Breathable gas supply apparatus

US10850053B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10850053-B2
Application numberUS-202016893663-A
CountryUS
Kind codeB2
Filing dateJun 5, 2020
Priority dateJun 20, 2003
Publication dateDec 1, 2020
Grant dateDec 1, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A CPAP device for delivering pressurized, humidified breathable gas for a patient includes a flow generator configured to pressurize a flow of breathable gas. The flow generator includes an air outlet and a removable water container configured to humidify the pressurized breathable gas received from the flow generator. The water container includes an air inlet and an air outlet. The CPAP device further includes a first elastomeric face seal configured to sealingly abut against a substantially flat portion of the water container surrounding the water container air inlet, the first elastomeric face seal being located at an intermediate position between the flow generator air outlet and the water container air inlet when the water container is placed into position to pneumatically communicate with the flow generator. In addition, the CPAP device includes a second elastomeric face seal, a portion of which is configured to sealingly abut against a substantially flat external surface portion of the water container surrounding the water container air outlet.

First claim

Opening claim text (preview).

The invention claimed is: 1. A breathable gas supply apparatus for treating Obstructive Sleep Apnea (OSA) with Continuous Positive Airway Pressure (CPAP) therapy by delivering a flow of air pressurized in a range from 4 cm H 2 O to 28 cm H 2 O to a patient's airways via a conduit and a mask, the breathable gas supply apparatus comprising: a flow generator further comprising: a connector nozzle protruding from a flow generator engagement face, the flow generator engagement face including a pair of slots; a top case and a bottom case together forming a chassis-receiving cavity, the top case and the bottom case each being formed from a rigid, plastic material; a chassis positioned in the chassis-receiving cavity, the chassis including a base and side walls that form a fan cavity; and a fan positioned in the fan cavity to generate the flow of air, the fan including a cover and a base that form a fan housing, the fan housing including a fan inlet and a fan outlet, and the fan including a motor and an impeller positioned in the fan housing; and a humidifier comprising: a humidifier engagement face including: an air port configured to mate with the connector nozzle to receive the flow of air; and a pair of tongues, each of the tongues configured to engage a corresponding one of the slots to connect the humidifier to the flow generator; a water tub configured to hold water for vaporization into the flow of air, the water tub including a tub base and a tub lid; a base unit configured to hold the water tub and attach to and detach from the flow generator engagement face; a heater plate configured to contact and heat the tub base to heat water in the water tub; and a humidifier lid hingedly connected to the base unit to secure the water tub to the base unit in a closed position, the humidifier lid having a humidifier lid seal configured to seal against the tub lid when the water tub is secured to the base unit and the humidifier lid is in the closed position, and the humidifier lid including a humidified air outlet pipe configured to be connected to the conduit to direct the flow of air to the mask during use. 2. The breathable gas supply apparatus of claim 1 , wherein the chassis includes an opening into the fan cavity to enable insertion of the fan into the fan cavity in a downward direction through the opening, wherein a lid covers the opening to enclose the fan inside of the chassis, and wherein the lid includes an elastomer portion to provide acoustic damping and seal the opening of the chassis. 3. The breathable gas supply apparatus of claim 1 , wherein a lower edge of the top case is stepped and flanged to mate with a corresponding portion of the bottom case. 4. The breathable gas supply apparatus of claim 1 , wherein the top case forms an air inlet, wherein a replaceable filter is positioned over the air inlet and a filter cover covers the replaceable filter, wherein an inlet wedge is configured to guide airflow into the air inlet, wherein the air inlet is configured to direct air to an air inlet passage formed in the chassis, and wherein the air inlet passage is configured to direct air to a first muffler cavity that surrounds the fan cavity of the chassis. 5. The breathable gas supply apparatus of claim 1 , wherein the fan is suspended within the fan cavity by feet that connect the fan housing to the chassis such that the fan floats within the fan cavity to minimize acoustic coupling to the remainder of the flow generator. 6. The breathable gas supply apparatus of claim 1 , further comprising a coupling member configured to direct the flow of air from the fan outlet to the connector nozzle, wherein the coupling member is constructed from a thermoplastic elastomer to minimize transmission of vibration from the fan to the remainder of the flow generator. 7. The breathable gas supply apparatus of claim 1 , wherein the humidifier engagement face includes a peripheral flange configured to seat in a corresponding peripheral recess on the flow generator engagement face when the flow generator and the humidifier are joined by linear movement towards each other. 8. The breathable gas supply apparatus of claim 1 , further comprising a latch connected to the pair of tongues and a spring, the latch being biased by the spring and configured to move vertically such that when the pair of tongues engage the pair of slots, the pair of tongues snap to join and hold the flow generator and the humidifier together. 9. The breathable gas supply apparatus of claim 1 , further comprising a printed circuit board that includes electronic control components supported on top of the chassis between the chassis and the top case, wherein the flow generator further comprises a display screen and keys configured to receive user input, the display screen and the keys being configured to communicate with the electronic control components, wherein the printed circuit board is in electrical communication with a power inlet connector configured to receive mains power, a fan power outlet connector electrically connected to the motor to power the motor, and a humidifier power outlet configured to be electrically connected to and power the heater plate, wherein the humidifier engagement face includes a male connector configured to engage a female connector positioned on the flow generator engagement face to provide power to the heater plate from the printed circuit board, wherein the male connector is in electrical communication with the heater plate and the female connector is in electrical communication with the printed circuit board, wherein the flow generator includes an aperture in the top case and a data connector accessible through the aperture, the data connector being in electrical communication with the printed circuit board, and wherein a cover is configured to be positioned over the aperture when the data connector is not in use. 10. The breathable gas supply apparatus of claim 1 , wherein the tub base has a shape that is complementary to the heater plate, and wherein the tub base comprises a metal portion configured to conduct heat from the heater plate to heat water in the water tub during use. 11. The breathable gas supply apparatus of claim 1 , wherein the humidifier is configured such that when the water tub is placed in the base unit and the humidifier lid is closed, the tub base is urged against the heater plate to allow heat transfer to water in the water tub during use. 12. The breathable gas supply apparatus of claim 1 , wherein a rear surface of the water tub includes an air inlet aperture, wherein the base unit includes a peripheral seal, and wherein the humidifier is configured such that when the humidifier lid is closed, the water tub is pressed rearwards so that the peripheral seal abuts the rear surface of the water tub and the peripheral seal surrounds the air inlet aperture to seal a path for the flow of air traveling to the water tub through the base unit from the flow generator and into a headspace of the water tub. 13. The breathable gas supply apparatus of claim 1 , wherein the humidifier lid seal further comprises a curved sealing flange configured to seal against a top surface of the tub lid such that pressure due to the flow of air through the humidifier urges the curved sealing flange against the top surface of the tub lid during use. 14. The breathable gas supply apparatus of claim 1 , wherein the humidifier lid seal is constructed from a resilient material to urge the water tub against the heater plate when the humidifier lid is in the closed position such that the tub base and the heater plate remain

Assignees

Inventors

Classifications

  • Special features of memory means, e.g. removable memory cards · CPC title

  • Instruments for auscultation · CPC title

  • for measuring blood gases · CPC title

  • by using sensing means generating electric signals, {i.e. ECG signals} · CPC title

  • Apparatus with built-in sensors · CPC title

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What does patent US10850053B2 cover?
A CPAP device for delivering pressurized, humidified breathable gas for a patient includes a flow generator configured to pressurize a flow of breathable gas. The flow generator includes an air outlet and a removable water container configured to humidify the pressurized breathable gas received from the flow generator. The water container includes an air inlet and an air outlet. The CPAP device…
Who is the assignee on this patent?
ResMed Pty Ltd
What technology area does this patent fall under?
Primary CPC classification A61M16/0066. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Dec 01 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).