Suspension type hydraulic lifting basketball stand capable of displaying motion information in real time
By combining hydraulic cylinders and diagonal bracing, the problems of vibration and difficult assembly/disassembly of suspended hydraulic lifting basketball hoops are solved, enabling stable lifting and lowering of the backboard and quick assembly/disassembly. This simplifies the handling of basketball jamming and improves ease of use and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- LINYI YINGJIANTE SPORTS EQUIP DEV CO LTD
- Filing Date
- 2026-03-24
- Publication Date
- 2026-05-15
AI Technical Summary
Existing suspended hydraulic lifting basketball hoops, when the backboard is suspended at a high position, experience significant vibrations after being violently impacted by the basketball, affecting the standard height and position of the basketball frame. The loading and unloading process is cumbersome and inconvenient for maintenance. The basketball can easily get stuck between the basketball frame and the backboard, and climbing to retrieve the ball is tedious, laborious, and somewhat dangerous.
The sliding rod of the movable frame is raised and lowered using a hydraulic cylinder, which, combined with the diagonal brace and hydraulic cylinder, prevents the backboard from shaking violently. The elastic buckle design of the mounting plate and the sleeve frame allows for quick assembly and disassembly. The servo motor drives the gear transmission, and the buffer spring helps to loosen the ball.
It achieves stable raising and lowering of the backboard, improves loading and unloading efficiency, simplifies the assembly and disassembly process of the backboard, avoids the trouble of the basketball getting stuck, and is convenient and safe to operate.
Smart Images

Figure CN122032052A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sports equipment technology, and in particular to a suspended hydraulic lifting basketball hoop that displays real-time motion information. Background Technology
[0002] Basketball is a popular sport, and basketball hoops are essential equipment for basketball courts. Basketball equipment, including backboards, nets, and backboard supports, is installed at the center of each end of the basketball court. Types of hoops include hydraulic, mobile, fixed, suspended, "seagull" (a type of backboard), and "cannon" (another type of backboard).
[0003] Existing suspended hydraulic lifting basketball hoops suffer from significant vibrations when the backboard is suspended at a high position and subjected to a violent impact from the basketball. This affects the standard height and position of the basketball frame. Furthermore, the basketball frame is usually fixed with a large number of bolts, requiring tools for assembly and disassembly. This process is cumbersome at high altitudes, making it inconvenient for later maintenance and repair. In addition, the basketball can easily get stuck between the basketball frame and the backboard, making it tedious, laborious, and dangerous to climb and retrieve it. Summary of the Invention
[0004] In view of this, the present invention provides a suspended hydraulic lifting basketball hoop that displays real-time motion information, in order to solve the problems of existing suspended hydraulic lifting basketball hoops where the backboard is suspended at a high position, causing significant vibration after being violently impacted by the basketball, affecting the standard height and position of the ball frame horizontally, and the ball frame is difficult to load and unload at high altitudes, making it inconvenient for later maintenance and repair. In addition, the basketball is prone to getting stuck between the ball frame and the backboard, and climbing to retrieve the ball is generally cumbersome, laborious, and somewhat dangerous.
[0005] This invention provides a suspended hydraulic lifting basketball hoop that displays real-time motion information, specifically comprising: a mounting top frame, with a suspended base frame at its bottom; a diagonal support frame at the bottom of the mounting top frame, the diagonal support frame being connected to the suspended base frame; a movable frame at the bottom of the suspended base frame; a backboard at the front of the movable frame; a ball frame at the bottom front end of the backboard; the ball frame being mounted on a mounting plate, the mounting plate being connected to the ball frame; and an information display panel at the front end of the suspended base frame, the information display panel being located above the backboard.
[0006] Furthermore, the mounting frame includes a crossbeam, fixed columns, and a limiting frame. The crossbeam is distributed in two parallel positions, and fixed columns are provided at both ends of the top of each crossbeam. The fixed columns are connected to the crossbeam by clamps, and a limiting frame is provided at the top of the crossbeam.
[0007] Further, the suspension chassis includes connecting frames, mounting sleeves, connecting diagonal rods, and hydraulic cylinders. There are two connecting frames distributed in a vertically parallel manner. The middle position of the bottom of the connecting frame is provided with a mounting sleeve. Connecting diagonal rods are provided on both sides of the bottom of the connecting frame, and the bottom ends of the connecting diagonal rods are connected to the mounting sleeve. A hydraulic cylinder is provided at the rear of the mounting sleeve.
[0008] Further, the brace frame includes a connecting plate, a first brace, and a second brace. The connecting plate is arranged between the cross beam and the limiting frame, and the connecting plate is connected to the cross beam through a hoop. The first brace and the second brace are provided at the bottom of the connecting plate, and the bottom ends of the first brace and the second brace are connected to the mounting sleeve. And the second brace is connected to the connecting frame through a short lever.
[0009] Further, the movable frame includes a sliding rod, a connecting support plate, a support frame, and a support column. A connecting support plate is provided on the sliding rod. A support frame and a support column are provided at the front end of the sliding rod, and the support frame and the support column are connected to the backboard. The sliding rod is slidably inserted into the mounting sleeve, and the bottom end of the telescopic rod of the hydraulic cylinder is connected to the connecting support plate.
[0010] Further, a mounting sleeve frame is provided at the bottom position near the front end of the backboard. Two positioning through holes are provided at the bottom of the mounting sleeve frame, and the two positioning through holes are distributed symmetrically. Limiting bolt rods are provided on the left and right sides of the mounting sleeve frame, and the limiting bolt rods slidably penetrate through the backboard. Two brackets are provided at the bottom position near the rear end of the backboard, and the brackets are matched with the positions of the limiting bolt rods; A pressing plate is provided at the front end of the limiting bolt rod, and two positioning insertion rods are provided at the rear of the pressing plate; The bracket is of a "U" - shaped structure, and a rotating sleeve is provided at the middle position of the bracket. A knob is provided at the rear side of the bracket, and a rotating ring is provided at the front end of the knob. And the knob is rotationally connected to the rotating sleeve through the rotating ring.
[0011] Further, a rotating frame is provided at the rear of the ball frame. A limiting chute is provided at the bottom of the rotating frame. Four buffer springs are provided at the bottom of the rotating frame, and the top ends of the buffer springs are rotationally connected to the rotating frame through connecting double - ears. A transmission rod is provided at the bottom of the rotating frame, and the transmission rod is matched with the position of the limiting chute.
[0012] Further, two connecting plugs are provided at the bottom of the mounting insertion plate, and the connecting plugs are composed of two elastic buckles. A mounting seat is provided at the front end of the mounting insertion plate, and the mounting seat is provided with a through - slot. A bottom plate and a mounting cover are provided at the front end of the mounting insertion plate, and the mounting cover is located below the mounting seat, and the bottom plate is located inside the mounting cover. A servo motor is provided at the bottom of the bottom plate. The rotating frame is rotationally connected to the mounting seat through a pin shaft, and the bottom ends of the buffer springs are rotationally connected to the bottom plate through connecting double - ears. The mounting insertion plate is slidably inserted into the mounting sleeve frame, and the two elastic buckles of the connecting plug are clamped with the rectangular bayonet of the positioning through - hole. And the positioning insertion rod slidably penetrates through the mounting insertion plate and the mounting sleeve frame.
[0013] Furthermore, the transmission rod slides through the base plate, and a sliding block is rotatably mounted on the top of the transmission rod via connecting double ears. The sliding block is slidably connected to the rotating frame via a limiting groove, and a toothed plate is provided at the bottom of the transmission rod.
[0014] Furthermore, the servo motor has a rotating shaft on its rotating shaft, and the rotating shaft is rotatably connected to the base plate through a bearing seat. The rotating shaft has a missing gear, and the missing gear meshes with the gear plate. Beneficial effects
[0015] 1. This device is powered by a hydraulic cylinder, which controls the sliding rod of the movable frame to slide up and down along the mounting sleeve, thereby adjusting the height of the backboard. Through the cooperation of the diagonal support frame and the hydraulic cylinder, the backboard can be prevented from shaking violently during shooting, and the backboard can be made more stable during the rising or falling process.
[0016] 2. This device is equipped with a mounting plate and a mounting bracket. The mounting plate slides into the mounting bracket, and the two elastic buckles of the connecting plug engage with the rectangular slots of the positioning through holes. The positioning rod slides through the mounting plate and the mounting bracket, while the limiting bolt slides through the backboard and the bracket. The limiting bolt is locked by a knob, which allows the mounting plate to be quickly assembled and disassembled with the backboard. During the entire assembly and disassembly process, since there is no need to loosen and remove a large number of bolts with tools, the assembly efficiency of the ball frame on the backboard is improved.
[0017] 3. When the basketball is stuck between the ball frame and the backboard, the servo motor provides power and uses a gear and toothed plate transmission to drive the ball frame to rotate on the mounting base around the pin. With the help of the rebounding and pulling action of the four buffer springs, the ball frame can vibrate up and down, thereby loosening the stuck basketball and causing it to fall. Its structure is simple and its operation is flexible and convenient. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0019] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0020] In the attached diagram: Figure 1 This is a schematic diagram of the overall axial view structure of an embodiment of the present invention.
[0021] Figure 2 This is a schematic diagram of the exploded structure of the mounting top frame, suspension base frame, and diagonal brace of an embodiment of the present invention.
[0022] Figure 3This is a schematic diagram of the exploded structure of the movable frame, backboard, and ball frame according to an embodiment of the present invention.
[0023] Figure 4 This is an embodiment of the present invention. Figure 3 Enlarged structural diagram of section A in the middle.
[0024] Figure 5 This is a schematic diagram of the backboard, ball frame, and mounting plate in an exploded state according to an embodiment of the present invention.
[0025] Figure 6 This is a schematic diagram of the exploded structure of the limiting bolt, bracket, and mounting plate according to an embodiment of the present invention.
[0026] Figure 7 This is a schematic diagram of the exploded state structure of the ball frame, mounting plate, and transmission rod according to an embodiment of the present invention.
[0027] Figure 8 This is an embodiment of the present invention. Figure 7 Enlarged structural diagram of section B.
[0028] Figure 9 This is a schematic diagram of the mounting plate and servo motor structure according to an embodiment of the present invention.
[0029] List of reference numerals 1. Top frame installation; 101. Crossbeam; 102. Fixed column; 103. Limiting frame; 2. Suspension base frame; 201. Connecting frame; 202. Installation sleeve; 203. Connecting diagonal bar; 204. Hydraulic cylinder; 3. Diagonal brace; 301. Connecting plate; 302. First diagonal brace; 303. Second diagonal brace; 4. Movable frame; 401. Sliding rod; 402. Connecting support plate; 403. Support frame; 404. Support column; 5. Backboard; 501. Installation sleeve; 502. Positioning through hole; 503. Limiting bolt; 5031 5031, Pressure plate; 5042, Positioning rod; 5043, Bracket; 50444, Rotating sleeve; 5045, Knob; 5046, Rotating ring; 607, Ball frame; 608, Rotating frame; 609, Limiting slide groove; 6000, Buffer spring; 7001, Mounting plate; 701, Connecting plug; 702, Mounting base; 703, Through groove; 704, Base plate; 705, Mounting cover; 8001, Transmission rod; 801, Sliding block; 802, Gear plate; 9001, Servo motor; 902, Rotating shaft; 903, Missing gear; 10, Information display board. Detailed Implementation
[0030] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts.
[0031] Example: Please refer to Figures 1 to 9 As shown: This invention provides a suspended hydraulic lifting basketball hoop that displays real-time motion information, comprising: a mounting top frame 1, with a suspended base frame 2 at the bottom of the mounting top frame 1; a diagonal support frame 3 at the bottom of the mounting top frame 1, and the diagonal support frame 3 being connected to the suspended base frame 2; a movable frame 4 at the bottom of the suspended base frame 2; a backboard 5 at the front of the movable frame 4; a ball frame 6 at the bottom front end of the backboard 5; the ball frame 6 being mounted on a mounting plate 7, and the mounting plate 7 being connected to the ball frame 6; and an information display board 10 at the front end of the suspended base frame 2, and the information display board 10 being located above the backboard 5.
[0032] The mounting frame 1 includes a crossbeam 101, a fixed column 102, and a limiting frame 103. The crossbeam 101 is distributed in two parallel positions on the left and right sides, and a fixed column 102 is provided at both ends of the top of each crossbeam 101. The fixed column 102 is connected to the crossbeam 101 by a clamp, and a limiting frame 103 is provided at the top of the crossbeam 101. The suspension base frame 2 includes a connecting frame 201, a mounting sleeve 202, a connecting diagonal rod 203, and a hydraulic cylinder 204. The connecting frame 201 is distributed in two parallel positions, and the mounting sleeve 202 is provided at the middle position of the bottom of the connecting frame 201. The connecting diagonal rods 203 are provided on both sides of the bottom of the connecting frame 201, and the bottom end of the connecting diagonal rod 203 is connected to the mounting sleeve 202. The hydraulic cylinder 204 is provided at the rear of the mounting sleeve 202. The diagonal brace 3 includes a connecting plate 301, a first diagonal brace 302, and a second diagonal brace 303. The connecting plate 301 is disposed between the crossbeam 101 and the limiting frame 103, and the connecting plate 301 is connected to the crossbeam 101 by a clamp. The bottom of the connecting plate 301 is provided with the first diagonal brace 302 and the second diagonal brace 303, and the bottom ends of the first diagonal brace 302 and the second diagonal brace 303 are connected to the mounting sleeve 202. The second diagonal brace 303 is connected to the connecting frame 201 by a short rod. The movable frame 4 includes a sliding rod 401, a connecting support plate 402, a support frame 403 and a support column 404. A connecting support plate 402 is provided on the sliding rod 401. A support frame 403 and a support column 404 are provided at the front end of the sliding rod 401, and the support frame 403 and the support column 404 are connected to the backboard 5. The sliding rod 401 is slidably inserted into the mounting sleeve 202, and the bottom end of the telescopic rod of the hydraulic cylinder 204 is connected to the connecting support plate 402. The power of this device is provided by the hydraulic cylinder 204, which controls the sliding rod 401 of the movable frame 4 to slide up and down along the mounting sleeve 202, so as to adjust the height of the backboard 5. Through the cooperation of the diagonal support frame 3 and the hydraulic cylinder 204, it can prevent the backboard 5 from shaking violently during shooting and make the backboard 5 more stable during the rising or falling process.
[0033] Among them, at the bottom position near the front end of the backboard 5, there is a mounting sleeve frame 501. There are two positioning through holes 502 at the bottom of the mounting sleeve frame 501, and the two positioning through holes 502 are symmetrically distributed. There are limit bolt rods 503 on the left and right sides of the mounting sleeve frame 501, and the limit bolt rods 503 slide through the backboard 5. There are two brackets 504 at the bottom position near the rear end of the backboard 5, and the positions of the brackets 504 match those of the limit bolt rods 503; A pressing plate 5031 is provided at the front end of the limit bolt rod 503, and there are two positioning insertion rods 5032 at the rear of the pressing plate 5031; The bracket 504 is of a "U" - shaped structure, and there is a rotating sleeve 5041 at the middle position of the bracket 504. There is a knob 5042 at the rear of the bracket 504, and a rotating ring 5043 is provided at the front end of the knob 5042, and the knob 5042 is rotationally connected to the rotating sleeve 5041 through the rotating ring 5043; There is a rotating frame 601 at the rear of the ball frame 6. A limit chute 602 is provided at the bottom of the rotating frame 601. There are four buffer springs 603 at the bottom of the rotating frame 601, and the top ends of the buffer springs 603 are rotationally connected to the rotating frame 601 through connecting double - ears; The bottom of the mounting plate 7 has two connecting plugs 701, each consisting of two elastic clips. The front end of the mounting plate 7 has a mounting base 702 with a through groove 703. The front end of the mounting plate 7 also has a base plate 704 and a mounting cover 705, with the mounting cover 705 located below the mounting base 702 and the base plate 704 inside the mounting cover 705. The rotating frame 601 is rotatably connected to the mounting base 702 via a pin, and the bottom end of the buffer spring 603 is rotatably connected to the base plate 704 via connecting ears. This device includes a mounting plate 7 and a mounting sleeve 501. The mounting plate 7 is slidably inserted into the mounting bracket 501, and the two elastic buckles of the connecting plug 701 are engaged with the rectangular slot of the positioning through hole 502. The positioning plug rod 5032 slides through the mounting plate 7 and the mounting bracket 501, and the limiting bolt rod 503 slides through the backboard 5 and the bracket 504 at the same time. The limiting bolt rod 503 is locked and controlled by the knob 5042, so that the mounting plate 7 can be quickly assembled and disassembled with the backboard 5. During the entire assembly and disassembly process, since there is no need to loosen and remove a large number of bolts with tools, the assembly efficiency of the ball frame 6 on the backboard 5 is improved.
[0034] The rotating frame 601 is provided with a transmission rod 8 at the bottom, and the transmission rod 8 is matched with the position of the limiting slide groove 602; The bottom of the base plate 704 is equipped with a servo motor 9; The transmission rod 8 slides through the base plate 704, and a sliding block 801 is rotatably installed at the top of the transmission rod 8 via connecting double ears. The sliding block 801 is slidably connected to the rotating frame 601 via the limiting slide groove 602. A toothed plate 802 is provided at the bottom of the transmission rod 8. The servo motor 9 has a rotating shaft 901 on its rotating shaft, and the rotating shaft 901 is rotatably connected to the base plate 704 through a bearing seat. The rotating shaft 901 has a missing gear 902, and the missing gear 902 is meshed with the toothed plate 802. When the basketball is stuck between the ball frame 6 and the backboard 5, the servo motor 9 provides power, and the missing gear 902 and the toothed plate 802 drive the ball frame 6 to rotate on the mounting base 702 with the pin as the axis. With the rebound and pulling action of the four buffer springs 603, the ball frame 6 can vibrate up and down, thereby loosening the stuck basketball and causing it to fall. This eliminates the trouble of manually climbing to retrieve the ball. Its structure is simple and its operation is flexible and convenient.
[0035] The specific usage and function of this embodiment: In this invention, the hydraulic cylinder 204 provides power to control the sliding rod 401 of the movable frame 4 to slide up and down along the mounting sleeve 202, which can adjust the height of the backboard 5. Through the cooperation of the inclined support frame 3 and the hydraulic cylinder 204, the backboard 5 can be prevented from shaking violently during shooting, and the backboard 5 can be made more stable during the rising or falling process. The mounting plate 7 is slidably inserted into the mounting sleeve 501, and the two elastic buckles of the connecting plug 701 are engaged with the rectangular slot of the positioning through hole 502. The positioning plug 5032 slides through the mounting plate 7 and the mounting sleeve 501, and the limiting bolt 503 slides through the backboard 5 and the bracket. 504, and the limit bolt 503 is locked and controlled by knob 5042, so that the mounting plate 7 can be quickly assembled and disassembled with the backboard 5. During the entire assembly and disassembly process, since there is no need to loosen and remove a large number of bolts with tools, the assembly efficiency of the ball frame 6 on the backboard 5 is improved. When the basketball is stuck between the ball frame 6 and the backboard 5, the servo motor 9 provides power and uses the gear 902 and toothed plate 802 to drive the ball frame 6 to rotate on the mounting base 702 with the pin as the axis. With the rebound and pulling action of the four buffer springs 603, the ball frame 6 can vibrate up and down, thereby loosening the stuck basketball and causing it to fall off. Its structure is simple and its operation is flexible and convenient.
[0036] The above description is merely an exemplary embodiment of the present invention and is not intended to limit the scope of protection of the present invention, which is determined by the appended claims.
Claims
1. A suspended hydraulic lifting basketball hoop that displays real-time motion information, characterized in that: A suspended hydraulic lifting basketball hoop that displays real-time motion information includes: a mounting top frame (1), the bottom of which is provided with a suspended base frame (2); the bottom of the mounting top frame (1) is provided with a diagonal support frame (3), and the diagonal support frame (3) is connected to the suspended base frame (2); the bottom of the suspended base frame (2) is provided with a movable frame (4); the front of the movable frame (4) is provided with a backboard (5); the bottom of the front end of the backboard (5) is provided with a ball frame (6); the ball frame (6) is installed on a mounting plate (7), and the mounting plate (7) is connected to the ball frame (6); the front end of the suspended base frame (2) is provided with an information display board (10), and the information display board (10) is located above the backboard (5).
2. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 1, characterized in that: The mounting frame (1) includes a crossbeam (101), a fixing column (102), and a limiting frame (103). The crossbeam (101) is distributed in two parallel positions on the left and right, and a fixing column (102) is provided at both ends of the top of each crossbeam (101). The fixing column (102) is connected to the crossbeam (101) by a clamp. A limiting frame (103) is provided at the top of the crossbeam (101).
3. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 1, characterized in that: The suspension base (2) includes a connecting frame (201), a mounting sleeve (202), a connecting diagonal rod (203), and a hydraulic cylinder (204). The connecting frame (201) is distributed in two parallel positions, and the mounting sleeve (202) is located in the middle of the bottom of the connecting frame (201). The connecting diagonal rods (203) are located on both sides of the bottom of the connecting frame (201), and the bottom end of the connecting diagonal rod (203) is connected to the mounting sleeve (202). The hydraulic cylinder (204) is located at the rear of the mounting sleeve (202).
4. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 1, characterized in that: The diagonal brace (3) includes a connecting plate (301), a first diagonal brace (302) and a second diagonal brace (303). The connecting plate (301) is located between the crossbeam (101) and the limiting frame (103), and the connecting plate (301) is connected to the crossbeam (101) by a clamp. The bottom of the connecting plate (301) is provided with the first diagonal brace (302) and the second diagonal brace (303), and the bottom ends of the first diagonal brace (302) and the second diagonal brace (303) are connected to the mounting sleeve (202). The second diagonal brace (303) is connected to the connecting frame (201) by a short rod.
5. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 1, characterized in that: The movable frame (4) includes a sliding rod (401), a connecting support plate (402), a support frame (403), and a support column (404). The sliding rod (401) is provided with a connecting support plate (402). The front end of the sliding rod (401) is provided with a support frame (403) and a support column (404). The support frame (403) and the support column (404) are connected to the backboard (5). The sliding rod (401) is slidably inserted into the mounting sleeve (202). The bottom end of the telescopic rod of the hydraulic cylinder (204) is connected to the connecting support plate (402).
6. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 1, characterized in that: At the bottom position near the front end of the backboard (5), there is an installation sleeve frame (501). At the bottom of the installation sleeve frame (501), there are two positioning through holes (502), and the two positioning through holes (502) are distributed symmetrically. On the left and right sides of the installation sleeve frame (501), there are limit bolt rods (503), and the limit bolt rods (503) slide through the backboard (5) in a penetrating manner. At the bottom position near the rear end of the backboard (5), there are two brackets (504), and the positions of the brackets (504) match those of the limit bolt rods (503). At the front end of the limit bolt rod (503), there is a pressing plate (5031), and at the rear of the pressing plate (5031), there are two positioning insertion rods (5032). The bracket (504) has a "C" - shaped structure. At the middle position of the bracket (504), there is a rotating sleeve (5041). At the rear of the bracket (504), there is a knob (5042), and at the front end of the knob (5042), there is a rotating ring (5043). And the knob (5042) is rotationally connected to the rotating sleeve (5041) through the rotating ring (5043).
7. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 1, characterized in that: At the rear of the ball frame (6), there is a rotating frame (601). At the bottom of the rotating frame (601), there is a limit sliding groove (602). At the bottom of the rotating frame (601), there are four buffer springs (603), and the top ends of the buffer springs (603) are rotationally connected to the rotating frame (601) through connecting double - ears. At the bottom of the rotating frame (601), there is a transmission rod (8), and the position of the transmission rod (8) matches that of the limit sliding groove (602).
8. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 1, characterized in that: At the bottom of the installation insertion plate (7), there are two connecting plugs (701), and the connecting plugs (701) are composed of two elastic buckles. At the front end of the installation insertion plate (7), there is an installation seat (702). The installation seat (702) has a through - slot (703). At the front end of the installation insertion plate (7), there is a bottom plate (704) and an installation cover (705), and the installation cover (705) is located below the installation seat (702), and the bottom plate (704) is located inside the installation cover (705). At the bottom of the bottom plate (704), there is a servo - motor (9). The rotating frame (601) is rotationally connected to the installation seat (702) through a pin shaft, and the bottom ends of the buffer springs (603) are rotationally connected to the bottom plate (704) through connecting double - ears. The installation insertion plate (7) is slidably inserted into the installation sleeve frame (501), and the two elastic buckles of the connecting plugs (701) are clamped with the rectangular bayonets of the positioning through holes (502), and the positioning insertion rods (5032) penetrate through the installation insertion plate (7) and the installation sleeve frame (501) by sliding.
9. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 7, characterized in that: The transmission rod (8) slides through the bottom plate (704). At the top end of the transmission rod (8), a sliding block (801) is rotationally installed through a connecting double - ear, and the sliding block (801) is slidably connected to the rotating frame (601) through the limit sliding groove (602). At the bottom of the transmission rod (8), there is a toothed plate (802).
10. The suspended hydraulic lifting basketball hoop for real-time display of motion information as described in claim 8, characterized in that: On the rotating shaft of the servo - motor (9), there is a rotating shaft rod (901), and the rotating shaft rod (901) is rotationally connected to the bottom plate (704) through a bearing seat. On the rotating shaft rod (901), there is a missing - tooth gear (902), and the missing - tooth gear (902) is meshed with the toothed plate (802).