Jansen, WI
Christopher R. Jansen, Kaukauna, WI US
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20150283029 | CHILD-RESISTANT PACKAGING - A child-resistant blister package having: (a) a product; (b) a multilayer lidstock; and (c) a formed blister film; and the lidstock has at least four layers: i) an inner thermoplastic heat sealable layer; ii) a first intermediate aluminum foil layer; iii) a second intermediate adhesive layer; and iv) an outer polyester or oriented nylon layer with the outer layer having a loop shaped score line therethrough, and the adhesive layer is disposed between layers (ii) and (iv); and optionally has a fifth layer (v) which is a release coating disposed within the loop shape and between layers (ii) and (iv) for manual peelable detachment of at least the outer layer (iv) from (ii) the first intermediate layer; with layer (c) having at least two compartments: (i) a first blister compartment adapted for receiving product (a); and (ii) a second blister compartment having a blister compartment film overlaying and spaced apart from a portion of the lidstock heat seal layer opposite a tab area portion of the score line in the outer layer; and wherein the second blister compartment is adapted for manual inward deformation activation of separation of the lidstock from itself along said score line tab area portion; and product (a) is hermetically sealed between (b) and (c) within said first blister compartment. | 10-08-2015 |
Christopher Rene Jansen, Kaukauna, WI US
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20100272938 | Hydraulically-Formed Nonwoven Sheet with Microfibers - In a first embodiment, a hydraulically-formed nonwoven sheet, a package comprising such sheet, a method of packaging a medical device using a package with such sheet and a method of manufacturing such sheet are provided. This nonwoven sheet comprises first and second non-cellulosic polymeric fibers. The first non-cellulosic polymeric fibers have an average diameter less than about 3.5 micron, an average cut length less than about 3 millimeters and an average aspect ratio of about 400 to about 2000; the second non-cellulosic polymeric fibers have an average diameter greater than about 3.5 micron and an average aspect ratio of about 400 to about 1000. In a second embodiment, a hydraulically-formed nonwoven sheet is provided. This nonwoven sheet comprises binding material, non-cellulosic polymeric fibers and cellulosic based materials. The non-cellulosic polymeric fibers have an average diameter less than about 3.5 micron, an average cut length less than about 3 millimeters and an average aspect ratio of about 400 to about 2000. The second nonwoven sheet has a bacterial filtration efficiency of at least about 98%. | 10-28-2010 |
20140262894 | Radial Filtration Vent and Medical Device Packaging - A gas sterilization package component having (a) a gas diversion wall stock for at least a portion of a container, the wall stock having an opening therethrough; (b) a gas diversion layer; (c) a filter sheet disposed between (a) and (b), the filter sheet having a first surface and an opposing second surface circumscribed by a perimeter edge; and wherein the first surface of the filter sheet is attached to a surface of said gas diversion layer and the second surface of the filter sheet is sealed to a surface of the wall stock whereby an opening in the wall stock is covered by the filter sheet and a gas passageway is defined from the opening through a portion of the second surface of the filter sheet and extending through said filter perimeter edge. | 09-18-2014 |
Gregory John Jansen, Appleton, WI US
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20100057036 | Disposable absorbent article having tailored leg edge - A disposable absorbent article comprises a first crotch elastic member adjacent a first crotch edge and a second crotch elastic member adjacent a second crotch edge, each crotch elastic member extending generally in a longitudinal direction, each crotch elastic member having a front terminal point and a rear terminal point. In one embodiment, at least one of the terminal points of the first crotch elastic member is positioned transversely inward from a remaining portion of the first crotch elastic member, and at least one of the terminal points of the second crotch elastic member is positioned transversely inward from a remaining portion of the second crotch elastic member. In another embodiment, front end portions of the first and second crotch elastic members or rear end portions of the first and second crotch elastic members converge transversely inward toward each other. | 03-04-2010 |
James T. Jansen, New Franken, WI US
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20100181736 | Collapsible dolly - A collapsible dolly is movable between an extended use position and a compact storage position. The dolly has a right leg and a left leg that form a supportive A-frame when fully extended. Hinges and sliding components are capable of collapsing the dolly into a collapsed position for storage and/or transportation. | 07-22-2010 |
20100237575 | Collapsible dolly - A collapsible dolly is movable between an extended use position and a compact storage position. The dolly has a right leg and a left leg that form a supportive A-frame when fully extended. Hinges and sliding components are capable of collapsing the dolly into a collapsed position for storage and/or transportation. | 09-23-2010 |
Paul E. Jansen, Menasha, WI US
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20090315728 | Method of reducing sensor corrosion in absorbent articles - Methods of reducing sensor corrosion include providing a monitor adapted to electrically connect with a wetness sensor integrated with an absorbent article. The wetness sensor has a first conductor and a second conductor and the monitor includes programming instructions that, when the monitor is attached and activated, repetitively execute a sequence of steps that includes applying voltage to the first conductor; measuring the potential across the conductors; and discontinuing the voltage to the first conductor. The instructions may also repetitively execute a sequence of steps that includes alternatively applying voltage to the first and second conductors and/or grounding the first conductor and/or second conductors after discontinuing voltage. | 12-24-2009 |
Ronald N. Jansen, New Berlin, WI US
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20100328825 | SYSTEM AND METHOD FOR DETECTING A FAULT CONDITION - A system and method for detecting a fault condition by a relay is provided. The system includes means for detecting phase currents through three electrical phases, means for detecting a ground fault current, a processor configured to perform a current-based function based upon at least one of the phase currents and a filter. The processor is configured to perform current-based functions based on whether the filter is enabled or disabled. | 12-30-2010 |
Thomas Jansen, Appleton, WI US
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20080200323 | Method And Apparatus For Folding Or Separate Bags - A folder and method for folding plastic bags includes at least one folding station. The folding station has a folding point where an input, an output and a storage portion meet. The bag travels in the input portion in a different direction than in the storage portion. The output direction is substantially the same as the input direction. A turning air source is disposed to direct the bag into the storage portion and an air source is disposed to direct the bag into the output section. A fin helps guide the bag into the output portion. A turning roll disposed above the turning point, and imparts motion to the bag, generally in the storage direction. A second folding station, similar to the first, is downstream the first folding station. The output direction for the first station is the same as the input direction for the second station, and the bag path between the first and second folding stations is substantially linear. A separator located upstream of the folder includes a separator nip formed by separator rolls that are in, and remain in, the film path in one embodiment. A slow-down section includes servo-driven slow down rolls with projections there on. | 08-21-2008 |
Thomas C. Jansen, Appleton, WI US
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20080312056 | Method and Apparatus for Making Bags - A machine and method for making bags is described and includes a web , traveling from an input section to a rotary drum, to an output section. The rotary drum includes at least one seal bar, having a first sealing zone, and an adjacent weakening zone. The weakening zone may be a heated perforator, includes a heating wire, or be disposed to create an auxiliary sealed area. The heating wire can have, connected thereto, a source of power that is at an adjustable voltage or magnitude, and/or pulsed, and/or a feedback loop. The heating wire may be an NiCr wire and make intermittent contact with the web and be disposed in an insert. The weakening zone may create a line of weakness that is uniform or varies in intensity, is a separating zone, or includes a heat film, a toothed blade, a row of pins, a source of air, or a source of vacuum. The sealing zones may include temperature zones, cartridge heaters, cooling air, or heated air, or a source of ultrasonic, microwave or radiative energy. | 12-18-2008 |
20090019817 | Bag Machine And Winder - A method and apparatus for making and winding bags is disclosed. The film approaches the infeed nip on the surface of a roller and on a film guide recessed in the roller for an arc of at least 10, 45, 60 or 90 degrees. The film is preferably guided to one of two alternative film paths. An over speed nip may be provided between the infeed nip and the alternative film paths to separate rolls or to separate all bags. An overlapper can be included. Rods that travel in an elliptical orbit, and/or air nozzles can be part of the overlapper. Air nozzles or a rotating brush can direct the film to the appropriate alternative path. Banders can be used, and can include a conveyor for providing tape to the spindle and two sources of air. | 01-22-2009 |
20090305859 | Method and Apparatus For Making Bags - A machine and method for making bags is described and includes a web traveling from an input section to a rotary drum, to an output section. The rotary drum includes at least one seal bar, having a first sealing zone, and an adjacent weakening zone. The weakening zone may be a heated perforator, includes a heating wire, or be disposed to create an auxiliary sealed area. The heating wire can have, connected thereto, a source of power that is at an adjustable voltage or magnitude, and/or pulsed, and/or a feedback loop. The heating wire may be an NiCr wire and make intermittent contact with the web and be disposed in an insert. The weakening zone may create a line of weakness that is uniform or varies in intensity, is a separating zone, or includes a heat film, a toothed blade, a row of pins, a source of air, or a source of vacuum. The sealing zones may include temperature zones, cartridge heaters, cooling air, or heated air, or a source of ultrasonic, microwave or radiative energy. | 12-10-2009 |
20110312480 | Method and Apparatus For Making Bags - A machine and method for making bags is described and includes a web traveling from an input section to a rotary drum, to an output section. The rotary drum includes at least one seal bar, having a first sealing zone, and an adjacent weakening zone. The weakening zone may be a heated perforator, includes a heating wire, or be disposed to create an auxiliary sealed area. The heating wire can have, connected thereto, a source of power that is at an adjustable voltage or magnitude, and/or pulsed, and/or a feedback loop. The heating wire may be an NiCr wire and make intermittent contact with the web and be disposed in an insert. The weakening zone may create a line of weakness that is uniform or varies in intensity, is a separating zone, or includes a heat film, a toothed blade, a row of pins, a source of air, or a source of vacuum. The sealing zones may include temperature zones, cartridge heaters, cooling air, or heated air, or a source of ultrasonic, microwave or radiative energy. | 12-22-2011 |
20130190155 | Method and Apparatus For Making Bags - A machine and method for making bags is described and includes a web traveling from an input section to a rotary drum, to an output section. The drum includes at least one seal bar, having a first sealing zone and an adjacent weakening zone. The weakening zone may be a heated perforator, heating wire, and/or may create an auxiliary sealed area. The heating wire is powered by a source of power at an adjustable voltage or magnitude, and/or pulsed, and/or with a feedback loop. The heating wire may make intermittent contact with the web and/or be disposed in an insert. The weakening zone may create a line of weakness that is uniform or varies in intensity, is a separating zone. The sealing zones may include temperature zones, cartridge heaters, cooling air, or heated air, or a source of ultrasonic, microwave or radiative energy. | 07-25-2013 |