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Dedecker
Hans Dedecker, Lichtervelde BE
| Patent application number | Description | Published |
|---|---|---|
| 20090222590 | Device and Method for Managing Two Types of Devices - The present invention concerns an Interconnect device, comprising a first interface to a first network, a second interface to a second network, a bridge for connecting said first interface to said second interface, a router comprising routing means, and a local server. The interconnect device comprises means for detecting a device located on the first network which is able to communicate with a device located on said second network, and means for classifying the device as being a device of a first type or a device of a second type, The interconnect device comprises means for using the routing means for the first type device, and not using the routing means for the second type device. | 09-03-2009 |
Mark N. Dedecker, North Canton, OH US
| Patent application number | Description | Published |
|---|---|---|
| 20100029850 | Adducts Of Metathesis Polymers And Preparation Thereof - Adducts of an unsaturated metathesis polymer or interpolymer and an unsaturated diacid anhydride. A process for producing adducts of an unsaturated metathesis polymer or interpolymer and unsaturated diacid anhydride. | 02-04-2010 |
| 20100113699 | METHOD OF PREPARING RUBBER COMPRISING POLYMERIC COMPOSITIONS AND ISOPRENE COMPRISING INTERPOLYMERS - A process for preparing a rubber comprising polymeric composition, and the resulting compositions, and certain isoprene comprising interpolymers. | 05-06-2010 |
| 20110263794 | New Polymers And Use Thereof In Preparation Of High Impact Polymeric Compositions - Terminally functionalized polymers that are living or pseudo-living polymers reacted with certain allyl glycidyl ethers, or certain allylhalosilanes or combinations thereof, and a process for preparing the terminally functionalized polymers. Rubber-modified polymeric compositions comprising the terminally functionalized polymers. | 10-27-2011 |
Paul Dedecker, Clinton Township, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20120108885 | Skin interface for ventricular assist device - Devices and methods are disclosed for implanting, positioning, removing, replacing and operating intra-aortic balloon pumps. | 05-03-2012 |
| 20120108886 | INTERNAL DRIVE LINE FOR VENTRICULAR ASSIST DEVICE - Devices and methods are disclosed for implanting, positioning, removing, replacing and operating intra-aortic balloon pumps. | 05-03-2012 |
Paul G. Dedecker, Detroit, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20100111715 | AIR SUPPLY MECHANISM FOR VENTRICULAR ASSIST SYSTEM - A pump system has a rotatory shaft and a rotatory drive arrangement coupled to the rotatory shaft for applying rotatory energy thereto. First through fourth pump arrangements are coupled to the rotatory shaft, each pump arrangement pumping a pulse of air during each rotation of the rotatory shaft, the first, second, third, and fourth pump arrangements pumping a corresponding pulse of air sequentially during each rotation of the rotatory shaft. The rotatory shaft has a first and second ends, and a central region therebetween where an electric motor is coaxially arranged. The first and third pump arrangements are coupled to the first end of the rotatory shaft, and the second and fourth pump arrangements are coupled to the second end of the rotatory shaft. Angularly displaced eccentric couplers couple the pump arrangements to the respective ends of the rotatory shaft. | 05-06-2010 |
Paul G. Dedecker, Clinton Twp., MI US
| Patent application number | Description | Published |
|---|---|---|
| 20090145446 | Method for detecting at least partial medical device disengagement from a patient - A method for detecting at least partial medical device disengagement from a patient includes inserting the device in the patient so a Hall effect sensor connected to the device is positioned at an initial location substantially proximate to one of a plurality of magnetically charged components. Each of the components is removably attached to the patient, and is positioned a predetermined distance from another component. A magnetic field indicative of the one of the plurality of magnetically charged components is detected with the sensor. The sensor monitors for a failure to detect the magnetic field. In response to the failure detection, the sensor monitors for a subsequent detection of another magnetic field indicative of another of the plurality of magnetically charged components. The subsequent detection is associated with movement of the medical device substantially equal to the predetermined distance between the one and the other of the components. | 06-11-2009 |
| 20090211438 | Method of determining the purity of oxygen present in an oxygen-enriched gas produced from an oxygen delivery system - A method of determining the purity of oxygen present in an oxygen-enriched gas produced from an oxygen delivery system is disclosed. The oxygen delivery system includes at least one sieve bed having a nitrogen-adsorbing material disposed therein and configured to adsorb nitrogen from a feed gas introduced into the at least two sieve beds via a pressure-swing adsorption cycle. The method includes determining a quantity of nitrogen adsorbed by the nitrogen-adsorbing material by inferring an effective volume of the at least one sieve bed based on a pressure change of the at least one sieve bed. | 08-27-2009 |
Paul G. Dedecker, Clinton Township, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20090056130 | Flow meter for measuring a flow rate of a flow of a fluid - A flow meter for measuring a flow rate of a flow of a fluid includes a housing member including a first section configured to matingly couple with a second section. The flow meter further includes an integrally formed laminar flow member removably held within at least a portion of the first section of the housing member. The laminar flow member includes a body and a plurality of channels integrally formed within the body, wherein each of the plurality of channels is substantially continuous in the longitudinal direction and substantially continuous in the transverse direction. | 03-05-2009 |
