WO2019078603A1 - 기능성 수면 베개 - Google Patents
기능성 수면 베개 Download PDFInfo
- Publication number
- WO2019078603A1 WO2019078603A1 PCT/KR2018/012229 KR2018012229W WO2019078603A1 WO 2019078603 A1 WO2019078603 A1 WO 2019078603A1 KR 2018012229 W KR2018012229 W KR 2018012229W WO 2019078603 A1 WO2019078603 A1 WO 2019078603A1
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- WO
- WIPO (PCT)
- Prior art keywords
- module
- magnetic pole
- unit
- stimulation
- user
- Prior art date
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Classifications
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47G—HOUSEHOLD OR TABLE EQUIPMENT
- A47G9/00—Bed-covers; Counterpanes; Travelling rugs; Sleeping rugs; Sleeping bags; Pillows
- A47G9/10—Pillows
- A47G9/1045—Pillows shaped as, combined with, or convertible into other articles, e.g. dolls, sound equipments, bags or the like
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47G—HOUSEHOLD OR TABLE EQUIPMENT
- A47G9/00—Bed-covers; Counterpanes; Travelling rugs; Sleeping rugs; Sleeping bags; Pillows
- A47G9/10—Pillows
- A47G9/1081—Pillows comprising a neck support, e.g. a neck roll
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H39/00—Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
- A61H39/04—Devices for pressing such points, e.g. Shiatsu or Acupressure
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H7/00—Devices for suction-kneading massage; Devices for massaging the skin by rubbing or brushing not otherwise provided for
- A61H7/002—Devices for suction-kneading massage; Devices for massaging the skin by rubbing or brushing not otherwise provided for by rubbing or brushing
- A61H7/004—Devices for suction-kneading massage; Devices for massaging the skin by rubbing or brushing not otherwise provided for by rubbing or brushing power-driven, e.g. electrical
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M21/00—Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
- A61M21/02—Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis for inducing sleep or relaxation, e.g. by direct nerve stimulation, hypnosis, analgesia
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/01—Constructive details
- A61H2201/0119—Support for the device
- A61H2201/0134—Cushion or similar support
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/12—Driving means
- A61H2201/1207—Driving means with electric or magnetic drive
- A61H2201/1215—Rotary drive
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/04—Devices for specific parts of the body neck
Definitions
- the present invention relates to a functional sleeping pillow, and more particularly, to a functional sleeping pillow that stimulates the cervical spine of the head and neck of the head at the time of sleep to induce comfortable and stable posture by repeated massage therapy, It relates to a sleeping pillow.
- a pillow In general, a pillow is a kind of bedding that comfortably supports a person's head when sleeping or resting. A person needs sufficient rest to maintain health, and in particular, sleep is an essential element for vitality and health maintenance , The use of good pillows for a good night's sleep is very important in maintaining health.
- the existing pillow simply serves to support the head, and the wrong use of the pillow affects the sleeping posture and causes the deformity of the cervical vertebrae while inhibiting the curvature of the normal cervical vertebra. Causing minor damage to the ligament and causing neck pain.
- Korean Utility Model Registration No. 474197 (Apr. 21, 2014) has a semi-cylindrical tunnel shape in the middle of the upper surface to support the back part and the cervical vertebrae when lying down in a proper posture
- a plurality of neck pressure-applying protrusions are protruded from the middle support portion so as to stimulate wind bleeding, and a portion of the intermediate support portion, which is in contact with the rear portion of the intermediate support portion
- the neck acupressure protrusions are for providing a stimulation to the wind or hemostasis or hemispherical blood circulation and are in the form of hemispherical protrusions protruding upward at regular intervals, And a plurality of the right and left side walls There is a pressure to be able to take the pillow is well known.
- Japanese Patent Publication No. 1537724 discloses an annular peripheral portion having a first height; A neck portion receiving recess defined by the circumferential portion and formed to be recessed to have a second height lower than the first height; A plurality of cervical vertebrae grooves formed to be recessed in a region of the upper surface of the circumferential portion and having different depths; Two insertion grooves disposed at a first gap on the bottom surface of the cervical vertebrae support groove and elongated in the first height direction; And two cervical pole bodies inserted into and engaged with the two insertion grooves, each cervical pole having a cervical stimulation projection on its upper surface, the cervical stimulation projection having two cervical stimulation electrodes provided at a position eccentric to the center of the upper surface of the cervical- And the distance between the two cervical spine protrusions is adjusted as the two cervical spine bodies are rotated about an axis parallel to the first height direction so that the position of the stimulation for quick induction of sleep can be adjusted
- a cervical stimulation pillow is known.
- the cervical stimulation efficiency is improved rather than the technique disclosed in the above-mentioned Korean Utility Model Registration No. 474197 by adjusting the interval between the pair of stimulating projections for each user in the case of the registration patent publication No. 1537724, There is a technical limitation that the cervical stimulation effect is still insignificant.
- the present invention has been made to solve the above problems and it is an object of the present invention to provide a cervical vertebra of the present invention, And to provide a functional sleeping pillow capable of increasing the efficiency of cervical stimulation by a repetitive contact driving structure for the user.
- the present invention provides a functional sleeping pillow including a pillow body portion having an inwardly concave headrest groove and a neckrest groove formed therein; A first stimulation module part installed in the pillow body part and being raised and raised so as to protrude upward corresponding to a boundary part between the headrest groove and the neck support groove and being driven to be stimulated between the back of the user and the cervical vertebra; A second stimulation module which is installed in the pillow body and is raised and raised so as to be able to protrude upward in correspondence with the neck support groove and to stimulate a user's cervical vertebra; And a module control unit having a controller operable by a user and applying control signals mutually distinguished to the first stimulus module unit and the second stimulus module unit according to an input signal set in the controller.
- the pillow body portion may include a first guide hole formed between the headrest groove and the neck support groove and penetrating through the first stimulation module portion in the vertical direction so as to protrude upward,
- the first and second magnetic pole module sections being configured to be vertically linearly protruded so that the second magnetic pole module section can be protruded upward, and the first and second magnetic pole module sections are accommodated in the pillow body section, And a module case for supporting the first guide hole and the second guide hole so as to be individually driven.
- the first magnetic pole module may include a first magnetic pole module having a plurality of first magnetic pole ends protruded upward outwardly outward at an upper end thereof, a second magnetic pole module supported and fixed to the first magnetic pole module, A first module drive unit for applying power to the first module driving unit.
- the first module driving unit includes a first driving motor for driving the worm shaft to rotate forward, a second module driving motor disposed in a direction orthogonal to the worm axis of the first driving motor, rotating in engagement with the worm axis, passing through in the vertical direction, A first worm wheel member having a shaft hole formed therein, and a first elevating member which is supported by the first magnetic pole module and is screwed to the shaft hole of the first worm wheel member and is vertically movable.
- the second magnetic pole module may include a second magnetic pole module having a pair of left and right second magnetic pole ends protruding upward in an upward direction, a second magnetic pole module supported and fixed to the second magnetic pole module, And a second module drive unit for applying power for motion.
- the second module drive unit may include a second drive motor for forwardly driving the worm shaft, a second drive motor disposed in a direction orthogonal to the worm axis of the second drive motor, rotating in engagement with the worm axis, penetrating in the vertical direction, A second worm wheel member having a shaft hole formed therein, and a second lifting member, which is vertically movable in a vertical direction, while being screwed to the shaft hole of the second worm wheel member by supporting and securing the second magnetic pole module.
- the module control unit controls the first stimulus module unit to be repeatedly driven in the vertical direction in accordance with the set period, and during the setup period in which the first stimulus module is repetitively driven, So as to be maintained in a state of initially up-driven.
- the functional sleeping pillow of the present invention since the user is able to stimulate the head and neck of the user while simultaneously supporting the back and front of the cervical vertebrae and the cervical vertebrae, it is possible to correct the sleeping posture and massage the muscles, It is possible to improve the blood circulation so as to maintain the health of the user according to the sleeping and to induce comfortable sleeping.
- the cervical spine is stimulated by the repetitive contact drive structure between the scapula and the cervical vertebrae, it is possible to improve the massage efficiency while improving the fatigue and the fitness of the body stimulation It is effective.
- FIG. 1 is a perspective view showing an embodiment according to the present invention.
- FIG. 2 is a plan view showing an embodiment according to the present invention.
- FIG. 3 is a side sectional view showing an embodiment according to the present invention.
- FIG. 4 is a perspective view illustrating a first stimulation module unit and a second stimulation module unit according to an embodiment of the present invention.
- FIG. 5 is an exploded perspective view illustrating a first stimulation module unit and a second stimulation module unit according to an embodiment of the present invention.
- FIG. 6 is a side cross-sectional view showing a first magnetic pole module section according to an embodiment of the present invention.
- FIG. 7 is a side cross-sectional view showing a second magnetic pole module according to an embodiment of the present invention.
- FIG. 8 is a block diagram schematically illustrating an embodiment according to the present invention.
- FIG. 9 is a block diagram schematically illustrating another embodiment according to the present invention.
- the present invention relates to a pillow body having an inwardly concave headrest groove and a neckrest groove formed therein;
- a first stimulation module which is installed in the pillow body and protrudes upward in correspondence with a boundary portion between the headrest recess and the neckrest recess and is driven to be raised and lowered so as to stimulate between the back of the user and the cervical vertebra;
- a second stimulation module which is installed in the pillow body and is raised and raised so as to be able to protrude upward in correspondence with the neck support groove and to stimulate a user's cervical vertebra;
- a module control unit having a controller operable by a user and applying control signals mutually distinguished to the first stimulus module unit and the second stimulus module unit according to an input signal set in the controller.
- the functional sleeping pillow may be provided with a cover (not shown) to prevent contamination of the pillow due to frequent use.
- one embodiment of the functional sleeping pillow according to the present invention includes a pillow body 10, a first stimulation module 20, a second stimulation module 30, and a module controller 40).
- the pillow body 10 has a pillow shape as an overall shape of the present invention and functions to support the body of the user, that is, the head and neck, in a comfortable contact state when the user uses the pillow for sleeping or resting.
- the material that can be used for the pillow body 10 it is preferable to use a polyurethane foam having excellent strength and cushioning performance as a porous material which is easily ventilated.
- the pillow body 10 is formed with a head-receiving groove 11 and a neck-receiving groove 12 which are recessed inwardly on an upper surface thereof.
- the headrest groove (11) is formed so as to be able to maintain a contact support state while partly accommodating the head of the user, and the neckrest groove (12) It is possible to correct the sleeping or resting posture while using the user while setting the corresponding stimulation position of the user's body from the first stimulation module unit 20 and the second stimulation module unit 30.
- the headrest receiving groove 11 and the neckrest receiving groove 12 are both formed in a gentle curved surface.
- the headrest receiving groove 11 is formed in a hemispherical shape capable of receiving and supporting the head while receiving the head, It is preferable that the groove 12 is formed in a C-shaped curved shape so as to support and support the neck portion.
- the pillow body 10 is formed with a space formed between the headrest recess 11 and the neck support recess 12 and vertically penetrating the first stimulation module 20 so as to protrude upward
- the pillow body 10 is provided with a module case 15 which is internally built therein and accommodates the first magnetic pole module 20 and the second magnetic pole module 30 so that they can be separated from each other.
- the module case 15 is supported so that the first magnetic pole module unit 20 can be individually driven corresponding to the first guide hole 13, and the first magnetic pole module unit 20 is supported corresponding to the second guide hole 14 And the second magnetic pole module unit 30 is supported so as to be individually driven.
- a mounting space is formed inside the module case 15 so that the first magnetic pole module unit 20 and the second magnetic pole module unit 30 can be separated and accommodated, And a case cover 16 is installed in which the stimulation module unit 20 and the second stimulation module unit 30 are movably held in respective positions.
- a shoulder support groove 17 is formed on one side of the neck support groove 12 on both sides with respect to the neck support groove 12. That is, the shoulder support groove 17 supports the shoulder of the user while securing a space in which the user's shoulder is located and partially accommodates, thereby enhancing the correction efficiency of the sleeping posture by wrapping both shoulders when the user is lying down .
- the pillow body 10 has a built-in piezoelectric element for self-power generation corresponding to the position of the headrest recess 11, And a charger capable of charging energy can be provided.
- the self-power generation according to the contact weight of the head is performed each time it is used, so that the maintenance cost for use can be reduced to zero.
- the first stimulating module 20 and the second stimulating module 30 are movably installed in the module case 15 of the pillow body 10 , And a structure in which the user's body is arranged to be spaced apart from each other so as to be in contact with each other and be stimulated.
- the first stimulation module 20 performs a function of being lifted and lowered so as to directly stimulate a boundary portion between the occipital bone and the cervical vertebrae of the user's body.
- the first stimulation module unit 20 is installed in the pillow body 10 and corresponds to the boundary between the headrest recess 11 and the neckrest recess 12 A first magnetic pole module 21 and a first module drive unit 25, which are formed so as to be protruded upward.
- the first magnetic pole module 21 is extended in the left and right direction and is positioned so as to protrude upwards corresponding to the first guide hole 13.
- the first stimulation module 21 moves vertically and vertically by driving the first module driving unit 25 to contact the back of the user and the cervical vertebra 1 in a stimulating manner.
- the first magnetic pole module 21 includes a plurality of first magnetic pole ends 22 protruding upward outward in a convex shape and having a symmetrical structure symmetrically extending along the lengthwise direction.
- the first magnetic pole ends 22 have different step heights on the first magnetic pole module 21. That is, since the first magnetic pole end portion 22 is formed so as to protrude gradually higher as it is disposed on the outer side with respect to the first module drive unit 25, the contact magnetic pole efficiency can be uniformly adjusted according to the body shape between the occipital bone and the cervical vertebra It is possible to disperse it.
- the first magnetic pole end portion 22 may protrude in a vertical direction or be inclined at an angle of 10 to 15 degrees to the opposite side of the second magnetic pole module portion 30.
- the case cover 16 for accommodating the first module driving unit 25 corresponding to the first magnetic pole module 20 is formed on the upper part of the case cover 16 so as to be spaced apart from the first and second magnetic pole ends 20, (18) for abutting and supporting the seat (22).
- the first module driving unit 25 is mounted on the module case 15 so as to be capable of driving and supporting the first magnetic pole module 21 and the upper and lower vertical reciprocating motion Power is applied.
- the first module drive unit 25 includes a first drive motor 26, a first worm wheel member 27, and a second drive motor 26.
- the first drive motor 26 drives the first magnetic pole module 21, And a first elevating member (28).
- the first driving motor 26 is provided with a worm shaft C1 having a threaded front and is driven to rotate the worm axis C1.
- the first drive motor 26 rotates the worm axis C1 in a forward direction or a reverse direction.
- the first worm wheel member 27 is rotatably mounted on the module case 15 and is arranged in an orthogonal direction corresponding to the worm axis C1 of the first drive motor 26, So as to maintain a gear engagement state in which it is engaged with the worm axis C1.
- the first worm wheel member 27 is configured to engage with the worm axis C1 of the first drive motor 26 to rotate.
- the first worm wheel member (27) is provided with a shaft hole (H1) penetrating the upper surface thereof in the vertical direction.
- the shaft hole H1 is formed with a female screw on its inner surface to receive the first elevating member 28 in the shaft hole H1 and to be screwed to the shaft hole H1.
- the first elevating member (28) is coupled to the upper end portion to support and fix the first stimulation module (21).
- the first elevating member 28 is formed to have a male screw on the outer circumferential surface and to vertically move up and down in a screw hole H1 of the first worm wheel member 27.
- the first module driving unit 25 moves the first magnetic pole module 21 up and down by 1 to 5 cm.
- the second stimulation module unit 30 performs a function of being lifted and lowered so as to directly stimulate the cervical vertebrae of the user's body.
- the second stimulation module 30 is provided in the pillow body 10 so as to be protruded upward corresponding to the neck support groove 12, A stimulation module 31 and a second module drive unit 35.
- the second magnetic pole module 31 is positioned so as to protrude upward corresponding to the second guide hole 14.
- the second stimulation module 31 is moved vertically and vertically by driving the second module driving unit 35 to be in contact with the user's cervical vertebrae 3 and 4 in a stimulating manner.
- the second magnetic pole module 31 includes a second magnetic pole end 32 protruded outward at an upper end and protruding upwardly and having a pair of left and right symmetrical structures.
- the second magnetic pole end portion 32 is formed with a sloped surface whose upper surface is protruded upward in one slanting direction, the contact stimulating efficiency toward the user's body can be evenly dispersed.
- the inclined surface of the second magnetic pole end portion 32 preferably has an inclination angle of 5 to 15 ⁇ .
- the second module driving unit 35 is installed on the module case 15 so as to be capable of driving and supporting the second magnetic pole module 31.
- the second module driving unit 35 is configured to vertically reciprocate the second magnetic pole module 31 Power is applied.
- the second module drive unit 35 includes a second drive motor 36, a second worm wheel member 37, and a second drive motor 36.
- the second drive motor 36 is configured to drive the second magnetic pole module 31, And a second lifting member (38).
- the second drive motor 36 is provided with a worm C2 having a screw thread formed in the front thereof, and drives the worm axis C2 to rotate.
- the second drive motor 36 rotates the worm C2 in a forward or reverse direction.
- the second worm wheel member 37 is rotatably mounted on the module case 15 and arranged in an orthogonal direction corresponding to the worm axis C2 of the second drive motor 36, And is configured to maintain a gear engagement state in which it is engaged with the worm axis C2. That is, the second worm wheel member 37 engages with the worm axis C2 of the second driving motor 36 to rotate.
- the second worm wheel member (37) is provided with a shaft hole (H2) penetrating the upper surface in a vertical direction.
- the shaft hole H2 is formed with an internal thread to accommodate the second elevating member 38 in the shaft hole H2 and to be screwed to the shaft hole H2.
- the second pole module 31 is coupled to the upper end of the second lifting member 38 so as to be supported and fixed.
- the second elevating member 38 is formed with a male screw on the outer peripheral edge and the second elevating member 38 in the shaft hole H2 of the second worm wheel member 37 is screwed to be vertically movable do.
- the second module driving unit 35 can move the second magnetic pole module 31 up and down by 1 to 5 cm.
- the second driving motor 26 and the second driving motor 36 detect the vertical position of the first and second magnetic pole modules 21 and 31 in the second magnetic pole module 30, And a limit sensor S1 for transmitting a sensing signal to the module control unit 40 so as to control the sensor unit S1.
- the first magnetic pole end portion 22 of the first magnetic pole module 21 and the second magnetic pole end portion 32 of the second magnetic pole module 31 are provided with replaceable outer covers 23 and 33.
- the outer covers 23 and 33 have a predetermined cushioning performance and use a silicon material having a thickness of 3 to 7 mm.
- the outer cover As described above, it is possible to use hygienic use for each user as the contact surface with the body can be replaced, ensure continuity of use according to the cushion performance, and prolong the service life from contact wear .
- the module control unit 40 controls the operation of the first stimulation module unit 20 and the second stimulation module unit 30 so as to control the operation of the first stimulation module unit 20 and the second stimulation module unit 30.
- the module control unit 40 is provided with a controller 45 that can be manipulated so as to be input from a user, and the controller 45 controls the first stimulation module unit 20 And the second stimulation module unit 30, respectively.
- the module control unit 40 sets a driving period to automatically control operations of the first stimulation module unit 20 and the second stimulation module unit 30.
- the module control unit 40 repeatedly actuates and drives the first stimulation module unit 20 and the second stimulation module unit 30 and the module control unit 40 is provided with a timer 41 .
- the module control unit 40 divides the upward movement time, the stop time and the downward movement time through the timer 41 to set the first stimulation module unit 20 and the second stimulation module unit 30 .
- the module control unit 40 controls the first and second stimulation module units 20 and 30 by applying a control signal to the first stimulation module unit 20 and the second stimulation module unit 30, respectively. That is, in the module control unit 40, when the external input signal, that is, the external input signal set and inputted from the controller 45 is input, the first stimulation module unit 20 is repeatedly driven in the vertical direction And controls the second stimulation module unit 30 to be maintained in a first up-driven state during a set period in which the first stimulation module unit 20 is repeatedly driven.
- the first stimulation module unit 20 drives the first module drive unit 25 for 7 seconds to move the first stimulation module 21 upward by 1 to 5 cm, and then drives it for 8 seconds
- the second stimulation module unit 30 controls the second stimulation module unit 30 to repeat the driving for moving the first module drive unit 25 downward by 1 to 5 cm for 4 seconds during the entire set period
- the second module drive unit 35 is driven for 7 seconds to move the second stimulation module 31 upward by 2 cm and then maintained in the drive stop state during the repeated drive by the first stimulation module unit 20
- the module control unit 40 which is controllable as described above, is structured to have a separate drive structure divided according to stimulation regions, and stimulates the cervical vertebrae with a repetitive contact drive structure between the back bone and the cervical vertebra, It is possible to improve the massage efficiency while ensuring the conformity of the massage.
- the pillow body 10 may be provided with a noise detection sensor 47 for detecting a noise at one side and transmitting a detection signal to the module control unit 40.
- the noise detection sensor 47 senses a noise of a predetermined decibel (dB) or more, that is, a noise caused by the snoring.
- the module controller 40 When the sensing signal is input from the noise sensor 47, the module controller 40 extends the predetermined operation time. For example, when the noise sensor 47 detects noises due to the snoring, it is possible to apply an additional time (for example, 30 seconds) per the number of times to the module control unit 40 for effective driving Do.
- an additional time for example, 30 seconds
- the pillow body 10 may be provided with a pattern detection sensor (not shown) for detecting the direction of the user's sleeping face, that is, the direction in which the user lays the pillow body 10.
- the pattern detection sensor is symmetrical to the headrest groove 11 of the pillow body 10 so that the pattern detection sensor in the direction in which the user lies is detected and transmits a signal to the module control unit 40 do.
- the pattern detection sensor may be configured by applying a light intensity sensor, a noise sensor, a pressure sensor, or the like.
- the pattern sensing sensor is configured as described above, it is possible to automatically control whether the first stimulation module unit and the second stimulation module unit are driven to induce or confirm the optimum sleep state for the user.
- the sleeping posture can be correctly corrected because the user can be stimulated at a time while supporting the head and neck of the user while being directed toward the cervical vertebra and the cervical vertebra and the cervical vertebra It is possible to massage the muscles that are bundled together and improve the blood circulation so as to maintain the health of the user along with the sleeping and to induce a comfortable and correct sleeping.
- the present invention can be constituted by a mechanical driving structure in a sleeping pillow, thereby extending service life according to excellent durability and enabling flexible and precise stimulation driving in accordance with user-specific setting information.
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Abstract
Description
Claims (5)
- 내측으로 오목한 머리받침홈(11) 및 목받침홈(12)이 형성되는 베개몸체부(10);상기 베개몸체부(10) 내에 설치되되, 상기 머리받침홈(11) 및 상기 목받침홈(12)의 경계부분에 대응하여 상향 돌출 가능하게 위치하고, 사용자의 후두골과 경추 사이를 자극할 수 있게 승강 구동되는 제1자극모듈부(20);상기 베개몸체부(10) 내에 설치되되, 상기 목받침홈(12)에 대응하여 상향 돌출 가능하게 위치하고, 사용자의 경추를 자극할 수 있게 승강 구동되는 제2자극모듈부(30); 및사용자로부터 조작 가능한 컨트롤러(45)를 구비하고, 상기 컨트롤러(45)에 설정된 입력신호에 따라 상기 제1자극모듈부(20) 및 상기 제2자극모듈부(30)에 상호 구분된 제어신호를 인가하는 모듈제어부(40);를 포함하는 것을 특징으로 하는 기능성 수면 베개.
- 청구항 1에 있어서,상기 제1자극모듈부(20)는,상단부에 외측으로 볼록하게 상향 돌출 형성된 복수 개의 제1자극단부(22)가 구비되는 제1자극모듈(21);상기 제1자극모듈(21)을 지지 고정하며, 상기 제1자극모듈(21)에 상하 수직왕복운동을 위한 동력을 인가하는 제1모듈구동유닛(25);을 포함하는 것을 특징으로 하는 기능성 수면 베개.
- 청구항 2에 있어서,상기 제1모듈구동유닛(25)은,전방에 웜축(C1)을 회전 구동시키는 제1구동모터(26);상기 제1구동모터(26)의 웜축(C1)에 직교방향으로 배치되되 상기 웜축(C1)과 맞물려 회전운동하며, 상하 수직방향으로 관통되어 내측에 암나사가 형성된 축공(H1)이 구비되는 제1웜휠부재(27);상기 제1자극모듈(21)을 지지 고정하고, 상기 제1웜휠부재(27)의 축공(H1)에 나사 결합되어 상하 수직이동 가능하게 구비되는 제1승강부재(28);를 포함하는 것을 특징으로 하는 기능성 수면 베개.
- 청구항 1에 있어서,상기 제2자극모듈부(30)는,상단부에 상향 경사방향으로 돌출 형성된 좌우 한 쌍의 제2자극단부(32)가 구비되는 제2자극모듈(31);상기 제2자극모듈(31)을 지지 고정하며 상기 제2자극모듈(31)에 상하 수직왕복운동을 위한 동력을 인가하는 제2모듈구동유닛(35);을 포함하는 것을 특징으로 하는 기능성 수면 베개.
- 청구항 4에 있어서,상기 제2모듈구동유닛(35)은,전방에 웜축(C2)을 회전구동시키는 제2구동모터(36);상기 제2구동모터(36)의 웜축(C2)에 직교방향으로 배치되되 상기 웜축(C2)과 맞물려 회전운동하며, 상하 수직방향으로 관통되어 내측에 암나사가 형성된 축공(H2)이 구비되는 제2웜휠부재(37);상기 제2자극모듈(31)을 지지 고정하고, 상기 제2웜휠부재(37)의 축공(H2)에 나사 결합되어 상하 수직이동 가능하게 구비되는 제2승강부재(38);를 포함하는 것을 특징으로 하는 기능성 수면 베개.
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