Oxygen booth having sliding unit
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- CERAGEM CO LTD
- Filing Date
- 2026-01-15
- Publication Date
- 2026-07-30
Smart Images

Figure KR2026000938_30072026_PF_FP_ABST
Abstract
Description
Oxygen booth equipped with a sliding section
[0001] The present invention relates to an oxygen booth equipped with a sliding part, and more specifically, to an oxygen booth equipped with a sliding part capable of sliding relative to a housing to expand or contract the internal space of the housing and an oxygen supply part to supply oxygen to the internal space of the housing.
[0002] Recently, there has been an increasing demand for enclosed booths that provide private spaces. Enclosed booths are equipped with a sealed interior, allowing users to relax or perform personal activities within the space.
[0003] Among enclosed booths, an oxygen booth functions to supply oxygen to the interior space. Oxygen is a gas necessary for respiration; it can break down various fatigue-causing substances, facilitate metabolism, and improve muscle and cardiopulmonary functions.
[0004] Supplying the human body with high concentrations of oxygen can enhance natural healing abilities and aid in the treatment and prevention of diseases, as well as the treatment of emergency patients. Accordingly, hospitals use oxygen capsules or oxygen booths that supply high concentrations of oxygen for therapeutic purposes.
[0005] Recently, the use of oxygen booths has been increasing not only in hospitals but also for personal use. Oxygen booths, which supply high concentrations of oxygen, can help users recover from fatigue. The high concentration of oxygen supplied by the booth can break down various fatigue-causing substances, and can improve metabolic function, muscle function, and cardiopulmonary function.
[0006] However, conventional oxygen booths have the following problems. It is desirable to maintain an oxygen concentration inside the oxygen booth that is suitable for the user. Since an oxygen concentration that is too high can have adverse effects on the user, it is necessary to maintain the oxygen concentration inside the booth at an appropriate level.
[0007] However, conventional oxygen booths lack a separate device for maintaining an appropriate oxygen concentration and regulate the oxygen concentration inside the booth by controlling the operation of the oxygen supply device. When regulating the oxygen concentration inside the booth through the oxygen supply device, there is a problem in that it is difficult to easily control the oxygen concentration inside the booth.
[0008] The present invention is intended to solve the aforementioned problems, and more specifically, relates to an oxygen booth equipped with a sliding part capable of sliding relative to a housing to expand or contract the internal space of the housing, and an oxygen supply part to supply oxygen to the internal space of the housing.
[0009] An oxygen booth equipped with a sliding part according to one embodiment is an oxygen booth for supplying oxygen, and may include: a housing having an internal space; a sliding part capable of sliding relative to the housing and expanding or contracting the internal space of the housing; an oxygen supply part for supplying oxygen to the internal space of the housing; an oxygen measuring part for measuring the oxygen concentration of the internal space of the housing; and a second control part for controlling the operation of the oxygen supply part so that a designated first oxygen concentration is formed in the internal space of the housing.
[0010] An oxygen booth equipped with a sliding part according to one embodiment may include a first control unit that controls the operation of the sliding part.
[0011] The first control unit of the oxygen booth equipped with a sliding part according to one embodiment can adjust the oxygen concentration of the internal space of the housing by expanding or contracting the internal space of the housing according to the oxygen concentration measured by the oxygen measuring unit.
[0012] According to one embodiment, the first control unit of the oxygen booth equipped with a sliding unit can move the sliding unit to reduce the internal space of the housing when the oxygen concentration measured by the oxygen measuring unit is lower than the specified oxygen concentration, and the first control unit can move the sliding unit to expand the internal space of the housing when the oxygen concentration measured by the oxygen measuring unit is higher than the specified oxygen concentration.
[0013] The second control unit of the oxygen booth equipped with a sliding part according to one embodiment can calculate the oxygen supply amount and oxygen supply time according to the position of the sliding part relative to the housing.
[0014] The second control unit of the oxygen booth equipped with a sliding part according to one embodiment controls the operation of the oxygen supply unit so that a designated first oxygen concentration is formed at a designated first time, and the first control unit can move the sliding part to reduce the internal space of the housing if the time to reach the designated first oxygen concentration is longer than the designated first time.
[0015] An oxygen booth equipped with a sliding part according to one embodiment includes a monitoring unit for measuring the condition of a user placed in the internal space of the housing, and the second control unit can calculate a designated first oxygen concentration according to the condition of the user measured through the monitoring unit.
[0016] An oxygen booth equipped with a sliding part according to one embodiment may include a residence time calculation unit that calculates a second time during which a user placed in the interior space of the housing stays in the interior space of the housing.
[0017] The residence time calculation unit of the oxygen booth equipped with a sliding part according to one embodiment can adjust the second time according to the oxygen concentration before supplying oxygen to the internal space of the housing through the oxygen supply unit.
[0018] An oxygen booth equipped with a sliding part according to one embodiment includes a monitoring unit that measures the condition of a user placed in the internal space of the housing, and the residence time calculation unit can adjust the second time according to the condition of the user measured through the monitoring unit.
[0019] An oxygen booth equipped with a sliding part according to one embodiment includes an input unit for inputting the user's condition and the user's purpose of use, and the residence time calculation unit can adjust the second time according to the signal from the input unit.
[0020] An oxygen booth equipped with a sliding part according to one embodiment includes a notification unit that generates a notification signal to a user based on the oxygen concentration measured by the oxygen measuring unit, and an input unit capable of inputting a signal to control the operation of the oxygen supply unit, wherein the notification unit can generate a notification signal when the oxygen concentration measured by the oxygen measuring unit is greater than or equal to a designated second oxygen concentration.
[0021] The first control unit of the oxygen booth equipped with a sliding unit according to one embodiment can expand the internal space of the housing by moving the sliding unit when no signal is generated from the input unit for a designated third time after the notification unit generates a notification signal.
[0022] An oxygen booth equipped with a sliding part according to one embodiment includes an input part for inputting the user's condition and the user's purpose of use, and the second control part can control the operation of the oxygen supply part according to the signal from the input part.
[0023] The present invention relates to an oxygen booth equipped with a sliding part, and has the advantage of being able to control the oxygen concentration in the internal space of the housing by expanding or contracting the internal space of the housing through a first control part and a sliding part according to the oxygen concentration measured by an oxygen measuring part.
[0024] In addition, the present invention has the advantage that when the time to reach a designated first oxygen concentration is formed to be longer than a designated first time, the internal space of the housing is reduced through the first control unit and the sliding unit, thereby enabling the first oxygen concentration to be reached at the designated first time.
[0025] In addition, the present invention has the advantage of being able to calculate an appropriate second time for the user to stay inside the housing by considering the user's condition, the position of the sliding part, and the oxygen concentration before supplying oxygen to the internal space of the housing through the stay time calculation unit.
[0026] In addition, the present invention has the advantage of being able to reduce the oxygen concentration by expanding the internal space of the housing through the first control unit and the sliding unit when the oxygen concentration inside the housing becomes higher than a designated second oxygen concentration.
[0027] FIG. 1 is a drawing showing a housing and a sliding part according to an embodiment of the present invention.
[0028] FIG. 2 is a drawing showing that a housing according to an embodiment of the present invention is equipped with a first control unit, an oxygen supply unit, an oxygen measuring unit, and an input unit.
[0029] FIG. 3 is a diagram showing the calculation of oxygen supply amount and oxygen supply time through a second control unit, taking into account the position of the sliding part for the housing according to an embodiment of the present invention.
[0030] FIG. 4 is a drawing showing that when the time to reach a specified first oxygen concentration according to an embodiment of the present invention is formed to be longer than a specified first time, the sliding part is moved through the first control part to reduce the internal space of the housing.
[0031] FIG. 5 is a diagram showing the calculation of a second time through a residence time calculation unit, taking into account the state of the user, the position of the sliding part, and the oxygen concentration before supplying oxygen to the internal space of the housing, according to an embodiment of the present invention.
[0032] FIG. 6 is a drawing showing that when no signal is generated from the input unit for a designated third time period after a notification signal is generated from the notification unit according to an embodiment of the present invention, the sliding unit is moved to expand the internal space of the housing.
[0033] This specification clarifies the scope of the present invention and explains the principles of the present invention and discloses embodiments so that those skilled in the art can practice the present invention. The disclosed embodiments may be implemented in various forms.
[0034] Expressions such as "comprising" or "may comprise" that may be used in various embodiments of the present invention indicate the existence of the disclosed corresponding function, operation, or component, and do not limit one or more additional functions, operations, or components. Furthermore, in various embodiments of the present invention, terms such as "comprising" or "having" are intended to specify the existence of the features, numbers, steps, operations, components, parts, or combinations thereof described in the specification, and should be understood as not precluding the existence or addition of one or more other features, numbers, steps, operations, components, parts, or combinations thereof.
[0035] When it is stated that a component is "connected or coupled" to another component, it should be understood that the component may be directly connected or coupled to the other component, but that a new component may also exist between the component and the other component. On the other hand, when it is stated that a component is "directly connected" or "directly coupled" to another component, it should be understood that no new component exists between the component and the other component.
[0036] The terms "first," "second," etc., as used in this specification may be used to describe various components, but the components should not be limited by these terms. The terms are used solely for the purpose of distinguishing one component from another.
[0037] The present invention relates to an oxygen booth equipped with a sliding part, wherein the oxygen booth is equipped with a sliding part capable of sliding relative to a housing to expand or contract the internal space of the housing and an oxygen supply part to supply oxygen to the internal space of the housing. Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the attached drawings.
[0038] An oxygen booth equipped with a sliding part according to an embodiment of the present invention relates to an oxygen booth that supplies oxygen. An oxygen booth equipped with a sliding part according to an embodiment of the present invention includes a housing (110), a sliding part (120), an oxygen supply part (130), an oxygen measuring part (140), and a second control part (150).
[0039] Referring to FIG. 1, the housing (110) is provided with an internal space. The housing (110) may be a frame forming an oxygen booth, and a user may enter the internal space of the housing (110). When a user enters the internal space of the housing (110), oxygen may be supplied to the internal space of the housing (110).
[0040] The housing (110) may be formed in a box shape as shown in FIG. 1, but is not limited thereto. The housing (110) may be formed in various shapes as long as it can supply oxygen to the internal space.
[0041] Referring to FIG. 2, the housing (110) may be provided with a door for entry and exit, and the housing (110) may be provided with various devices for supplying oxygen to the internal space of the housing (110).
[0042] Referring to FIG. 1, the sliding part (120) can slide relative to the housing (110) and can expand or contract the internal space of the housing (110).
[0043] The sliding part (120) is slidably coupled to the housing (110), and as the sliding part (120) slides relative to the housing (110), the internal space of the housing (110) can be expanded or contracted.
[0044] Referring to FIG. 2, the oxygen supply unit (130) supplies oxygen to the internal space of the housing (110). The oxygen supply unit (130) can generate oxygen and supply oxygen to the internal space of the housing (110). As oxygen is supplied to the internal space of the housing (110) through the oxygen supply unit (130), the oxygen concentration in the internal space of the housing (110) can be increased.
[0045] Referring to FIG. 2, the oxygen measuring unit (140) can measure the oxygen concentration in the internal space of the housing (110). Through the oxygen measuring unit (140), the oxygen concentration in the internal space of the housing (110) can be recognized.
[0046] An oxygen booth equipped with a sliding part according to an embodiment of the present invention may further include a first control unit (121). Referring to FIG. 2, the first control unit (121) controls the operation of the sliding part (120). The sliding part (120) can be moved through the first control unit (121), thereby allowing the internal space of the housing (110) to be expanded or reduced.
[0047] According to an embodiment of the present invention, the first control unit (121) can adjust the oxygen concentration in the internal space of the housing (110) by expanding or contracting the internal space of the housing (110) according to the oxygen concentration measured by the oxygen measuring unit (140).
[0048] When oxygen is supplied to the internal space of the housing (110) through the oxygen supply unit (130), it is desirable that the internal space of the housing (110) form an oxygen concentration within a specified range.
[0049] Specifically, when oxygen is supplied to the internal space of the housing (110) through the oxygen supply unit (130), the internal space of the housing (110) may form an oxygen concentration of 30 to 35%. However, the oxygen concentration in the internal space of the housing (110) is not limited to this and may be changed according to the physical condition of the user.
[0050] When oxygen is supplied to the internal space of the housing (110) through the oxygen supply unit (130), it may be difficult to maintain an oxygen concentration within a specified range. Specifically, if oxygen is supplied excessively from the oxygen supply unit (130), the oxygen concentration in the internal space of the housing (110) may exceed the specified range. Additionally, if oxygen is supplied in small amounts from the oxygen supply unit (130), the oxygen concentration in the internal space of the housing (110) may be formed to be below the specified range.
[0051] An oxygen booth equipped with a sliding part according to an embodiment of the present invention can maintain the oxygen concentration in the internal space of the housing (110) within a specified range by moving the sliding part (120) through the first control unit (121) to expand or contract the internal space of the housing (110).
[0052] Specifically, the first control unit (121) can move the sliding unit (120) to reduce the internal space of the housing (110) when the oxygen concentration measured by the oxygen measuring unit (140) is lower than the specified oxygen concentration.
[0053] When the sliding part (120) is moved through the first control unit (121) to reduce the internal space of the housing (110), the oxygen concentration in the internal space of the housing (110) can be increased as the internal space of the housing (110) is reduced, even without additionally supplying oxygen through the oxygen supply unit (130). Through this, the oxygen booth equipped with the sliding part according to the embodiment of the present invention can maintain the oxygen concentration in the internal space of the housing (110) within a specified range.
[0054] Additionally, the first control unit (121) can move the sliding unit (120) to expand the internal space of the housing (110) when the oxygen concentration measured by the oxygen measuring unit (140) is higher than the specified oxygen concentration.
[0055] When the sliding part (120) is moved through the first control unit (121) to expand the internal space of the housing (110), the oxygen concentration in the internal space of the housing (110) can be reduced as the internal space of the housing (110) expands. Through this, the oxygen booth equipped with the sliding part according to the embodiment of the present invention can maintain the oxygen concentration in the internal space of the housing (110) within a specified range.
[0056] An oxygen booth equipped with a sliding part according to an embodiment of the present invention may move the sliding part (120) through the first control unit (121), but is not limited thereto. An oxygen booth equipped with a sliding part according to an embodiment of the present invention may also allow a user to manually move the sliding part (120).
[0057] The second control unit (150) controls the operation of the oxygen supply unit (130) so that a designated first oxygen concentration is formed in the internal space of the housing (110). The second control unit (150) controls the operation of the oxygen supply unit (130) so that an oxygen concentration suitable for the user is formed.
[0058] Referring to FIG. 3, the second control unit (150) can calculate the oxygen supply amount and oxygen supply time according to the position of the sliding unit (120) relative to the housing (110). As described above, the sliding unit (120) may slide relative to the housing (110), and the volume of the internal space of the housing (110) may be changed by the movement of the sliding unit (120).
[0059] Accordingly, the second control unit (150) can calculate an oxygen supply amount and oxygen supply time suitable for the user by considering the position of the sliding part (120) relative to the housing (110).
[0060] Referring to FIG. 4, the second control unit (150) can control the operation of the oxygen supply unit (130) so that a designated first oxygen concentration is formed at a designated first time. At this time, if the time to reach the designated first oxygen concentration is longer than the designated first time, the first control unit (121) can move the sliding unit (120) to reduce the internal space of the housing (110).
[0061] In order for the user to use the oxygen booth appropriately, it is desirable for the second control unit (150) to form a designated first oxygen concentration at a designated first time. However, when controlling the operation of the oxygen supply unit (130) so that the designated first oxygen concentration at a designated first time is formed through the second control unit (150), there may be cases where the designated first oxygen concentration at a designated first time cannot be formed depending on the conditions of the oxygen supply unit (130).
[0062] Specifically, the time to reach a designated first oxygen concentration may be formed to be longer than the designated first time. In such a case, the first control unit (121) according to an embodiment of the present invention may move the sliding unit (120) to reduce the internal space of the housing (110).
[0063] By moving the sliding part (120) through the first control part (121) to reduce the internal space of the housing (110), a first oxygen concentration specified at a first specified time can be formed.
[0064] Referring to FIG. 4, an oxygen booth equipped with a sliding part according to an embodiment of the present invention may include a monitoring unit (160). The monitoring unit (160) measures the condition of a user placed in the internal space of the housing (110). The monitoring unit (160) may include various sensors capable of measuring the condition of the user.
[0065] The second control unit (150) can calculate a designated first oxygen concentration based on the user's condition measured through the monitoring unit (160). Specifically, the second control unit (150) can measure the user's condition, such as mental fatigue, physical fatigue, and the intensity of fatigue, through the monitoring unit (160). After measuring the user's condition through the monitoring unit (160), the second control unit (150) can calculate a first oxygen concentration suitable for the user.
[0066] Additionally, physical information such as the user's height, weight, and volume can be measured through the monitoring unit (160). The amount of oxygen consumed by the user may vary depending on the user's height, weight, volume, etc., and the second control unit (150) can calculate a first oxygen concentration suitable for the user after measuring the user's physical information through the monitoring unit (160).
[0067] Referring to FIG. 4, an oxygen booth equipped with a sliding part according to an embodiment of the present invention may include an input part (190) for inputting the user's condition and the user's purpose of use.
[0068] Referring to FIG. 1, the input unit (190) is operable by the user, and the user can directly input the user's condition. Specifically, the user can directly input the user's condition, such as mental fatigue, physical fatigue, intensity of fatigue, user's condition, stress index, etc., through the input unit (190).
[0069] Additionally, the user may input the purpose of using the oxygen booth according to the embodiment of the present invention through the input unit (190). Specifically, the user may input the purpose of using the oxygen booth according to the embodiment of the present invention through the input unit (190), such as fatigue recovery, stress reduction, condition recovery, mood change, etc.
[0070] According to an embodiment of the present invention, the second control unit (150) can control the operation of the oxygen supply unit (130) according to a signal from the input unit (190). Specifically, the second control unit (150) can calculate a designated first oxygen concentration and a designated first time according to the user's condition and the user's purpose of using the oxygen booth input through the input unit (190). The second control unit (150) can control the operation of the oxygen supply unit (130) to form a designated first oxygen concentration at a designated first time.
[0071] Referring to FIG. 5, an oxygen booth equipped with a sliding part according to an embodiment of the present invention may include a dwell time calculation unit (170) that calculates a second time during which a user placed in the internal space of the housing (110) stays in the internal space of the housing (110).
[0072] The above residence time calculation unit (170) can calculate a suitable second time for the user to stay in the internal space of the housing (110). Specifically, the above residence time calculation unit (170) can calculate a suitable residence time for which the effect of oxygen supply occurs.
[0073] The above-mentioned residence time calculation unit (170) can calculate the residence time (second time) by considering the user's condition, oxygen concentration, etc., and the above-mentioned residence time calculation unit (170) can also calculate the residence time (second time) by considering the user's selection.
[0074] Referring to FIG. 5, the dwell time calculation unit (170) may adjust the second time according to the position of the sliding part (120) relative to the housing (110). The volume of the internal space of the housing (110) changes according to the position of the sliding part (120) relative to the housing (110), and the dwell time calculation unit (170) may adjust the second time by taking this into account.
[0075] Additionally, referring to FIG. 5, the residence time calculation unit (170) can adjust the second time according to the oxygen concentration before supplying oxygen to the internal space of the housing (110) through the oxygen supply unit (130).
[0076] The time a user stays in the internal space of the housing (110) may be changed according to the initial oxygen concentration before oxygen is supplied to the internal space of the housing (110). The residence time calculation unit (170) may adjust the second time by taking this into consideration.
[0077] Additionally, referring to FIG. 5, the dwell time calculation unit (170) can adjust the second time according to the user's condition measured through the monitoring unit (160). The user's mental fatigue, physical fatigue, and intensity of fatigue can be measured through the monitoring unit (160), and the dwell time calculation unit (170) can adjust the second time by taking these into account.
[0078] In addition, physical information such as the user's height, weight, and volume can be measured through the monitoring unit (160). The amount of oxygen consumed by the user may vary depending on the user's height, weight, volume, etc., and the residence time calculation unit (170) can adjust the second time by taking this into account.
[0079] Referring to FIG. 5, an oxygen booth equipped with a sliding part according to an embodiment of the present invention may include an input part (190) for inputting the user's condition and the user's purpose of use.
[0080] The above input unit (190) is operable by the user, and the user can directly input the user's condition. Specifically, the user can directly input the user's condition, such as mental fatigue, physical fatigue, intensity of fatigue, user's condition, stress index, etc., through the above input unit (190).
[0081] Additionally, the user may input the purpose of using the oxygen booth according to the embodiment of the present invention through the input unit (190). Specifically, the user may input the purpose of using the oxygen booth according to the embodiment of the present invention through the input unit (190), such as fatigue recovery, stress reduction, condition recovery, mood change, etc.
[0082] Referring to FIG. 5, the residence time calculation unit (170) can adjust the second time according to the signal of the input unit (190). Specifically, the residence time calculation unit (170) can adjust the second time according to the user's condition and the user's purpose of using the oxygen booth input through the input unit (190).
[0083] Additionally, the residence time calculation unit (170) may adjust the second time by considering the pump provided in the oxygen supply unit (130) or the oxygen supply performance of the oxygen supply unit (130).
[0084] According to an embodiment of the present invention, the residence time calculation unit (170) can calculate the residence time (second time) required by the user by considering the oxygen supply performance of the oxygen supply unit (130), the volume of the internal space of the housing (110) due to the movement of the sliding unit (120), the oxygen concentration before supplying oxygen to the internal space of the housing (110), the user's condition measured through the monitoring unit (160), the user's condition input through the input unit (190), and the user's purpose of using the oxygen booth, and can provide feedback to the user.
[0085] The second time calculated through the residence time calculation unit (170) according to an embodiment of the present invention may be 10 to 20 minutes. However, it is not limited thereto, and the second time calculated through the residence time calculation unit (170) may be changed depending on the oxygen concentration inside the housing (110), the oxygen supply performance of the oxygen supply unit (130), the volume of the internal space of the housing (110) according to the movement of the sliding unit (120), the oxygen concentration before supplying oxygen to the internal space of the housing (110), the condition of the user, etc.
[0086] An oxygen booth equipped with a sliding part according to an embodiment of the present invention may include a notification part (180) that generates a notification signal to the user according to the oxygen concentration measured by the oxygen measuring part (140), and an input part (190) that can input a signal to control the operation of the oxygen supply part (130).
[0087] The above notification unit (180) generates a notification signal when the oxygen concentration measured by the oxygen measuring unit (140) is greater than or equal to a designated second oxygen concentration. If the oxygen concentration in the internal space of the housing (110) is too high, it may have an adverse effect on the user.
[0088] Accordingly, the above notification unit (180) can generate a notification signal that a user can recognize when the oxygen concentration measured by the oxygen measuring unit (140) is greater than or equal to a designated second oxygen concentration. The notification signal may be a signal that a user can recognize, such as light, sound, or vibration, and the notification signal may be of various types as long as the user can recognize it.
[0089] Referring to FIG. 2, the input unit (190) can input a signal to control the operation of the oxygen supply unit (130). The input unit (190) can be operated by a user, and through the input unit (190), the user can set the oxygen concentration, oxygen supply time, etc. required by the user.
[0090] Referring to FIG. 6, the first control unit (121) according to an embodiment of the present invention can expand the internal space of the housing (110) by moving the sliding unit (120) when no signal is generated from the input unit (190) for a specified third time after the notification unit (180) generates a notification signal.
[0091] Referring to FIG. 6, when a notification signal is generated from the notification unit (180), the user can adjust the oxygen concentration through the input unit (190). However, there may be cases where the user cannot directly operate the input unit (190), such as when the user is asleep or when the user has difficulty moving.
[0092] In this case, the first control unit (121) can move the sliding unit (120) to expand the internal space of the housing (110), thereby enabling the oxygen concentration in the internal space of the housing (110) to be lowered.
[0093] Specifically, the first control unit (121) may not move the sliding unit (120) if a signal is generated from the input unit (190) for a specified third time after the notification unit (180) generates a notification signal. However, if the first control unit (121) does not generate a signal from the input unit (190) for a specified third time after the notification unit (180) generates a notification signal, the sliding unit (120) may be moved to expand the internal space of the housing (110).
[0094] According to an embodiment of the present invention, the first control unit (121), the second control unit (150), and the stay time calculation unit (170) may be composed of a single control unit. Additionally, according to an embodiment of the present invention, the first control unit (121), the second control unit (150), and the stay time calculation unit (170) may be separated.
[0095] Additionally, the first control unit (121), the second control unit (150), and the dwell time calculation unit (170) according to an embodiment of the present invention may be provided in the housing (110). Additionally, the first control unit (121), the second control unit (150), and the dwell time calculation unit (170) according to an embodiment of the present invention may be provided in a device separated from the housing (110).
[0096] In addition, the oxygen supply unit (130), the oxygen measuring unit (140), the monitoring unit (160), the notification unit (180), and the input unit (190) according to an embodiment of the present invention may be provided in the housing (110).
[0097] Additionally, the user can input the user's status and the user's purpose of using the oxygen booth through the input unit (190). Additionally, the user can input signals that control the operation of the oxygen supply unit (130), such as the oxygen concentration and oxygen supply time required by the user, through the input unit (190).
[0098] The oxygen booth equipped with a sliding part according to the embodiment of the present invention described above has the following effects.
[0099] An oxygen booth equipped with a sliding part according to an embodiment of the present invention has the advantage of being able to control the oxygen concentration in the internal space of the housing by expanding or contracting the internal space of the housing through the first control part and the sliding part according to the oxygen concentration measured by the oxygen measuring part.
[0100] In addition, the oxygen booth equipped with a sliding part according to an embodiment of the present invention has the advantage of being able to reach a designated first oxygen concentration at a designated first time by reducing the internal space of the housing through the first control part and the sliding part when the time to reach a designated first oxygen concentration is longer than a designated first time.
[0101] In addition, the oxygen booth equipped with a sliding part according to an embodiment of the present invention has the advantage of being able to calculate an appropriate second time for the user to stay inside the housing by considering the user's condition, the position of the sliding part, and the oxygen concentration before supplying oxygen to the internal space of the housing through a residence time calculation unit.
[0102] In addition, the oxygen booth equipped with a sliding part according to an embodiment of the present invention has the advantage of being able to reduce the oxygen concentration by expanding the internal space of the housing through the first control part and the sliding part when the oxygen concentration inside the housing becomes higher than a designated second oxygen concentration.
[0103] As such, the present invention has been described with reference to an embodiment illustrated in the drawings; however, this is merely illustrative, and those skilled in the art will understand that various modifications and variations of the embodiment are possible therefrom. Accordingly, the true scope of technical protection of the present invention should be determined by the technical spirit of the appended claims.
Claims
1. In an oxygen booth supplying oxygen, Housing equipped with an internal space; A sliding part capable of sliding relative to the housing and expanding or contracting the internal space of the housing; An oxygen supply unit that supplies oxygen to the internal space of the above housing; An oxygen measuring unit for measuring the oxygen concentration in the internal space of the above housing; An oxygen booth equipped with a sliding part, characterized by including a second control unit that controls the operation of the oxygen supply unit so that a first oxygen concentration specified in the internal space of the housing is formed.
2. In Paragraph 1, An oxygen booth equipped with a sliding part, characterized by including a first control unit that controls the operation of the above-mentioned sliding part.
3. In Paragraph 2, An oxygen booth equipped with a sliding part, characterized in that the first control unit expands or contracts the internal space of the housing according to the oxygen concentration measured by the oxygen measuring unit.
4. In Paragraph 3, The first control unit moves the sliding unit to reduce the internal space of the housing when the oxygen concentration measured by the oxygen measuring unit is lower than the specified oxygen concentration, and An oxygen booth equipped with a sliding part, characterized in that the first control unit moves the sliding part to expand the internal space of the housing when the oxygen concentration measured by the oxygen measuring unit is higher than the specified oxygen concentration.
5. In Paragraph 1, The above second control unit is, An oxygen booth equipped with a sliding part, characterized by calculating the oxygen supply amount and oxygen supply time according to the position of the sliding part relative to the housing.
6. In Paragraph 2, The second control unit controls the operation of the oxygen supply unit so that a designated first oxygen concentration is formed at a designated first time, and The oxygen booth equipped with a sliding part, characterized in that the first control part moves the sliding part to reduce the internal space of the housing when the time to reach the specified first oxygen concentration is longer than the specified first time.
7. In Paragraph 1, It includes a monitoring unit that measures the state of a user placed in the internal space of the above housing, and An oxygen booth equipped with a sliding part, characterized in that the second control unit calculates a designated first oxygen concentration according to the user's condition measured through the monitoring unit.
8. In Paragraph 1, An oxygen booth equipped with a sliding part, characterized by including a dwell time calculation unit that calculates a second time during which a user placed in the internal space of the housing stays in the internal space of the housing.
9. In Paragraph 8, The above-mentioned residence time calculation unit is, An oxygen booth equipped with a sliding part characterized by adjusting the second time according to the oxygen concentration before supplying oxygen into the internal space of the housing through the oxygen supply part.
10. In Paragraph 8, It includes a monitoring unit that measures the state of a user placed in the internal space of the above housing, and An oxygen booth equipped with a sliding part, characterized in that the above-mentioned residence time calculation unit adjusts the above-mentioned second time according to the user's condition measured through the above-mentioned monitoring unit.
11. In Paragraph 8, It includes an input section for inputting the user's status and the user's purpose of use, and An oxygen booth equipped with a sliding part, characterized in that the above residence time calculation unit adjusts the second time according to the signal of the above input unit.
12. In Paragraph 2, It includes a notification unit that generates a notification signal to the user according to the oxygen concentration measured by the oxygen measuring unit, and an input unit capable of inputting a signal to control the operation of the oxygen supply unit. An oxygen booth equipped with a sliding part, characterized in that the above notification part generates a notification signal when the oxygen concentration measured by the above oxygen measuring part is greater than or equal to a designated second oxygen concentration.
13. In Paragraph 12, The above first control unit is, If no signal is generated from the input unit for a designated third period after the notification unit generates a notification signal, An oxygen booth equipped with a sliding part characterized by expanding the internal space of the housing by moving the sliding part.
14. In Paragraph 1, It includes an input section for inputting the user's status and the user's purpose of use, and An oxygen booth equipped with a sliding part, characterized in that the second control unit controls the operation of the oxygen supply unit according to the signal of the input unit.