Integrated quick-release support and sighting telescope
By using an integrated quick-release bracket that shares a main housing with the scope, the problem of complicated installation and increased weight caused by separate installation of the scope and bracket has been solved, achieving miniaturization and weight reduction of the scope and improving the user experience.
Patent Information
- Application Number
- CN202520690237.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-04-11
AI Technical Summary
The existing separate design of the scope and bracket leads to cumbersome installation, increases product size and weight, and makes it difficult to meet the requirements of miniaturization and lightweighting.
Design an integrated quick-release bracket and scope, which achieves integrated installation by sharing a main housing. The components of the quick-release bracket and scope are directly integrated on the main housing, and quick installation and removal are achieved by using a wrench, lever and locking assembly.
This effectively reduces the overall weight and size of the scope, simplifies the installation process, improves the user experience, and enhances product competitiveness.
Smart Images

Figure CN223896691U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of sights, and in particular to an integrated quick-release bracket and sight. Background Technology
[0002] Currently, many scopes and their compatible mounts are separate units. Users must first assemble the scope and mount together, and then fix the mount to the device to be assembled, such as a gun or other product that requires a scope. This adds an extra installation step, making the process cumbersome and time-consuming, resulting in a poor user experience. Furthermore, the separate mount design requires additional material thickness for the connection between the mount and the scope's mounting surface, and the screw fixing also requires extra space, all of which increase the product's size and weight. These issues become increasingly apparent as products demand miniaturization and lightweight designs. Therefore, reducing the overall weight and size of products is a pressing technical problem that needs to be solved by those skilled in the art. Summary of the Invention
[0003] In view of this, this application provides an integrated quick-release bracket and scope, which can effectively improve the problems of cumbersome installation and increased size and weight of the overall equipment caused by the separate installation of the existing scope and bracket.
[0004] This application provides an integrated quick-release bracket for mounting to a main device. The quick-release bracket and the main device are integrally configured, and the quick-release bracket and the main device share a main housing. The main housing includes an integrally connected main housing portion and a mounting base. The mounting base is located on one side of the main housing portion in the thickness direction and is used to mount the components of the quick-release bracket. The main housing portion is used to mount the components of the main device.
[0005] In one embodiment, the quick-release bracket includes a wrench, a pull rod, and a locking assembly mounted on the mounting base. The pull rod is movably inserted through the mounting base and has a driving end and a fixed end opposite to each other. The wrench is drivenly connected to the driving end, and the locking assembly is fixedly connected to the fixed end. The wrench can rotate relative to the mounting base to drive the pull rod and the locking assembly to move between a locked position and an unlocked position.
[0006] In one embodiment, the mounting base includes a mounting groove and a first base body and a second base body located on opposite sides of the mounting groove. The pull rod passes through the first base body, the mounting groove, and the second base body. The wrench is mounted on the side of the first base body away from the mounting groove. The locking assembly is movably passed through the second base body.
[0007] In one embodiment, the bottom of the mounting groove is provided with a first limiting groove, and the pull rod is limited and engaged in the first limiting groove.
[0008] In one embodiment, the first base body is provided with a first through hole communicating with the mounting groove, the pull rod is movably inserted through the first through hole, and the driving end is located on the side of the first base body away from the mounting groove, and the wrench is drivenly connected to the driving end through a first shaft pin.
[0009] In one embodiment, the wrench includes a rotating support portion and a pressing portion and a driving portion connected to both ends of the rotating support portion. The pressing portion is tilted relative to the rotating support portion in a direction away from the first base body. The rotating support portion is supported on the side wall of the first base body on the side away from the mounting groove. The driving portion is provided with a connecting groove. The opposite side walls of the connecting groove are provided with pin holes. The driving end is movably connected to the connecting groove. The driving end is provided with a sliding hole. The first shaft pin can slide through the sliding hole and both ends of the first shaft pin are respectively inserted into the pin holes.
[0010] In one embodiment, the quick-release bracket further includes a wrench block, a second pivot pin, and a first elastic element. The wrench block is disposed near the drive unit and rotatably mounted on the mounting base via the second pivot pin. The wrench block has a pawl, and the drive unit has a slot. The pawl engages with the slot. The first elastic element elastically abuts between the first base body and the wrench block, and the second pivot pin is located between the pawl and the first elastic element.
[0011] In one embodiment, a limiting baffle is provided on the outer edge of the first base body on the side opposite to the mounting groove, and the wrench and the wrench pressure block are limited between the limiting baffle and the main shell.
[0012] In one embodiment, the locking assembly includes a locking block, a locking nut, and a second elastic element. The second base has a sliding groove communicating with the mounting groove. The locking block is movably disposed in the sliding groove and sleeved outside the fixed end. The locking nut is located on the side of the locking block away from the mounting groove and is threadedly connected to the fixed end. The second elastic element elastically abuts against the locking block and the side wall of the sliding groove near the mounting groove.
[0013] In one embodiment, the locking assembly further includes a lock nut with a through hole, and the fixed end extends into the through hole and is threadedly connected to the lock nut.
[0014] In one embodiment, the locking block has a positioning groove on the side opposite to the mounting groove, and a ball is provided in the positioning groove. The locking nut has a plurality of second limiting grooves spaced circumferentially on the side near the locking block, and the ball protrudes from the positioning groove and is limited to the second limiting groove.
[0015] This application also provides a scope, including a scope body and an integrated quick-release bracket as described above, wherein the main housing is the housing of the scope, and the scope body is mounted on the main housing.
[0016] In summary, this application provides an integrated quick-release bracket and a scope. The quick-release bracket is used to mount a main device, such as a scope. The quick-release bracket and the main device are integrated, sharing a main housing. The main housing includes an integrally connected main housing portion and a mounting base. The mounting base is located on one side of the main housing portion in the thickness direction and is used to mount the components of the quick-release bracket. The main housing portion is used to mount the components of the main device. By designing the quick-release bracket and the main device as an integrated unit, i.e., the main housing of the main device also serves as the main housing of the quick-release bracket, and the components of the quick-release bracket are directly mounted on the main housing, this application effectively reduces the overall weight and volume of the main device as a whole, achieving a lower distance from the aiming window to the mounting surface of the main device. Furthermore, users can avoid the process of installing the bracket, improving user satisfaction and enhancing product competitiveness. Attached Figure Description
[0017] Figure 1 This is a three-dimensional schematic diagram of the integrated quick-release bracket of this application from one angle.
[0018] Figure 2 This is a three-dimensional schematic diagram of the integrated quick-release bracket of this application from another angle.
[0019] Figure 3 This is a side view of the integrated quick-release bracket of this application in one direction.
[0020] Figure 4 This is a side view of the integrated quick-release bracket of this application from another direction.
[0021] Figure 5 This is an exploded view of the integrated quick-release bracket of this application at one angle.
[0022] Figure 6 This is an exploded view of the integrated quick-release bracket of this application from another angle.
[0023] Reference numerals: a-length direction; b-width direction; c-thickness direction; 10-quick-release bracket; 12-main housing; 13-main housing part; 14-wrench; 16-pull rod; 18-drive end; 20-fixed end; 22-mounting base; 24-mounting groove; 26-first seat; 28-second seat; 30-first limiting groove; 32-first through hole; 34-first shaft pin; 36-rotating support part; 38-pressing part; 40-drive part; 42-connecting groove; 44-pin hole; 46-sliding hole; 48-wrench Hand-operated pressure block; 50-Second shaft pin; 52-First elastic element; 56-Limiting baffle; 58-Claw; 60-Claw groove; 62-Shaft hole; 64-Pivot hole; 66-First groove; 68-Allowing groove; 70-Arc groove; 72-Limiting block; 74-Third limiting groove; 76-Locking pressure block; 78-Locking nut; 80-Second elastic element; 82-Slide groove; 84-Second through hole; 86-Second groove; 88-Anti-reverse nut; 90-Through hole; 92-Positioning groove; 94-Ball; 96-Second limiting groove. Detailed Implementation
[0024] Before describing the embodiments in detail, it should be understood that this application is not limited to the detailed structures or element arrangements described below or in the accompanying drawings. This application can be implemented in other ways. Furthermore, it should be understood that the wording and terminology used herein are for descriptive purposes only and should not be construed as limiting. The terms "comprising," "including," "having," and similar expressions used herein mean to include the items listed thereafter, their equivalents, and other additional items. In particular, when describing "an element," this application does not limit the number of elements to one, but may include multiple elements.
[0025] Please also refer to Figures 1 to 4As shown, this application provides an integrated quick-release bracket 10 (hereinafter referred to as quick-release bracket 10), which can be installed on a main device, such as a scope. The scope can be installed on a gun or other product that requires a scope via the quick-release bracket 10, allowing the scope to be detachably installed on the gun or other product. Specifically, the quick-release bracket 10 and the scope are integrated, and the quick-release bracket 10 and the scope share a main housing 12. The main housing 12 includes an integrally connected main housing portion 13 and a mounting base 22. The mounting base 22 is located on one side of the main housing portion 13 in the thickness direction and is used to install the components of the quick-release bracket 10. The main housing portion 13 is used to install the components of the scope, such as a prism. This application integrates the quick-release bracket 10 with the scope, meaning the main housing 12 of the scope also serves as the main housing 12 of the quick-release bracket 10. Components of the quick-release bracket 10 can be directly mounted on the main housing 12. As a whole, this effectively reduces the overall weight and volume of the scope, achieves a lower distance from the aiming window to the scope mounting surface, and reduces the height from the center of the visual window to the bracket mounting surface. This facilitates aiming and firing for the user, and eliminates the need for assembly of the bracket and scope, improving user satisfaction and enhancing product competitiveness.
[0026] More specifically, the quick-release bracket 10 includes a wrench 14, a pull rod 16, and a locking assembly mounted on the mounting base 22. The main housing 13 is a housing component of the scope. The pull rod 16 is movably inserted through the mounting base 22 and has a driving end 18 and a fixed end 20. The wrench 14 is drivenly connected to the driving end 18, and the locking assembly is fixedly connected to the fixed end 20. The wrench 14 can rotate relative to the mounting base 22 to drive the pull rod 16 and the locking assembly to move between the locked position and the unlocked position.
[0027] In the illustrated embodiment, the main housing 12 is a square frame with a hollow center. The main housing 12 has a length direction a, a width direction b, and a thickness direction that are perpendicular to each other. Other components of the quick-release bracket 10 are mounted on the mounting base 22 along the width direction b. Specifically, the mounting base 22 is disposed on one side of the main housing 13 in the length and width direction. The mounting base 22 includes a mounting groove 24 and a first seat body 26 and a second seat body 28 located on opposite sides in the width direction of the mounting groove 24. The mounting groove 24 is a groove structure that runs through the length direction and opens on the side away from the main housing 13, allowing external components to be inserted and installed. The pull rod 16 passes through the first seat body 26, the mounting groove 24 and the second seat body 28, and the driving end 18 of the pull rod 16 extends out of the side of the first seat body 26 away from the mounting groove 24. The fixed end 20 of the pull rod 16 extends out of the side of the second seat body 28 away from the mounting groove 24. The wrench 14 is located on the side of the first seat body 26 away from the mounting groove 24 and is drivenly connected to the driving end 18. The locking component is movably inserted through the second seat body 28 and is fixedly connected to the fixed end 20.
[0028] Furthermore, the bottom of the mounting groove 24 is provided with a first limiting groove 30, and the pull rod 16 is limited to the first limiting groove 30 to limit the pull rod 16 in the length direction a, so that the pull rod 16 can only move in the width direction b, and avoid the pull rod 16 from shaking during the movement.
[0029] In the illustrated embodiment, as Figure 5 and Figure 6 As shown, the first base 26 has a first through hole 32 communicating with the mounting groove 24 and the first limiting groove 30. The pull rod 16 is movably inserted through the first through hole 32, and the driving end 18 is located on the side of the first base 26 away from the mounting groove 24. The wrench 14 and the driving end 18 are drivenly connected by the first shaft pin 34. Specifically, the wrench 14 is designed in an arch shape and rotates on a seesaw-like principle. The wrench 14 includes a rotating support part 36 and a pressing part 38 and a driving part 40 connected to both ends of the rotating support part 36. The rotating support part 36, the pressing part 38 and the driving part 40 are, for example, integrally formed structures. The pressing part 38 is tilted relative to the rotating support part 36 in the direction away from the first base 26 for the user to press. The rotating support part 36 is supported on the side wall of the first base 26 away from the mounting groove 24. The driving part 40 is used to drive the connection with the driving end 18. The driving part 40 is located at the position corresponding to the first through hole 32 and is provided with a connecting groove 42. The two opposite side walls of the connecting groove 42 are respectively provided with pin holes 44. The driving end 18 is movably connected to the connecting groove 42, and the driving end 18 is provided with a sliding hole 46. The sliding hole 46 extends along the length direction a of the main housing 12. The first shaft pin 34 is arranged parallel to the thickness direction c of the main housing 12. The first shaft pin 34 can slide through the sliding hole 46 and the two ends of the first shaft pin 34 are respectively inserted into the corresponding pin holes 44.
[0030] Furthermore, the quick-release bracket 10 also includes a wrench block 48, a second pivot pin 50, and a first elastic element 52. The first elastic element 52 is, for example, a spring. The second pivot pin 50 is arranged parallel to the first pivot pin 34. The wrench block 48 is located near the drive part 40. For example, the wrench block 48 is located on the side of the drive part 40 away from the pressing part 38 and is rotatably mounted to the main housing 12 through the second pivot pin 50. More specifically, a limiting baffle 56 is provided on the outer edge of the first seat 26 on the side opposite to the mounting groove 24. The wrench 14 and the wrench block 48 are limited between the limiting baffle 56 and the side wall of the main housing 13. The limiting baffle 56 can play a blocking and limiting role. The end of the wrench block 48 facing the wrench 14 is provided with a pawl 58. For example, two pawls 58 are provided. The end wall of the drive part 40 near the wrench block 48 is provided with two corresponding slots 60. The pawl 58 is engaged in the slots 60. The first elastic member 52 elastically abuts between the first seat 26 and the wrench block 48, and the second shaft pin 50 is located between the pawl 58 and the first elastic member 52.
[0031] Preferably, the limiting baffle 56 and the side wall of the main housing 13 are respectively provided with shaft holes 62, and the wrench pressure block 48 is provided with a pivot hole 64. The second shaft pin 50 passes through the pivot hole 64 and its two ends are respectively inserted into the corresponding shaft holes 62, so as to realize the rotatable connection between the wrench pressure block 48 and the second shaft pin 50. The side wall of the first seat 26 away from the mounting groove 24 and the side wall of the wrench pressure block 48 near the first seat 26 are respectively provided with first grooves 66. The two ends of the first elastic member 52 are respectively accommodated in the corresponding first grooves 66, so as to limit the first elastic member 52 and prevent the first elastic member 52 from deviating. The wrench pressure block 48 is provided with a relief groove 68 for avoiding the drive end 18. The relief groove 68 is located between the two claws 58.
[0032] In the illustrated embodiment, the drive unit 40 is designed to be circular, and the first shaft pin 34 and pin hole 44 are offset from the center of the drive unit 40, for example, located on the side away from the center of the mounting groove 24. The first seat 26 has an arc-shaped groove 70 on the side wall corresponding to the drive unit 40. The portion of the drive unit 40 near the first seat 26 can be accommodated in the arc-shaped groove 70, allowing the pressing part 38 to be raised to an appropriate position, i.e., the pressing part 38 has an appropriate pressing stroke. A limiting block 72 is also provided on the side of the drive unit 40 away from the main housing 13. The limiting block 72 is, for example, arc-shaped, and the limiting baffle 56 has a third limiting groove 74 corresponding to the limiting block 72, which can limit the wrench 14 in the length direction a.
[0033] In this embodiment, the locking assembly includes a locking block 76, a locking nut 78, and a second elastic element 80. The second elastic element 80 is, for example, a spring. The second seat 28 has a sliding groove 82 corresponding to the pull rod 16, which communicates with the mounting groove 24. The sliding groove 82 passes through the second seat 28 and extends a certain distance to one side of the mounting groove 24. The locking block 76 is movably disposed in the sliding groove 82 and sleeved on the fixed end 20. For example, the locking block 76 has a second through hole 84, and the fixed end 20 passes through the second through hole 84. The locking nut 78 is located on the side of the locking block 76 away from the mounting groove 24 and extends into the second through hole 84, where it is threadedly connected and fixed to the fixed end 20. The second elastic element 80 elastically abuts against the bottom wall of the sliding groove 82 between the locking block 76 and the groove. Preferably, two second elastic members 80 are provided. Two second grooves 86 are respectively provided on the side wall of the slide groove 82 near the mounting groove 24 and the side wall of the locking block 76 near the mounting groove 24. One end of the second elastic member 80 is accommodated in the second groove 86 to limit the second elastic member 80 and prevent the second elastic member 80 from shifting.
[0034] Furthermore, the locking assembly also includes a stop nut 88. The locking nut 78 has a through hole 90, and the fixed end 20 extends into the through hole 90 and is threadedly connected and fixed to the stop nut 88. The locking block 76 has a positioning groove 92 on the side opposite to the mounting groove 24. For example, two positioning grooves 92 are provided, distributed on both sides of the second through hole 84. A ball 94, for example, a steel ball, is provided in the positioning groove 92. Multiple second limiting grooves 96 are evenly spaced along the circumference on the side wall of the locking nut 78 near the locking block 76. The ball 94 protrudes from the positioning groove 92 and is limited and engaged with the second limiting groove 96. When the locking nut 78 rotates, the friction force drives the ball 94 to roll in the positioning groove 92. The ball 94 changes position between the multiple second limiting grooves 96. When it rotates to the appropriate position, the ball 94 is limited and abuts against the corresponding second limiting groove 96, making the structure stable.
[0035] The wrench 14 can rotate between a first position and a second position, thereby driving the pull rod 16 and the locking block 76 to move between the locked and unlocked positions. Normally, the wrench 14 is in the first position, where it is not pressed. The wrench block 48, under the elastic bias of the first elastic element 52, presses against the drive unit 40 through the pawl 58. Simultaneously, the second elastic element 80 applies an elastic bias to the locking block 76 on the side away from the mounting groove 24. That is, the pulling force of the pull rod 16 and the pressure of the wrench block 48 stabilize the wrench 14 in the first position, at which point the locking block 76 is in the locked position. When the user presses the pressing part 38, causing the wrench 14 to rotate to the second position, the first shaft pin 34 slides within the sliding hole 46. The drive unit 40 rotates, causing the pull rod 16 and the locking block 76 to move from the locked position to the unlocked position. The rotation of the drive unit 40 also causes the wrench block 48 to rotate, and both the first elastic element 52 and the second elastic element 80 are in a compressed state. After the user removes the pressing force, the wrench block 48 automatically rotates and resets under the elastic force of the first elastic element 52, and the locking block 76 and the pull rod 16 automatically move and reset to the locking position under the elastic force of the second elastic element 80, while simultaneously driving the wrench 14 to rotate and reset from the second position to the first position.
[0036] The following describes one assembly method of the quick-release bracket 10: The drive end 18 of the pull rod 16 is placed into the connecting groove 42, aligning the sliding hole 46 with the pin hole 44. The first shaft pin 34 is passed through the pin hole 44 and the sliding hole 46 to achieve a drive connection between the wrench 14 and the pull rod 16. The pull rod 16 is sequentially inserted from the side of the first base 26 into the first base 26, the mounting groove 24, and the second base 28. The wrench 14 is rotatably mounted onto the first base 26. The first elastic element 52 is inserted into the first groove 66, and the wrench pressure block 48 is rotatably mounted onto the second shaft pin 50. Between the first seat 26 and the main housing 13, the first elastic element 52 abuts against the wrench pressure block 48, and the two claws 58 are engaged in the corresponding two slots 60; the two second elastic elements 80 are installed into the corresponding second grooves 86, the locking pressure block 76 is installed into the sliding groove 82 and abuts against the two second elastic elements 80, and the locking pressure block 76 is sleeved on the fixed end 20 of the pull rod 16; the two balls 94 are installed into the corresponding positioning grooves 92; the locking nut 78 is screwed onto the fixed end 20; and finally, the anti-reverse nut 88 is threaded onto the end of the fixed end 20 to complete the assembly.
[0037] This application also provides a scope, which includes a scope body and an integrated quick-release bracket 10 as described above, and the main housing 12 is also the housing of the scope, with the scope body mounted on the main housing 13.
[0038] In summary, this application provides an integrated quick-release bracket and a scope. The quick-release bracket is used to mount a main device, such as a scope. The quick-release bracket and the main device are integrated, sharing a main housing. The main housing includes an integrally connected main housing portion and a mounting base. The mounting base is located on one side of the main housing portion in the thickness direction and is used to mount the components of the quick-release bracket. The main housing portion is used to mount the components of the main device. By designing the quick-release bracket and the main device as an integrated unit, i.e., the main housing of the main device also serves as the main housing of the quick-release bracket, and the components of the quick-release bracket are directly mounted on the main housing, this application effectively reduces the overall weight and volume of the main device as a whole, achieving a lower distance from the aiming window to the mounting surface of the main device. Furthermore, users can avoid the process of installing the bracket, improving user satisfaction and enhancing product competitiveness.
[0039] The concepts described herein may be implemented in other forms without departing from their spirit and characteristics. The specific embodiments disclosed should be considered illustrative rather than restrictive. Therefore, the scope of this application is determined by the appended claims, and not by the preceding description. Any changes within the literal meaning and equivalent scope of the claims should fall within the scope of those claims.
Claims
1. An integrated quick-release bracket for mounting to a main body device, characterized in that, The quick-release bracket (10) is integrally formed with the main body equipment. The quick-release bracket (10) and the main body equipment share a main housing (12). The main housing (12) includes an integrally connected main housing part (13) and a mounting base (22). The mounting base (22) is located on one side of the main housing part (13) in the thickness direction and is used to install the components of the quick-release bracket (10). The main housing part (13) is used to install the components of the main body equipment.
2. The integrated quick-release bracket as described in claim 1, characterized in that, The quick-release bracket (10) includes a wrench (14), a pull rod (16), and a locking assembly mounted on the mounting base (22). The pull rod (16) is movably inserted through the mounting base (22) and has a driving end (18) and a fixed end (20) opposite to each other. The wrench (14) is driven to the driving end (18), and the locking assembly is fixedly connected to the fixed end (20). The wrench (14) can rotate relative to the mounting base (22) to drive the pull rod (16) and the locking assembly to move between the locked position and the unlocked position.
3. The integrated quick-release bracket as described in claim 2, characterized in that, The mounting base (22) includes a mounting groove (24) and a first seat body (26) and a second seat body (28) located on opposite sides of the mounting groove (24). The pull rod (16) passes through the first seat body (26), the mounting groove (24) and the second seat body (28). The wrench (14) is installed on the side of the first seat body (26) away from the mounting groove (24). The locking assembly is movably passed through the second seat body (28).
4. The integrated quick-release bracket as described in claim 3, characterized in that, The bottom of the mounting groove (24) is provided with a first limiting groove (30), and the pull rod (16) is limited and matched in the first limiting groove (30).
5. The integrated quick-release bracket as described in claim 3, characterized in that, The first seat (26) is provided with a first through hole (32) communicating with the mounting groove (24), the pull rod (16) is movably inserted through the first through hole (32), and the driving end (18) is located on the side of the first seat (26) away from the mounting groove (24). The wrench (14) and the driving end (18) are drivenly connected by a first shaft pin (34).
6. The integrated quick-release bracket as described in claim 5, characterized in that, The wrench (14) includes a rotating support part (36) and a pressing part (38) and a driving part (40) connected to both ends of the rotating support part (36). The pressing part (38) is tilted relative to the rotating support part (36) in a direction away from the first seat (26). The rotating support part (36) is supported on the side wall of the first seat (26) away from the mounting groove (24). The driving part (40) is provided with a connecting groove (42). The opposite side walls of the connecting groove (42) are provided with pin holes (44). The driving end (18) is movably connected to the connecting groove (42). The driving end (18) is provided with a sliding hole (46). The first shaft pin (34) can slide through the sliding hole (46) and both ends of the first shaft pin (34) are respectively inserted into the pin hole (44).
7. The integrated quick-release bracket as described in claim 6, characterized in that, The quick-release bracket (10) further includes a wrench block (48), a second shaft pin (50), and a first elastic element (52). The wrench block (48) is disposed near the drive unit (40) and rotatably mounted on the mounting base (22) via the second shaft pin (50). The wrench block (48) is provided with a claw (58), and the drive unit (40) is provided with a groove (60). The claw (58) engages with the groove (60). The first elastic element (52) elastically abuts between the first base body (26) and the wrench block (48), and the second shaft pin (50) is located between the claw (58) and the first elastic element (52).
8. The integrated quick-release bracket as described in claim 7, characterized in that, The first base (26) has a limiting baffle (56) on the outer edge of the side opposite to the mounting groove (24), and the wrench (14) and the wrench pressure block (48) are limited between the limiting baffle (56) and the main shell (13).
9. The integrated quick-release bracket as described in claim 3, characterized in that, The locking assembly includes a locking block (76), a locking nut (78), and a second elastic element (80). The second seat (28) is provided with a sliding groove (82) communicating with the mounting groove (24). The locking block (76) is movably disposed in the sliding groove (82) and sleeved outside the fixed end (20). The locking nut (78) is located on the side of the locking block (76) away from the mounting groove (24) and is threadedly connected to the fixed end (20). The second elastic element (80) elastically abuts against the side wall of the locking block (76) and the sliding groove (82) near the mounting groove (24).
10. The integrated quick-release bracket as described in claim 9, characterized in that, The locking assembly also includes a lock nut (88), which has a through hole (90), and the fixed end (20) extends into the through hole (90) and is threadedly connected to the lock nut (88).
11. The integrated quick-release bracket as described in claim 9, characterized in that, The locking block (76) has a positioning groove (92) on the side away from the mounting groove (24). A ball (94) is provided in the positioning groove (92). The locking nut (78) has a plurality of second limiting grooves (96) spaced circumferentially on the side close to the locking block (76). The ball (94) protrudes from the positioning groove (92) and is limited and engaged with the second limiting groove (96).
12. A sight, characterized in that, It includes a scope body and an integrated quick-release bracket as described in any one of claims 1-11, wherein the main housing (12) is the housing of the scope, and the scope body is mounted on the main housing (13).