Brunella
Adam E. Brunella, Temperance, MI US
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20110012279 | METHOD AND APPARATUS FOR IMPROVED DETECTION OF HOLES IN PLASTIC CONTAINERS - A method and apparatus for monitoring the production of blow molded plastic containers is disclosed, wherein the method and apparatus utilize a sound detector assembly adapted to be positioned adjacent a mold cavity during the introduction of pressure fluid to a preform in the mold cavity to form a container, the sound detector assembly including a reflector having a substantially conic cross-sectional shape and a sound detector and being responsive to a defect sound of the pressure fluid escaping from the interior of the container for generating an output signal. | 01-20-2011 |
Alfred J. Brunella, Long Beach, CA US
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20120217002 | STUFFING BOX - A holder for receiving a moving rod and formed with a gland to surround the rod and housing a stack of metal rings, at least some having and inside diameter smaller than that of the rod. | 08-30-2012 |
Andre Brunella, Dornach CH
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20100101038 | Toothbrush With Inclined Bristles and Pointed Bristles - A brush head for a toothbrush with bunches ( | 04-29-2010 |
20100154154 | Toothbrush Bristle With A Tapering Part and Toothbrush With Such Bristles - Bristle for a toothbrush, comprising a) a cylindrical part ( | 06-24-2010 |
20130319883 | Mouthrinse Composition - A mouthrinse containing chitosan or pharmaceutically acceptable acid addition salt thereof with fluoride ions, for use against erosive tooth demineralization, and kits containing chitosan or pharmaceutically acceptable acid addition salt thereof with fluoride ions, wherein one of the two active agents is comprised in a mouthrinse, are described. The mouthrinse may furthermore comprise dissolved tin, in particular stannous ions. Mouthrinses containing chitosan or pharmaceutically acceptable acid addition salt thereof with fluoride ions are tested in the treatment or prevention of erosive tooth demineralisation caused by citric acid. | 12-05-2013 |
20130323186 | Dentifrice Composition - A dentifrice, such as toothpaste, containing chitosan or pharmaceutically acceptable acid addition salt thereof with fluoride ions, for use against erosive tooth demineralization, and kits containing chitosan or pharmaceutically acceptable acid addition salt thereof with fluoride ions, wherein one of the two active agents is comprised in a dentifrice, are described. The dentifrice in the form of toothpaste may furthermore comprise dissolved tin, in particular stannous ions. Toothpastes containing chitosan or pharmaceutically acceptable acid addition salt thereof with fluoride ions are tested in the treatment or prevention of erosive tooth demineralisation caused by citric acid. | 12-05-2013 |
20140352089 | TOOTHBRUSH WITH INCLINED BRISTLES AND POINTED BRISTLES - A brush head for a toothbrush with hunches of bristles inserted therein, wherein at least one of these bunches of bristles protrudes out of the bristle surface in a perpendicular fashion and at least one of these bunches is inclined, and is characterized in that the inclined bunches of bristles comprise cylindrical bristles, and in that at least some of the bunches which protrude in a perpendicular fashion comprise pointed bristles. | 12-04-2014 |
20150297477 | Oral Care Composition - Described herein is an oral care composition comprising an orally acceptable vehicle, a fluoride ion and a buffer having a pKa of less than 7.0 wherein the pH of the oral composition is greater than 3.5 and less than 5.0, and wherein the oral composition has an acid number greater than 4.5. | 10-22-2015 |
Andre Brunella, Lupsingen CH
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20080271276 | Toothbrush Comprising Inclined and Tapered Bristles - Disclosed is a brush head ( | 11-06-2008 |
Eric J. Brunella, Temperance, MI US
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20140374416 | LINER-BASED SHIPPING AND DISPENSING SYSTEMS - The present disclosure, in one embodiment, relates to a liner-based assembly having an overpack and a liner disposed within the overpack. The liner may be formed by blow molding a liner preform within the overpack to form a blow molded liner substantially conforming to the interior of the overpack and generally forming an interface with an interior of the overpack. The present disclosure, in another embodiment, relates to a liner-based assembly including a blow-molded overpack comprised of polyethylene terephthalate, a blow-molded liner disposed within the overpack, the liner comprised of a polymer material, wherein the overpack and liner have a combined wall thickness of about 0.3 mm or less, and a base cup configured to at least partially surround an exterior of the overpack. In some embodiments, the liner has a volume of up to about 4.7 liters and an empty weight of between about 260-265 grams. | 12-25-2014 |
Eric J. Brunella, Sylvania, OH US
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20150328819 | LINER-BASED SHIPPING AND DISPENSING SYSTEMS - The present disclosure, in one embodiment, relates to a liner-based assembly having an overpack and a liner disposed within the overpack. The liner may be formed by blow molding a liner preform within the overpack to form a blow molded liner substantially conforming to the interior of the overpack and generally forming an interface with an interior of the overpack. The present disclosure, in another embodiment, relates to a liner-based assembly including a blow-molded overpack comprised of polyethylene terephthalate, a blow-molded liner disposed within the overpack, the liner comprised of a polymer material, wherein the overpack and liner have a combined wall thickness of about 0.3 mm or less, and a base cup configured to at least partially surround an exterior of the overpack. In some embodiments, the liner has a volume of up to about 4.7 liters and an empty weight of between about 260-265 grams. | 11-19-2015 |
Mauro Brunella, Brugherio IT
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20110013267 | Fiber-Adaptive Distributed Raman Amplifier Pump Setup Scheme - Techniques, in the form of an apparatus, logic and a method, are provided to set power levels for multiple Raman pump wavelengths in a distributed Raman amplification configuration in order to achieve a target gain and tilt or desired gain profile. A Raman pump light source is activated at each of a plurality of pump wavelengths and at each of a plurality of pump power levels such that only one pump wavelength at a given pump power level is active at a time to thereby amplify an optical probe signal in the optical fiber to produce an amplified probe signal. The level of the amplified probe signal at each of the pump power levels for the plurality of pump wavelengths is measured. The pump power level for each of the plurality of pump wavelengths is computed based on the measured levels of the amplified probe signals due to each of the pump power levels and at each of the pump power levels for the plurality of pump wavelengths. | 01-20-2011 |
Mauro Brunella, Brugherio (mi) IT
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20150016819 | Self-Tuning an Optical Network at an Operating Point - Techniques are presented for automatic tuning of operating parameters, e.g., amplifier gain, in an optical network. A section of an optical network comprises a plurality of spans between optical nodes, and each optical node has an amplifier to amplify optical signals for transmission between optical nodes. Physical network layer data is obtained from the optical nodes for use as input to an analytical model. A set of powers defining an optimum working point of the amplifiers is computed based on variations in amplifier noise figure which depend on amplifier gain. A figure of merit representative of network section performance is computed based on linear and non-linear noise at current power levels of the amplifiers. The figure of merit is evaluated. The set of powers is applied to the amplifiers in the network section when evaluation of the figure of merit indicates that network performance improvement can be achieved. | 01-15-2015 |
20150085350 | Multi-Wavelength Distributed Raman Amplification Set-Up - Techniques are presented herein to set power levels for multiple Raman pump wavelengths in a distributed Raman amplification configuration. A first receive power measurement is obtained at a second node with a controlled optical source at a first node turned on and with a plurality of Raman pump lasers at different wavelengths at the second node turned off. A second receive power measurement is obtained at the second node with the controlled optical source at the first node turned on and the plurality of Raman pump lasers turned on to respective reference power levels to inject optical Raman pump power at a corresponding plurality of wavelengths into the optical fiber span. Based on a target Raman gain and a target Raman gain tilt, respective ratios of a total power are obtained, each ratio to be used for a corresponding one of the plurality of Raman pump lasers. | 03-26-2015 |