Encite LLC

United States of America

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IPC Class
B81B 3/00 - Devices comprising flexible or deformable elements, e.g. comprising elastic tongues or membranes 5
B81B 5/00 - Devices comprising elements which are movable in relation to each other, e.g. comprising slidable or rotatable elements 4
F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups 4
F04B 43/04 - Pumps having electric drive 4
F16K 99/00 - Subject matter not provided for in other groups of this subclass 4
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Status
Pending 2
Registered / In Force 35
Found results for  patents

1.

Micro Pressure Sensor

      
Application Number 17945333
Status Pending
Filing Date 2022-09-15
First Publication Date 2023-06-29
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

A micro pressure sensor includes a body having a compartmentalized chamber provided by membranes anchored between opposing walls of the body and carrying electrodes disposed on surfaces of the membranes. The body has a first pair of opposing walls and a second pair of opposing walls orthogonal to the first pair that define a chamber, a plurality of membranes having a correspond electrode layer over a surface, the plurality of membranes disposed in the chamber, anchored between the first pair of opposing walls of the body to provide plural compartments, a first set of ports coupled to a first set of the plural compartments, the first set of ports disposed in corresponding portions of a first one of the first pair of opposing walls of the body, with a second one of the first pair of opposing walls of the body being a solid portion of the body; and a second set of ports coupled to a second different set of the plural compartments, the second set of ports disposed in corresponding portions of the second one of the first pair of opposing walls of the body, with the first one of the first pair of walls of the body being a solid portion of the body.

IPC Classes  ?

  • G01L 9/00 - Measuring steady or quasi-steady pressure of a fluid or a fluent solid material by electric or magnetic pressure-sensitive elementsTransmitting or indicating the displacement of mechanical pressure-sensitive elements, used to measure the steady or quasi-steady pressure of a fluid or fluent solid material, by electric or magnetic means
  • G01L 19/00 - Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges

2.

Positive Airway Pressure Mask with Reduced Airflow During Exhalation

      
Application Number 17890383
Status Pending
Filing Date 2022-08-18
First Publication Date 2023-06-15
Owner Encite LLC (USA)
Inventor Marsh, Stephen A.

Abstract

A positive air way pressure mask includes a mask body having an inlet and an outlet, a nasal interface supported on the body, the nasal interface having air passages, with the nasal interface coupling a user's nose to the outlet of the continuous positive air way pressure mask body, and an air switch device having an input port, an output port, and a diversion port, with the input port receiving air from a continuous positive airway pressure machine and delivering the received air to the output port during an inhalation, and that switches the air from the positive airway pressure machine from the inlet to the diversion port to expel diverted air to ambient during an exhalation. Also disclosed is an alternative voice coil actuated air switch device having an input port and an output port, with the input port receiving air from a continuous positive airway pressure machine and delivering the received air to the output port during an inhalation, and that inhibits the air from the positive airway pressure machine from entering the voice coil actuated air switch during an exhalation.

IPC Classes  ?

3.

MICRO ELECTROSTATIC ACTUATED PNEUMATIC DRIVEN MOTOR

      
Application Number US2021012700
Publication Number 2021/142261
Status In Force
Filing Date 2021-01-08
Publication Date 2021-07-15
Owner ENCITE LLC (USA)
Inventor
  • Marsh, Stephen A.
  • Parker, Spencer

Abstract

Described is an electrically actuated, pneumatic driven motor. The pneumatic driven motor includes a body having first and second surfaces, the body having a chamber defined by an interior wall, a displacement cavity, and a passage that fluidly couples the displacement cavity to the chamber, a bleeder port and a bleeder port passage that fluidly couples the bleeder port to the chamber, a valve disposed in the passage between the displacement cavity and the chamber, an annular pushrod mechanism coupled to the valve, the annular pushrod mechanism having a pair of pawls that protrude from an inner surface of the annular pushrod mechanism, an axle disposed in the chamber; and a motor gear disposed about the axle, the motor gear having a plurality of teeth that selectively engage with the pawls on the pushrod mechanism according to displacement of the annular pushrod mechanism.

IPC Classes  ?

  • B25B 21/00 - Portable power-driven screw or nut setting or loosening toolsAttachments for drilling apparatus serving the same purpose
  • B25B 23/14 - Arrangement of torque limiters or torque indicators in wrenches or screwdrivers
  • B25B 23/145 - Arrangement of torque limiters or torque indicators in wrenches or screwdrivers specially adapted for fluid operated wrenches or screwdrivers
  • F01L 1/00 - Valve-gear or valve arrangements, e.g. lift-valve gear
  • F01L 13/00 - Modifications of valve-gear to facilitate reversing, braking, starting, changing compression ratio, or other specific operations
  • F02B 75/00 - Other engines, e.g. single-cylinder engines

4.

Micro electrostatic actuated pneumatic driven motor

      
Application Number 17140396
Grant Number 11456681
Status In Force
Filing Date 2021-01-04
First Publication Date 2021-07-08
Grant Date 2022-09-27
Owner Encite LLC (USA)
Inventor
  • Marsh, Stephen A.
  • Parker, Spencer

Abstract

Described is an electrically actuated, pneumatic driven motor. The pneumatic driven motor includes a body having first and second surfaces, the body having a chamber defined by an interior wall, a displacement cavity, and a passage that fluidly couples the displacement cavity to the chamber, a bleeder port and a bleeder port passage that fluidly couples the bleeder port to the chamber, a valve disposed in the passage between the displacement cavity and the chamber, an annular pushrod mechanism coupled to the valve, the annular pushrod mechanism having a pair of pawls that protrude from an inner surface of the annular pushrod mechanism, an axle disposed in the chamber; and a motor gear disposed about the axle, the motor gear having a plurality of teeth that selectively engage with the pawls on the pushrod mechanism according to displacement of the annular pushrod mechanism.

IPC Classes  ?

  • H02N 1/00 - Electrostatic generators or motors using a solid moving electrostatic charge carrier
  • F15B 15/08 - Fluid-actuated devices for displacing a member from one position to anotherGearing associated therewith characterised by the construction of the motor unit
  • B81B 3/00 - Devices comprising flexible or deformable elements, e.g. comprising elastic tongues or membranes
  • F16K 99/00 - Subject matter not provided for in other groups of this subclass
  • F16K 31/122 - Operating meansReleasing devices actuated by fluid the fluid acting on a piston

5.

Method of manufacturing a flow measuring device having a rotatable member patterned within a chamber

      
Application Number 16918173
Grant Number 11454527
Status In Force
Filing Date 2020-07-01
First Publication Date 2020-10-22
Grant Date 2022-09-27
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

A method of manufacturing a flow measuring device having a rotatable element includes patterning an adhesive layer disposed on a first surface of a first sheet of a flexible material to remove portions of the adhesive layer in an area to define a location for a rotatable element, patterning the first sheet to define the rotatable element in the first sheet, adhering a pair of membrane layers of a second flexible material, to opposing surfaces of the patterned first sheet, with each of the pair of membrane layers having an electrically conductive layer on a surface thereof, patterning the electrically conductive layer to provide an electrode on each of the pair of membrane layers, and adhering a pair of sealing layers to surfaces of the pair of membrane layers.

IPC Classes  ?

  • G01F 1/06 - Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by using mechanical effects using rotating vanes with tangential admission
  • G01F 15/00 - Details of, or accessories for, apparatus of groups insofar as such details or appliances are not adapted to particular types of such apparatus
  • H05K 3/38 - Improvement of the adhesion between the insulating substrate and the metal
  • G01F 15/06 - Indicating or recording devices

6.

Haptic actuators fabricated by roll-to-roll processing

      
Application Number 16540217
Grant Number 11078071
Status In Force
Filing Date 2019-08-14
First Publication Date 2020-04-23
Grant Date 2021-08-03
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Described is a micro-haptic actuator device that can be fabricated with roll-to-roll MEMS processing techniques. The device includes a first body having a first surface and a second, opposing surface, the body has a chamber defined by at least one interior wall, a piston member disposed in the chamber, physically spaced from the at least one interior wall of the chamber, the piston member having a first surface and a second opposing surface. A membrane layer is disposed over and attached to the first surface of the body, with a portion of the membrane attached to the first surface of the piston member. The device also includes a first electrode supported on a second surface the membrane, and a second body that supports a second electrode, with the second body attached to the second surface of the first body.

IPC Classes  ?

  • G01L 9/00 - Measuring steady or quasi-steady pressure of a fluid or a fluent solid material by electric or magnetic pressure-sensitive elementsTransmitting or indicating the displacement of mechanical pressure-sensitive elements, used to measure the steady or quasi-steady pressure of a fluid or fluent solid material, by electric or magnetic means
  • H01L 21/00 - Processes or apparatus specially adapted for the manufacture or treatment of semiconductor or solid-state devices, or of parts thereof
  • B81B 3/00 - Devices comprising flexible or deformable elements, e.g. comprising elastic tongues or membranes
  • B81C 1/00 - Manufacture or treatment of devices or systems in or on a substrate
  • H01L 41/113 - Piezo-electric or electrostrictive elements with mechanical input and electrical output
  • H01L 41/09 - Piezo-electric or electrostrictive elements with electrical input and mechanical output

7.

Microelectromechanical systems fabricated with roll to roll processing

      
Application Number 16439925
Grant Number 11028840
Status In Force
Filing Date 2019-06-13
First Publication Date 2020-02-27
Grant Date 2021-06-08
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Roll to roll processing techniques are described to produce microelectromechanical systems having releasable and movable mechanical structures. A micro-pump that includes a pump body having compartmentalized pump chambers, with plural inlet and outlet ports and valves and plural membranes enclosing the pump chambers is described as a representative example.

IPC Classes  ?

  • F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups
  • F04B 43/02 - Machines, pumps, or pumping installations having flexible working members having plate-like flexible members, e.g. diaphragms
  • F04B 43/04 - Pumps having electric drive

8.

Airway pressure device with micro-pump system

      
Application Number 16502429
Grant Number 11525441
Status In Force
Filing Date 2019-07-03
First Publication Date 2020-02-27
Grant Date 2022-12-13
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Discloses is a micro-pump that includes a pump body having a compartmentalized pump chamber, with plural inlet and outlet ports and a plurality of membranes disposed in the pump chamber to provide compartments. The membranes are anchored between opposing walls of the pump body and carry electrodes disposed on opposing surfaces of the membranes and walls of the pump body. Also discloses are applications of the micro-pump including as a heat remover and a self-contained continuous positive airway pressure breathing device.

IPC Classes  ?

  • F04B 45/04 - Pumps or pumping installations having flexible working members and specially adapted for elastic fluids having plate-like flexible members, e.g. diaphragms
  • F04B 45/047 - Pumps having electric drive
  • F16K 1/18 - Lift valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure members with pivoted discs or flaps
  • A61M 16/00 - Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators Tracheal tubes
  • A61M 16/20 - Valves specially adapted to medical respiratory devices
  • A61M 16/06 - Respiratory or anaesthetic masks

9.

High pressure gas system

      
Application Number 16403855
Grant Number 10900131
Status In Force
Filing Date 2019-05-06
First Publication Date 2020-02-27
Grant Date 2021-01-26
Owner Encite LLC (USA)
Inventor
  • Marsh, Stephen Alan
  • Parker, Donald M.

Abstract

Among other things, a device for use in electrolyzing water is described. The device comprises an electrolysis unit that includes a chamber, an ion exchange structure in the chamber, a cathode, an anode, a high pressure chamber, and a reservoir. The chamber is separated by the ion exchange structure into a first compartment and a second compartment. The cathode is in the first compartment and the anode in the second compartment. The reservoir is disposed in the high pressure chamber for storing water to be supplied to the chamber of the electrolysis unit. In some implementations, the ion exchange structure is a proton exchange membrane.

IPC Classes  ?

  • C25B 1/12 - Electrolytic production of inorganic compounds or non-metals of hydrogen or oxygen by electrolysis of water in pressure cells
  • C25B 9/10 - Cells comprising dimensionally-stable non-movable electrodes; Assemblies of constructional parts thereof with diaphragms including an ion-exchange membrane in or on which electrode material is embedded
  • H01M 8/0656 - Combination of fuel cells with means for production of reactants or for treatment of residues with means for production of gaseous reactants by electrochemical means
  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water
  • C25B 9/18 - Assemblies comprising a plurality of cells
  • C25B 1/10 - Electrolytic production of inorganic compounds or non-metals of hydrogen or oxygen by electrolysis of water in diaphragm cells
  • C02F 1/461 - Treatment of water, waste water, or sewage by electrochemical methods by electrolysis

10.

Micro electrostatic motor and micro mechanical force transfer devices

      
Application Number 16418254
Grant Number 11245344
Status In Force
Filing Date 2019-05-21
First Publication Date 2019-12-12
Grant Date 2022-02-08
Owner Encite LLC (USA)
Inventor Marsh, Stephen A.

Abstract

Disclosed is a micro electrostatic motor that includes a body having a first and a second face and having a chamber. A first membrane is disposed over the first face of the body and a rotatable disk is disposed in the circular chamber about a member. The disk is disposed in the circular chamber and is free to rotate about the member. The disk has on a first surface thereof a set of three mutually electrically isolated electrodes, with each of the electrodes having a tab portion and being electrically isolated from the member. A second membrane is disposed over the second face of the body and a pair of spaced electrodes are provided on portions of the second membrane, with the pair of spaced electrodes being isolated by a gap between the pair of electrodes. A cylindrical shaped member is disposed in the chamber electrically isolated from the three mutually electrically isolated electrodes on the disc.

IPC Classes  ?

  • H02N 2/12 - Constructional details
  • H02K 7/116 - Structural association with clutches, brakes, gears, pulleys or mechanical starters with gears
  • B81B 5/00 - Devices comprising elements which are movable in relation to each other, e.g. comprising slidable or rotatable elements

11.

MICRO ELECTROSTATIC MOTOR AND MICRO MECHANICAL FORCE TRANSFER DEVICES

      
Application Number US2019035517
Publication Number 2019/236667
Status In Force
Filing Date 2019-06-05
Publication Date 2019-12-12
Owner ENCITE, LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a force transfer device that includes a first body that has a first body frame that defines a first chamber and at least one gear element. The gear element has a central gear element region. A first membrane is affixed to a surface of the first body frame, the membrane covering the chamber and having an annular aperture enclosing a central region of the membrane that is affixed to the central gear element region of the gear element. The disclosed force transfer device can be axle or shaft based. Also disclosed in a micro electrostatic motor that includes a motor body having a first and a second face, the motor body defining a chamber and a rotor having a central region. A membrane is disposed over the first face of the motor body, the membrane supporting a pair of spaced electrodes that are electrically isolated by a gap, the membrane having an annular aperture that defines a central region of the membrane that is coupled to the central region of the rotor. The force transfer device can be driven by the electrostatic motor.

IPC Classes  ?

  • H02N 1/00 - Electrostatic generators or motors using a solid moving electrostatic charge carrier
  • B81B 5/00 - Devices comprising elements which are movable in relation to each other, e.g. comprising slidable or rotatable elements
  • B81B 7/00 - Microstructural systems
  • B81B 7/02 - Microstructural systems containing distinct electrical or optical devices of particular relevance for their function, e.g. microelectro-mechanical systems [MEMS]
  • H02N 11/00 - Generators or motors not provided for elsewhereAlleged perpetua mobilia obtained by electric or magnetic means

12.

Micro electrostatic motor and micro mechanical force transfer devices

      
Application Number 16418109
Grant Number 11296619
Status In Force
Filing Date 2019-05-21
First Publication Date 2019-12-12
Grant Date 2022-04-05
Owner Encite LLC (USA)
Inventor Marsh, Stephen A.

Abstract

Disclosed is a force transfer device that includes a first body that has a first body frame that defines a first chamber and at least one gear element. The gear element has a central gear element region. A first membrane is affixed to a surface of the first body frame, the membrane covering the chamber and having an annular aperture enclosing a central region of the membrane that is affixed to the central gear element region of the gear element. The disclosed force transfer device can be axle or shaft based. Also disclosed in a micro electrostatic motor that includes a motor body having a first and a second face, the motor body defining a chamber and a rotor having a central region. A membrane is disposed over the first face of the motor body, the membrane supporting a pair of spaced electrodes that are electrically isolated by a gap, the membrane having an annular aperture that defines a central region of the membrane that is coupled to the central region of the rotor. The force transfer device can be driven by the electrostatic motor.

IPC Classes  ?

  • H02N 2/12 - Constructional details
  • H02K 7/116 - Structural association with clutches, brakes, gears, pulleys or mechanical starters with gears
  • B81B 5/00 - Devices comprising elements which are movable in relation to each other, e.g. comprising slidable or rotatable elements

13.

MICRO ELECTROSTATIC MOTOR AND MICRO MECHANICAL FORCE TRANSFER DEVICES

      
Application Number US2019035536
Publication Number 2019/236676
Status In Force
Filing Date 2019-06-05
Publication Date 2019-12-12
Owner ENCITE LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a micro electrostatic motor that includes a body having a first and a second face and a chamber. A first membrane is disposed over the first face of the body and a rotatable disk is disposed in the chamber about a member. The disk in the chamber and is free to rotate about the member. The disk has on a first surface thereof a set of three mutually electrically isolated electrodes, with each of the electrodes having a tab portion and being electrically isolated from the member. A second membrane is disposed over the second face and a pair of spaced electrodes are on portions of the second membrane, with the pair of spaced electrodes isolated by a gap. A cylindrical shaped member is disposed in the chamber electrically isolated from the three mutually electrically isolated electrodes on the disc.

IPC Classes  ?

  • B81B 3/00 - Devices comprising flexible or deformable elements, e.g. comprising elastic tongues or membranes
  • B81B 5/00 - Devices comprising elements which are movable in relation to each other, e.g. comprising slidable or rotatable elements
  • B81B 7/00 - Microstructural systems
  • H01L 23/00 - Details of semiconductor or other solid state devices
  • H01L 23/04 - ContainersSeals characterised by the shape
  • H02N 1/00 - Electrostatic generators or motors using a solid moving electrostatic charge carrier

14.

R2R microelectromechanical gas concentrator

      
Application Number 16285371
Grant Number 11331618
Status In Force
Filing Date 2019-02-26
First Publication Date 2019-09-12
Grant Date 2022-05-17
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed are techniques such as roll to roll processing to produce membrane valves in microelectromechanical systems that are integrated with micro-pumps that include a pump body having compartmentalized pump chambers. One application of this technology is as a valve assembly for a gas concentrator that includes a first micro pump for feeding an input gas stream, a second micro pump to supplying a vacuum and at least one sieve bed having a zeolite. The gas concentrator uses the valve assembly for controlling entry of gas from the first micro pump into the sieve bed and the second micro pump to vent.

IPC Classes  ?

  • B01D 53/053 - Pressure swing adsorption with storage or buffer vessel
  • F04B 53/10 - ValvesArrangement of valves
  • B01D 53/04 - Separation of gases or vapoursRecovering vapours of volatile solvents from gasesChemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases or aerosols by adsorption, e.g. preparative gas chromatography with stationary adsorbents
  • B01D 53/047 - Pressure swing adsorption
  • F16K 99/00 - Subject matter not provided for in other groups of this subclass
  • A61M 16/10 - Preparation of respiratory gases or vapours

15.

R2R MICROELECTROMECHANICAL GAS CONCENTRATOR

      
Application Number US2019019738
Publication Number 2019/173090
Status In Force
Filing Date 2019-02-27
Publication Date 2019-09-12
Owner ENCITE, LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed are techniques such as roll to roll processing to produce membrane valves in microelectromechanical systems that are integrated with micro-pumps that include a pump body having compartmentalized pump chambers. One application of this technology is as a valve assembly for a gas concentrator that includes a first micro pump for feeding an input gas stream, a second micro pump to supplying a vacuum and at least one sieve bed having a zeolite. The gas concentrator uses the valve assembly for controlling entry of gas from the first micro pump into the sieve bed and the second micro pump to vent.

IPC Classes  ?

  • B01D 53/053 - Pressure swing adsorption with storage or buffer vessel
  • B32B 3/26 - Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shapeLayered products comprising a layer having particular features of form characterised by a particular shape of the outline of the cross-section of a continuous layerLayered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shapeLayered products comprising a layer having particular features of form characterised by a layer with cavities or internal voids
  • F04B 53/10 - ValvesArrangement of valves

16.

Method and controller for operating power cells using multiple layers of control

      
Application Number 16267236
Grant Number 11121389
Status In Force
Filing Date 2019-02-04
First Publication Date 2019-09-05
Grant Date 2021-09-14
Owner ENCITE LLC (USA)
Inventor
  • Marsh, Stephen A.
  • Hill, Lawrence W.

Abstract

A method of cleaning power cells in an array of power cells, comprising coupling at least one first power cell to second power cells in an array of power cells and causing the second power cells to drive the at least one first power cell with a voltage to clean catalyst on the at least one first power cell.

IPC Classes  ?

  • H01M 8/00 - Fuel cellsManufacture thereof
  • H01M 8/0662 - Treatment of gaseous reactants or gaseous residues, e.g. cleaning
  • H01M 8/0289 - Means for holding the electrolyte
  • H01M 8/0432 - TemperatureAmbient temperature
  • H01M 8/0438 - PressureAmbient pressureFlow
  • H01M 8/04858 - Electric variables
  • H01M 8/04828 - HumidityWater content
  • H01M 8/04537 - Electric variables
  • H01M 8/04746 - PressureFlow
  • H01M 8/1004 - Fuel cells with solid electrolytes characterised by membrane-electrode assemblies [MEA]
  • H01M 8/1097 - Fuel cells applied on a support, e.g. miniature fuel cells deposited on silica supports
  • H01M 8/241 - Grouping of fuel cells, e.g. stacking of fuel cells with solid or matrix-supported electrolytes
  • B82Y 30/00 - Nanotechnology for materials or surface science, e.g. nanocomposites
  • H01M 8/04302 - Processes for controlling fuel cells or fuel cell systems applied during specific periods applied during start-up
  • H01M 8/1286 - Fuel cells applied on a support, e.g. miniature fuel cells deposited on silica supports
  • H01M 8/249 - Grouping of fuel cells, e.g. stacking of fuel cells comprising two or more groupings of fuel cells, e.g. modular assemblies
  • H01M 8/1018 - Polymeric electrolyte materials
  • H01M 8/24 - Grouping of fuel cells, e.g. stacking of fuel cells

17.

MICRO BI-DIRECTIONAL VALVES AND SYSTEMS

      
Application Number US2019012828
Publication Number 2019/139938
Status In Force
Filing Date 2019-01-09
Publication Date 2019-07-18
Owner ENCITE, LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a bi-directional exhalation valve useful for many applications such as in CPAP devices. The exhalation valve includes a valve body having a center chamber, side chambers, and bidirectional ports coupled to the center chamber via passages and a mechanism that provides fluid ingress into the bi-directional valve in a first mode of operation or fluid egress from the bi-directional valve in a second mode of operation. Unidirectional ports are coupled to the plurality of bidirectional ports to provide providing fluid egress from the valve in the second mode of operation, and a unidirectional port provides fluid ingress into the bi-directional valve in the first mode of operation. A mechanism including a center paddle, side paddles, and a shaft are arranged in an elongated compartment of the valve body, such that the shaft is pivots and the central and side paddles open and close corresponding ones of the input and output ports.

IPC Classes  ?

  • A61M 16/20 - Valves specially adapted to medical respiratory devices
  • F16K 11/02 - Multiple-way valves, e.g. mixing valvesPipe fittings incorporating such valvesArrangement of valves and flow lines specially adapted for mixing fluid with all movable sealing faces moving as one unit
  • F16K 11/052 - Multiple-way valves, e.g. mixing valvesPipe fittings incorporating such valvesArrangement of valves and flow lines specially adapted for mixing fluid with all movable sealing faces moving as one unit comprising only lift valves with pivoted closure members, e.g. butterfly valves

18.

Micro bi-directional valves and systems

      
Application Number 16242083
Grant Number 11426550
Status In Force
Filing Date 2019-01-08
First Publication Date 2019-07-11
Grant Date 2022-08-30
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a bi-directional exhalation valve useful for many applications such as in CPAP devices. The exhalation valve includes a valve body having a center chamber, side chambers, and bidirectional ports coupled to the center chamber via passages and a mechanism that provides fluid ingress into the bi-directional valve in a first mode of operation or fluid egress from the bi-directional valve in a second mode of operation. Unidirectional ports are coupled to the plurality of bidirectional ports to provide providing fluid egress from the valve in the second mode of operation, and a unidirectional port provides fluid ingress into the bi-directional valve in the first mode of operation. A mechanism including a center paddle, side paddles, and a shaft are arranged in an elongated compartment of the valve body, such that the shaft is pivots and the central and side paddles open and close corresponding ones of the input and output ports.

IPC Classes  ?

  • A61M 16/06 - Respiratory or anaesthetic masks
  • F16K 99/00 - Subject matter not provided for in other groups of this subclass
  • F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups
  • A61M 16/00 - Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators Tracheal tubes
  • A61M 16/20 - Valves specially adapted to medical respiratory devices
  • F04B 23/04 - Combinations of two or more pumps

19.

Gas storage system

      
Application Number 16226947
Grant Number 11171345
Status In Force
Filing Date 2018-12-20
First Publication Date 2019-06-27
Grant Date 2021-11-09
Owner Encite LLC (USA)
Inventor
  • Marsh, Stephen Alan
  • Parker, Donald M.
  • Grande, William J.

Abstract

Among other things, a gas storage system includes a group of capsules and an activation element coupled to the group. The group of capsules are formed within a substrate and contain gas stored at a relatively high pressure compared to atmospheric pressure. The activation element is configured to deliver energy in an amount sufficient to cause at least one of the capsules to release stored gas.

IPC Classes  ?

  • H01M 8/04082 - Arrangements for control of reactant parameters, e.g. pressure or concentration
  • B01J 13/02 - Making microcapsules or microballoons
  • H01M 8/04992 - Processes for controlling fuel cells or fuel cell systems characterised by the implementation of mathematical or computational algorithms, e.g. feedback control loops, fuzzy logic, neural networks or artificial intelligence
  • F17C 1/00 - Pressure vessels, e.g. gas cylinder, gas tank, replaceable cartridge
  • B01J 13/04 - Making microcapsules or microballoons by physical processes, e.g. drying, spraying
  • C30B 29/06 - Silicon
  • C30B 33/12 - Etching in gas atmosphere or plasma
  • H01M 8/04746 - PressureFlow

20.

MICROELECTROMECHANICAL SYSTEMS FABRICATED WITH ROLL TO ROLL PROCESSING

      
Application Number US2018060905
Publication Number 2019/099442
Status In Force
Filing Date 2018-11-14
Publication Date 2019-05-23
Owner ENCITE, LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed are techniques such as roll to roll processing to produce inlet valves for controlling entry of fluid into a compartment of a device. The valve includes a body having a compartment and an inlet into the compartment, with the inlet being bifurcated by a pair of spaced wall portions of the body that form a confining region and which pair of spaced wall portions together with wall portions of the body provide a pair of spaced inlet portions into the compartment and a valve member having a first portion that is position-able within a portion of the compartment, an intermediate portion, and a second portion coupled to the first portion by the intermediate portion, with the second portion position-able within the confining region and with the second portion having an obstruction portion.

IPC Classes  ?

  • B81B 3/00 - Devices comprising flexible or deformable elements, e.g. comprising elastic tongues or membranes
  • B81C 1/00 - Manufacture or treatment of devices or systems in or on a substrate
  • B81C 3/00 - Assembling of devices or systems from individually processed components
  • F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups
  • F04B 43/00 - Machines, pumps, or pumping installations having flexible working members
  • F04B 45/00 - Pumps or pumping installations having flexible working members and specially adapted for elastic fluids

21.

Valve having a first and second obstruction confining the valve from leaving a confining region

      
Application Number 16190238
Grant Number 11359619
Status In Force
Filing Date 2018-11-14
First Publication Date 2019-05-16
Grant Date 2022-06-14
Owner Encite LLC (USA)
Inventor Marsh, Stephen A.

Abstract

Disclosed are techniques such as roll to roll processing to produce inlet valves for controlling entry of fluid into a compartment of a device. The valve includes a body having a compartment and an inlet into the compartment, with the inlet being bifurcated by a pair of spaced wall portions of the body that form a confining region and which pair of spaced wall portions together with wall portions of the body provide a pair of spaced inlet portions into the compartment and a valve member having a first portion that is position-able within a portion of the compartment, an intermediate portion, and a second portion coupled to the first portion by the intermediate portion, with the second portion position-able within the confining region and with the second portion having an obstruction portion.

IPC Classes  ?

  • F04B 43/04 - Pumps having electric drive
  • F04B 45/047 - Pumps having electric drive
  • F04B 45/04 - Pumps or pumping installations having flexible working members and specially adapted for elastic fluids having plate-like flexible members, e.g. diaphragms
  • F04B 53/10 - ValvesArrangement of valves
  • F04B 39/10 - Adaptation or arrangement of distribution members
  • F16K 99/00 - Subject matter not provided for in other groups of this subclass
  • F04B 35/04 - Piston pumps specially adapted for elastic fluids and characterised by the driving means to their working members, or by combination with, or adaptation to, specific driving engines or motors, not otherwise provided for the means being electric
  • F04B 19/20 - Other positive-displacement pumps

22.

BROAD RANGE MICRO PRESSURE SENSOR

      
Application Number US2018056828
Publication Number 2019/089250
Status In Force
Filing Date 2018-10-22
Publication Date 2019-05-09
Owner ENCITE, LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a micro pressure sensor including a plurality of modules that are operative over different ranges of pressure. The modules include a stack of at least two module layers, each module layer including a module body having walls that define a compartment and with the defined compartment partitioned into at least two sub-compartments, a port for fluid ingress or egress disposed in a first wall of the body, with remaining walls of the body being solid walls, a membrane affixed to a first surface of the module body covering the compartment, and an electrode affixed over a surface of the membrane.

IPC Classes  ?

  • G01L 7/00 - Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements
  • G01L 9/12 - Measuring steady or quasi-steady pressure of a fluid or a fluent solid material by electric or magnetic pressure-sensitive elementsTransmitting or indicating the displacement of mechanical pressure-sensitive elements, used to measure the steady or quasi-steady pressure of a fluid or fluent solid material, by electric or magnetic means by making use of variations in capacitance
  • G01L 19/06 - Means for preventing overload or deleterious influence of the measured medium on the measuring device or vice versa
  • G01L 19/14 - Housings

23.

Broad range micro pressure sensor

      
Application Number 16163871
Grant Number 11046575
Status In Force
Filing Date 2018-10-18
First Publication Date 2019-05-02
Grant Date 2021-06-29
Owner Encite LLC (USA)
Inventor Marsh, Stephen A.

Abstract

Disclosed is a micro pressure sensor including a plurality of modules that are operative over different ranges of pressure. The modules include a stack of at least two module layers, each module layer including a module body having walls that define a compartment and with the defined compartment partitioned into at least two sub-compartments, a port for fluid ingress or egress disposed in a first wall of the body, with remaining walls of the body being solid walls, a membrane affixed to a first surface of the module body covering the compartment, and an electrode affixed over a surface of the membrane.

IPC Classes  ?

  • G01L 7/08 - Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges of the flexible-diaphragm type
  • B81B 3/00 - Devices comprising flexible or deformable elements, e.g. comprising elastic tongues or membranes
  • B81B 7/00 - Microstructural systems
  • G01R 27/26 - Measuring inductance or capacitanceMeasuring quality factor, e.g. by using the resonance methodMeasuring loss factorMeasuring dielectric constants
  • B81C 1/00 - Manufacture or treatment of devices or systems in or on a substrate
  • G01L 9/00 - Measuring steady or quasi-steady pressure of a fluid or a fluent solid material by electric or magnetic pressure-sensitive elementsTransmitting or indicating the displacement of mechanical pressure-sensitive elements, used to measure the steady or quasi-steady pressure of a fluid or fluent solid material, by electric or magnetic means

24.

MICRO DEVICES FORMED BY FLEX CIRCUIT SUBSTRATES

      
Application Number US2018053691
Publication Number 2019/070557
Status In Force
Filing Date 2018-10-01
Publication Date 2019-04-11
Owner ENCITE LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a flexible electronic circuit substrate that includes a device that is fabricated from layers of the flexible electronic circuit substrate as part of construction of the flexible electronic circuit substrate. Such devices could be functional units such as micro electro mechanical devices (MEMS) devices such as micro-accelerometer sensor elements, micro flow sensors, micro pressure sensors, etc.

IPC Classes  ?

  • G01C 19/5712 - Turn-sensitive devices using vibrating masses, e.g. vibratory angular rate sensors based on Coriolis forces using masses driven in reciprocating rotary motion about an axis the devices involving a micromechanical structure

25.

Micro flow measurement devices and devices with movable features

      
Application Number 16053074
Grant Number 10739170
Status In Force
Filing Date 2018-08-02
First Publication Date 2019-02-07
Grant Date 2020-08-11
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a micro flow device including a body frame defining a chamber and having a first port and a second port into the chamber. A first membrane carrying a first electrode is disposed over a first face of the body frame and a second membrane carrying a second electrode is disposed over a second face of the body frame. An axle member is disposed in the chamber affixed to the first and second membrane and a wheel member is disposed in the chamber about the axle member and spaced from the axle element by a gap. An interrupter feature is formed on the wheel, with the interrupter feature causing a variation in capacitance between the first and second electrodes during rotation of the wheel. Also disclosed are techniques for providing freely rotating, sliding, moving, etc. features in devices fabricated by roll to roll processes.

IPC Classes  ?

  • G01F 1/06 - Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by using mechanical effects using rotating vanes with tangential admission
  • G01F 15/00 - Details of, or accessories for, apparatus of groups insofar as such details or appliances are not adapted to particular types of such apparatus
  • H05K 3/38 - Improvement of the adhesion between the insulating substrate and the metal
  • G01F 15/06 - Indicating or recording devices

26.

MICRO FLOW MEASUREMENT DEVICES AND DEVICES WITH MOVABLE FEATURES

      
Application Number US2018045138
Publication Number 2019/028331
Status In Force
Filing Date 2018-08-03
Publication Date 2019-02-07
Owner ENCITE, LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a micro flow device including a body frame defining a chamber and having a first port and a second port into the chamber. A first membrane carrying a first electrode is disposed over a first face of the body frame and a second membrane carrying a second electrode is disposed over a second face of the body frame. An axle member is disposed in the chamber affixed to the first and second membrane and a wheel member is disposed in the chamber about the axle member and spaced from the axle element by a gap. An interrupter feature is formed on the wheel, with the interrupter feature causing a variation in capacitance between the first and second electrodes during rotation of the wheel. Also disclosed are techniques for providing freely rotating, sliding, moving, etc. features in devices fabricated by roll to roll processes.

IPC Classes  ?

  • G01F 1/76 - Devices for measuring mass flow of a fluid or a fluent solid material
  • G01F 1/82 - Direct mass flowmeters operating by measuring pressure, force, momentum, or frequency of a fluid flow to which a rotational movement has been imparted using a driven wheel as impeller and one or more other wheels or moving elements which are angularly restrained by a resilient member, e.g. spring member, as the measuring device

27.

Micro pump systems and processing techniques

      
Application Number 15917905
Grant Number 11092150
Status In Force
Filing Date 2018-03-12
First Publication Date 2018-09-13
Grant Date 2021-08-17
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Disclosed is a valve-less micro pump configuration that includes plural micro pump elements, each including a pump body having a compartmentalized pump chamber, with plural unobstructed inlet ports and outlet ports and a plurality of membranes disposed in the pump chamber to provide compartments. The membranes are anchored between opposing walls of the pump body and carry electrodes disposed on opposing surfaces of the membranes and walls of the pump body.

IPC Classes  ?

  • F04B 43/02 - Machines, pumps, or pumping installations having flexible working members having plate-like flexible members, e.g. diaphragms
  • F04B 43/14 - Machines, pumps, or pumping installations having flexible working members having peristaltic action having plate-like flexible members
  • F04B 43/04 - Pumps having electric drive
  • F04B 43/00 - Machines, pumps, or pumping installations having flexible working members
  • F04B 45/04 - Pumps or pumping installations having flexible working members and specially adapted for elastic fluids having plate-like flexible members, e.g. diaphragms
  • F04B 45/047 - Pumps having electric drive

28.

Micro pressure sensor

      
Application Number 15668837
Grant Number 11454563
Status In Force
Filing Date 2017-08-04
First Publication Date 2018-02-08
Grant Date 2022-09-27
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

A micro pressure sensor includes a body having a compartmentalized chamber provided by membranes anchored between opposing walls of the body and carrying electrodes disposed on surfaces of the membranes. The body has a first pair of opposing walls and a second pair of opposing walls orthogonal to the first pair that define a chamber, a plurality of membranes having a correspond electrode layer over a surface, the plurality of membranes disposed in the chamber, anchored between the first pair of opposing walls of the body to provide plural compartments, a first set of ports coupled to a first set of the plural compartments, the first set of ports disposed in corresponding portions of a first one of the first pair of opposing walls of the body, with a second one of the first pair of opposing walls of the body being a solid portion of the body; and a second set of ports coupled to a second different set of the plural compartments, the second set of ports disposed in corresponding portions of the second one of the first pair of opposing walls of the body, with the first one of the first pair of walls of the body being a solid portion of the body.

IPC Classes  ?

  • G01L 9/00 - Measuring steady or quasi-steady pressure of a fluid or a fluent solid material by electric or magnetic pressure-sensitive elementsTransmitting or indicating the displacement of mechanical pressure-sensitive elements, used to measure the steady or quasi-steady pressure of a fluid or fluent solid material, by electric or magnetic means
  • G01L 19/00 - Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges

29.

NASAL INTERFACE FOR CPAP DEVICE

      
Application Number US2017042065
Publication Number 2018/013893
Status In Force
Filing Date 2017-07-14
Publication Date 2018-01-18
Owner ENCITE LLC (USA)
Inventor
  • Marsh, Stephen Alan
  • Ormond, James M.
  • Hotaling, Bryan R.
  • Macneill, John A.

Abstract

A nasal interface for a device that attached to a user's nose is described. The nasal interface is particularly adaptable for a CPAP device and includes a device body having air passages through the body terminating in a pair of end portions, with each end portion having at least one outlet in a first surface of the end portion and a nasal interface supported on the body, the nasal interface comprising a pair of nose buds having flared fittings at end portions thereof.

IPC Classes  ?

  • A61M 15/08 - Inhaling devices inserted into the nose

30.

Microelectromechanical systems fabricated with roll to roll processing

      
Application Number 14927121
Grant Number 10330095
Status In Force
Filing Date 2015-10-29
First Publication Date 2016-05-12
Grant Date 2019-06-25
Owner Encite LLC (USA)
Inventor Marsh, Stephen Alan

Abstract

Roll to roll processing techniques are described to produce microelectromechanical systems having releasable and moveable mechanical structures. A micro-pump that includes a pump body having compartmentalized pump chambers, with plural inlet and outlet ports and valves and plural membranes enclosing the pump chambers is described as a representative example.

IPC Classes  ?

  • F04B 43/00 - Machines, pumps, or pumping installations having flexible working members
  • F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups
  • F04B 43/04 - Pumps having electric drive

31.

Method and apparatus for cleaning catalyst of a power cell

      
Application Number 14609939
Grant Number 09819037
Status In Force
Filing Date 2015-01-30
First Publication Date 2015-05-21
Grant Date 2017-11-14
Owner Encite LLC (USA)
Inventor
  • Marsh, Stephen A.
  • Hill, Lawrence W.

Abstract

A method of cleaning power cells in an array of power cells, comprising coupling at least one first power cell to second power cells in an array of power cells and causing the second power cells to drive the at least one first power cell with a voltage to clean catalyst on the at least one first power cell.

IPC Classes  ?

  • H01M 8/06 - Combination of fuel cells with means for production of reactants or for treatment of residues
  • H01M 8/0662 - Treatment of gaseous reactants or gaseous residues, e.g. cleaning
  • B82Y 30/00 - Nanotechnology for materials or surface science, e.g. nanocomposites
  • H01M 8/0289 - Means for holding the electrolyte
  • H01M 8/0432 - TemperatureAmbient temperature
  • H01M 8/0438 - PressureAmbient pressureFlow
  • H01M 8/04537 - Electric variables
  • H01M 8/04746 - PressureFlow
  • H01M 8/04858 - Electric variables
  • H01M 8/04828 - HumidityWater content
  • H01M 8/1004 - Fuel cells with solid electrolytes characterised by membrane-electrode assemblies [MEA]
  • H01M 8/1097 - Fuel cells applied on a support, e.g. miniature fuel cells deposited on silica supports
  • H01M 8/241 - Grouping of fuel cells, e.g. stacking of fuel cells with solid or matrix-supported electrolytes
  • H01M 8/1286 - Fuel cells applied on a support, e.g. miniature fuel cells deposited on silica supports
  • H01M 8/24 - Grouping of fuel cells, e.g. stacking of fuel cells
  • H01M 8/249 - Grouping of fuel cells, e.g. stacking of fuel cells comprising two or more groupings of fuel cells, e.g. modular assemblies
  • H01M 8/1018 - Polymeric electrolyte materials

32.

Self-regulating gas generator and method

      
Application Number 13465798
Grant Number 09522371
Status In Force
Filing Date 2012-05-07
First Publication Date 2013-11-07
Grant Date 2016-12-20
Owner Encite LLC (USA)
Inventor
  • Marsh, Stephen A.
  • Parker, Donald M.
  • Pintauro, Peter N.

Abstract

A self-regulating gas generator that, in response to gas demand, supplies and automatically adjusts the amount of gas (e.g., hydrogen or oxygen) catalytically generated in a chemical supply chamber from an appropriate chemical supply, such as a chemical solution, gas dissolved in liquid, or mixture. In some embodiments, the gas generator may employ a piston, rotating rod, or other element(s) to expose the chemical supply to the catalyst in controlled amounts. In another embodiment, the self-regulating gas generator uses bang-bang control, with the element(s) exposing a catalyst, contained within the chemical supply chamber, to the chemical supply in ON and OFF states according to a self-adjusting duty cycle, thereby generating and outputting the gas in an orientation-independent manner. The gas generator may be used to provide gas for various gas consuming devices, such as a fuel cell, torch, or oxygen respiratory devices.

IPC Classes  ?

  • B01J 7/00 - Apparatus for generating gases
  • C01B 3/36 - Production of hydrogen or of gaseous mixtures containing hydrogen by reaction of gaseous or liquid organic compounds with gasifying agents, e.g. water, carbon dioxide, air by reaction of hydrocarbons with gasifying agents using oxygen or mixtures containing oxygen as gasifying agents
  • C01B 3/06 - Production of hydrogen or of gaseous mixtures containing hydrogen by reaction of inorganic compounds containing electro-positively bound hydrogen, e.g. water, acids, bases, ammonia, with inorganic reducing agents
  • C01B 13/02 - Preparation of oxygen

33.

SELF-REGULATING GAS GENERATOR AND METHOD

      
Application Number US2013039521
Publication Number 2013/166424
Status In Force
Filing Date 2013-05-03
Publication Date 2013-11-07
Owner ENCITE LLC (USA)
Inventor
  • Marsh, Stephen, A.
  • Parker, Donald, M.
  • Pintauro, Peter, N.

Abstract

A self-regulating gas generator that, in response to gas demand, supplies and automatically adjusts the amount of gas (e.g., hydrogen or oxygen) catalytically generated in a chemical supply chamber from an appropriate chemical supply, such as a chemical solution, gas dissolved in liquid, or mixture. In some embodiments, the gas generator may employ a piston, rotating rod, or other element(s) to expose the chemical supply to the catalyst in controlled amounts. In another embodiment, the self-regulating gas generator uses bang-bang control, with the element(s) exposing a catalyst, contained within the chemical supply chamber, to the chemical supply in ON and OFF states according to a self-adjusting duty cycle, thereby generating and outputting the gas in an orientation-independent manner. The gas generator may be used to provide gas for various gas consuming devices, such as a fuel cell, torch, or oxygen respiratory devices.

IPC Classes  ?

  • B01J 19/18 - Stationary reactors having moving elements inside
  • B01J 23/40 - Catalysts comprising metals or metal oxides or hydroxides, not provided for in group of noble metals of the platinum group metals
  • B01J 7/02 - Apparatus for generating gases by wet methods
  • C01B 3/06 - Production of hydrogen or of gaseous mixtures containing hydrogen by reaction of inorganic compounds containing electro-positively bound hydrogen, e.g. water, acids, bases, ammonia, with inorganic reducing agents
  • F17C 11/00 - Use of gas-solvents or gas-sorbents in vessels
  • H01M 8/06 - Combination of fuel cells with means for production of reactants or for treatment of residues
  • H01M 8/04 - Auxiliary arrangements, e.g. for control of pressure or for circulation of fluids

34.

High pressure gas system

      
Application Number 13623689
Grant Number 09464356
Status In Force
Filing Date 2012-09-20
First Publication Date 2013-05-09
Grant Date 2016-10-11
Owner Encite LLC (USA)
Inventor
  • Marsh, Stephen Alan
  • Parker, Donald Merrill

Abstract

Among other things, a device for use in electrolyzing water is described. The device comprises an electrolysis unit that includes a chamber, an ion exchange structure in the chamber, a cathode, an anode, a high pressure chamber, and a reservoir. The chamber is separated by the ion exchange structure into a first compartment and a second compartment. The cathode is in the first compartment and the anode in the second compartment. The reservoir is disposed in the high pressure chamber for storing water to be supplied to the chamber of the electrolysis unit. In some implementations, the ion exchange structure is a proton exchange membrane.

IPC Classes  ?

  • C25B 1/12 - Electrolytic production of inorganic compounds or non-metals of hydrogen or oxygen by electrolysis of water in pressure cells
  • C02F 1/461 - Treatment of water, waste water, or sewage by electrochemical methods by electrolysis
  • C25B 1/10 - Electrolytic production of inorganic compounds or non-metals of hydrogen or oxygen by electrolysis of water in diaphragm cells
  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water
  • C25B 9/18 - Assemblies comprising a plurality of cells

35.

HIGH PRESSURE GAS SYSTEM

      
Application Number US2012056504
Publication Number 2013/043982
Status In Force
Filing Date 2012-09-21
Publication Date 2013-03-28
Owner ENCITE LLC (USA)
Inventor
  • Marsh, Stephen Alan
  • Parker, Donald Merrill

Abstract

Among other things, a device for use in electrolyzing water is described. The device comprises an electrolysis unit that includes a chamber, an ion exchange structure in the chamber, a cathode, an anode, a high pressure chamber, and a reservoir. The chamber is separated by the ion exchange structure into a first compartment and a second compartment. The cathode is in the first compartment and the anode in the second compartment. The reservoir is disposed in the high pressure chamber for storing water to be supplied to the chamber of the electrolysis unit. In some implementations, the ion exchange structure is a proton exchange membrane.

IPC Classes  ?

  • C02F 1/461 - Treatment of water, waste water, or sewage by electrochemical methods by electrolysis

36.

GAS STORAGE SYSTEM

      
Application Number US2009069473
Publication Number 2010/075552
Status In Force
Filing Date 2009-12-23
Publication Date 2010-07-01
Owner ENCITE LLC (USA)
Inventor
  • Marsh, Stephen A.
  • Parker, Donald M.
  • Grande, William J.

Abstract

Among other things, a gas storage system includes a group of capsules and an activation element coupled to the group. The group of capsules are formed within a substrate and contain gas stored at a relatively high pressure compared to atmospheric pressure. The activation element is configured to deliver energy in an amount sufficient to cause at least one of the capsules to release stored gas.

IPC Classes  ?

  • H01M 8/06 - Combination of fuel cells with means for production of reactants or for treatment of residues

37.

Gas storage system

      
Application Number 12645263
Grant Number 08563192
Status In Force
Filing Date 2009-12-22
First Publication Date 2010-06-24
Grant Date 2013-10-22
Owner Encite LLC (USA)
Inventor
  • Marsh, Stephen A.
  • Parker, Donald M.
  • Grande, William J.

Abstract

Among other things, a gas storage system includes a group of capsules and an activation element coupled to the group. The group of capsules are formed within a substrate and contain gas stored at a relatively high pressure compared to atmospheric pressure. The activation element is configured to deliver energy in an amount sufficient to cause at least one of the capsules to release stored gas.

IPC Classes  ?

  • H01M 8/24 - Grouping of fuel cells, e.g. stacking of fuel cells
  • H01M 8/04 - Auxiliary arrangements, e.g. for control of pressure or for circulation of fluids