FLUID DISTRIBUTION SYSTEM
    1.
    发明公开

    公开(公告)号:US20230338944A1

    公开(公告)日:2023-10-26

    申请号:US18321650

    申请日:2023-05-22

    Applicant: SaniSure, Inc.

    Inventor: Chris Ballew

    CPC classification number: B01L3/502 B01D24/005 B01L3/5082 B01D2313/105

    Abstract: There is disclosed a fluid distribution system for distributing fluid from a single source to a plurality of downstream receptacles. The system has a distribution manifold assembly with a single inlet and a plurality of outlets arrayed around a circumferential outer periphery. The outlets may be directed to the different receptacles which each have their own vent filter, or each receptacle connects back to the distribution manifold for common venting. The distribution manifold assembly may be formed by identical fluid and vent manifolds with cylindrical exteriors, or by identical fluid and vent manifolds surrounded by cylindrical frame members, to form a compact cylindrical combined assembly. Flexible conduits connect the manifold assembly to a plurality of receptacles, and a consumable subsystem of the manifold assembly, conduits and receptacle caps may be pre-assembled for ease of use.

    Low volume magnetic mixing system

    公开(公告)号:US11958026B2

    公开(公告)日:2024-04-16

    申请号:US18483355

    申请日:2023-10-09

    Applicant: SANISURE, INC.

    CPC classification number: B01F33/4532 B01F35/50

    Abstract: A mixing system for use in a process bottle for mixing its contents, the mixing system including a low volume magnetically-driven mixer mounted at the bottom of the bottle. The mixer may have vanes and lower grooves, or no vanes and grooves on both upper and lower faces. The mixer has a “microsized” three-dimensional solid inanimate body to enable insertion through relatively small mouth openings at the top of conventional reactor bottles. Methods of assembly are also disclosed which involve passing the microsized mixer through an open mouth of a process bottle and coupling the mixer with a bearing assembly at the floor of the bottle. The bearing assembly includes fixtures sealed around a hole in the floor of the bottle.

    FLUID DISTRIBUTION JUNCTIONS AND ASSEMBLY METHODS

    公开(公告)号:US20250012394A1

    公开(公告)日:2025-01-09

    申请号:US18895756

    申请日:2024-09-25

    Applicant: SaniSure, Inc.

    Abstract: There is disclosed fluid distribution junctions and methods of assembly therefor. Flexible conduits connect to the junctions, and a consumable subsystem of the junction, conduits and receptacle caps or other connectors may be pre-assembled for ease of use. A subassembly is formed by coupling a plurality of flexible tubular conduits to a plurality of fluid connectors of a fluid junction, the fluid junction having an inner fluid plenum chamber leading to the fluid connectors. Two shells are sandwiched on opposite sides of the subassembly, the shells having mating concave receiving surfaces that together conform around each of the fluid connectors and clamp the tubular conduits onto the circular beads. Juxtaposed joint surfaces on each pair of mating concave receiving surfaces are bonded together such as with sonic welding to make the fluid distribution junction assembly,

    PROCESS COOLING ROD
    4.
    发明公开
    PROCESS COOLING ROD 审中-公开

    公开(公告)号:US20240191952A1

    公开(公告)日:2024-06-13

    申请号:US18420285

    申请日:2024-01-23

    Applicant: SaniSure, Inc.

    CPC classification number: F28F1/40 B21C37/207 F28F13/12

    Abstract: A process heat exchange rod for cooling or heating liquids in a process vessel. The rod may have a linear form and extend downward through an upper wall of the process vessel into proximity with the lower floor. The rod internally defines a circulatory flow path for the heat exchange medium, including an outer jacket and a flow diverter having a central through bore and external helical flutes. Heat exchange medium travels down through the central through bore and then back up through helical grooves formed between the flow diverter and the outer jacket, or vice versa. Accurate heating or cooling of the process fluid is attained by modification of the configuration of the heat exchange rod as well as the flow rate and temperature of the heat exchange medium. The components may be injection molded of a polymer, often transparent, having a high heat transfer coefficient.

    LOW VOLUME MAGNETIC MIXING SYSTEM
    5.
    发明公开

    公开(公告)号:US20240033698A1

    公开(公告)日:2024-02-01

    申请号:US18483355

    申请日:2023-10-09

    Applicant: SANISURE, INC.

    CPC classification number: B01F33/4532 B01F35/50

    Abstract: A mixing system for use in a process bottle for mixing its contents, the mixing system including a low volume magnetically-driven mixer mounted at the bottom of the bottle. The mixer may have vanes and lower grooves, or no vanes and grooves on both upper and lower faces. The mixer has a “microsized” three-dimensional solid inanimate body to enable insertion through relatively small mouth openings at the top of conventional reactor bottles. Methods of assembly are also disclosed which involve passing the microsized mixer through an open mouth of a process bottle and coupling the mixer with a bearing assembly at the floor of the bottle. The bearing assembly includes fixtures sealed around a hole in the floor of the bottle.

    Process cooling rod
    6.
    发明授权

    公开(公告)号:US12209816B2

    公开(公告)日:2025-01-28

    申请号:US18420285

    申请日:2024-01-23

    Applicant: SaniSure, Inc.

    Abstract: A process heat exchange rod for cooling or heating liquids in a process vessel. The rod may have a linear form and extend downward through an upper wall of the process vessel into proximity with the lower floor. The rod internally defines a circulatory flow path for the heat exchange medium, including an outer jacket and a flow diverter having a central through bore and external helical flutes. Heat exchange medium travels down through the central through bore and then back up through helical grooves formed between the flow diverter and the outer jacket, or vice versa. Accurate heating or cooling of the process fluid is attained by modification of the configuration of the heat exchange rod as well as the flow rate and temperature of the heat exchange medium. The components may be injection molded of a polymer, often transparent, having a high heat transfer coefficient.

    LOW VOLUME MAGNETIC MIXING SYSTEM
    7.
    发明公开

    公开(公告)号:US20240252999A1

    公开(公告)日:2024-08-01

    申请号:US18604984

    申请日:2024-03-14

    Applicant: SANISURE, INC.

    CPC classification number: B01F33/4532 B01F35/50

    Abstract: A mixing system for use in a process bottle for mixing its contents, the mixing system including a low volume magnetically-driven mixer mounted at the bottom of the bottle. The mixer may have vanes and lower grooves, or no vanes and grooves on both upper and lower faces. The mixer has a “microsized” three-dimensional solid inanimate body to enable insertion through relatively small mouth openings at the top of conventional reactor bottles. Methods of assembly are also disclosed which involve passing the microsized mixer through an open mouth of a process bottle and coupling the mixer with a bearing assembly at the floor of the bottle. The bearing assembly includes fixtures sealed around a hole in the floor of the bottle.

    Process cooling rod
    8.
    发明授权

    公开(公告)号:US11913731B2

    公开(公告)日:2024-02-27

    申请号:US18344641

    申请日:2023-06-29

    Applicant: SaniSure, Inc.

    CPC classification number: F28F1/40 B21C37/207 F28F13/12

    Abstract: A process heat exchange rod for cooling or heating liquids in a process vessel. The rod may have a linear form and extend downward through an upper wall of the process vessel into proximity with the lower floor. The rod internally defines a circulatory flow path for the heat exchange medium, including an outer jacket and a flow diverter having a central through bore and external helical flutes. Heat exchange medium travels down through the central through bore and then back up through helical grooves formed between the flow diverter and the outer jacket, or vice versa. Accurate heating or cooling of the process fluid is attained by modification of the configuration of the heat exchange rod as well as the flow rate and temperature of the heat exchange medium. The components may be injection molded of a polymer, often transparent, having a high heat transfer coefficient.

    Fluid distribution junctions and assembly methods

    公开(公告)号:US12111002B1

    公开(公告)日:2024-10-08

    申请号:US18661592

    申请日:2024-05-11

    Applicant: SaniSure, Inc.

    Abstract: There is disclosed fluid distribution junctions and methods of assembly therefor. Flexible conduits connect to the junctions, and a consumable subsystem of the junction, conduits and receptacle caps or other connectors may be pre-assembled for ease of use. A subassembly is formed by coupling a plurality of flexible tubular conduits to a plurality of fluid connectors of a fluid junction, the fluid junction having an inner fluid plenum chamber leading to the fluid connectors. Two shells are sandwiched on opposite sides of the subassembly, the shells having mating concave receiving surfaces that together conform around each of the fluid connectors and clamp the tubular conduits onto the circular beads. Juxtaposed joint surfaces on each pair of mating concave receiving surfaces are bonded together such as with sonic welding to make the fluid distribution junction assembly.

    PROCESS COOLING ROD
    10.
    发明公开
    PROCESS COOLING ROD 审中-公开

    公开(公告)号:US20230392879A1

    公开(公告)日:2023-12-07

    申请号:US18344641

    申请日:2023-06-29

    Applicant: SaniSure, Inc.

    CPC classification number: F28F1/40 F28F13/12 B21C37/207

    Abstract: A process heat exchange rod for cooling or heating liquids in a process vessel. The rod may have a linear form and extend downward through an upper wall of the process vessel into proximity with the lower floor. The rod internally defines a circulatory flow path for the heat exchange medium, including an outer jacket and a flow diverter having a central through bore and external helical flutes. Heat exchange medium travels down through the central through bore and then back up through helical grooves formed between the flow diverter and the outer jacket, or vice versa. Accurate heating or cooling of the process fluid is attained by modification of the configuration of the heat exchange rod as well as the flow rate and temperature of the heat exchange medium. The components may be injection molded of a polymer, often transparent, having a high heat transfer coefficient.

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