Portable monitor mounting box and brain monitoring system
By designing a portable monitor installation box and utilizing fixing components and a motor drive structure, the problem of portable monitors easily falling off on non-professional vehicles is solved, stable fixation and convenient operation are achieved, and first aid efficiency is improved.
Patent Information
- Application Number
- CN202510891067.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2025-09-12
AI Technical Summary
Portable monitors lack an effective fixing structure in non-professional ambulance environments, causing them to easily fall off during bumps, affecting detection stability and potentially causing secondary damage.
A portable monitor installation box is designed, which uses a fixed component to cooperate with the second card block and uses the armrest side panel to achieve convenient installation; the extension, rotation and angle adjustment of the monitor are achieved through the telescopic column, motor and adjustment rod, and the suction cup and flip-up component are combined to improve the convenience of operation.
The monitor can be stably fixed and conveniently operated, which improves the convenience of use and the efficiency of first aid, prevents it from falling off and reduces secondary injuries.
Smart Images

Figure CN120616787A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of monitor installation, in particular to a portable monitor installation box and a brain monitoring system. Background Art
[0002] Monitors are important vital sign detection instruments used in various emergency situations. For portability, existing monitors are being designed to be smaller and smaller, similar to tablet structures. While portable monitors are easy to carry, they lack fixed brackets and enclosures, making them susceptible to collisions or falls. Existing technologies typically employ fixed enclosures for mounting, transporting, and storing monitors.
[0003] Existing multi-functional ambulances are equipped with a large number of side cabinets on the inner walls of the vehicle body. The side cabinets are equipped with boxes for installing monitors. Monitors are important detection equipment for brain structures and brain diseases such as the human brain, amygdala, and epilepsy. However, in actual use, portable monitors are usually not used in professional ambulances. Rescue can only be carried out in conventional vans or outside hospitals.
[0004] In such an environment, there is a lack of a cabinet to fix the box, and there are only handles or side panels for fixing, which makes it difficult to quickly fix the box. Especially when it is on an ordinary vehicle, the bumps during driving can easily cause the monitoring equipment to fall off. Bumps, vibrations, and falling off will affect the stability of the monitor's detection, thereby causing secondary damage to the monitoring of brain structures. After the monitor is installed in the box, it is difficult to adjust and inconvenient to operate. Summary of the Invention
[0005] The object of the present invention is to provide a portable monitor installation box and a monitoring system to solve the problems raised in the above background technology.
[0006] To achieve the above object, the present invention provides the following technical solutions: A portable monitor installation box includes an installation box and a brain monitor body, wherein the installation box is placed on one side of an installation side wall, the installation side wall is provided with an armrest side panel installed at intervals, the lower end of the installation box is provided with a lower support column for support, the inner cavity of the installation box is provided with a lifting frame driven by a telescopic column, a rotating frame driven by a motor is provided on one side of the lifting frame, a connecting frame is rotatably installed on one side of the rotating frame, a clamping frame connected by an adjusting rod is provided on the side wall of the rotating frame, an opening is provided at the upper end of the clamping frame, and the brain monitor body is vertically installed on the clamping frame. In the holding frame, the inner cavity port of the connecting frame faces the brain monitor body, and a suction cup that fits the brain monitor body is provided in the inner cavity of the connecting frame. A pair of rotatably installed flip-up assemblies are provided at the upper end of the installation box. The flip-up assembly covers the upper end of the installation box, and the flip-up assembly includes a first flip-up and a second flip-up. A second card block is provided on the second flip-up. A fixing assembly is provided on one side of the installation box. The fixing assembly is inserted and installed upward along the gap between the armrest side panel and the installation side wall. The second card block is flipped to the upper end of the gap between the armrest side panel and the installation side wall, and the fixing assembly is fixed in cooperation with the second card block.
[0007] Preferably, the inner cavity of the installation box is set as an installation cavity, the lifting frame, rotating frame, connecting frame and clamping frame are all set in the installation cavity, the telescopic column is fixed at the lower end of the installation cavity, and the end of the telescopic column is fixedly connected to the lower end of the lifting frame.
[0008] Preferably, one side of the motor is fixed on the side wall of the lifting frame, the output shaft of the motor is connected to the rotating frame, the outer contour of the connecting frame is smaller than the inner contour of the rotating frame, the rotating frame and the connecting frame are rotatably connected through a swivel seat, one end of the adjusting rod is fixed on the rotating frame, and the other end of the adjusting rod is fixed on the clamping frame. The clamping frame is provided with a mounting slot with an opening facing upward, and the brain monitor body is vertically plugged and installed along the mounting slot.
[0009] Preferably, the arc outer wall of the rotating frame is provided with an outer edge wing plate that fits the end face of the lifting frame, and the outer edge wing plate is provided with a plurality of groups of positioning holes distributed in a circumferential array, and the positioning holes are threadedly installed with pins, and the end face of the lifting frame is provided with a group of sockets that match the positioning holes, and the pins are inserted into the sockets.
[0010] Preferably, one side of the suction cup fits against the outer wall of the brain monitor body, and a folding tube is provided on the other side of the suction cup. The folding tube is fixed on the connecting frame, and the end of the folding tube is connected to a rubber expansion ball.
[0011] Preferably, the first flap is provided with a first clamping block, the second clamping block and the first clamping block are rotatably mounted on the second flap and the first flap respectively, the second clamping block is provided with a penetrating clamping slot, the first clamping block is provided with a clamping plate rotatably matched with the clamping slot, the first flap is rotatably mounted on the upper end of one side of the installation box, the other side of the installation box is provided with a sliding groove for lifting, a lifting plate is slidably mounted in the sliding groove, and the second flap is rotatably mounted on the lifting plate.
[0012] Preferably, a U-shaped inner groove is provided on the side of the installation box close to the armrest side panel, one end of the U-shaped inner groove is opposite to the gap between the armrest side panel and the installation side wall and is lifted and installed with a first piston column, and the other end of the U-shaped inner groove extends to face the lifting plate, and the lower end of the lifting plate is provided with a second piston column slidably inserted in the U-shaped inner groove.
[0013] Preferably, the fixing assembly is installed on the first piston column, and the fixing assembly includes an end head and a connecting rod, the end head is provided with a three-way inner cavity, the outer diameter of the end head is equal to the gap width between the armrest side panel and the installation side wall, two ends of the three-way inner cavity extend to the side wall of the end head and are slidably inserted with an extrusion side rod, and the other end of the three-way inner cavity extends vertically upward and is slidably inserted with an extrusion push rod, a pair of the extrusion side rods are respectively facing the side walls of the armrest side panel and the installation side wall, and a transversely connected crossbeam is provided between the armrest side panel and the installation side wall, the upper end of the extrusion push rod is attached to the crossbeam, the lower end of the connecting rod is vertically fixed to the upper end of the extrusion push rod, the middle section of the connecting rod extends through the crossbeam, and an extension plate is provided on the second clamping block. After the second clamping block is flipped down, the extension plate is pressed on the crossbeam and fixed to the connecting rod.
[0014] Preferably, the extrusion push rod is elastically installed on the upper end of the end head by a spring, and a cross end cover is rotatably installed on the end of the connecting rod. A cross through hole is provided on the extension plate to cooperate with the cross end cover, and the cross end cover extends to the upper end of the extension plate and is rotated and pressed on the upper end port of the cross through hole.
[0015] A brain monitoring system is provided, which is arranged in a brain monitor body. The monitoring system is used to control the portable monitor installation box. The brain monitoring system is electrically connected to a motor, a telescopic column and an adjustment rod.
[0016] Compared with the prior art, the present invention has the following beneficial effects: The present invention realizes convenient fixing of the installation box only by using the armrest side panel by arranging the cooperation between the fixing component and the second clamping block, and at the same time uses the rotating telescopic column to extend the monitor to the outside of the box body, and uses the motor and the adjustment rod to realize convenient rotation operation of the monitor equipment and display angle adjustment, thereby greatly improving the convenience of using the monitor and improving the efficiency of first aid. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the installation and fixing structure of the present invention; Figure 2 It is a schematic diagram of the extended use structure of the present invention; Figure 3 for Figure 2 A magnified view of the structure at center A; Figure 4 This is a schematic diagram of the lifting and installation structure of the monitor of the present invention; Figure 5 for Figure 3 A magnified view of the structure at point B in the middle; Figure 6 This is a schematic diagram of the three-dimensional structure of the monitor of the present invention installed on the clamping frame; Figure 7 This is a schematic diagram of the rotating installation structure of the clamping frame of the present invention; Figure 8 This is a schematic diagram of the fixed three-dimensional structure of the fixing assembly and the second clamping block of the present invention; Figure 9 It is a schematic diagram of the three-dimensional structure of the connection between the second flap and the armrest side panel of the present invention.
[0018] In the figure: 1. Mounting side wall; 2. Mounting box; 3. Lower support column; 4. Telescopic column; 5. Mounting cavity; 6. Armrest side panel; 7. U-shaped inner groove; 8. Lifting frame; 9. Rotating frame; 10. Connecting frame; 11. Brain monitor body; 12. Clamping frame; 13. Adjusting rod; 14. First flap; 15. Second flap; 16. First clamping block; 17. Second clamping block; 18. Motor; 19. First piston column; 21. Clamp Plate; 22. Rotating seat; 23. Suction cup; 24. Positioning hole; 25. Latch; 26. Card slot; 27. Extension plate; 28. Cross through hole; 29. Connecting rod; 30. End; 31. Lifting plate; 32. Crossbeam; 33. Extrusion side rod; 34. Spring; 35. Extrusion push rod; 36. Three-way inner cavity; 37. Rubber expansion ball; 38. Mounting slot; 39. Second piston column; 40. Folding tube; 41. Cross end cover. DETAILED DESCRIPTION
[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0020] See also Figures 1 to 9 , the present invention provides a technical solution: Example 1: A portable monitor installation box includes an installation box 2 and a brain monitor body 11. The installation box 2 is placed on one side of the installation side wall 1. The installation side wall 1 is provided with armrest side panels 6 installed at intervals. A transversely connected crossbeam 32 is provided between the armrest side panels 6 and the installation side wall 1.
[0021] The crossbeam 32 is used to achieve gap-fixed installation of the armrest side panel 6 on the installation side wall 1 .
[0022] The inner cavity of the installation box 2 is set as the installation cavity 5, the lifting frame 8, the rotating frame 9, the connecting frame 10 and the clamping frame 12 are all set in the installation cavity 5, the telescopic column 4 is fixed at the lower end of the installation cavity 5, and the end of the telescopic column 4 is fixedly connected to the lower end of the lifting frame 8. The lower end of the installation box 2 is provided with a lower support column 3 for support, and the inner cavity of the installation box 2 is provided with a lifting frame 8 driven to rise and fall by the telescopic column 4.
[0023] The lifting frame 8 is lifted and installed by the telescopic column 4, thereby pushing the brain monitor body 11 out of the installation cavity 5, thereby facilitating use.
[0024] A rotating frame 9 driven by a motor 18 is provided on one side of the lifting frame 8, and a connecting frame 10 is rotatably installed on one side of the rotating frame 9. A clamping frame 12 telescopically connected by an adjusting rod 13 is provided on the side wall of the rotating frame 9, and an opening is provided at the upper end of the clamping frame 12. The brain monitor main body 11 is vertically installed in the clamping frame 12, and one side of the motor 18 is fixed on the side wall of the lifting frame 8. The output shaft of the motor 18 is connected to the rotating frame 9. The outer contour of the connecting frame 10 is smaller than the inner contour of the rotating frame 9. The rotating frame 9 and the connecting frame 10 are rotatably connected by a swivel seat 22. One end of the adjusting rod 13 is fixed on the rotating frame 9, and the other end of the adjusting rod 13 is fixed on the clamping frame 12. The clamping frame 12 is provided with a mounting slot 38 with an opening facing upward, and the brain monitor main body 11 is vertically plugged and installed along the mounting slot 38.
[0025] By setting up the installation slot 38, the brain monitor body 11 can be vertically plugged in and placed, thereby achieving the purpose of protective storage. The motor 18 is used to drive the rotating frame 9 to rotate, thereby achieving the circular rotation adjustment of the brain monitor body 11, thereby facilitating the rotation of the laterally distributed or lower-end ports to the top, thereby facilitating the cable connection operation.
[0026] By adjusting the lengths of the upper and lower adjustment rods 13 to different lengths, the connecting frame 10 can be rotated on the rotating base 22, and the brain monitor body 11 can be placed at an angle, which facilitates the display of the screen of the brain monitor body 11. By synchronously driving the upper and lower adjustment rods 13, the brain monitor body 11 is inserted into the connecting frame 10, achieving the purpose of squeezing and fixing the brain monitor body 11, and preventing the brain monitor body 11 from falling off during rotation or adjustment.
[0027] A pair of rotatably mounted flap assemblies are provided at the upper end of the installation box 2, and the flap assembly covers the upper end of the installation box 2, and the flap assembly includes a first flap 14 and a second flap 15, the second flap 15 is provided with a second clamping block 17, the first flap 14 is provided with a first clamping block 16, the second clamping block 17 and the first clamping block 16 are rotatably mounted on the second flap 15 and the first flap 14 respectively, the second clamping block 17 is provided with a penetrating clamping slot 26, and the first clamping block 16 is provided with a clamping plate 21 rotatably engaged with the clamping slot 26.
[0028] By arranging the rotational cooperation of the clamping plate 21 and the clamping slot 26, the first flap 14 and the second flap 15 are staggeredly plugged in, thereby achieving the fixation of the first flap 14 and the second flap 15, thereby achieving the fixed closure of the upper end of the installation box 2.
[0029] The first flap 14 is rotatably mounted on the upper end of one side of the installation box 2 . A lifting chute is provided on the other side of the installation box 2 . A lifting plate 31 is slidably mounted in the chute. The second flap 15 is rotatably mounted on the lifting plate 31 .
[0030] The lifting plate 31 is used to realize vertical lifting and squeezing of the second flap 15 along the sliding groove.
[0031] A fixing component is provided on one side of the installation box 2, and the fixing component is inserted and installed upward along the gap between the armrest side panel 6 and the installation side wall 1. The second clamping block 17 is flipped to the upper end of the gap between the armrest side panel 6 and the installation side wall 1, and the fixing component is fixed in cooperation with the second clamping block 17. A U-shaped inner groove 7 is provided on the side of the installation box 2 close to the armrest side panel 6. One end of the U-shaped inner groove 7 is facing the gap between the armrest side panel 6 and the installation side wall 1 and a first piston column 19 is installed for lifting. The other end of the U-shaped inner groove 7 extends to face the lifting plate 31, and the lower end of the lifting plate 31 is provided with a second piston column 39 that is slidably inserted in the U-shaped inner groove 7.
[0032] By arranging the cooperation between the first piston column 19, the second piston column 39 and the U-shaped inner groove 7, the second piston column 39 is driven to descend during the vertical downward extrusion process after the second flap 15 is flipped over. At this time, the internal pressure of the U-shaped inner groove 7 increases, driving the first piston column 19 to rise synchronously.
[0033] The fixing assembly is installed on the first piston column 19. The fixing assembly includes an end head 30 and a connecting rod 29. A three-way inner cavity 36 is provided on the end head 30. The outer diameter of the end head 30 is equal to the gap width between the armrest side panel 6 and the installation side wall 1. Two ends of the three-way inner cavity 36 extend to the side wall of the end head 30 and are slidably inserted with an extruded side rod 33. The other end of the three-way inner cavity 36 extends vertically upward and is slidably inserted with an extruded push rod 35. A pair of extruded side rods 33 are respectively facing the armrest side panel 6 and the side wall of the installation side wall 1. The upper end of the extruded push rod 35 is attached to the cross beam 32. The lower end of the connecting rod 29 is vertically fixed to the upper end of the extruded push rod 35. The middle section of the connecting rod 29 extends through the cross beam 32. An extension plate 27 is provided on the second block 17. After the second block 17 is flipped and lowered, the extension plate 27 is pressed on the cross beam 32 and fixed to the connecting rod 29 During the driving process, the second clamping block 17 and the end head 30 are engaged with each other, and then fixed on the crossbeam 32 to achieve convenient and stable fixation of the installation box 2 on the armrest side panel 6.
[0034] Working principle: First, open the first flap 14 and vertically insert the brain monitor body 11 into the clamping frame 12 along the installation slot 38 to achieve the installation and convenient transportation of the brain monitor body 11. Then, the first flap 14 of the tube wall is rotated and matched with the clamping plate 21 and the clamping slot 26 to achieve the staggered insertion of the first flap 14 and the second flap 15, thereby achieving the fixation of the first flap 14 and the second flap 15, thereby achieving the fixed closure of the upper end of the installation box 2.
[0035] When it is needed, one side of the installation box 2 is placed against the lower end of the armrest side panel 6, and the first flap 14 and the second flap 15 are opened synchronously. After the second flap 15 is flipped, the lifting plate 31 is pulled down along the slide groove. During the descent, the second block 17 is inserted from top to bottom into the gap of the armrest side panel 6, and the second piston column 39 is driven to descend while descending. At this time, the internal pressure of the U-shaped inner groove 7 increases, driving the first piston column 19 to rise synchronously, and then the end head 30 is inserted from bottom to top into the gap of the armrest side panel 6, thereby realizing synchronous insertion.
[0036] During the rising process of the end head 30, the extrusion push rod 35 is pressed against the cross beam 32, thereby compressing the spring 34 and increasing the internal pressure of the tee cavity 36, driving a pair of extrusion side rods 33 to extend laterally and press tightly against the armrest side panels 6 and the side walls of the mounting side wall 1, thereby achieving the purpose of fixing the end head 30. At the same time, the connecting rod 29 is inserted into the second clamping block 17 to realize a fixed clamping connection.
[0037] Therefore, the installation box 2 can be fixed conveniently and quickly by only vertically plugging in the second plug-in plate 15 .
[0038] After installation, the lifting frame 8 is driven by the telescopic column 4 to rise to the upper end of the installation box 2. The brain monitor body 11 is inserted into the connecting frame 10 by the synchronous driving of the upper and lower adjustment rods 13, thereby achieving the purpose of squeezing and fixing the brain monitor body 11 and preventing the brain monitor body 11 from falling off during rotation or adjustment. The rotating frame 9 is driven by the motor 18 to rotate to achieve the circumferential rotation adjustment of the brain monitor body 11, thereby facilitating the rotation of the laterally distributed or lower end ports to the upper side, facilitating the cable connection operation. By adjusting the different lengths of the upper and lower adjustment rods 13, the connecting frame 10 is rotated on the rotating seat 22, and the brain monitor body 11 is placed at an angle, which facilitates the display of the screen of the brain monitor body 11.
[0039] Example 2: On the basis of Example 1, in order to limit the position after rotation adjustment, an outer edge wing plate is provided on the arc outer wall of the rotating frame 9 to fit the end face of the lifting frame 8, and a plurality of groups of positioning holes 24 distributed in a circular array are provided on the outer edge wing plate. A pin 25 is threadedly installed in the positioning hole 24, and a group of sockets cooperating with the positioning hole 24 are provided on the end face of the lifting frame 8, and the pin 25 is inserted into the socket.
[0040] After the rotating frame 9 is rotated and adjusted, the latch 25 is inserted into the positioning hole 24 to limit the rotation angle and avoid deflection.
[0041] Example 3: Based on Example 2, in order to improve the protection of the brain monitor main body 11 during transportation and use, the inner cavity port of the connecting frame 10 is directly opposite the brain monitor main body 11, and a suction cup 23 is provided in the inner cavity of the connecting frame 10 to fit the brain monitor main body 11. One side of the suction cup 23 fits the outer wall of the brain monitor main body 11, and a folding tube 40 is provided on the other side of the suction cup 23. The folding tube 40 is fixed to the connecting frame 10, and the end of the folding tube 40 is connected to the rubber expansion ball 37.
[0042] By arranging the cooperation between the suction cup 23 and the folding tube 40, after the brain monitor body 11 is plugged in and installed, the suction cup 23 is adsorbed on the side wall of the brain monitor body 11 by contracting the lower amplitude of the adjustment rod 13, thereby forming lateral buffer protection.
[0043] However, when the adjustment rod 13 is greatly retracted to store one side of the brain monitor body 11 into the interior of the connecting frame 10, the folding tube 40 is squeezed and contracted, and the rubber expansion ball 37 expands at this time. After use, when it needs to be reset, the rubber expansion ball 37 is deformed and reset as the rope of the folding tube 40 is pulled, thereby improving the protection of the brain monitor body 11 while not affecting normal use.
[0044] Example 4: On the basis of Example 3, in order to improve the convenient connection between the connecting rod 29 and the extension plate 27, the extrusion push rod 35 is elastically installed on the upper end of the end head 30 by a spring 34, and the end of the connecting rod 29 is rotatably installed with a cross end cover 41. The extension plate 27 is penetrated by a cross through hole 28 that cooperates with the cross end cover 41. The cross end cover 41 extends to the upper end of the extension plate 27 and is rotated and pressed on the upper end port of the cross through hole 28 by offset rotation.
[0045] By setting the cooperation between the cross through hole 28 and the cross end cover 41, a convenient locking connection is achieved. During the plug-in process, the cross end cover 41 and the cross through hole 28 correspond to each other up and down to achieve through plug-in. After the cross end cover 41 extends to the top of the extension plate 27, the cross end cover 41 is rotated to achieve misalignment with the cross through hole 28, thereby achieving the purpose of quick locking connection.
[0046] A brain monitoring system is provided in a brain monitor body 11 . The monitoring system is used to control a portable monitor installation box. The brain monitoring system is electrically connected to a motor 18 , a telescopic column 4 , and an adjustment rod 13 .
[0047] By setting up a monitoring system to control the equipment on the installation box 2, convenient intelligent control during adjustment and use can be achieved.
[0048] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A portable monitor installation box, comprising a mounting box (2) and a brain monitor body (11), characterized in that: The installation box (2) is placed on one side of the installation side wall (1), and the installation side wall (1) is provided with an armrest side panel (6) installed at intervals. The lower end of the installation box (2) is provided with a lower support column (3) for support. The inner cavity of the installation box (2) is provided with a lifting frame (8) driven to rise and fall by a telescopic column (4). A rotating frame (9) driven by a motor (18) is provided on one side of the lifting frame (8). A connecting frame (10) is rotatably installed on one side of the rotating frame (9). A clamping frame (12) telescopically connected by an adjusting rod (13) is provided on the side wall of the rotating frame (9). The upper end of the clamping frame (12) is provided with an opening. The brain monitor body (11) is vertically installed in the clamping frame (12). The connecting frame (10) is provided with a plurality of holes. The inner cavity port faces the brain monitor body (11), and a suction cup (23) that fits the brain monitor body (11) is provided in the inner cavity of the connecting frame (10). A pair of rotatably installed flip-up components are provided at the upper end of the installation box (2), and the flip-up components cover the upper end of the installation box (2), and the flip-up components include a first flip-up panel (14) and a second flip-up panel (15), and a second card block (17) is provided on the second flip-up panel (15). A fixing component is provided on one side of the installation box (2), and the fixing component is inserted and installed upward along the gap between the armrest side panel (6) and the installation side wall (1), and the second card block (17) is flipped to the upper end of the gap between the armrest side panel (6) and the installation side wall (1), and the fixing component is fixed in cooperation with the second card block (17).
2. The portable monitor installation box according to claim 1, characterized in that: The inner cavity of the installation box (2) is set as an installation inner cavity (5), the lifting frame (8), the rotating frame (9), the connecting frame (10) and the clamping frame (12) are all set in the installation inner cavity (5), the telescopic column (4) is fixed to the lower end of the installation inner cavity (5), and the end of the telescopic column (4) is fixedly connected to the lower end of the lifting frame (8).
3. The portable monitor installation box according to claim 2, characterized in that: One side of the motor (18) is fixed on the side wall of the lifting frame (8), the output shaft of the motor (18) is connected to the rotating frame (9), the outer contour of the connecting frame (10) is smaller than the inner contour of the rotating frame (9), the rotating frame (9) and the connecting frame (10) are rotatably connected through a rotating seat (22), one end of the adjusting rod (13) is fixed on the rotating frame (9), and the other end of the adjusting rod (13) is fixed on the clamping frame (12), and the clamping frame (12) is provided with an upwardly opening mounting slot (38), and the brain monitor body (11) is vertically plugged and installed along the mounting slot (38).
4. The portable monitor installation box according to claim 3, characterized in that: The arc outer wall of the rotating frame (9) is provided with an outer edge wing plate that fits the end face of the lifting frame (8), and a plurality of positioning holes (24) distributed in a circumferential array are provided on the outer edge wing plate. The positioning holes (24) are threadedly rotatably installed with latches (25). The end face of the lifting frame (8) is provided with a group of sockets that match the positioning holes (24), and the latches (25) are inserted into the sockets.
5. The portable monitor installation box according to claim 1, characterized in that: One side of the suction cup (23) is in contact with the outer wall of the brain monitor body (11), and the other side of the suction cup (23) is provided with a folding tube (40), the folding tube (40) is fixed on the connecting frame (10), and the end of the folding tube (40) is connected to a rubber expansion ball (37).
6. The portable monitor installation box according to claim 1, characterized in that: The first flap (14) is provided with a first clamping block (16), the second clamping block (17) and the first clamping block (16) are rotatably mounted on the second flap (15) and the first flap (14), respectively, the second clamping block (17) is provided with a through-set clamping groove (26), the first clamping block (16) is provided with a clamping plate (21) rotatably engaged with the clamping groove (26), the first flap (14) is rotatably mounted on the upper end of one side of the installation box (2), the other side of the installation box (2) is provided with a sliding groove for lifting, a lifting plate (31) is slidably mounted in the sliding groove, and the second flap (15) is rotatably mounted on the lifting plate (31).
7. The portable monitor installation box according to claim 6, characterized in that: A U-shaped inner groove (7) is provided on one side of the installation box (2) close to the armrest side panel (6), one end of the U-shaped inner groove (7) faces the gap between the armrest side panel (6) and the installation side wall (1) and is provided with a first piston column (19) for lifting, and the other end of the U-shaped inner groove (7) extends to face the lifting plate (31), and the lower end of the lifting plate (31) is provided with a second piston column (39) slidably inserted in the U-shaped inner groove (7).
8. The portable monitor installation box according to claim 7, characterized in that: The fixing assembly is mounted on the first piston column (19), and the fixing assembly includes an end head (30) and a connecting rod (29). A three-way inner cavity (36) is provided on the end head (30), and the outer diameter of the end head (30) is equal to the gap width between the armrest side plate (6) and the mounting side wall (1). Two ends of the three-way inner cavity (36) extend to the side wall of the end head (30) and are slidably connected with an extrusion side rod (33). The other end of the three-way inner cavity (36) extends vertically upward and is slidably connected with an extrusion top rod (35). A pair of the extrusion side rods (33) are respectively A side wall facing the handrail side panel (6) and the mounting side wall (1) is provided with a transversely connected crossbeam (32) between the handrail side panel (6) and the mounting side wall (1), the upper end of the extrusion push rod (35) is in contact with the crossbeam (32), the lower end of the connecting rod (29) is vertically fixed to the upper end of the extrusion push rod (35), the middle section of the connecting rod (29) extends through the crossbeam (32), and an extension plate (27) is provided on the second clamping block (17). After the second clamping block (17) is turned over and lowered, the extension plate (27) is pressed onto the crossbeam (32) and fixed to the connecting rod (29).
9. The portable monitor installation box according to claim 8, characterized in that: The extrusion ejector rod (35) is elastically mounted on the upper end of the end head (30) via a spring (34); a cross end cap (41) is rotatably mounted on the end of the connecting rod (29); a cross through hole (28) is provided on the extension plate (27) and matches the cross end cap (41); the cross end cap (41) extends to the upper end of the extension plate (27) and is rotated and pressed onto the upper end port of the cross through hole (28) in a displaced manner.
10. A brain monitoring system, characterized in that: The brain monitoring system is arranged in the brain monitor body (11), and the brain monitoring system is used to control the portable monitor installation box described in any one of claims 1 to 9. The brain monitoring system is electrically connected to the motor (18), the telescopic column (4) and the adjustment rod (13).