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Debus
Eike Sebastian Debus, Hamburg DE
| Patent application number | Description | Published |
|---|---|---|
| 20090041823 | Agent-releasing Vascular Prosthesis - The invention relates to a prosthesis comprising a proximal and a distal end and a hollow space that extends there-between. Said prosthesis is provided with a support structure and at least one biologically active compound. | 02-12-2009 |
Heidrun Debus, Eisenberg DE
| Patent application number | Description | Published |
|---|---|---|
| 20110045671 | COMPOSITION FOR POLISHING SURFACES OF SILICON DIOXIDE - A composition for polishing surfaces comprises the following components: | 02-24-2011 |
Juergen Debus, Heidelberg DE
| Patent application number | Description | Published |
|---|---|---|
| 20110118527 | METHOD TO DERIVE ANATOMICAL AND/OR PATHOLOGICAL STRUCTURES FROM DATA OF IMAGING TECHNOLOGIES - A method to derive anatomical and/or pathological structures from non-invasive imaging technologies is provided. Non-invasive imaging technologies are computed tomography (CT), magnetic resonance imaging (MRI), positron emission tomography (PET), surface scans and others. Imaging data obtained by non-invasive technology is used to create a surface contour. The imaging data is transmitted to rapid prototyping apparatus readable data. At hand of this readable data the rapid prototyping apparatus establishes a positive or negative surface model, such as a fixation device, a mask or a prosthesis or other instruments for medical purposes. | 05-19-2011 |
Kristian Debus, Petaluma, CA US
| Patent application number | Description | Published |
|---|---|---|
| 20110048048 | Personal Cooling System - A personal cooling system operates by pumping liquid through a garment. Because the personal cooling system pumps liquid, the compression system that generates the cooling power does not require the use of a condenser. The compression system utilizes a compression wave. An evaporator of the cooling system operates in the critical flow regime in which the pressure in an evaporator tube will remain almost constant and then ‘jump’ or ‘shock up’ to an increased pressure. | 03-03-2011 |
| 20110048062 | Portable Cooling Unit - A portable cooling unit operates by pumping liquid. Because the portable cooling unit pumps liquid, the compression system that generates the cooling power does not require the use of a condenser. The compression system utilizes a compression wave. An evaporator of the cooling unit operates in the critical flow regime in which the pressure in an evaporator tube will remain almost constant and then ‘jump’ or ‘shock up’ to an increased pressure. | 03-03-2011 |
| 20110048066 | Battery Cooling - A battery cooling system operates by pumping liquid through a cooling fluid circulation path. Because the battery cooling system pumps liquid, the compression system that generates the cooling power does not require the use of a condenser. The compression system utilizes a compression wave. An evaporator of the cooling system operates in the critical flow regime in which the pressure in an evaporator tube will remain almost constant and then ‘jump’ or ‘shock up’ to an increased pressure. | 03-03-2011 |
| 20110051549 | Nucleation Ring for a Central Insert - A central insert causes maximum fluid velocity to shift away from an external tube wall reducing friction losses at the tube wall. Centrifugal forces pull fluid away from a central insert wall minimizing friction at the insert wall. The insert may be used in the context of nozzles, flow tubes, vortex tubes, and other fluid pathways. In a nozzle, grooves may be added to the nozzle wall. By introducing these grooves at the exit or end of a nozzle, nucleation may be improved and cavitation may be triggered prior to a fluid entering an expansion tube. The nucleation ring may also be placed at the beginning of a nozzle such that cavitation starts within the nozzle. | 03-03-2011 |
Walter Debus, Covington, LA US
| Patent application number | Description | Published |
|---|---|---|
| 20110140884 | Simplex Personal and Asset Tracker - An asset locator device including (a) a wireless receiver capable of receiving an identifier signal transmitted from a short range wireless transmitter device; (b) a wireless transmitter capable of transmitting a message to a space based network; (c) a positioning system capable of determining the location of the locator device; (d) a vibration sensor; and (e) a controller. The controller instructs the asset locator to: (i) attempt to detect the identifier signal from the transmitter device if the vibration sensor senses vibration; and (ii) transmit a signal, including an asset location, to the space based network if: ( | 06-16-2011 |
