Jensen, Naerum
Allan Bardow Jensen, Naerum DK
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20090169488 | Acidic solid oral compositons without erosive potential in saliva and method for determining erosive potential in saliva - Acidic oral compositions having calcium contents and effective pH-values in the area indicated by grey tone in FIG. | 07-02-2009 |
20140121274 | ACIDIC SOLID ORAL COMPOSITIONS WITHOUT EROSIVE POTENTIAL IN SALIVA AND METHOD FOR DETERMINING EROSIVE POTENTIAL IN SALIVA - Acidic oral compositions having calcium contents and effective pH-values in the area indicated by grey-tone in FIG. | 05-01-2014 |
Bjorn Sand Jensen, Naerum DK
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20090257599 | Thermal protection of electro dynamic transducers used in loudspeaker systems - Electro dynamic transducers can fail due to either excessive voice coil excursion, causing mechanical clipping, or by overheating of the voice coil causing degradation of the materials. The disclosed invention relates to protection against excess voice coil temperature in such transducers. The current through the transducer voice coil and the voltage across its terminals, are measured. The resistive part of the impedance of the transducer is then estimated based on the measurements of current and voltage. When the resistive impedance for the given type of transducer is well known at one temperature it is then possible to calculate the temperature when the resistive impedance changes. The estimated voice coil temperature is then fed to a signal attenuator or controller, which attenuates the output signal to the transducer. | 10-15-2009 |
20090268918 | Transducer displacement protection - This invention relates to the mechanical protection using digital processing and a predictive estimation of instantaneous displacement of the voice coil in a loudspeaker transducer. | 10-29-2009 |
Kresten Juel Nikolaj Laut Jensen, Naerum DK
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20130171538 | CO-FLOW / COUNTER-FLOW FUEL CELL OR ELECTROLYSIS CELL - A cell stack with cells adapted to operate as either fuel cells or electrolysis cells comprises cells with a counter-flow of the anode gas relative to the cathode gas on a first part of each cell and a co-flow on a second part of each cell which evens out the temperature profile of the cell and cell stack relative to a co-flow or a counter-flow cell. | 07-04-2013 |
Morten Baek Jensen, Naerum DK
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20100004603 | Cartridge And Medical Delivery System Accommodating Such Cartridge - A cartridge having a distal end provided with a mechanical coding. The coding has the form of a circular protrusion where the circular outer diameter is dedicated a specific concentration of insulin contained in the cartridge. The distal end of the cartridge is fitted in to a circular contour in the housing. The outer diameter of the protrusion on the distal end of the cartridge is chosen as a larger diameter for a higher concentration of insulin. In this way only a cartridge containing the correct concentration or a lower concentration fits into a delivery system designed for a specific concentration of insulin. | 01-07-2010 |
20120203185 | Cartridge And Medical Delivery System Accommodating Such Cartridge - A cartridge having a distal end provided with a mechanical coding. The coding has the form of a circular protrusion where the circular outer diameter is dedicated a specific concentration of insulin contained in the cartridge. The distal end of the cartridge is fitted in to a circular contour in the housing. The outer diameter of the protrusion on the distal end of the cartridge is chosen as a larger diameter for a higher concentration of insulin. In this way only a cartridge containing the correct concentration or a lower concentration fits into a delivery system designed for a specific concentration of insulin. | 08-09-2012 |
Thomas Jensen, Naerum DK
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20140166576 | SYSTEM FOR AND METHOD OF SEPARATING OIL AND PARTICLES FROM PRODUCED WATER OR FRACTURING WATER - A system of separating oil and water from produced or fracturing water with an intended separation direction, the system includes: a unit for feeding the produced or fracturing water to a solid-fluid separator; a membrane system configured to output clean water; and a decanter configured to output solids, wherein the decanter or the membrane system is coupled to an output of the solid-fluid separator; wherein the membrane system or the decanter is configured to feed remaining fluid from the membrane system or decanter to an oil extractor system configured to output oil; and wherein the oil extractor system comprises a high speed separator configured to output the oil, and has a feedback conduit for feeding a remaining water containing fluid back to the membrane system. | 06-19-2014 |