CPAP device
11207479 · 2021-12-28
Assignee
Inventors
- Yuki Nakada (Sano, JP)
- Takatoshi Inoguchi (Sano, JP)
- Yasuhiro Tobinai (Sano, JP)
- Hiroki Matsushita (Sano, JP)
Cpc classification
A61M2205/8262
HUMAN NECESSITIES
A61M16/0069
HUMAN NECESSITIES
A61M16/024
HUMAN NECESSITIES
International classification
A61M16/00
HUMAN NECESSITIES
A61B5/00
HUMAN NECESSITIES
Abstract
A fan unit produces an airflow. A pressure difference generating member causes a pressure difference in the airflow. A sensor detects a pressure difference between the air pressure on the upstream side of the pressure difference generating member and the air pressure on the downstream side thereof. A straightening plate is provided between the fan unit and the pressure difference generating member, and straightens the airflow produced by the fan unit. A straightening plate comprises a first fin and a second fin which are arranged along the airflow, and a lattice-like third fin which is arranged on the downstream side of the first fin and the second fin, and through which the airflow through the first fin and the second fin passes.
Claims
1. A CPAP device comprising: a centrifugal fan configured to produce an airflow; a motor with a rotating shaft, the rotating shaft being coupled to the fan and configured to drive the fan; a pressure difference generating member configured to pass the airflow through and cause a pressure difference in the airflow; a sensor configured to detect a pressure difference between the air pressure on the upstream side of the pressure difference generating member and the air pressure on the downstream side of the pressure difference generating member; and a straightening plate provided between the centrifugal fan and the pressure difference generating member and configured to straighten the airflow produced by the centrifugal fan, wherein the straightening plate includes: at least one fin positioned in the upstream of the airflow, and arranged in a direction perpendicular to the rotating shaft of the motor, and a lattice-like fin which is arranged on the downstream side of the at least one fin, and through which the airflow passing through the at least one fin passes.
2. The CPAP device of claim 1, wherein a number of the at least one fin is more than two.
3. The CPAP device of claim 1, wherein the centrifugal fan is arranged in a fan unit including a blowout opening, the blowout opening is arranged on upstream side of the straightening plate and arranged in obliquely in a plane perpendicular to the rotating shaft of the motor.
4. The CPAP device of claim 3, wherein the straightening plate flows the airflow in obliquely from the blowout opening to the at least one fin and to the pressure difference generating member in perpendicular.
Description
DRAWINGS
(1) In order that the disclosure may be well understood, there will now be described various forms thereof, given by way of example, reference being made to the accompanying drawings, in which:
(2)
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(11)
(12) The drawings described herein are for illustration purposes only and are not intended to limit the scope of the present disclosure in any way.
DETAILED DESCRIPTION
(13) The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, or uses. It should be understood that throughout the drawings, corresponding reference numerals indicate like or corresponding parts and features.
(14) An embodiment of the present invention will be described below with reference to the accompanying drawings. Elements like or similar to those disclosed in the embodiment are denoted by similar reference numbers.
(15) In
(16)
(17) One ends of a first tube 19, second tube 20, and third tube 21 are provided in the discharge unit 15 and joint 18. The other ends of the first tube 19 and second tube 20 are connected to a differential pressure sensor 24 configured to detect a pressure difference through connectors 22 and 23. The first tube 19 is a tube configured to guide the pressure (high pressure) on the upstream side of the pressure difference generating member to be described later to the differential pressure sensor 24, and second tube 20 is a tube configured to guide the pressure (low pressure) on the downstream side of the pressure difference generating member to the differential pressure sensor 24.
(18) The other end of the third tube 21 is connected to a pressure sensor 26 to detect pressure through a connector 25. The third tube is a tube configured to guide the pressure (low pressure) on the downstream side of the pressure difference generating member to be described later to the pressure sensor 26. To the pressure sensor 26, furthermore, one end of a fourth tube 27 is connected. At the other end of the fourth tube 27, a connection opening 28 is provided. The connection opening 28 is arranged at the bottom part of the second case 12, and is opened to the atmosphere. That is, the fourth tube 27 and connection opening 28 open the inside of the pressure sensor 26 to the atmosphere.
(19) The fan unit 17, differential pressure sensor 24, and pressure sensor 26 are arranged on a printed board 29. To the printed board 29, furthermore, the various cables 16 for the electric power source and interface, power switch 30, controller to be described later, and the like are connected.
(20)
(21) The differential pressure sensor 24, pressure sensor 26, fan unit 17, and power switch 30 are connected to a controller 40. The controller 40 calculates a flow rate of an airflow produced from the fan unit 17 on the basis of a pressure difference detected by the differential pressure sensor 24. Furthermore, the controller 40 controls the rotational speed of the fan unit 17 on the basis of the calculated flow rate of the airflow and pressure of the airflow detected by the pressure sensor 26, and makes the fan unit 17 discharge an airflow of a flow rate and pressure which are set in advance from the air outlet 14.
(22)
(23) The blowout opening 17b of the fan unit 17 is provided with the joint 18, and the joint 18 is provided with the discharge unit 15. The blowout opening 17b of the fan unit 17, joint 18, and discharge unit 15 constitute the flow path PT through which the airflow produced from the fan unit 17 is made to flow.
(24) Inside the joint 18, the straightening plate 31 and pressure difference generating member 32 are provided. The straightening plate 31 straightens the airflow inside the flow path PT. The pressure difference generating member 32 causes a pressure difference in the airflow inside the flow path PT. The pressure difference generating member 32 is arranged on the discharge unit 15 side of the joint 18, and the straightening plate 31 is arranged on the fan unit 17 side of the joint 18. That is, the straightening plate 31 is arranged between the pressure difference generating member 32 and fan unit 17, and straightens the airflow on the upstream side of the pressure difference generating member 32.
(25)
(26) The straightening plate 31 is arranged inside the flow path PT in such a manner that the first fin 31b and second fin 31c are positioned on the upstream side of the flow path PT, and third fin 31d is positioned on the downstream side of the flow path as shown in
(27) As will be described later, it is desirable that the first fin 31b and second fin 31c be arranged in a direction perpendicular to the rotating shaft of the fan unit 17. By arranging the first fin 31b and second fin 31c in this manner, it is possible to efficiently reduce eddies included in the airflow produced by the thin-type fan unit 17, and downsize the CPAP device 10.
(28)
(29) The second connection section 32e and third connection section 32f respectively communicate with opening sections 32h and 32g provided in the flange 32c. That is, the second connection section 32e and third connection section 32f communicate with the surface of the flange 32c opposite to the surface thereof on the straightening plate 31 side respectively through the opening sections 32h and 32g. Accordingly, when the second tube 20 is connected to the second connection section 32e, and the third tube 21 is connected to the third connection section 32f, the pressure inside the second tube 20 and third tube 21 becomes equal to the pressure on the air outlet 14 side of the pressure difference generating member 32.
(30) On the other hand, as shown in
(31)
(32) Further, the third tube 21 connected to the third connection section 32f guides the pressure on the air outlet 14 side of the pressure difference generating member 32 to the pressure sensor 26. Accordingly, the pressure sensor 26 can detect the pressure on the downstream side of the pressure difference generating member 32.
(33)
(34) In the case of the example shown in
(35) In the case of the example shown in
(36) When the first fin 31b and second fin 31c of the straightening plate 31 are arranged in the direction perpendicular to the rotating shaft 17d of the motor 17c of the fan unit 17 as shown in
(37) When the first fin 31b and second fin 31c of the straightening plate 31 are arranged in the direction (perpendicular to the rotational direction D of the motor 17c) parallel to the rotating shaft 17d of the motor 17c of the fan unit 17 as shown in
(38) As shown in
(39) It should be noted that when the straightening plate 31 is not used as shown in
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(41) As is evident from the characteristics of the square root of the pressure difference indicated by the solid line, when the installation posture of the straightening plate 31 corresponds to an angle 90° (characteristics of the circular marks), slight variations in the pressure difference occur in the region in which the set flow rate is less than or equal to 20 L/min as compared with the case where the installation posture corresponds to an angle 0° (characteristics of the triangular marks). Particularly, it can be seen that at the point at which the set flow rate is 0 L/min, when the installation posture of the straightening plate 31 is 90°, a pressure difference occurs. Accordingly, it is desirable that the installation posture of the straightening plate 31 be 0°.
(42) (Advantage)
(43) According to the embodiment described above, the straightening plate 31 is provided between the fan unit 17 and pressure difference generating member 32, whereby the eddies included in the airflow on the upstream side of the pressure difference generating member 32 are reduced. Accordingly, it is possible to further reduce the eddies included in the airflow on the downstream side of the pressure difference generating member 32. Therefore, the eddies included in the airflow on the upstream side of the pressure difference generating member 32 and eddies included in the airflow on the downstream side of the pressure difference generating member are reduced, and hence it is possible to accurately detect the pressure difference by using the pressure difference generating member 32. Accordingly, it is possible to measure the accurate flow rate of the airflow produced from the fan unit 17.
(44) Furthermore, by providing the straightening plate 31 between the fan unit 17 and pressure difference generating member 32, it is possible to arrange the straightening plate 31 in the vicinity of the fan unit 17. Accordingly, it is possible to prevent the size of the CPAP device 10 from becoming larger, and improve the detection accuracy of the pressure difference.
(45) It should be noted that the frame body 31a of the straightening plate 31 is provided with two fins including the first fin 31b and second fin 31c. However, the number of fins is not limited to two, and the number of fins may be one or three or more.
(46) Further, the fan unit 17 is not limited to the centrifugal fan configured to send air in the direction perpendicular to the inlet direction, and an axial flow fan configured to send air in the direction parallel to the inlet direction can also be applied. When the axial flow fan is used, the direction of the rotating shaft of the fan is identical to the direction of the airflow, and hence the installation posture of the straightening plate 31 may be any one of 0° and 90° relative to the rotating shaft of the fan. That is, it is sufficient if the first fin 31b and second fin 31c of the straightening plate 31 are parallel to the rotating shaft of the fan, and are parallel to the direction of the rotating shaft. In this case too, it is possible to reduce the eddies included in the airflow on the upstream side of the pressure difference generating member 32 by means of the straightening plate 31.
(47) The invention is not limited to the foregoing embodiment but in the implementation stage various changes and modifications of its components may be made without departing from the scope of the present invention. Also, the components disclosed in the embodiment may be assembled in any combination for embodying the present invention. For example, some of the components may be omitted from all the components disclosed in the embodiment. Further, components in different embodiments may be appropriately combined.
(48) The CPAP device according to the embodiment of the present invention can be applied to medical treatment for a sleep apnea syndrome.
(49) Unless otherwise expressly indicated herein, all numerical values indicating mechanical/thermal properties, compositional percentages, dimensions and/or tolerances, or other characteristics are to be understood as modified by the word “about” or “approximately” in describing the scope of the present disclosure. This modification is desired for various reasons including industrial practice, manufacturing technology, and testing capability.
(50) As used herein, the phrase at least one of A, B, and C should be construed to mean a logical (A OR B OR C), using a non-exclusive logical OR, and should not be construed to mean “at least one of A, at least one of B, and at least one of C.”
(51) The description of the disclosure is merely exemplary in nature and, thus, variations that do not depart from the substance of the disclosure are intended to be within the scope of the disclosure. Such variations are not to be regarded as a departure from the spirit and scope of the disclosure.