CN220257087U - Intelligent electric standing bed - Google Patents

Intelligent electric standing bed Download PDF

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Publication number
CN220257087U
CN220257087U CN202321914259.8U CN202321914259U CN220257087U CN 220257087 U CN220257087 U CN 220257087U CN 202321914259 U CN202321914259 U CN 202321914259U CN 220257087 U CN220257087 U CN 220257087U
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main foot
bed
standing
bed board
driving rod
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CN202321914259.8U
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Chinese (zh)
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方源
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First Affiliated Hospital of Wannan Medical College
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First Affiliated Hospital of Wannan Medical College
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Abstract

The utility model discloses an intelligent electric standing bed which comprises a fixed frame and a bed plate movably arranged on the fixed frame, wherein main foot plates are symmetrically and movably arranged on the bed plate, balance rods are movably arranged on the bed plate, two ends of each balance rod are respectively and slidably arranged at the bottoms of the main foot plates, the balance rods are hinged on push blocks arranged on the bed plate along a central axis, the push blocks are driven to enable the main foot plates to be respectively contacted with the bottoms of a standing person through the balance rods, turning plates are hinged on the main foot plates, and the turning plates are driven to respectively enable pressure detection plates arranged on the turning plates to be contacted with the bottoms of the standing person. According to the standing bed provided by the utility model, the push blocks are driven to enable the main foot plates to be respectively contacted with the bottoms of the feet of a standing person through the main foot plates on the balance rods, and the main foot plates with overlarge pressure can tilt the other main foot plates to enable the other main foot plates to be attached to the bottoms of the feet until the two feet reach the target bearing force, so that the bearing proportion of the two lower limbs of the standing person is distributed according to the treatment target, and a better training effect is realized.

Description

Intelligent electric standing bed
Technical Field
The utility model relates to the technical field of standing up, in particular to an intelligent electric standing up bed.
Background
The bed is erected, is mainly used for lower limb weight training, can increase the stimulation of lower limb bone stress, prevent osteoporosis and promote fracture healing; can stimulate the contraction of key muscle groups, strengthen muscle strength and endurance, and prevent muscle wilt; gives the standing person good visual input and can promote proprioception recovery; the Chinese medicinal composition has the advantages of enhancing heart and lung endurance, promoting lung infection and promoting gastrointestinal peristalsis, has positive effects, and is widely applied to rehabilitation training of patients.
According to patent number CN201810989351.8, an intelligent control standing bed is disclosed, which comprises a bed board and a fixed base, wherein a rotating part is installed on the fixed base, the rotating part is hinged with the bed board, the bed board is provided with a hand support frame vertical to the bed board, an adjustable support board is arranged on the hand support frame, a main controller, a storage unit and a microphone are arranged in the adjustable support board, the main controller is connected with the storage unit and the microphone, a sound hole is formed above the microphone in the adjustable support board, a standing electric push rod is arranged between the bed board and the fixed base, the standing electric push rod is connected with a lifting driving motor, the lifting driving motor is connected with the main controller, a control key is arranged on the side face of the bed board, the control key is connected with the main controller, the microphone receives voice information of a user, and the main controller processes the voice information and generates a control instruction, and the lifting driving motor responds to the control instruction and controls the standing electric push rod to drive the rotation; the bed board comprises an upper bed board, a lower bed board and a folding mechanism, wherein the upper bed board is connected with the lower bed board through the folding mechanism, and the upper bed board and the lower bed board are concave when folded.
In the use of the existing standing bed, the patient stands passively, and in the use process, due to the primary disease of the standing person, the emergency that the life of the standing person is endangered, such as hypotension, rapid heart rate, even hypoxia coma and the like, can occur in the process. Therefore, in order to safely use the standing bed, the load of the two lower limbs needs to be finely adjusted according to different training purposes in the use of the standing bed, and at present, the different loads of the two lower limbs are mainly adjusted through the standing angle of the standing bed or subjective center of gravity transfer of a standing person, so that the use is inaccurate and unsafe.
Disclosure of Invention
The utility model aims to provide an intelligent electric standing bed which can adjust different load distribution of two legs so as to achieve more accurate treatment and better training effect.
In order to achieve the above object, the present utility model provides the following technical solutions: the utility model provides an electronic standing bed of intelligence, includes mount and activity set up the bed board on the mount, the symmetry activity is provided with main sole on the bed board, the activity is provided with the balancing pole on the bed board, and the both ends of balancing pole slide respectively and set up in the bottom of main sole, the balancing pole is articulated to be set up on the kicking block that sets up on the bed board along the axis, and the kicking block is driven so that main sole passes through the balancing pole and contacts respectively in the person's sole of standing, articulated being provided with turns over on the main sole, turn over the board and drive so that respectively the pressure pick-up board that sets up on it contacts in the person's sole of standing.
Preferably, the two sides of the bed board are fixedly provided with the transverse frames, the opposite sides of the transverse frames, which are close to the main foot boards, are respectively provided with the sliding grooves, the main foot boards are respectively arranged in the sliding grooves in a sliding manner, the bottoms of the main foot boards are respectively provided with the guide grooves, the two ends of the balance rod are respectively arranged in the guide grooves in a sliding manner, the turning plate is hinged to the top of the main foot boards, and the pressure detection board is fixedly arranged on the turning plate.
Preferably, the balance rod is fixedly provided with a rotating shaft along the central axis, the rotating shaft is hinged to the pushing block, a second electric driving rod is movably arranged in the pushing block, one end of the second electric driving rod, which is close to the rotating shaft, is fixedly provided with an arc-shaped valve, the inner side of the arc-shaped valve is fixedly provided with an anti-skid rubber pad, and the arc-shaped valve is driven to be attached to the rotating shaft.
Preferably, the bed bottom of the bed board is fixedly provided with a central control assembly, the bed board is fixedly provided with a first electric drive rod, and one end of the first electric drive rod is fixedly arranged on the outer wall of one side of the push block opposite to the main foot plate.
Preferably, the main foot plate is internally and fixedly provided with a turnover electric drive rod, the bottom of the turnover plate is provided with a slideway, the slideway is internally and slidably provided with a sliding block, and one end of the turnover electric drive rod is hinged on the sliding block.
Preferably, the hand supporting plate is fixedly arranged on the bed plate, the control button is fixedly arranged at the top of the fixing frame, the buzzer is fixedly arranged on the outer wall of one side of the fixing frame, and the pressure detection plate, the overturning electric driving rod, the buzzer, the first electric driving rod and the second electric driving rod are respectively and electrically connected to the central control assembly.
In the technical scheme, the intelligent electric standing bed provided by the utility model has the following beneficial effects: the main foot plates are symmetrically and movably arranged on the bed plate, the balance rods are movably arranged on the bed plate, the two ends of each balance rod are respectively arranged at the bottoms of the main foot plates in a sliding mode, the balance rods are hinged to push blocks arranged on the bed plate along the central axis, the push blocks are driven to enable the main foot plates to be respectively contacted with the bottoms of the standing feet through the balance rods, therefore, the two main foot plates are driven to push the feet close to a patient under the push blocks, when the two feet are stressed differently, a warping plate can be formed, the main foot plates with overlarge pressure can tilt up to enable the other main foot plates to be tilted up to fit with the feet of the patient until the two main foot plates are stressed to be balanced, and accordingly, the feet of the standing person with different leg lengths are stressed to be balanced well, and a better training effect is achieved.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings that are needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments described in the present utility model, and other drawings may be obtained according to these drawings for a person having ordinary skill in the art.
FIG. 1 is a schematic view of the overall structure of a bed board according to an embodiment of the present utility model;
fig. 2 is a schematic view of a part of a bed board according to an embodiment of the present utility model;
FIG. 3 is a schematic view of a cross-sectional structure of a bed board according to an embodiment of the present utility model;
fig. 4 is an enlarged schematic view of a structure at a provided in an embodiment of the present utility model;
FIG. 5 is an enlarged schematic view of the structure at B according to an embodiment of the present utility model;
FIG. 6 is an enlarged schematic view of the structure at C according to an embodiment of the present utility model;
fig. 7 is a schematic diagram of a cross-sectional structure of a flap according to an embodiment of the present utility model;
fig. 8 is an enlarged schematic view of the structure at D according to an embodiment of the present utility model.
Reference numerals illustrate:
1. a bed board; 2. a fixing frame; 3. a main foot plate; 4. a balance bar; 5. a second electric drive rod; 6. a central control assembly; 7. a monitoring end; 8. a touch panel; 11. a cross frame; 12. a chute; 13. a hand support plate; 21. a control button; 22. a buzzer; 31. a guide groove; 32. a pressure detection plate; 33. turning plate; 34. a slideway; 35. a slide block; 36. turning over the electric drive rod; 41. a rotating shaft; 42. a pushing block; 43. a first electric drive rod; 51. arc-shaped petals; 52. an anti-skid rubber pad.
Detailed Description
In order to make the technical scheme of the present utility model better understood by those skilled in the art, the present utility model will be further described in detail with reference to the accompanying drawings.
As shown in fig. 1-8, an intelligent electric standing bed comprises a fixed frame 2 and a bed board 1 movably arranged on the fixed frame 2, wherein a main foot board 3 is symmetrically and movably arranged on the bed board 1, a balance rod 4 is movably arranged on the bed board 1, two ends of the balance rod 4 are respectively and slidably arranged at the bottom of the main foot board 3, the balance rod 4 is hinged on a push block 42 arranged on the bed board 1 along a central axis, the push block 42 is driven to enable the main foot board 3 to be respectively contacted with the soles of a standing person through the balance rod 4, a turning plate 33 is hinged on the main foot board 3, and the turning plate 33 is driven to respectively enable pressure detection boards 32 arranged on the turning plate to be respectively contacted with the soles of the standing person. The main foot plates 3 are symmetrically and movably arranged on the bed plate 1, the balance rods 4 are movably arranged on the bed plate 1, two ends of each balance rod 4 are respectively and slidably arranged at the bottoms of the main foot plates 3, the balance rods 4 are hinged to push blocks 42 arranged on the bed plate 1 along the central axis, the push blocks 42 are driven to enable the main foot plates 3 to be respectively contacted with the soles of standing persons through the balance rods 4, therefore, the two main foot plates 3 are close to feet of a patient under the driving pushing of the push blocks 42, when the two feet are stressed differently, a wane is formed, the main foot plates 3 with overlarge pressure can tilt the other main foot plates 3 to enable the other main foot plates 3 to tilt and attach to the feet of the patient until the two feet on the two main foot plates 3 are stressed to be balanced, and accordingly, the feet of the standing persons with different leg lengths are stressed to be better balanced, and better training effects are achieved.
As shown in fig. 5, in order to make the main foot plate 3 slide on the bed board 1, the cross frames 11 are fixedly installed at two sides of the bed board 1, the opposite sides of the cross frames 11 close to the main foot plate 3 are respectively provided with the sliding grooves 12, the main foot plate 3 is respectively arranged in the sliding grooves 12 in a sliding manner, meanwhile, the bottoms of the main foot plate 3 are respectively provided with the guiding grooves 31, and the two ends of the balance rod 4 are respectively arranged in the guiding grooves 31 in a sliding manner, so that the main foot plate 3 can be respectively adjusted in a sliding manner when being contacted with the bottoms of the standing feet due to different pressures, the balance rod 4 plays a role of balancing the two main foot plates 3, the turning plates 33 are hinged to the tops of the main foot plate 3, the pressure detection plates 32 are fixedly installed on the turning plates 33, and the pressure detection plates 32 are convenient for information acquisition.
Further, in order to make the balanced main foot plate 3 can lock, so that the patient stands on the main foot plate 3, the balancing pole 4 is fixedly provided with the rotating shaft 41 along the central axis, and the rotating shaft 41 is hinged to be arranged on the pushing block 42, the second electric driving rod 5 is movably arranged in the pushing block 42, one end, close to the rotating shaft 41, of the second electric driving rod 5 is fixedly provided with the arc-shaped valve 51, the arc-shaped inner side of the arc-shaped valve 51 is fixedly provided with the anti-skid rubber pad 52, when the main foot plate 3 is balanced, the arc-shaped valve 51 is driven by the second electric driving rod 5 to be attached to the rotating shaft 41, so that the rotating shaft 41 is limited to rotate, and the rotation of the rotating shaft 41 can be better limited by the anti-skid rubber pad 52.
Furthermore, for the convenience of monitoring, the bed bottom of the bed board 1 is fixedly provided with a central control component 6, the central control component 6 can be connected to a terminal computer for data acquisition and control, the bed board 1 is fixedly provided with a first electric driving rod 43, one end of the first electric driving rod 43 is fixedly arranged on the outer wall of one side of the push block 42 opposite to the main foot plate 3, and the push block 42 can be driven by the first electric driving rod 43 to slide, so that the balance rod 4 pushes the main foot plate 3.
As shown in fig. 7 and 8, in order to drive the two main foot plates 3 to support the legs of the standing person differently, when the main foot plates 3 are driven to balance, the rotating shaft 41 on the balance bar 4 is driven by the second electric driving bar 5 to drive the arc-shaped flaps 51 to be attached to the rotating shaft 41, so that the rotating shaft 41 is limited to rotate, at this time, the main foot plates 3 are positioned on the soles of the feet of the standing person to balance the legs of the standing person, the turnover electric driving bars 36 are fixedly arranged in the main foot plates 3, the slide ways 34 are arranged at the bottoms of the turnover plates 33, the slide ways 34 are internally provided with the slide blocks 35, one ends of the turnover electric driving bars 36 are hinged on the slide blocks 35, so that the turnover plates 33 are driven to slide, so that the forces born by the two legs can be adjusted, the fractured or the shrunken legs are in a proper range, and the balance bar 4 can enable the pressure detection plates 32 on the two turnover plates 33 to detect more accurately, so as to be convenient for adjustment.
Furthermore, in order to make the pressure detection plate 32, the buzzer 22, the first electric driving rod 43 and the second electric driving rod 5 achieve linkage, so that the bed board 1 can be adjusted while the blood oxygen, the blood pressure and the heart rate of a standing person can be dynamically monitored in time, the hand supporting board 13 is fixedly installed on the bed board 1, the monitoring end 7 can be fixedly installed on the hand supporting board 13, the monitoring end 7 can dynamically monitor the blood oxygen, the blood pressure and the heart rate of the standing person at the same time, and specific reference can be made to application number (CN 201910234846.4) for how the monitoring end monitors the blood oxygen, the blood pressure and the heart rate. For application number (CN 201910234846.4) it is mentioned that the sensor units include finger cuff oximeter, blood pressure cuff, electrocardiograph monitoring device, body temperature probe. The monitoring end 7 can be matched with a corresponding fingerstall oximeter, a blood pressure cuff, an electrocardiograph monitoring device and the like and is respectively and electrically connected with the central control component 6, a control button 21 is fixedly arranged at the top of the fixing frame 2, a buzzer 22 is fixedly arranged on the outer wall of one side of the fixing frame 2, a pressure detection plate 32, a turnover electric driving rod 36, the buzzer 22, the monitoring end 7, a first electric driving rod 43 and a second electric driving rod 5 are respectively and electrically connected with the central control component 6, the corresponding fingerstall oximeter, the blood pressure cuff, the electrocardiograph monitoring device and the like matched with the monitoring end 7 are respectively connected with the body of a user and monitor the body of the user, when the bed board 1 is turned over, the monitoring end 7 monitors and transmits information to the central control component 6, and along with the turning over of the bed board 1, the heart rate, blood oxygen and blood pressure of a standing person are changed, when the safety value is exceeded, the bed board 1 reversely overturns to enable the bed board 1 to lie down, in the reverse overturning process of the bed board 1, if the heart rate, blood oxygen and blood pressure of a standing person are recovered to be normal, the bed board 1 stops overturning, if the heart rate, blood oxygen and blood pressure are not recovered to be normal, the bed board is attached to the top of the fixed frame 2 in the overturning process, finally the control button 21 is pressed, the control button 21 opens the buzzer 22 through the central control component 6 to buzzing and remind medical staff to check and treat, for controlling sickbed overturning, the button for controlling overturning and the button for controlling the first electric drive rod 43 are arranged on the hand support plate 13, the button is electrically connected with the central control component 6, for adjusting the main foot plate 3 of a patient, the button on the hand support plate 13 is pressed by the patient to drive the first electric drive rod 43 to push the push block 42, so that the push block 42 pushes the balance rod 4 to be attached to the sole of the patient uniformly, and when the balance of the feet on two sides is achieved, the program in the central control assembly 6 can control the second electric drive rod 5 to open so as to push the arc-shaped valve 51 to fix the rotating shaft 41 for rotation, the pressure detection plate 32 timely monitors the pressure born by the two legs of a patient when the patient overturns along with the bed board 1 and transmits the pressure to the central control assembly 6, the central control assembly 6 comprises a plurality of control switches to respectively control the buzzer 22, the first electric drive rod 43 and the second electric drive rod 5, the pressure detection plate 32 and the information acquisition of the monitoring end 7 carry out digital operation through a programming circuit board arranged in the central control assembly 6 so as to transmit the information to a terminal computer or control an electric push rod on the bed board 1 after calculation so as to push the bed board 1 to overturn, meanwhile, when the leg bearing force of the patient reaches balance, the control switches open the overturning electric drive rod 36 so as to enable the sliding block 35 to slide, the overturning plate 33 is overturned, the pressure detection plate 32 detects the pressure born by the two legs at the moment, and actively adjusting the turning angle of the turning plate 33 under the program arranged in the programming circuit board (actively adjusting, when the tilting angle of the standing bed reaches proper, the pressure detection plate 32 collects the load of the legs, the turning plate 33 is driven to turn over by the turning electric drive rod 36 to increase the bearing force of the normal legs, the bearing force of the fractured or atrophic legs is reduced, when the fractured or atrophic legs bear twenty percent of load, the turning plate 33 stops turning over, the pressure detection plate 32 monitors in real time, when the error of twenty percent exceeds three percent, the turning plate 33 turns over again to adjust the bearing force of the legs to be twenty percent, the pressure detection plate 32 monitors in real time through the program arranged in the programming circuit board in the central control assembly 6, the bearing force of the fractured or atrophic legs can be adjusted to forty percent when the patient recovers one week to two weeks, therefore, better training is performed, in order to better adjust the program in the central control assembly 6, the outer wall on one side of the bed board 1 is fixedly provided with the touch control flat plate 8, the touch control flat plate 8 is electrically connected with the central control assembly 6, the touch control flat plate 8 can be used for programming the program in the programming circuit board to select the leg bearing force for adjusting fracture or atrophy), and meanwhile, the program arranged in the programming circuit board can be accurately adapted to the legs of a standing person only when the main foot plate 3 on the balance rod 4 is attached to the bearing force balance of the sole of the standing person.
The specific procedures and circuit connection relationships in the above-described technical schemes belong to common general knowledge of those skilled in the art, and are not described in detail herein.
Working principle: by pressing the button on the hand supporting plate 13 to drive the first electric driving rod 43 to push the push block 42, the push block 42 is driven to enable the main foot plates 3 to be respectively contacted with the bottoms of the feet of a standing person through the balance rod 4, so that the two main foot plates 3 are driven to push by the push block 42 to be close to the feet of the patient, when the two feet are stressed differently, a wane is formed, the main foot plate 3 with overlarge pressure can tilt the other main foot plate 3 to enable the other main foot plate 3 to tilt and attach to the feet of the patient until the stress of the two feet on the two main foot plates 3 reaches balance, the pressure detection plate 32 transmits information to the central control assembly 6 when detecting the stress balance of the two feet, and opens the second electric driving rod 5 through an internal control circuit after operation of the central control assembly 6, the second electric driving rod 5 drives the arc-shaped valve 51 to attach to the rotating shaft 41, so that the rotating shaft 41 is limited to rotate, at the moment, the main foot plate 3 is fixed, pressing the turnover button on the hand supporting plate 13, turning the bed plate 1 at this moment, when the safety value is exceeded, turning the bed plate 1 reversely to enable the bed plate 1 to lie down, in the reverse turning process of the bed plate 1, if the heart rate, the blood oxygen and the blood pressure of the standing person are recovered to be normal, the bed plate 1 stops turning, if the bed plate is not recovered to be normal, the bed plate can be attached to the top of the fixed frame 2 in the turning process, finally, the control button 21 is pressed, the control button 21 opens the buzzer 22 through the central control component 6 to buzzing reminding medical staff to check and treat, when the bed plate 1 adjusts the patient to be in a normal state, the turnover electric drive rod 36 drives the turnover plate 33 to turn over to increase the bearing capacity of normal legs, at this time, the bearing capacity of the fractured or the atrophic legs is reduced, when the load of the fractured or atrophic legs is twenty percent, the turnover plate 33 stops turning, and the pressure detection plate 32 monitors in real time, when the twenty percent error exceeds three percent, the flap 33 is flipped again to adjust the leg force to twenty percent to enable healthy training of the fractured or atrophic leg.
While certain exemplary embodiments of the present utility model have been described above by way of illustration only, it will be apparent to those of ordinary skill in the art that modifications may be made to the described embodiments in various different ways without departing from the spirit and scope of the utility model. Accordingly, the drawings and description are to be regarded as illustrative in nature and not as restrictive of the scope of the utility model, which is defined by the appended claims.

Claims (6)

1. The utility model provides an electronic standing bed of intelligence, includes mount (2) and activity set up bed board (1) on mount (2), its characterized in that, symmetrical activity is provided with main sole (3) on bed board (1), the activity is provided with balancing pole (4) on bed board (1), and the both ends of balancing pole (4) slide respectively and set up in the bottom of main sole (3), balancing pole (4) are articulated to be set up on ejector pad (42) that set up on bed board (1) along the axis, and ejector pad (42) are driven so that main sole (3) contact respectively in the person of standing sole through balancing pole (4), articulated on main sole (3) are provided with and turn over board (33), turn over board (33) and are driven so that pressure board (32) that set up on it contact in the person of standing sole respectively.
2. The intelligent electric standing bed according to claim 1, wherein transverse frames (11) are fixedly arranged on two side edges of the bed board (1), sliding grooves (12) are respectively formed in opposite sides of the transverse frames (11) close to the main foot boards (3), the main foot boards (3) are respectively arranged in the sliding grooves (12) in a sliding mode, guide grooves (31) are respectively formed in the bottoms of the main foot boards (3), two ends of the balance rod (4) are respectively arranged in the guide grooves (31) in a sliding mode, the turning plates (33) are hinged to the tops of the main foot boards (3), and the pressure detection boards (32) are fixedly arranged on the turning plates (33).
3. The intelligent electric standing bed according to claim 1, wherein the balance rod (4) is fixedly provided with a rotating shaft (41) along a central axis, the rotating shaft (41) is hinged to the pushing block (42), a second electric driving rod (5) is movably arranged in the pushing block (42), one end, close to the rotating shaft (41), of the second electric driving rod (5) is fixedly provided with an arc-shaped flap (51), the inner side of the arc-shaped flap (51) is fixedly provided with an anti-slip rubber pad (52), and the arc-shaped flap (51) is driven to be attached to the rotating shaft (41).
4. The intelligent electric standing bed according to claim 1, wherein a central control assembly (6) is fixedly arranged at the bed bottom of the bed board (1), a first electric driving rod (43) is fixedly arranged on the bed board (1), and one end of the first electric driving rod (43) is fixedly arranged on the outer wall of one side of the push block (42) opposite to the main foot plate (3).
5. An intelligent electric standing bed according to claim 2, characterized in that a turnover electric driving rod (36) is fixedly arranged in the main foot plate (3), a slideway (34) is arranged at the bottom of the turnover plate (33), a sliding block (35) is arranged in the slideway (34) in a sliding manner, and one end of the turnover electric driving rod (36) is hinged to the sliding block (35).
6. An intelligent electric standing bed according to claim 2, characterized in that the hand supporting plate (13) is fixedly installed on the bed board (1), the control button (21) is fixedly installed at the top of the fixing frame (2), the buzzer (22) is fixedly installed on the outer wall of one side of the fixing frame (2), and the pressure detection plate (32), the overturning electric driving rod (36), the buzzer (22), the first electric driving rod (43) and the second electric driving rod (5) are respectively and electrically connected to the central control assembly (6).
CN202321914259.8U 2023-07-20 2023-07-20 Intelligent electric standing bed Active CN220257087U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321914259.8U CN220257087U (en) 2023-07-20 2023-07-20 Intelligent electric standing bed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321914259.8U CN220257087U (en) 2023-07-20 2023-07-20 Intelligent electric standing bed

Publications (1)

Publication Number Publication Date
CN220257087U true CN220257087U (en) 2023-12-29

Family

ID=89313791

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321914259.8U Active CN220257087U (en) 2023-07-20 2023-07-20 Intelligent electric standing bed

Country Status (1)

Country Link
CN (1) CN220257087U (en)

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