Side adjustment assembly and riflescope
Patent Information
- Application Number
- CN202522078090.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-26
AI Technical Summary
然而,该方案的锅仔片位于电池下部,在按下电源橡胶按钮时,需向下推动电池,通过电池按压锅仔片,使得在按压时很难按下去,即使按下去了,也存在锅仔片按压不到位的情况发生,难以准确控制照明情况
[0006] As can be seen from the above solution, with the above settings, the user only needs to lightly press the presser to precisely trigger the button on the button control board, thereby accurately controlling the on/off state and brightness adjustment of the internal light-emitting element of the scope. Compared with existing technologies, this structure significantly reduces the travel required for pressing, making operation more effortless and convenient, and effectively improving the user experience. In addition, the first conductive ring not only supports the button control board, but also, in conjunction with the second conductive ring, conducts current to the resistor plate of the focusing assembly, achieving precise control of the brightness of the light-emitting element by adjusting the resistance value.
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Figure CN224772171U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aiming technology, specifically to a side adjustment component and an aiming scope. Background Technology
[0002] Existing patent document CN207439268U discloses a power supply for a gun sight button illumination system. It includes a power adjustment knob with a rubber power button in the center, a battery below the button, a dome switch below the battery, and a circuit board below the dome switch. The battery is connected to the circuit board via the dome switch. The power is turned on by pressing and holding the rubber power button for 3 seconds, with each press changing the intensity level, up to ten levels in a cycle. However, in this design, the dome switch is located below the battery. When pressing the power button, the battery must be pushed downwards to press the dome switch, making it difficult to press down fully. Even when pressed, the dome switch may not be fully depressed, making accurate control of the illumination difficult. Utility Model Content
[0003] The primary objective of this invention is to provide a side-adjustment component that allows for easy and precise control of lighting conditions by pressing it.
[0004] The second objective of this invention is to provide a sight comprising the aforementioned side-adjustment components.
[0005] To achieve the aforementioned first objective, this utility model provides a side-adjustment component, including a power module and a focusing module. The power module includes a battery cover, a button control board, a pressing component, a pressure ring, a battery, a first spring, a second spring, an elastic conductive ring, and a first conductive ring. The button control board, pressure ring, and battery are arranged from top to bottom inside the battery cover. The upper side of the button control board has a button portion, and the lower side of the button control board has a central conductive portion, a first annular conductive portion, and a second annular conductive portion. The pressing component is disposed on the top wall of the battery cover and is correspondingly disposed to the button portion. The first conductive ring is disposed at the lower part of the button control board and is electrically connected to the first annular conductive portion. The pressure ring and the elastic conductive ring are both disposed inside the first conductive ring, and the elastic conductive ring is disposed on the outside of the battery. The first spring is elastic. The focusing module includes a power supply base, a resistance plate, a third spring, and a second conductive ring. The resistance plate has a first conductive position and a second conductive position. The second conductive ring and the resistance plate are positioned above and below the power supply base, and the second conductive ring is electrically connected to the first conductive position. The second conductive ring and the first conductive ring are detachably connected and electrically connected. The third spring is elastically abutted between the resistance plate and the battery, and its two ends are electrically connected to the second conductive position and the first electrode of the battery, respectively.
[0006] As can be seen from the above solution, with the above settings, the user only needs to lightly press the presser to precisely trigger the button on the button control board, thereby accurately controlling the on / off state and brightness adjustment of the internal light-emitting element of the scope. Compared with existing technologies, this structure significantly reduces the travel required for pressing, making operation more effortless and convenient, and effectively improving the user experience. In addition, the first conductive ring not only supports the button control board, but also, in conjunction with the second conductive ring, conducts current to the resistor plate of the focusing assembly, achieving precise control of the brightness of the light-emitting element by adjusting the resistance value.
[0007] A further option is that the pressure ring is made of insulating material, and the pressure ring has a first through hole and a second through hole. A first spring is set in the first through hole, and a second spring is set in the second through hole.
[0008] As can be seen from the above scheme, the first and second springs can be accurately positioned through the above settings, effectively preventing them from shifting and thus ensuring the reliability of the circuit connection.
[0009] A further option is that the power module also includes a limit seat, which is positioned between the pressing component and the button control board. The limit seat has a first clearance hole through it, and the button part is positioned inside the first clearance hole.
[0010] As can be seen from the above scheme, the above settings are used to fix the position of the pressing component and prevent the pressing component from shifting. A further option is that the power module also includes an insulating ring, which is disposed between the elastic conductive ring and the first conductive ring.
[0011] A further embodiment is that the interior of the first conductive ring is provided with a first stepped portion, and the exterior of the insulating ring is provided with a second stepped portion, which is connected to the first stepped portion.
[0012] As can be seen from the above scheme, the above settings facilitate the fixed connection between the first conductive ring and the insulating ring, preventing the insulating ring from detaching from the power supply module.
[0013] A further embodiment is that the elastic conductive coil includes a circular ring and multiple ears, with the multiple ears arranged circumferentially on the circular ring and the free ends of the ears extending inward at an inward angle, allowing the free ends of the ears to elastically swing around their connecting ends.
[0014] As can be seen from the above scheme, the above settings can reliably fix the battery, making it easy to install and remove, and can also ensure a stable electrical connection with the positive terminal of the battery.
[0015] A further solution is to have a through-hole for wiring on the power socket.
[0016] A further embodiment includes a focusing module that also includes a focusing knob, an insulating plate, and a side adjustment curve knob. The focusing knob and the power supply are both located on the side adjustment curve knob. The focusing knob is located outside the power supply and can drive the side adjustment curve knob to rotate. The insulating plate is located inside the second conductive ring and above the resistance plate. The insulating plate, the second conductive ring, and the resistance plate are fixedly connected by screws. The insulating plate has a second clearance hole that extends through it, and a third spring is located inside the second clearance hole.
[0017] As can be seen from the above scheme, with the above settings, the focusing knob can achieve the focusing function via the side adjustment curve knob; by setting the insulating plate, it is not only used to fix the third spring, but also plays a role in improving the safety of the side adjustment component.
[0018] A further solution is to install a first sealing ring between the power supply base and the focusing knob, and a second sealing ring between the power supply base and the resistance plate.
[0019] As can be seen from the above solution, by setting a sealing ring, active components such as oxygen and moisture in the air can be effectively prevented from entering the side adjustment component, thereby ensuring the sealing integrity of the scope's interior.
[0020] To achieve the second objective mentioned above, this utility model provides a sight, including a sight body, a light-emitting element, and the aforementioned side-adjustment assembly. The light-emitting element is disposed inside the sight body, and the side-adjustment assembly is connected to the sight body. The resistor plate of the side-adjustment assembly is electrically connected to the light-emitting element via a wire. Attached Figure Description
[0021] Figure 1 This is a structural diagram of an embodiment of the side adjustment component of this utility model.
[0022] Figure 2 This is a top view of an embodiment of the side adjustment component of this utility model.
[0023] Figure 3 yes Figure 2 Sectional view at point AA.
[0024] Figure 4 yes Figure 3 Enlarged view of point B in the middle.
[0025] Figure 5 This is a structural diagram of the power module in an embodiment of the side-adjustment component of this utility model.
[0026] Figure 6 This is an exploded view of the power module in an embodiment of the side-adjustment component of this utility model.
[0027] Figure 7 This is a structural diagram of the focusing module in an embodiment of the side-adjustment component of this utility model.
[0028] Figure 8 This is an exploded view of the focusing module in an embodiment of the side-adjustment component of this utility model.
[0029] The present invention will be further described below with reference to the accompanying drawings and embodiments. Detailed Implementation
[0030] Side adjustment component embodiment: See Figure 1 The side-adjustment assembly provided in this embodiment includes a detachably connected power module 100 and a focusing module 200. The detachable connection includes a threaded connection, a snap-fit connection, or a screw connection; in this embodiment, a threaded connection is preferred.
[0031] See Figures 2 to 6 The power module 100 includes a battery cover 1, a limiting seat 2, a button control board 3, a pressing component 4, a pressure ring 5, a battery 6, a first spring 7, a second spring 8, an elastic conductive ring 9, an insulating ring 11, and a first conductive ring 12.
[0032] The limit seat 2, button control board 3, pressure ring 5, and battery 6 are arranged from top to bottom inside the battery cover 1.
[0033] A button section 31 is provided on the upper center of the button control board 3. A central conductive section 32, a first annular conductive section 33, and a second annular conductive section 34 are coaxially arranged on the lower side of the button control board 3, with the second annular conductive section 34 disposed between the central conductive section 32 and the first annular conductive section 33. A control chip is provided on the button control board 3.
[0034] The pressing part 4 is provided on the top wall of the battery cover 1. The pressing part 4 has an actuating part 41 and a contact part 42 arranged vertically in the middle. The actuating part 41 protrudes upward beyond the battery cover 1, and the contact part 42 corresponds vertically to the button part 31. The contact part 42 can be adjacent to or abut against the button part 31. The pressing part 4 is made of elastic materials such as silicone and rubber.
[0035] The limiting seat 2 is disposed between the pressing member 4 and the button control plate 3. The limiting seat 2 is provided with a supporting step 21 and a first clearance hole 22. The first clearance hole 22 penetrates through the middle of the limiting seat 2, and the supporting step 21 is disposed on the outer periphery of the first clearance hole 22. The lower part of the pressing member 4 is disposed on the supporting step 21, and the button part 31 of the button control plate 3 is disposed in the first clearance hole 22.
[0036] The first conductive ring 12 is threaded onto the lower inner side of the battery cover 1. The lower part of the first conductive ring 12 protrudes downward from the battery cover 1, and is used for detachable connection with the second conductive ring 50 of the focusing module 200. The first conductive ring 12 is disposed at the lower part of the button control board 3 and is electrically connected to the first annular conductive part 33.
[0037] A pressure ring 5 is disposed within the first conductive ring 12, and the pressure ring 5 is made of insulating material. The pressure ring 5 includes a plate body portion 51 and an annular flange portion 52, the annular flange portion 52 being disposed circumferentially on the plate body portion 51 and protruding upward. The annular flange portion 52 has four through holes 53, each of which corresponds to a second annular conductive portion 34. A second through hole 54 is formed in the middle of the plate body portion 51, and the second through hole 54 corresponds to the middle conductive portion 32.
[0038] The first spring 7 elastically abuts against the button control plate 3 and the elastic conductive ring 9. There are four first springs 7, each disposed within a corresponding first through hole 53. Preferably, the first spring 7 is a bar spring.
[0039] The second spring 8 elastically abuts against the button control plate 3 and the battery 6. The second spring 8 is disposed within the second through hole 54, and its two ends are electrically connected to the central conductive part 32 and the second pole of the battery 6, respectively. The second spring 8 is preferably a tower spring.
[0040] An elastic conductive ring 9 is disposed inside the first conductive ring 12 and on the outside of the battery 6. The elastic conductive ring 9 includes a circular ring portion 91 and multiple ears 92. The multiple ears 92 are arranged circumferentially around the circular ring portion 91, and the free ends of the ears 92 extend inwardly and downward. The elastic conductive ring 9 is made of an elastic metal material, and the free ends of the ears 92 can elastically swing around their connecting ends. The circular ring portion 91 is sleeved on the outside of the plate portion 51 and disposed below the annular flange portion 52. Specifically, the circular ring portion 91 is disposed below the first spring 7, such that both ends of the first spring 7 are electrically connected to the second annular conductive portion 34 and the circular ring portion 91, respectively. The ears 92 extend obliquely towards the first electrode of the battery 6 and are electrically connected to the first electrode of the battery 6.
[0041] In this embodiment, the first electrode of battery 6 is the positive electrode, and the second electrode of battery 6 is the negative electrode.
[0042] In other embodiments, the first electrode of battery 6 is the negative electrode, and the second electrode of battery 6 is the positive electrode.
[0043] An insulating ring 11 is disposed between the first conductive ring 12 and the elastic conductive ring 9. The first conductive ring 12 has a first stepped portion 121 inside, and the insulating ring 11 has a second stepped portion 111 outside. The second stepped portion 111 engages with the first stepped portion 121 to prevent the insulating ring 11 from falling downwards. The annular portion 91 of the elastic conductive ring 9 is disposed between the annular flange portion 52 and the top wall of the insulating ring 11, serving to fix the elastic conductive ring 9.
[0044] See Figure 7 and Figure 8 and combined Figure 2 and Figure 3 The focusing module 200 includes a power supply base 20, a resistance plate 30, a third spring 40, a second conductive ring 50, a focusing knob 10, an insulating plate 60, and a side adjustment curve knob 70.
[0045] The focusing knob 10 and the power supply base 20 are both located on the side adjustment curve knob 70, and the focusing knob 10 is located on the outside of the power supply base 20. The focusing knob 10 can drive the side adjustment curve knob 70 to rotate in order to achieve the focusing function.
[0046] The second conductive ring 50 and the resistor plate 30 are disposed vertically on the power supply base 20. The second conductive ring 50 includes an upper connecting portion 501, a middle stepped portion 502, and a lower abutting portion 503. The middle stepped portion 502 is engaged with the upper part of the power supply base 20. The upper connecting portion 501 protrudes upward from the power supply base 20 and is used for threaded connection and electrical connection with the first conductive ring 12.
[0047] The upper side of the resistor plate 30 is provided with a first conductive position 301 and a second conductive position 302. The second conductive position 302 is located in the middle of the resistor plate 30, and the first conductive position 301 is located outside the second conductive position 302 and on the circumferential edge of the resistor plate 30. The lower abutment part 503 is electrically connected to the first conductive position 301.
[0048] An insulating plate 60 is disposed inside the second conductive ring 50 and above the lower abutment portion 503. A second clearance hole 601 is provided through the middle of the insulating plate 60. The insulating plate 60, the second conductive ring 50, the resistor plate 30, and the power supply base 20 are fixedly connected by four screws 80, which pass through the insulating plate 60, the lower abutment portion 503, and the resistor plate 30 and are connected to the power supply base 20. A through hole 201 is provided on the power supply base 20 to facilitate the passage of wires led out from the resistor plate 30.
[0049] The third spring 40 elastically abuts between the battery 6 and the resistor plate 30. The third spring 40 is disposed within the second clearance hole 601, and its two ends are electrically connected to the second conductive position 302 and the first electrode of the battery 6, respectively. The third spring 40 is preferably a tower spring.
[0050] A first sealing ring (not shown in the figure) is provided between the power supply base 20 and the inner wall of the focusing knob 50. A first groove 202 is provided on the outer peripheral wall of the power supply base 20. The first sealing ring is disposed in the first groove 202 and partially protrudes from the first groove 202 for sealing connection with the inner wall of the focusing knob 50.
[0051] A second sealing ring (not shown in the figure) is provided between the power supply base 20 and the resistor plate 30. A second groove 203 is provided on the inner side of the power supply base 20. The second groove 203 has an opening facing upward. The second sealing ring is provided in the second groove 203 and partially protrudes from the second groove 203 for sealing connection with the bottom wall of the resistor plate 30.
[0052] Example of a sight: The aiming scope provided in this embodiment includes a scope body, a light-emitting element, and a side-adjustment assembly as described in the previous embodiment. The light-emitting element is disposed inside the scope body and near the reticle. The side-adjustment assembly is connected to the scope body, and the resistor plate 30 of the side-adjustment assembly is electrically connected to the light-emitting element via a wire. The light-emitting element is preferably an LED. The side-adjustment assembly can control both the on / off state of the light-emitting element and its brightness.
[0053] In summary, this invention, through the aforementioned design, allows users to precisely trigger the button section 31 on the button control board 3 simply by lightly pressing the presser 4, thereby accurately controlling the switching and brightness adjustment of the light-emitting element inside the scope. Compared with existing technologies, this structure significantly reduces the required pressing stroke, making operation more effortless and convenient, and effectively improving the user experience. Furthermore, the first conductive ring 12 not only supports the button control board 3 but also, in conjunction with the second conductive ring 50, conducts current to the resistor plate 30 of the focusing module 200, achieving precise control of the light-emitting element's brightness by adjusting the resistance value.
[0054] Finally, it should be emphasized that the above are only preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, the present utility model can have various changes and modifications. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A side-adjust assembly characterized by: Includes power supply module and focus module; The power module includes a battery cover, a button control board, a pressing component, a pressure ring, a battery, a first spring, a second spring, an elastic conductive ring, and a first conductive ring. The button control board, the pressure ring, and the battery are arranged from top to bottom inside the battery cover. The upper side of the button control board has a button portion, and the lower side of the button control board has a central conductive portion, a first annular conductive portion, and a second annular conductive portion. The pressing component is disposed on the top wall of the battery cover and is correspondingly disposed to the button portion. The first conductive ring is disposed at the lower part of the button control board and is electrically connected to the first annular conductive portion. The pressure ring and the elastic conductive ring are both disposed inside the first conductive ring, and the elastic conductive ring is disposed on the outside of the battery. The first spring elastically abuts against the button control board and the elastic conductive ring. The lower part of the elastic conductive ring is electrically connected to the first electrode of the battery, and the upper part of the elastic conductive ring is electrically connected to the second annular conductive portion through the first spring. The second spring elastically abuts against the button control board and the battery, and the two ends of the second spring are electrically connected to the central conductive portion and the second electrode of the battery, respectively. The focusing module includes a power supply base, a resistance plate, a third spring, and a second conductive ring. The resistance plate is provided with a first conductive position and a second conductive position. The second conductive ring and the resistance plate are disposed on the power supply base, and the second conductive ring is electrically connected to the first conductive position. The second conductive ring and the first conductive ring are detachably connected and electrically connected. The third spring elastically abuts between the resistance plate and the battery, and the two ends of the third spring are electrically connected to the second conductive position and the first electrode of the battery, respectively.
2. The side-adjustment component according to claim 1, characterized in that: The pressure ring is made of insulating material, and the pressure ring has a first through hole and a second through hole. The first spring is disposed in the first through hole and the second spring is disposed in the second through hole.
3. The side-adjustment component according to claim 1, characterized in that: The power module also includes a limiting seat, which is disposed between the pressing member and the button control board. The limiting seat has a first clearance hole through it, and the button part is disposed in the first clearance hole.
4. The side-adjustment component according to claim 1, characterized in that: The power module also includes an insulating ring, which is disposed between the elastic conductive ring and the first conductive ring.
5. The side-adjustment component according to claim 4, characterized in that: The first conductive ring has a first stepped portion inside, and the insulating ring has a second stepped portion outside, which is connected to the first stepped portion.
6. The side-adjustment component according to claim 1, characterized in that: The elastic conductive ring includes a circular portion and multiple ears. The multiple ears are arranged in the circumferential direction of the circular portion, and the free ends of the ears extend inward at an inward angle. The free ends of the ears can elastically swing around their connecting ends.
7. The side-adjustment component according to claim 1, characterized in that: The power socket has a through hole for threading wires.
8. The side-adjustment component according to claim 1, characterized in that: The focusing module also includes a focusing knob, an insulating plate, and a side adjustment curve knob. The focusing knob and the power supply base are both located on the side adjustment curve knob. The focusing knob is located outside the power supply base and can drive the side adjustment curve knob to rotate. The insulating plate is located inside the second conductive ring and above the resistance plate. The insulating plate, the second conductive ring, the resistance plate, and the power supply base are fixedly connected by screws. The insulating plate has a second clearance hole through it, and the third spring is located inside the second clearance hole.
9. The side-adjustment component according to claim 8, characterized in that: A first sealing ring is provided between the power supply base and the focusing knob, and a second sealing ring is provided between the power supply base and the resistance plate.
10. A riflescope characterized by: The device includes a mirror body, a light-emitting element, and a side-adjustment assembly as described in any one of claims 1 to 9. The light-emitting element is disposed inside the mirror body, the side-adjustment assembly is connected to the mirror body, and the resistive plate of the side-adjustment assembly is electrically connected to the light-emitting element via a wire.
Citation Information
Patent Citations
Button lighting supply source is taken aim at to rifle
CN207439268U