Adjustable conjoined tripod of sighting device
By designing adjustable integrated tripod conversion, adjustment, and extension components, the problem of the aiming device's unsuitable height when crawling in the field was solved, achieving flexible adjustment and improved stability, thus enhancing practicality and adaptability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-03-03
AI Technical Summary
When using existing sight tripods for field observation while prone, if the minimum altitude is higher than the target altitude, different tripods need to be used to adapt to different application scenarios, which reduces their practicality.
Design an adjustable integrated tripod for a sight, comprising a conversion component, an adjustment component, and a telescopic component. The sight height can be flexibly adjusted and lowered through flipping, adjustment, and telescopic movement, while anti-slip textures enhance stability.
It improves the practicality and stability of the sight in different application scenarios, reduces the need to carry multiple tripods, and enhances adaptability and ease of use.
Smart Images

Figure CN223965958U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of aiming technology, and specifically relates to an adjustable integrated tripod for aiming. Background Technology
[0002] The integrated sight tripod is an all-in-one device designed for outdoor shooting, hunting, bird watching and other scenarios. It integrates an optical sight with a support tripod, providing functions such as quick setup, stable observation and accurate shooting.
[0003] In existing technologies, the aiming device is usually mounted on the top of the tripod to facilitate target observation. However, if the minimum height of the tripod is still higher than the target height when crawling in the field, the tripod needs to be replaced. Therefore, to adapt to different application scenarios, multiple tripods need to be carried, which reduces its practicality. Utility Model Content
[0004] To address the issue that when conducting field observations while crawling, the minimum height of the integrated tripod is still higher than the target height, requiring the replacement of the integrated tripod and thus necessitating the carrying of multiple integrated tripods to adapt to different application scenarios, thereby reducing its practicality, this utility model proposes an adjustable integrated tripod for the aiming device to overcome the aforementioned technical problems existing in related technologies.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model relates to an adjustable integrated tripod for a sight, including a support platform:
[0007] The support platform is respectively equipped with a conversion component, an adjustment component, a telescopic component, and a support component;
[0008] The conversion component has its outer surface slidably disposed with respect to the interior of the support platform, so that the conversion component can be flipped inside the support platform;
[0009] The adjusting component is slidably disposed inside the telescopic component and on the outer surface of the telescopic component, so that the adjusting component can adjust the angle between the telescopic component and the support platform;
[0010] The telescopic component has one end rotatably connected to the interior of the support component, so that the telescopic component can adjust the distance between the support component and the support platform.
[0011] Furthermore, the conversion component includes a locking block, the interior of which is rotatably disposed with respect to the outer surface of the support platform, and a first spring is fixedly connected to one side of the locking block, with one end of the first spring fixedly connected to one side of the support platform.
[0012] Furthermore, the conversion component also includes a connecting groove, which is formed inside the support platform. A limit groove is formed inside the connecting groove, and a connecting rod is slidably arranged inside the connecting groove. A slot is formed on the outer surface of the connecting rod, and the inside of the slot is engaged with one end of a locking block.
[0013] A limiting block is fixedly connected to the outer surface of the connecting rod, and the outer surface of the limiting block is slidably disposed with the inside of the limiting groove. A fixing device is fixedly connected to one end of the connecting rod.
[0014] Furthermore, the adjustment assembly includes an adjustment rod and an adjustment groove. A positioning pin is rotatably disposed inside the adjustment rod. The outer surface of the positioning pin is fixedly installed inside the support platform. A second spring is fixedly connected inside the adjustment rod. One end of the second spring abuts against the outer surface of the positioning pin.
[0015] The adjustment groove is located on one side of the support platform. An adjustment block is snapped into the inside of the adjustment groove, and one side of the adjustment block is fixedly connected to one side of the adjustment rod.
[0016] Furthermore, the telescopic assembly includes a telescopic rod, the outer surface of which is slidably disposed with the interior of an adjusting rod, a tension spring is fixedly installed inside the telescopic rod, one end of which is fixedly installed with the interior of the adjusting rod, and an arc-shaped groove is provided on one side of the telescopic rod.
[0017] Furthermore, the telescopic assembly also includes an L-shaped slider, the outer surface of which is slidably disposed with the interior of the adjusting rod, a locking rod fixedly connected to the bottom end of the L-shaped slider, the outer surface of which abuts against the interior of the arc-shaped groove, and a third spring fixedly connected to one side of the L-shaped slider, one end of which is fixedly connected to one side of the adjusting rod.
[0018] Furthermore, the support assembly includes a connecting seat, the interior of which is rotatably mounted to one end of the telescopic rod, and a support plate is fixedly mounted on the bottom end of the connecting seat, with anti-slip textures provided on the bottom end of the support plate.
[0019] This utility model has the following beneficial effects:
[0020] 1. This utility model allows the position of the sight to be changed on the support platform by pressing the conversion component to release the locking limit, then pulling it out of the support platform, rotating it 180 degrees to make the sight face down, and then inserting the conversion component back into the support platform and locking it again. This allows the position of the sight to be changed on the support platform, so that when the lowest height is still higher than the target height, the overall height of the sight can be lowered again. This makes the adjustable integrated tripod of the sight adaptable to different application scenarios and improves its practicality.
[0021] 2. This utility model presses one end of the locking block, causing its middle part to rotate around the outer surface of the support platform, compressing one end of the first spring so that the other end can move out of the slot. Then, the fixing device is pulled out, causing it to move the connecting rod fixed on one side, so that the connecting rod drives the limiting block to move out of the connecting groove and the limiting groove simultaneously. Then, the fixing device is rotated 180 degrees, and the connecting rod is inserted into the connecting groove again, while the limiting block is moved into the limiting groove to prevent the connecting rod from rotating. At the same time, the slot on the outer surface of the connecting rod engages with the outer surface of the locking block again, so that the position of the sight is changed to the lower side of the support platform. This allows the height of the sight to be lowered again at the lowest height, thereby improving the practicality of the adjustable integrated tripod of the sight.
[0022] 3. This utility model compresses the third spring fixed on one side of the L-shaped slider by pushing it, which in turn moves the locking rod fixed at the bottom, causing the locking rod to move out of the arc-shaped groove and release the limitation on the telescopic rod. Then, the telescopic rod is pulled or pushed to stretch or rebound the tension spring installed inside, causing the telescopic rod to move multiple sets of arc-shaped grooves. When the telescopic rod moves to the appropriate position, the L-shaped slider is released, allowing the third spring to release its compressive stress and push the L-shaped slider to move in the opposite direction. This causes the L-shaped slider to engage the locking rod with one of the sets of arc-shaped grooves, which, together with the continuous tension of the tension spring, ensures a tight fit between the arc-shaped groove and the locking rod, thereby improving the stability between the telescopic rod and the adjusting rod.
[0023] 4. This utility model ensures maximum contact area between the support plate and the ground by attaching the bottom end of the support plate to the ground and rotating the connecting seat around one end of the telescopic rod according to the flatness of the ground. The anti-slip texture further increases the friction between the support plate and the ground, thereby improving the stability of the adjustable tripod of the aiming device during use.
[0024] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0025] To more clearly illustrate the technical solutions of the utility model embodiments, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0027] Figure 2This is an exploded view of the conversion component of this utility model;
[0028] Figure 3 For the present utility model Figure 2 Enlarged schematic diagram of the local structure at point A;
[0029] Figure 4 This is an exploded view of the adjustment component of this utility model;
[0030] Figure 5 For the present utility model Figure 4 Enlarged schematic diagram of the local structure at point B;
[0031] Figure 6 This is an exploded view of the telescopic component of this utility model;
[0032] Figure 7 For the present utility model Figure 6 Enlarged schematic diagram of the local structure at point C;
[0033] Figure 8 This is a structural schematic diagram of the present invention from a downward viewing angle;
[0034] Figure 9 For the present utility model Figure 8 A magnified schematic diagram of the local structure at point D.
[0035] The attached diagram lists the components represented by each number as follows:
[0036] 1. Support platform; 2. Conversion assembly; 201. Locking block; 202. First spring; 203. Connecting groove; 204. Limiting groove; 205. Connecting rod; 206. Locking slot; 207. Limiting block; 208. Fixing device; 3. Adjustment assembly; 301. Adjusting rod; 302. Adjusting groove; 303. Positioning pin; 304. Second spring; 305. Adjusting block; 4. Telescopic assembly; 401. Telescopic rod; 402. Tension spring; 403. Arc groove; 404. L-shaped slider; 405. Locking rod; 406. Third spring; 5. Support assembly; 501. Connecting seat; 502. Support plate; 503. Anti-slip texture. Detailed Implementation
[0037] The technical solutions of the utility model embodiments will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the utility model, and not all embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the utility model.
[0038] In the description of this utility model, it should be understood that the terms "opening", "upper", "lower", "top", "middle", "inner", etc., which indicate orientation or positional relationship, are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the utility model.
[0039] Please see Figures 1-7 As shown, this utility model is an adjustable integrated tripod for a sight, including a support platform 1:
[0040] The support platform 1 is respectively equipped with a conversion component 2, an adjustment component 3, a telescopic component 4, and a support component 5;
[0041] The conversion component 2 has its outer surface slidably disposed with respect to the interior of the support platform 1, so that the conversion component 2 can be flipped inside the support platform 1;
[0042] The adjusting component 3 is slidably disposed inside the telescopic component 4 on the outer surface, so that the adjusting component 3 can adjust the angle between the telescopic component 4 and the support platform 1;
[0043] The telescopic component 4 is rotatably connected to the inside of the support component 5 at one end, so that the telescopic component 4 can adjust the distance between the support component 5 and the support platform 1.
[0044] In use, pull down the adjusting component 3 to release its locking limit, then rotate the adjusting component 3 around the inside of the support platform 1 to adjust the angle between the adjusting component 3 and the support platform 1. Then push the telescopic component 4 to release its locking limit, and then pull the telescopic component 4 to extend or retract along the direction of the adjusting component 3. When the telescopic component 4 extends or retracts to the appropriate position, release the telescopic component 4 to allow it to automatically reset and lock, thereby adjusting the height of the support platform 1. Then rotate one end of the telescopic component 4 to contact the bottom end of the support component 5 with the ground, thereby supporting the support platform 1. Then install the sight on the top of the conversion component 2. Press the conversion component 2 to release its locking limit, then pull it out of the support platform 1, then rotate it 180 degrees so that the sight is facing down, then insert the conversion component 2 back into the support platform 1 and lock it again. This allows you to change the position of the sight on the support platform 1.
[0045] This invention allows the conversion component 2 to be released from its locking position by pressing it, then pulled out of the support platform 1, rotated 180 degrees to make the sight face down, and then the conversion component 2 to be inserted back into the support platform 1 and locked again. This allows the position of the sight to be changed on the support platform 1, so that when the lowest height is still higher than the target height, the overall height of the sight can be lowered again. This makes the adjustable tripod of the sight adaptable to different application scenarios and improves its practicality.
[0046] In one embodiment, the conversion component 2 includes a locking block 201, the interior of which is rotatably disposed from the outer surface of the support platform 1, and a first spring 202 is fixedly connected to one side of the locking block 201, one end of which is fixedly connected to one side of the support platform 1.
[0047] The conversion component 2 also includes a connecting groove 203, which is opened inside the support platform 1. A limiting groove 204 is opened inside the connecting groove 203. A connecting rod 205 is slidably arranged inside the connecting groove 203. A slot 206 is opened on the outer surface of the connecting rod 205. The inside of the slot 206 is engaged with one end of the slot block 201.
[0048] The outer surface of the connecting rod 205 is fixedly connected to a limiting block 207, the outer surface of the limiting block 207 is slidably disposed with the inside of the limiting groove 204, and one end of the connecting rod 205 is fixedly connected to a fixing device 208.
[0049] It should be noted that the fixing device 208 is existing technology. It compresses the spring by rotating the knob to drive the threaded rod, and at the same time squeezes the pressure plate so that the pressure plate presses the quick release plate on the sight into the slot.
[0050] By installing the sight and the fixing device 208 to facilitate observation of the target object through the sight, when the minimum height of the sight and the support platform 1 is still higher than the target height, pressing one end of the locking block 201 causes its middle part to rotate around the outer surface of the support platform 1, compressing one end of the first spring 202 so that the other end can move out of the slot 206. Then, the fixing device 208 is pulled out, causing it to move the connecting rod 205 fixed on one side, so that the connecting rod 205 drives the limiting block 207 to move out of the connecting groove simultaneously. The connecting rod 205 is inserted into the connecting groove 203 and the limiting groove 204. Then, the fixing device 208 is rotated 180 degrees and the connecting rod 205 is inserted into the connecting groove 203. At the same time, the limiting block 207 is driven into the limiting groove 204 to prevent the connecting rod 205 from rotating. Meanwhile, the slot 206 on the outer surface of the connecting rod 205 is engaged with the outer surface of the locking block 201 to change the position of the sight to the lower side of the support platform 1. This allows the height of the sight to be lowered again at the lowest height, thereby improving the practicality of the adjustable tripod of the sight.
[0051] In one embodiment, the adjustment assembly 3 includes an adjustment rod 301 and an adjustment groove 302. A positioning pin 303 is rotatably disposed inside the adjustment rod 301. The outer surface of the positioning pin 303 is fixedly installed inside the support platform 1. A second spring 304 is fixedly connected inside the adjustment rod 301. One end of the second spring 304 abuts against the outer surface of the positioning pin 303.
[0052] The adjustment groove 302 is opened on one side of the support platform 1. An adjustment block 305 is snapped into the inside of the adjustment groove 302. One side of the adjustment block 305 is fixedly connected to one side of the adjustment rod 301.
[0053] By pulling the adjusting rod 301, it moves along the direction of the positioning pin 303, compressing the second spring 304 inside the adjusting rod 301. Simultaneously, as the adjusting rod 301 moves, it moves the adjusting block 305 fixed on one side out of one set of adjusting slots 302. Then, the adjusting rod 301 is rotated around the positioning pin 303, causing it to move the adjusting block 305 to one side of another set of adjusting slots 302. The adjusting rod 301 is then released, allowing the second spring 304 to release its compressive stress and push the adjusting rod 301 in the opposite direction. This causes the adjusting rod 301 to move the adjusting block 305 into the other set of adjusting slots 302, facilitating the adjustment of the angle between the adjusting rod 301 and the support platform 1.
[0054] In one embodiment, the telescopic assembly 4 includes a telescopic rod 401, the outer surface of which is slidably disposed with the interior of the adjusting rod 301, a tension spring 402 is fixedly installed inside the telescopic rod 401, one end of which is fixedly installed with the interior of the adjusting rod 301, and an arc-shaped groove 403 is provided on one side of the telescopic rod 401.
[0055] The telescopic assembly 4 also includes an L-shaped slider 404, the outer surface of which is slidably disposed with the interior of the adjusting rod 301. A locking rod 405 is fixedly connected to the bottom end of the L-shaped slider 404, the outer surface of which abuts against the interior of the arc-shaped groove 403. A third spring 406 is fixedly connected to one side of the L-shaped slider 404, and one end of the third spring 406 is fixedly connected to one side of the adjusting rod 301.
[0056] By pushing the L-shaped slider 404, the third spring 406 fixed on one side is compressed, which simultaneously moves the locking rod 405 fixed at the bottom, causing the locking rod 405 to move out of the arc groove 403 and release the limit on the telescopic rod 401. Then, the telescopic rod 401 is pulled or pushed, causing it to stretch or rebound the tension spring 402 installed inside, so that the telescopic rod 401 drives multiple sets of arc grooves 403 to move. When the telescopic rod 401 moves to the appropriate position, the L-shaped slider 404 is released, so that the third spring 406 releases the compressive stress and pushes the L-shaped slider 404 to move in the opposite direction, so that the L-shaped slider 404 drives the locking rod 405 to engage with one of the sets of arc grooves 403. In this way, with the continuous tension of the tension spring 402, the arc groove 403 and the locking rod 405 can fit tightly together.
[0057] In one embodiment, the support component 5 includes a connecting seat 501, the interior of which is rotatably mounted to one end of the telescopic rod 401, and a support plate 502 is fixedly mounted on the bottom end of the connecting seat 501, with anti-slip texture 503 provided on the bottom end of the support plate 502.
[0058] By attaching the bottom end of the support plate 502 to the ground and rotating the connecting seat 501 around one end of the telescopic rod 401 according to the flatness of the ground, the support plate 502 and the ground are always kept in maximum contact area. The anti-slip texture 503 can further increase the friction between the support plate and the ground, thereby improving the stability of the adjustable tripod of the aiming device during use.
[0059] Through the above technical solution, 1. By pressing the conversion component 2, the locking limit is released, and then it is pulled out of the support platform 1. Then it is rotated 180 degrees so that the sight is facing down. Then the conversion component 2 is inserted into the support platform 1 again and the locking is completed again. The position of the sight can be changed on the support platform 1. In this way, when the lowest height is still higher than the target height, the overall height of the sight can be lowered again. This makes the adjustable integrated tripod of the sight adaptable to different application scenarios and improves its practicality.
[0060] 2. By pressing one end of the locking block 201, its middle part rotates around the outer surface of the support platform 1, compressing one end of the first spring 202 so that the other end can move out of the slot 206. Then, pull the fixing device 208 to move the connecting rod 205 fixed on one side, so that the connecting rod 205 moves the limiting block 207 out of the connecting groove 203 and the limiting groove 204. Then, rotate the fixing device 208 180 degrees and insert the connecting rod 205 into the connecting groove 203 again, while moving the limiting block 207 into the limiting groove 204 to prevent the connecting rod 205 from rotating. At the same time, the slot 206 on the outer surface of the connecting rod 205 engages with the outer surface of the locking block 201 again, so that the position of the sight is changed to the lower side of the support platform 1, thereby lowering the height of the sight again at the lowest height, thus improving the practicality of the adjustable tripod of the sight.
[0061] 3. By pushing the L-shaped slider 404, the third spring 406 fixed on one side is compressed, which simultaneously moves the locking rod 405 fixed at the bottom, causing the locking rod 405 to move out of the arc groove 403, thus releasing the limit on the telescopic rod 401. Then, the telescopic rod 401 is pulled or pushed, causing it to stretch or rebound the tension spring 402 installed inside, so that the telescopic rod 401 drives multiple sets of arc grooves 403 to move. When the telescopic rod 401 moves to the appropriate position, the L-shaped slider 404 is released, so that the third spring 406 releases the compressive stress and pushes the L-shaped slider 404 to move in the opposite direction, thereby causing the L-shaped slider 404 to drive the locking rod 405 to engage with one of the sets of arc grooves 403. This, combined with the continuous tension force of the tension spring 402, allows the arc groove 403 and the locking rod 405 to fit tightly together, thereby improving the stability between the telescopic rod 401 and the adjusting rod 301.
[0062] 4. By attaching the bottom end of the support plate 502 to the ground and rotating the connecting seat 501 around one end of the telescopic rod 401 according to the flatness of the ground, the support plate 502 and the ground are always kept in maximum contact area. The anti-slip texture 503 can further increase the friction between the support plate and the ground, thereby improving the stability of the adjustable tripod of the aiming device during use.
[0063] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0064] The preferred embodiments of the utility model disclosed above are merely illustrative of the utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the utility model, thereby enabling those skilled in the art to better understand and utilize it. The utility model is limited only by the claims and their full scope and equivalents.
Claims
1. An adjustable sighting telescope for a monopod, comprising a support table (1), characterized in that: the support table (1) is provided with a conversion assembly (2), an adjusting assembly (3), a telescopic assembly (4) and a supporting assembly (5) respectively; the outer surface of the conversion assembly (2) is slidably arranged in the inner part of the support table (1) to enable the conversion assembly (2) to flip inside the support table (1); the inner part of the adjusting assembly (3) is slidably arranged on the outer surface of the telescopic assembly (4) to enable the adjusting assembly (3) to adjust the included angle between the telescopic assembly (4) and the support table (1); and one end of the telescopic assembly (4) is rotatably arranged in the inner part of the supporting assembly (5) to enable the telescopic assembly (4) to adjust the distance between the supporting assembly (5) and the support table (1). The conversion assembly (2) comprises a clamping block (201), the inner part of the clamping block (201) is rotatably arranged on the outer surface of the support table (1), one side of the clamping block (201) is fixedly connected with a first spring (202), and one end of the first spring (202) is fixedly connected with one side of the support table (1). The conversion assembly (2) further comprises a connecting groove (203) which is formed in the inner part of the support table (1), a limiting groove (204) is formed in the inner part of the connecting groove (203), a connecting rod (205) is slidably arranged in the inner part of the connecting groove (203), a clamping groove (206) is formed on the outer surface of the connecting rod (205), and the inner part of the clamping groove (206) is fixedly connected with one end of the clamping block (201). The outer surface of the connecting rod (205) is fixedly connected with a limiting block (207), the outer surface of the limiting block (207) is slidably arranged in the limiting groove (204), and one end of the connecting rod (205) is fixedly connected with a fixing device (208). The adjusting assembly (3) comprises an adjusting rod (301) and an adjusting groove (302), the inner part of the adjusting rod (301) is rotatably arranged with a positioning nail (303), the outer surface of the positioning nail (303) is fixedly installed in the inner part of the support table (1), the inner part of the adjusting rod (301) is fixedly connected with a second spring (304), and one end of the second spring (304) abuts against the outer surface of the positioning nail (303).
2. The adjustable monopod with sight according to claim 1, characterized in that The adjusting groove (302) is formed on one side of the support table (1), the inner part of the adjusting groove (302) is fixedly connected with an adjusting block (305), and one side of the adjusting block (305) is fixedly connected with one side of the adjusting rod (301).
3. The adjustable monopod with sight according to claim 2, characterized in that The telescopic assembly (4) comprises a telescopic rod (401), the outer surface of the telescopic rod (401) is slidably arranged in the inner part of the adjusting rod (301), the inner part of the telescopic rod (401) is fixedly installed with a stretching spring (402), one end of the stretching spring (402) is fixedly installed in the inner part of the adjusting rod (301), and one side of the telescopic rod (401) is formed with an arc-shaped groove (403). 4. The adjustable monopod with sight according to claim 1, characterized in that 5. The adjustable monopod with sight according to claim 4, characterized in that 6. The adjustable monopod with sight according to claim 5, characterized in that The telescopic assembly (4) further comprises an L-shaped sliding block (404), the outer surface of the L-shaped sliding block (404) is arranged in sliding relationship with the inner part of the adjusting rod (301), the bottom end of the L-shaped sliding block (404) is fixedly connected with a clamping rod (405), the outer surface of the clamping rod (405) abuts against the inner part of the arc-shaped groove (403), one side of the L-shaped sliding block (404) is fixedly connected with a third spring (406), and one end of the third spring (406) is fixedly connected with one side of the adjusting rod (301).
7. The adjustable monopod with sight according to claim 6, characterized in that The supporting assembly (5) comprises a connecting seat (501), the inner part of the connecting seat (501) is rotationally installed at one end of the telescopic rod (401), and the bottom end of the connecting seat (501) is fixedly installed with a supporting plate (502); and the bottom end of the supporting plate (502) is provided with anti-skid lines (503).