Telescope support and telescope support assembly
By designing an automated telescope bracket, using a motor drive belt to drive the magnification knob to rotate, the complex problem of existing telescope magnification adjustment operation is solved, and automated magnification adjustment is achieved, which improves observation efficiency and energy concentration.
Patent Information
- Application Number
- CN202421960419.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-08-13
AI Technical Summary
When existing telescopes need to be adjusted in magnification, the operation is complicated and require both hands to operate simultaneously to distract and energy. Especially when the target object moves quickly, it may lead to the loss of the target object's field of vision.
A telescope bracket is designed to drive the belt to rotate through a motor to drive the magnification knob to realize the magnification adjustment of the automatically driven telescope. The bracket is equipped with a cavity and seal to protect internal parts and control it through a remote control.
The telescope zoom adjustment is automated, which reduces operating actions and time, saves people's energy and time, makes observation more focused, and protects internal components.
Smart Images

Figure CN222850811U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of supporting structures of telescopes, and in particular to a telescope bracket and a telescope bracket assembly. Background Art
[0002] A telescope is an optical instrument that uses multiple sets of lenses, reflectors and other optical devices to observe distant objects. The telescope can not only magnify distant objects, but also enable the human eye to distinguish details with smaller angular distances. At the same time, the objective lens of the telescope can collect a light beam that is much larger than the diameter of the pupil and send it into the human eye, so that the observer can see faint objects that were originally invisible. As the functions of telescopes become more and more powerful, the observation distance is also getting farther and farther. At present, telescopes are widely used, including military operations, security and police, maritime inspections, outdoor tourism, outdoor adventures, sports events, power safety inspections, concerts, forestry surveys, industrial inspections, archaeological research, railway line selection, land and resources surveys, etc., which play an important role in people's lives.
[0003] A variable-magnification telescope is a telescope that can change its magnification through a complex lens group inside, and its effect is similar to the gradual zooming in of a television. Continuous zoom means that the magnification can be adjusted continuously and infinitely within a certain range, which means that when the magnification adjustment is needed, two hands are required to operate at the same time, one hand holds or supports the telescope, and the other hand adjusts the knob to change the magnification; at the same time, the personnel also need to constantly observe and adjust; even if the telescope is fixed on a carrier, it is still necessary to adjust the magnification of the telescope while observing, which will still distract the personnel's attention and energy, and when the target object moves faster, it may cause the loss of the field of view of the target object, thereby losing the target. Utility Model Content
[0004] In view of this, it is necessary to provide a telescope bracket and a telescope bracket assembly.
[0005] On the one hand, an embodiment of the utility model provides a telescope bracket for a telescope, wherein the telescope includes a magnification knob, including:
[0006] A support assembly, comprising a bracket for supporting the telescope, the bracket having a cavity and a first opening;
[0007] The driving assembly includes a motor with a rotating shaft and a belt. The motor is arranged in the bracket. One end of the belt is connected to the rotating shaft, and the other end of the belt extends from the first opening and is connected to the magnification knob. The motor is used to drive the belt to rotate, thereby driving the magnification knob to rotate to achieve magnification adjustment.
[0008] Compared with the prior art, the telescope bracket provided in the present application can drive the belt to rotate through the motor, so that the belt extends through the first opening and can drive the magnification knob to rotate, thereby automatically driving the magnification adjustment of the telescope, quickly switching the field of view, avoiding manual magnification adjustment, reducing operating actions and saving time, and can also save personnel's energy and time, so that they can observe the target object more attentively; and the motor is arranged in the bracket, which can protect the motor and avoid affecting the motor in some harsh environments.
[0009] In one embodiment, one end of the bracket is provided with a mounting groove, and the first opening is provided in the mounting groove; the driving assembly further comprises a synchronous wheel provided in the mounting groove, and the synchronous wheel is sleeved on the rotating shaft; the belt is sleeved on the synchronous wheel; the synchronous wheel and the belt are provided with meshing teeth that can mesh with each other. The synchronous wheel is provided in the mounting groove, which can protect the synchronous wheel, and the meshing of the synchronous wheel and the belt can achieve stable rotation and simple structure.
[0010] In one embodiment, the driving assembly further comprises a fixing ring, the fixing ring is sleeved on the zoom knob, the belt is sleeved on the fixing ring, the motor drives the belt to rotate, thereby driving the fixing ring to rotate, and then driving the zoom knob to rotate to achieve zoom adjustment. The fixing ring is connected to the belt to avoid displacement of the belt during rotation, thereby ensuring the stability of the belt when driving the zoom knob to rotate.
[0011] In one embodiment, the fixing ring is provided with a limiting groove, and the belt is arranged in the limiting groove; the fixing ring is also provided with a clamping groove, and the meshing teeth on the belt are clamped with the clamping groove; the fixing ring is also provided with an elastic space; the driving assembly also includes a locking member, and the locking member is connected to the fixing ring to fix the belt. The limiting groove can prevent the belt from being displaced, thereby ensuring the stability of the belt rotation, and the clamping groove can be used to clamp the belt, so that the belt and the fixing ring can be stably connected, and the connection between the belt and the fixing ring can be further locked by the locking member, ensuring the stability of the connection between the two, thereby ensuring the stability of the belt rotation.
[0012] In one embodiment, the bracket is further provided with a second opening connected to the cavity; the telescope bracket further includes a control component, the control component includes a first circuit board provided at the second opening, and a first battery component provided at the cavity, the first circuit board is electrically connected to the motor and the first battery component. The first circuit board can better control the rotation of the motor, and the power supply of the first battery component can make the telescope bracket portable, which is convenient for users to use when there is no external power supply connection.
[0013] In one embodiment, the control component further includes a charging port electrically connected to the first circuit board and an indicator light for indicating the power level of the first battery unit; the control component further includes a protective cover, which is provided on the charging port. The provision of the indicator light allows the power level of the first battery unit to be observed, thereby facilitating the user to charge in advance or make other preparations; the provision of the protective cover can protect the charging port and prevent the entry of impurities such as water or dust, thereby ensuring the service life of the product.
[0014] In one embodiment, the bracket is further provided with a first mounting seat and a second mounting seat, and the telescope bracket further includes a first fixing member and a second fixing member respectively mounted on the first mounting seat and the second mounting seat, and the first fixing member is connected to the first mounting seat via a locking member; the telescope bracket further includes a third fixing member, and the third fixing member or the second fixing member is detachably mounted on the second mounting seat. By providing two fixing members corresponding to two mounting seats respectively, the telescope can be better fixed and the stability of the fixation can be achieved; at the same time, the second fixing member and the third fixing member are detachably connected to the second mounting seat, so that the second fixing member or the third fixing member can be selected according to different scene requirements.
[0015] In one embodiment, the bracket is further provided with a sealing member, the number of the sealing members is two, and the two sealing members are detachably mounted at the two end openings of the cavity; the bracket is further provided with a cover plate at one end close to the first opening. The two sealing members are provided to seal the cavity, thereby ensuring the sealing of the cavity and protecting the components in the cavity.
[0016] On the other hand, the embodiment of the present application further provides a telescope support assembly, comprising a remote controller and the telescope support as described above. Using the aforementioned telescope support, the telescope support assembly also has the beneficial effects of the telescope support, which will not be described in detail here.
[0017] In one embodiment, the remote controller includes a housing, a second circuit board disposed in the housing, a key electrically connected to the second circuit board, and a second battery component, the first circuit board is provided with a first communication module, the second circuit board is provided with a second communication module, the second communication module can be connected to the first communication module for communication, and the key is used to control the motor to work; the housing is also provided with a mounting structure for mounting the remote controller on an external structure. The remote controller can be provided to facilitate the user to control the motor to control the variable magnification adjustment of the telescope. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the related technologies, the drawings required for use in the embodiments or the related technical descriptions are briefly introduced below. Obviously, the drawings described below are merely embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.
[0019] Figure 1 It is a reference diagram of the use state of the telescope bracket assembly provided by the utility model;
[0020] Figure 2 This is a reference diagram of a use state of the telescope bracket provided by the embodiment of the utility model;
[0021] Figure 3 A stereoscopic diagram of a telescope bracket provided by an embodiment of the utility model;
[0022] Figure 4 yes Figure 3 A perspective view of another angle of the telescope mount shown;
[0023] Figure 5 yes Figure 3 An exploded schematic diagram of the telescope mount shown;
[0024] Figure 6 yes Figure 3 An exploded schematic diagram of another angle of the telescope bracket shown;
[0025] Figure 7 yes Figure 3 A schematic cross-sectional view of the telescope support along line VII-VII shown;
[0026] Figure 8 It is a schematic diagram of another telescope bracket provided by an embodiment of the utility model;
[0027] Fig. 9 is a three-dimensional diagram of a remote controller provided by an embodiment of the utility model;
[0028] Fig.10is a three-dimensional diagram of the remote control provided by the embodiment of the utility model from another angle;
[0029] Fig.11 yes Fig. 9 An exploded schematic diagram of the remote control shown;
[0030] Fig.12 yes Fig. 9 A schematic diagram of an exploded view of the remote control shown in another angle.
[0031] Description of reference numerals:
[0032] 1. Telescope bracket; 2. Telescope; 3. Carrier; 4. Remote controller; 11. Support assembly; 12. Drive assembly; 13. Control assembly; 21. Variable magnification knob; 22. Focus knob; 111. Bracket; 112. First mounting seat; 113. Second mounting seat; 114. First fixing member; 115. Second fixing member; 116. Locking member; 117. Third fixing member; 118. Sealing member; 119. Cover plate; 121. Motor; 122. Belt; 123. Synchronous wheel; 1 24. fixing ring; 125. locking member; 131. first circuit board; 132. first battery unit; 133. charging port; 134. indicator light; 135. protective cover; 41. housing; 42. second circuit board; 43. button; 44. second battery unit; 45. mounting slot; 12a. meshing teeth; 111a. cavity; 111b. first opening; 111c. mounting slot; 111d. second opening; 124a. limiting slot; 124b. card slot; 124c. elastic space. DETAILED DESCRIPTION
[0033] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the relevant drawings. The preferred embodiments of the present application are given in the drawings. However, the present application can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thoroughly and comprehensively understood.
[0034] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "inside", "outside", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation method.
[0035] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application belongs. The terms used herein in the specification of this application are only for the purpose of describing specific embodiments and are not intended to limit this application. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0036] See also Figure 1 , Figure 1 3 is a reference diagram of the use state of the telescope support assembly provided by the utility model. The telescope support assembly is arranged on a carrier 3, and is used to control or adjust the telescope 2. The carrier 3 is an external device structure, which can be a tripod, or a fixed frame of other forms, or a certain type of object such as a wall, a table, etc. The figure only shows a simple form for easy understanding, which is not the innovation point of the present application, and will not be excessively limited or repeated.
[0037] The telescope support assembly includes a telescope support 1 and a remote controller 4 arranged on a carrier 3, wherein the telescope support 1 is used to support and adjust the telescope 2, and the remote controller 4 is used to control the telescope support 1. The telescope 2 includes a variable magnification knob 21 and a focusing knob 22; wherein the variable magnification knob 21 is used for variable magnification adjustment, and can adjust the magnification of the telescope 2, such as 1x, 2x, 3x, etc., to magnify or reduce the magnification of the telescope 2 to adapt to different observation distances, and adjust the size of the image observed in the telescope 2; the focusing knob 22 is used to adjust the focal length to adapt to different distances, or to obtain the best clarity and details of the image. The telescope support 1 is provided with a mounting structure for mounting it on the carrier 3, and the mounting structure can be a mounting groove, a mounting hole or a buckle, or the telescope support 1 can be mounted on the carrier 3 by screws. Since it is not the key innovation point of this application, this application will not be described in detail.
[0038] Continue reading Figure 1 and Figure 2 In this embodiment, the telescope bracket 1 can automatically drive the zoom knob 21 to perform zoom adjustment according to the control of the controller. In other embodiments, the focus knob 22 can also be automatically driven to perform focusing. In this embodiment, the zoom adjustment of the telescope 2 is described as an example. In other embodiments, the control of the telescope bracket can also be achieved by setting a control switch on the telescope bracket 1 to achieve automatic driving of the zoom knob 21 for zoom adjustment. In the embodiment of the present application, a separate additional remote controller 4 is used for control. The remote controller 4 can be provided on the telescope bracket 1, or it can exist separately, or it can be provided on the carrier 3.
[0039] See also Figure 3 and Figure 4 , Figure 3 and Figure 4 are stereograms of a telescope bracket 1 provided by an embodiment of the utility model at two different angles. Figure 5 , Figure 6 and Figure 7 The telescope bracket 1 provided in this embodiment includes a supporting assembly 11 and a driving assembly 12; wherein the supporting assembly 11 includes a bracket 111 for supporting the telescope 2, the bracket 111 has a cavity 111a, and a first opening 111b is provided on the bracket 111; the driving assembly 12 includes a motor 121 with a rotating shaft and a belt 122, the motor 121 is arranged in the bracket 111, one end of the belt 122 is connected to the rotating shaft, and the other end of the belt 122 extends from the first opening 111b and is connected to the magnification knob 21, and the motor 121 is used to drive the belt 122 to rotate, thereby driving the magnification knob 21 to rotate to achieve magnification adjustment.
[0040] Compared with the prior art, the telescope bracket 1 provided in the present application can drive the belt 122 to rotate through the motor 121, so that the belt 122 extends out through the first opening 111b and can drive the magnification knob 21 to rotate, thereby automatically driving the magnification adjustment of the telescope 2, avoiding manual magnification adjustment, reducing operating actions and saving time, and also saving personnel's energy and time, so that they can observe the target object more attentively; and the motor 121 is arranged in the bracket 111, which can protect the motor 121 and avoid affecting the motor 121 in some harsh environments.
[0041] In this embodiment, one end of the bracket 111 is provided with a mounting groove 111c, and the first opening 111b is provided in the mounting groove 111c. The driving assembly 12 also includes a synchronous wheel 123 provided in the mounting groove 111c, and the synchronous wheel 123 is sleeved on the rotating shaft; the belt 122 is sleeved on the synchronous wheel 123; the synchronous wheel 123 and the belt 122 are provided with meshing teeth 12a that can mesh with each other. The synchronous wheel 123 is provided in the mounting groove 111c, which can protect the synchronous wheel 123, and the meshing of the synchronous wheel 123 and the belt 122 can achieve stable rotation and simple structure. Specifically, in this embodiment, the motor 121 is also provided in the mounting groove 111c. In other embodiments, the motor 121 may be disposed in the cavity 111 a , as long as the synchronous wheel 123 is disposed in the mounting groove 111 c or the belt 122 is connected to the zoom knob 21 through the first opening 111 b .
[0042] In order to prevent dust, water and other impurities from entering the cavity 111a and affecting the components therein, in the embodiment, the bracket 111 is further provided with a sealing member 118, and the number of the sealing members 118 is two, and the two sealing members 118 can be detachably installed at the two end openings of the cavity 111a; the bracket 111 is also provided with a cover plate 119 at one end close to the first opening 111b. Two sealing members 118 are provided to seal the cavity 111a, thereby ensuring the sealing of the cavity 111a and protecting the components therein. It can be understood that the provision of a detachable sealing member 118 facilitates the assembly of the product.
[0043] In this embodiment, the bracket 111 is a long cylindrical structure, the mounting groove 111c is provided at one end of the bracket 111, and the cover plate 119, the bracket 111 and a sealing member 118 enclose the mounting groove 111c. One of the sealing members 118 is provided at the other end of the bracket 111, and the other sealing member 118 is provided at one side of the mounting groove 111c and seals the cavity 111a. The two sealing members 118 are connected to the bracket 111 by screw connection to achieve detachable connection. In other embodiments, the connection can also be achieved by snap connection, screw connection, interference fit or other methods.
[0044] Furthermore, the driving assembly 12 further includes a fixing ring 124, the fixing ring 124 is sleeved on the zoom knob 21, the belt 122 is sleeved on the fixing ring 124, the motor 121 drives the belt 122 to rotate, thereby driving the fixing ring 124 to rotate, and then driving the zoom knob 21 to rotate to achieve zoom adjustment. The fixing ring 124 is provided to connect the belt 122, so as to avoid displacement of the belt 122 during rotation, thereby ensuring the stability of the belt 122 when driving the zoom knob 21 to rotate.
[0045] Specifically, the fixing ring 124 is provided with a limiting groove 124a, the belt 122 is provided in the limiting groove 124a, the width of the limiting groove 124a is greater than or equal to the width of the belt 122, and the depth of the limiting groove 124a is greater than or equal to the thickness of the belt 122. The fixing ring 124 is also provided with a clamping groove 124b, and the meshing teeth 12a on the belt 122 are engaged with the clamping groove 124b. The limiting groove 124a can prevent the belt 122 from being displaced, thereby ensuring the stability of the rotation of the belt 122, and the clamping groove 124b can be used to engage the belt 122, so that the belt 122 can be stably connected to the fixing ring 124.
[0046] Furthermore, the driving assembly 12 further includes a locking member 125, and the locking member 125 is connected to the fixing ring 124 to fix the belt 122. Specifically, the position where the locking member 125 is connected to the fixing ring 124 is arranged adjacent to the card slot 124b, so that when the locking member 125 is connected to the fixing ring 124, the meshing teeth 12a on the belt 122 can be further locked and pressed to engage with the card slot 124b, thereby preventing the meshing teeth 12a of the belt 122 from being separated from the card slot 124b. In this embodiment, the connection between the locking member 125 and the fixing ring 124 is achieved by screws. At the same time, in order to ensure the stability of the connection between the belt 122 and the fixing ring 124, the locking member 125 is further provided with anti-skid patterns on one side facing the fixing ring 124, so that when the locking member 125 locks and presses the belt 122 at the position of the slot 124b of the fixing ring 124, the friction force can be increased, thereby ensuring that the belt 122 can stably drive the fixing ring 124 to rotate when rotating. The connection between the belt 122 and the fixing ring 124 is further locked by the locking member 125, ensuring the stability of the connection between the two, thereby ensuring the stability of the rotation of the belt 122.
[0047] In other embodiments, the fixing ring 124 and the belt 122 may be connected in other ways, such as screw fixing or gluing.
[0048] In addition, the fixing ring 124 is further provided with an elastic space 124c. In this embodiment, the elastic space 124c is a notch on the fixing ring 124, and the fixing ring 124 has certain elasticity and rigidity. The elastic space 124c is provided so that the fixing ring 124 has a certain elastic deformation space, so that it is convenient to be mounted on the zoom knob 21 of the telescope 2. In this embodiment, the zoom knob 21 has an anti-slip pattern, and the fixing ring 124 is mounted thereon, so that the two can be tightly connected, so that when the belt 122 drives the fixing ring 124 to rotate, it can drive the zoom knob 21 to rotate.
[0049] Continue reading Figure 5 and Figure 6 The bracket 111 is further provided with a second opening 111 d communicating with the cavity 111 a . In this embodiment, the second opening 111 d is provided in the middle of the bracket 111 .
[0050] The telescope support 1 further includes a control component 13, which includes a first circuit board 131 disposed in the second opening 111d and a first battery component 132 disposed in the cavity 111a, wherein the first circuit board 131 is electrically connected to both the motor 121 and the first battery component 132. Specifically, the first battery component 132 is disposed in the cavity 111a at one end away from the motor 121. One end of the first battery component 132 abuts against the sealing member 118, and the sealing member 118 is detachably connected to the support 111, so that the first battery component 132 can be replaced, which is convenient for extending the battery life. The first circuit board 131 can better control the rotation of the motor 121, and the power supply of the first battery component 132 can make the telescope support 1 portable, which is convenient for users to use when there is no external power connection.
[0051] In this embodiment, the first battery component 132 can be a lithium-ion battery, an alkaline battery, a nickel-cadmium battery, a nickel-metal hydride battery, a lead-acid battery, etc. Among them, a lithium-ion battery, such as a 18650 lithium battery, is preferred.
[0052] In an embodiment of the present application, one side of the first circuit board 131 facing the cavity 111a is electrically connected with electrical components such as a motor 121, and the other side of the first circuit board 131 faces the outside of the bracket 111, so as to be exposed to the external environment. Such an arrangement can reduce product costs. In other embodiments, the first circuit board 131 can also be arranged in the cavity 111a, and then a baffle is provided at the second opening 111d to achieve encapsulation. In other embodiments, a protective layer can be coated on the side of the first circuit board 131 exposed to the external environment to achieve functions such as waterproofing, rust prevention, or electric shock prevention, which are not listed one by one in this application. In this embodiment, the waterproof grade of the side of the first circuit board 131 exposed to the outside is IP grade.
[0053] In order to facilitate understanding of the power level of the first battery unit 132 and charging it, the control component 13 also includes a charging port 133 electrically connected to the first circuit board 131 and an indicator light 134 for indicating the power level of the first battery unit 132. Of course, the indicator light 134 can also indicate the charging status of the first battery unit 132. Setting the indicator light 134 allows the power level of the first battery unit 132 to be observed, so as to facilitate users to charge in advance or make other preparations.
[0054] The control component 13 also includes a protective cover 135, and the protective cover 135 is covered on the charging port 133. Specifically, the charging port 133 is a type-c port, and the waterproof level of the charging port 133 is IP level; the protective cover 135 is made of soft material, such as rubber material, plastic material, or silicone material, etc.; the shape of the protective cover 135 matches the shape of the charging port 133, so as to achieve sealing. In other embodiments, the charging port 133 can also be a MicroUSB interface, a Lightning interface, etc. In this embodiment, a connecting column is provided on the protective cover 135, which is connected to the first circuit board 131, so as to avoid the protective cover 135 from being lost after opening. The protective cover 135 can protect the charging port 133 and prevent the entry of impurities such as water or dust, thereby ensuring the service life of the product.
[0055] In this embodiment, the bracket 111 is also provided with a first mounting seat 112 and a second mounting seat 113, and the telescope bracket 1 also includes a first fixing member 114 and a second fixing member 115 respectively installed on the first mounting seat 112 and the second mounting seat 113, the first fixing member 114 is connected to the first mounting seat 112 through a locking member 116, and the second fixing member 115 is detachably connected to the second mounting seat 113. Specifically, the locking member 116 is a screw, and the first mounting seat 112 and the first fixing member 114 are provided with corresponding screw holes to facilitate the installation of the screw. In this embodiment, the connection method of the second mounting seat 113 and the second fixing member 115 is also to achieve connection by screws, which can achieve stability of the connection between the two and can also achieve detachable replacement of accessories. The two fixing members are respectively provided to correspond to the two mounting seats, so that the telescope 2 can be better fixed and the stability of the fixation can be achieved.
[0056] Specifically, the connection between the first mounting seat 112 and the first fixing member 114 can be designed according to specific needs to adapt to telescopes 2 with different diameters, such as telescopes 2 with diameters of 30 mm, 34 mm, etc., or telescopes 2 with other diameters. This application does not make specific restrictions.
[0057] See also Figure 8In this embodiment, the telescope bracket 1 further includes a third fixing member 117, and the third fixing member 117 is detachably mounted on the second mounting seat 113. Specifically, the second fixing member 115 is different from the third fixing member 117 in structure, and the third fixing member 117 is also provided with a connecting portion, which is a connecting guide rail, and other functional components can be installed, such as external devices such as a red dot sight and a flashlight, so as to increase the use of the telescope bracket 1. It can be understood that the third fixing member 117 and the second fixing member 115 can be detachably mounted on the second mounting seat 113. When in use, only the second fixing member 115 or the third fixing member 117 needs to be installed, and the second fixing member 115 or the third fixing member 117 is selected for use according to the application scenario. At the same time, the second fixing member 115 and the third fixing member 117 are detachably connected to the second mounting seat 113, so that the second fixing member 115 or the third fixing member 117 can be selected according to different scene requirements.
[0058] In order to conveniently control the rotation of the motor 121, please refer to Fig. 9 and Fig.10 This embodiment also provides a separate remote controller 4, which is a wireless remote controller.
[0059] See also Fig.11 and Fig.12 The remote controller 4 includes a housing 41, a second circuit board 42 disposed in the housing 41, a button 43 electrically connected to the second circuit board 42, and a second battery 44. The first circuit board 131 is provided with a first communication module (not shown in the figure), and the second circuit board 42 is provided with a second communication module (not shown in the figure). The second communication module can be connected to the first communication module in communication, and the button 43 is used to control the motor 121 to work. Specifically, there are two buttons 43, which are used to control the motor 121 to enlarge and reduce the multiples of the zoom knob 21. In the embodiment of the present application, the housing 41 is provided with a mounting structure for mounting the remote controller 4 on the carrier 3. The mounting mechanism can be connected by snapping or screwing or other methods, which is not limited in the present application. The first communication module and the second communication module can be wireless 2.4G communication modules, WiFi modules, Bluetooth modules, etc., as long as the communication connection between the two can be achieved. The remote controller 4 is provided to facilitate the user to control the motor 121 to adjust the zoom adjustment of the telescope 2.
[0060] In this embodiment, in order to facilitate carrying and using the remote controller 4 and avoid loss of the remote controller 4, a mounting structure is further provided on the housing 41 of the remote controller 4, such as Fig.10As shown, the mounting structure is a mounting groove 45, and the housing 41 is connected to the carrier 3 by screws, so that the remote controller 4 is mounted on the carrier 3. In other embodiments, the mounting structure may also be a mounting hole or a buckle or a mounting plate, or the remote controller 4 may be mounted on the carrier 3 or the telescope bracket 1 only by screws.
[0061] In this embodiment, in order to reduce the size of the remote controller 4, the second battery component 44 is a button battery, specifically a 1632 button battery.
[0062] In this embodiment, a button 43 (magnification button) on the remote control 4 is pressed to control the motor 121 to rotate, drive the synchronous wheel 123 to rotate, and drive the belt 122 to rotate, thereby driving the fixed ring 124 to rotate, and then driving the magnification knob 21 on the telescope 2 to rotate, so as to magnify the magnification of the telescope 2; when the magnification of the telescope 2 needs to be reduced, another button (reduction magnification button) on the remote control 4 is pressed to control the motor 121 to rotate in the opposite direction, drive the synchronous wheel 123 to rotate in the opposite direction, and drive the belt 122 to rotate in the opposite direction, thereby driving the fixed ring 124 to rotate in the opposite direction, and then driving the magnification knob 21 on the telescope 2 to rotate in the opposite direction, so as to reduce the magnification of the telescope 2.
[0063] The technical features of the above-described embodiments can be combined arbitrarily. In order to make the description concise, all possible combinations of the technical features in the above-described embodiments are not described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification. The above-described embodiments only express several implementation methods of the present application, and the description is relatively specific and detailed, but it cannot be understood as a limitation on the scope of the utility model patent. It should be pointed out that for ordinary technicians in this field, without departing from the concept of the present application, several deformations and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the patent of this application shall be based on the attached claims.
Claims
1. A telescope bracket for a telescope, the telescope comprising a magnification knob, characterized in that: include: A support assembly, comprising a bracket for supporting the telescope, the bracket having a cavity and a first opening; The driving assembly includes a motor with a rotating shaft and a belt. The motor is arranged in the bracket. One end of the belt is connected to the rotating shaft, and the other end of the belt extends from the first opening and is connected to the magnification knob. The motor is used to drive the belt to rotate, thereby driving the magnification knob to rotate to achieve magnification adjustment.
2. The telescope support according to claim 1, characterized in that: A mounting groove is provided at one end of the bracket, and the first opening is provided at the mounting groove; the driving assembly also includes a synchronous wheel provided at the mounting groove, and the synchronous wheel is sleeved on the rotating shaft; the belt is sleeved on the synchronous wheel; the synchronous wheel and the belt are provided with meshing teeth that can mesh with each other.
3. The telescope support according to claim 1 or 2, characterized in that: The driving assembly also includes a fixing ring, which is sleeved on the magnification knob, and the belt is sleeved on the fixing ring. The motor drives the belt to rotate, thereby driving the fixing ring to rotate, and then driving the magnification knob to rotate to achieve magnification adjustment.
4. The telescope support according to claim 3, characterized in that: The fixing ring is provided with a limiting groove, and the belt is arranged in the limiting groove; the fixing ring is also provided with a clamping groove, and the meshing teeth on the belt are engaged with the clamping groove; the fixing ring is also provided with an elastic space; the driving assembly also includes a locking piece, and the locking piece is connected to the fixing ring to fix the belt.
5. The telescope support according to claim 1 or 2, characterized in that: The bracket is also provided with a second opening connected to the cavity; the telescope bracket also includes a control component, the control component includes a first circuit board arranged in the second opening, and a first battery component arranged in the cavity, and the first circuit board is electrically connected to the motor and the first battery component.
6. The telescope support according to claim 5, characterized in that: The control component also includes a charging port electrically connected to the first circuit board and an indicator light for indicating the power level of the first battery component; the control component also includes a protective cover, which is arranged on the charging port.
7. The telescope support according to claim 1 or 2, characterized in that: The bracket is also provided with a first mounting seat and a second mounting seat, and the telescope bracket also includes a first fixing member and a second fixing member respectively installed on the first mounting seat and the second mounting seat, and the first fixing member is connected to the first mounting seat through a locking member; the telescope bracket also includes a third fixing member, and the third fixing member or the second fixing member can be detachably installed on the second mounting seat.
8. The telescope support according to claim 1 or 2, characterized in that: The bracket is also provided with a sealing member, the number of which is two, and the two sealing members are detachably mounted at the two end openings of the cavity; the bracket is also provided with a cover plate at one end close to the first opening.
9. A telescope support assembly, characterized in that: It comprises a remote controller and a telescope bracket according to any one of claims 1 to 8, wherein the remote controller is used to control or adjust the telescope bracket.
10. The telescope support assembly according to claim 9, characterized in that: The remote control includes a shell, a second circuit board arranged in the shell, a button electrically connected to the second circuit board, and a second battery component. A first communication module is provided on the first circuit board, and a second communication module is provided on the second circuit board. The second communication module can be communicatively connected with the first communication module, and the button is used to control the operation of the motor. The shell is also provided with a mounting structure for mounting the remote control on an external structure.