense node to a predetermined voltage. A first buffer amplifier has an input connected to the sense node. A sample stage is connected to the output of the first buffer amplifier and is operable to sample a value of the sense node. A second buffer amplifier has an input connected to the sample stage. Control circuitry operates the reset switch and causes the sample stage to sample the sense node while the photo-sensitive element is being exposed to radiation. An array of pixels is synchronously exposed to radiation. Sampled values for a first exposure period can be read while the photo-sensitive element is exposed for a second exposure period. | 10-15-2009 |
Lieve Bogaerts, Bekkevoort BE
| Patent application number | Description | Published |
|---|---|---|
| 20120126391 | Methods for Embedding Conducting Material and Devices Resulting from Said Methods - Disclosed are methods for forming semiconductor devices and the semiconductor devices thus obtained. In one embodiment, the method may include providing a semiconductor wafer comprising a surface, forming on the surface at least one device, forming a release layer at least in an area of the surface that encircles the at least one device, forming on the release layer at least one wall structure around the at least one device, and forming at least one cap on the at least one wall structure. In one embodiment, the device may include a substrate comprising a surface, at least one device formed on the surface, a release layer formed at least in an area of the surface that encircles the at least one device, at least one wall structure formed around the at least one device, and at least one removable cap formed on the at least one wall structure. | 05-24-2012 |
Wim Bogaerts, Melle BE
| Patent application number | Description | Published |
|---|---|---|
| 20110116735 | Retro-Reflective Structures - A photonic integrated circuit ( | 05-19-2011 |
