Flight remote controller with storage type mobile phone fixing and clamping mechanism

By designing a flexible, retractable mobile phone clamping mechanism, the problems of large size, heavy weight, and unstable clamping caused by the integrated display device of the flight remote controller are solved, realizing lightweight, stable, and convenient operation of the flight remote controller.

CN223842487UActive Publication Date: 2026-01-27汕头市欣琳玩具实业有限公司
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Patent Information

Application Number
CN202520389433.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-01-27
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

Existing flight remote controllers are too large and heavy due to the integration of auxiliary display devices, making them inconvenient to operate. Furthermore, the mobile phone is not securely held, making it difficult to accurately control the aircraft for extended periods.

Method used

Design a flight remote controller with an elastic retractable mobile phone clamping mechanism. The structure is retractable and includes an elastic storage part, a first stretching part, a second stretching part, and a gripping part. The elastic sliding support structure enables stable clamping of mobile phones of different sizes. The controller also includes a cable storage structure and an access port storage structure.

Benefits of technology

It achieves a lightweight and compact flight remote controller with a wide range of applications, stable clamping, neat cable management, convenient connection, extended service life, and improved ease of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a flight remote controller with a storage type mobile phone fixing and clamping mechanism. Comprising a shell and an elastic storage type mobile phone fixing and clamping mechanism, supporting limiting parts of the elastic storage type mobile phone fixing and clamping mechanism are arranged on the two sides of the upper end of the shell, an elastic telescopic structure comprises an elastic storage part, a first stretching part, a second stretching part and a holding part, and the holding part is matched with the supporting limiting parts. The flying remote controller with the storage type mobile phone fixing and clamping mechanism has the beneficial effects that the flying remote controller with the storage type mobile phone fixing and clamping mechanism is reasonable in structural design, adopts a telescopic storage structure, is light in weight, small in size and convenient to carry, can be quickly and conveniently adapted to mobile phones with different sizes, and is convenient to use. The application range of the remote controller is greatly widened, installation is stable, universality is high, and connection convenience is high.
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Description

Technical Field

[0001] This utility model relates to the field of flight remote control technology, and more specifically, to a flight remote control with a storage-type mobile phone fixing and clamping mechanism. Background Technology

[0002] The technology of drones, aerial photography drones and other aircraft is constantly advancing. With the continuous development of aircraft technology, aircraft are being used more and more in people's actual operations. By controlling aircraft with remote controllers, people can complete a variety of high-altitude remote control operations such as high-altitude patrols, explorations, and aerial photography, bringing convenience to people's lives and work needs.

[0003] During use, operators need auxiliary display devices to obtain information such as the aircraft's flight trajectory and flight images. This necessitates carrying additional auxiliary display devices when operating outdoors. Pairing these additional devices with the aircraft is difficult and significantly increases the operator's burden. To alleviate this burden, some aircraft integrate auxiliary display devices into their remote controllers. However, the numerous components of these auxiliary display devices make the remote controllers too heavy, preventing operators from holding them for extended periods to maintain precise flight control. Furthermore, the low resolution of the integrated auxiliary display devices prevents operators from clearly and accurately obtaining the necessary feedback image information, causing considerable inconvenience to users.

[0004] Currently, some aircraft remote controllers use external brackets to use mobile phones as auxiliary display devices. However, this increases the size of the remote controller and also has problems such as the bracket being easy to break, the mobile phone not being securely held and falling during operation, only being able to hold specific types of mobile phones, and difficulties in pairing and communicating with the device.

[0005] In view of this, there is a need to develop a new aircraft remote controller to meet people's current demand for convenient and easy operation of aircraft. Summary of the Invention

[0006] The purpose of this utility model is to provide a flight remote controller with a storage-type mobile phone fixing clamping mechanism that is small in size, easy to carry, has a convenient and stable mobile phone mounting and clamping operation, and has a neat connection cable setting and storage.

[0007] To achieve the above objectives, the present invention adopts the following technical solution:

[0008] A flight remote controller with a retractable mobile phone clamping mechanism includes a housing and an elastic retractable mobile phone clamping mechanism. The elastic retractable mobile phone clamping mechanism works with the housing to quickly and firmly clamp and fix mobile phones of different sizes.

[0009] The elastic retractable mobile phone fixing and clamping mechanism is stretchable and retractable within the housing via an elastic telescopic structure. The support and limiting parts of the elastic retractable mobile phone fixing and clamping mechanism are located on both sides of the upper end of the housing. The elastic telescopic structure includes an elastic retractable part, a first stretching part, a second stretching part, and a gripping part, with the gripping part cooperating with the support and limiting part.

[0010] The elastic storage part is installed inside the housing via a fixing bracket. The first stretching part is disposed within the storage shell of the elastic storage part via an elastic sliding support structure, which allows the first stretching part to spring back and tighten, confining it within the storage shell. The storage shell is installed below the fixing bracket. The second stretching part is slidably disposed within the stretching sliding cavity of the first stretching part. The upper end of the second stretching part is assembled and installed at the lower end of the gripping part. A telescopic storage groove is provided on the upper part of the housing. The gripping part is disposed within the telescopic storage groove of the housing. A locking block is provided on the lower end face of the gripping part. A locking groove is provided below the locking block. A support groove is provided above the support limiting part. The support groove and the locking groove are arranged opposite to each other. The locking block and the support limiting part form a clamping, limiting, and fixing structure.

[0011] Preferably, the elastic sliding support structure includes sliding guide rods provided on both sides inside the storage shell. The upper end of the sliding guide rod is disposed in the guide rod fixing holes on both sides of the fixing frame. A spring is sleeved on the sliding guide rod. The first tension part is slidably disposed in the storage sliding cavity of the storage shell. Sliding parts are provided on both sides of the first tension part. The sliding parts are slidably sleeved on the sliding guide rod. The upper end of the sliding part abuts against the lower end of the spring. The upper end of the spring abuts against the bottom of the guide rod fixing hole. The sliding part can drive the first tension part to complete the reset sliding action on the guide rod fixing hole through the extension and rebound action of the spring.

[0012] The sliding block of the second stretching part is disposed in the stretching sliding cavity of the first stretching part. The upper end of the stretching sliding cavity is provided with a stretching limiting part. The stretching limiting part and the upper end of the sliding block are mutually limiting and cooperating to realize the linkage between the second stretching part and the first stretching part.

[0013] Preferably, the second stretching part has a wire-passing groove, and the upper end of the second stretching part has a wire outlet hole. The lower end of the gripping part has a mounting groove, which is combined with the upper end of the second stretching part. The mounting groove has a wiring port, which is aligned with the wire outlet hole. The communication cable can be placed in the wire-passing groove and connected to the communication control component in the gripping part and the communication control unit in the housing through the wiring port and the wire outlet hole.

[0014] Preferably, the gripping part has an antenna accommodating cavity inside, providing space for the communication unit or other auxiliary control unit, thereby improving the control function and control range of the remote control.

[0015] Preferably, the gripping part has gripping protrusions on both sides, the telescopic storage groove has a stretching opening on one side, the telescopic storage groove has a gripping limiting slot inside, the gripping limiting slot has a sliding ramp above it, the gripping part has an elastic sliding limiting post on the side corresponding to the gripping limiting slot, the contact front end of the elastic sliding limiting post has a spherical protrusion, the spherical protrusion and the sliding ramp are in sliding cooperation, and the spherical protrusion is embedded in the gripping limiting slot to restrict the gripping part. The gripping protrusions and the stretching opening make it easier for the operator to grip the gripping part and complete the outward stretching action, and the elastic sliding support structure further secures the mobile phone between the locking block and the supporting limiting part.

[0016] Preferably, the elastic sliding limiting post is installed in the limiting support frame inside the grip portion via a limiting spring. The limiting spring pushes the spherical protrusion of the elastic sliding limiting post, after it slides into the slope, into the grip limiting slot, further fixing the grip portion in the telescopic storage groove.

[0017] Preferably, the slotted groove has an anti-slip groove in the middle, which can provide auxiliary limiting and fixing for mobile phones with thin bodies, preventing the phone from sliding or falling during clamping. The supporting groove of the supporting limiting part has a limiting block on its outer side, and the supporting limiting part is symmetrically arranged on both sides of the upper end of the housing. The limiting block can provide more sufficient limiting support for the front end of the phone placed in the supporting limiting part, preventing the phone from coming out of the supporting groove. The limiting block and the anti-slip groove can further improve the clamping and fixing effect.

[0018] Preferably, a wire storage section is connected below the elastic storage section, and the wire storage section has a wire receiving cavity inside. The storage shell is combined with the wire receiving cavity. The wire receiving cavity provides sufficient storage space for the connecting wire inside the elastic storage-type mobile phone fixing clamp mechanism after storage, keeping the internal space of the remote control neat and avoiding the mess of connecting wires caused by repeated stretching and storage, as well as the damage to connecting wires caused by folding. The wire receiving cavity is aligned with the inlet hole at the lower end of the second stretching section. One side of the wire receiving cavity has a wiring fixing groove and a wire outlet connection hole. The wiring fixing groove can effectively fix the connecting wire extending from the wire receiving cavity, allowing the connection section of the connecting wire to be kept in a fixed position, providing a more stable connection and communication between various control units.

[0019] Preferably, the outer side of the wire storage section is provided with a through hole. Providing a through hole on the outer wall of the wire storage section allows the wire housing cavity to remain breathable, enabling air to freely enter and exit. This prevents negative pressure resistance from forming in the wire housing cavity during stretching and contraction, which would affect the feel of the stretching operation and the clamping and fixing effect on the mobile phone.

[0020] Preferably, the grip portion has an access port receiving groove below it, and the mounting bracket has an access port slot. The access port receiving groove is located above the access port slot. This design can accommodate the communication connection port between the remote control and the mobile phone, providing better integration and more convenient connection functionality.

[0021] Compared with existing technologies, this invention offers the following advantages: The flight remote controller with a retractable phone holder has a reasonable structural design, employing a retractable storage structure that is lightweight, compact, and easy to carry. The newly designed elastic retractable phone holder is easy to extend, and its extension mechanism allows for quick and convenient adaptation to phones of different sizes, from large-screen tablets to small regular phones, ensuring stable holding and significantly improving the remote controller's applicability, installation stability, and versatility. The elastic retractable phone holder also features a cable management structure, which neatly stores the cable and protects it from damage during extension and retraction, extending the remote controller's lifespan. Furthermore, the invention includes an access point storage structure, allowing for quick connection and better connectivity between the phone and remote controller. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of this utility model.

[0023] Figure 2 This is a schematic diagram of the tensile state of this utility model.

[0024] Figure 3 This is a schematic diagram of the back of the present invention in a stretched state.

[0025] Figure 4 This is a schematic diagram of the stretched state of the elastic storage and clamping mechanism for mobile phones of this utility model.

[0026] Figure 5 This is a structural schematic diagram of the elastic storage and fixing clamp mechanism for mobile phones of this utility model.

[0027] Figure 6 This is a schematic diagram of the combination of the elastic storage part, the first stretching part, the second stretching part, and the wire storage part of this utility model.

[0028] Figure 7This is a schematic diagram of the internal cross-section of the elastic storage and clamping mechanism for mobile phones of this utility model.

[0029] Figure 8 This is a schematic diagram of the gripping part of this utility model.

[0030] Figure 9 This is a schematic diagram of the internal structure of the gripping part of this utility model.

[0031] The attached icons are numbered as follows:

[0032] Housing-1, Support limiting part-2, Elastic storage part-3, First stretching part-4, Second stretching part-5, Grip part-6, Wire storage part-7, Telescopic storage groove-11, Stretching opening-12, Grip limiting latch-13, Sliding slope-14, Support groove-21, Limiting block-22, Fixing bracket-31, Storage shell-32, Sliding guide rod-33, Spring-34, Storage sliding cavity-35, Guide rod fixing hole-36, Connection port slot-37, Sliding part-41, Pull Extension limiting part-42, stretching sliding cavity-43, sliding block-51, wire threading groove-52, wire outlet hole-53, locking block-61, locking groove-62, anti-slip groove-621, mounting groove-63, wiring port-64, gripping protrusion-65, spherical protrusion-66, elastic sliding limiting post-67, limiting spring-68, limiting support frame-69, access port receiving groove-60, wire receiving cavity-71, wiring fixing groove-72, wire outlet connection hole-73, through hole-74. Detailed Implementation

[0033] The present invention will be further described below with reference to specific embodiments. The accompanying drawings are for illustrative purposes only, representing schematic diagrams rather than actual physical objects, and should not be construed as limiting the scope of this patent. To better illustrate the embodiments of the present invention, some components in the drawings may be omitted, enlarged, or reduced, and do not represent the actual dimensions of the product. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings.

[0034] In the accompanying drawings of this utility model, the same or similar reference numerals correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0035] The present invention will be further described below with reference to specific embodiments and accompanying drawings:

[0036] Figures 1 to 9 These are schematic diagrams of the various structures of this utility model. Furthermore, this utility model is a flight remote controller with a retractable mobile phone clamping mechanism, including a housing 1 and an elastic retractable mobile phone clamping mechanism. The elastic retractable mobile phone clamping mechanism cooperates with the housing 1 to quickly and firmly clamp and fix mobile phones of different sizes.

[0037] The elastic retractable mobile phone clamping mechanism is retractable within the housing 1 via an elastic telescopic structure. The support and limiting parts 2 of the elastic retractable mobile phone clamping mechanism are located on both sides of the upper end of the housing 1. The elastic telescopic structure includes an elastic retractable part 3, a first stretching part 4, a second stretching part 5, and a gripping part 6, which cooperates with the support and limiting part 2. The elastic retractable part 3 is installed within the housing 1 via a fixing bracket 31. The first stretching part 4 is disposed within the retractable shell 32 of the elastic retractable part 3 via an elastic sliding support structure, which allows the first stretching part 4 to spring back and tighten, confining it within the retractable shell 32. The storage shell 32 is installed below the fixing frame 31. The second stretching part 5 is slidably disposed within the stretching sliding cavity 43 of the first stretching part 4. The upper end of the second stretching part 5 is assembled and installed at the lower end of the gripping part 6. A telescopic storage groove 11 is provided above the shell 1. The gripping part 6 is disposed within the telescopic storage groove 11 of the shell 1. A locking block 61 is provided on the lower end face of the gripping part 6. A locking groove 62 is provided below the locking block 61. A support groove 21 is provided above the support limiting part 2. The support groove 21 and the locking groove 62 are arranged opposite to each other. The locking block 61 and the support limiting part 2 form a clamping, limiting, and fixing structure.

[0038] Preferably, the elastic sliding support structure includes sliding guide rods 33 provided on both sides inside the storage shell 32. The upper end of the sliding guide rod 33 is disposed in the guide rod fixing holes 36 on both sides of the fixing frame 31. A spring 34 is sleeved on the sliding guide rod 33. The first tension part 4 is slidably disposed in the storage sliding cavity 35 of the storage shell 32. Sliding parts 41 are provided on both sides of the first tension part 4. The sliding parts 41 are slidably sleeved on the sliding guide rod 33. The upper end of the sliding part 41 abuts against the lower end of the spring 34. The upper end of the spring 34 abuts against the bottom of the guide rod fixing hole 36. The sliding part 41 can drive the first tension part 4 to complete the reset sliding action on the guide rod fixing hole 36 through the extension and rebound action of the spring 34. The sliding block 51 of the second stretching part 5 is disposed in the stretching sliding cavity 43 of the first stretching part 4. The upper end of the stretching sliding cavity 43 is provided with a stretching limiting part 42. The stretching limiting part 42 and the upper end of the sliding block 51 are mutually limiting and cooperating to realize the linkage between the second stretching part 5 and the first stretching part 4.

[0039] Preferably, the second stretching part 5 is provided with a wire-passing groove 52, and the upper end of the second stretching part 5 has a wire outlet hole 53. The lower end of the gripping part 6 is provided with a mounting groove 63, which is combined with the upper end of the second stretching part 5. The mounting groove 63 has a wiring port 64, which is aligned with the wire outlet hole 53. The communication cable can be placed in the wire-passing groove 52 and connected to the communication control component in the gripping part 6 and the communication control unit in the housing through the wiring port 64 and the wire outlet hole 53.

[0040] Preferably, the gripping part 6 has an antenna accommodating cavity inside, providing space for the communication unit or other auxiliary control unit, thereby improving the control function and control range of the remote control.

[0041] Preferably, the gripping part 6 has gripping protrusions 65 on both sides, the telescopic storage groove 11 has a stretching opening 12 on one side, the telescopic storage groove 11 has a gripping limiting slot 13 inside, the gripping limiting slot 13 has a sliding slope 14 above it, the gripping part 6 has an elastic sliding limiting post 67 on the side corresponding to the gripping limiting slot 13, the contact front end of the elastic sliding limiting post 67 has a spherical protrusion 66, the spherical protrusion 66 and the sliding slope 14 slide against each other, and the spherical protrusion 66 is embedded in the gripping limiting slot 13 to restrict the gripping part 6. The gripping protrusions 65 and the stretching opening 12 make it easier for the operator to grip the gripping part 6 and complete the outward stretching action. In conjunction with the elastic sliding support structure, the mobile phone is clamped and fixed between the locking block 61 and the support limiting part 2.

[0042] Preferably, the elastic sliding limiting post 67 is installed in the limiting support frame 69 within the grip portion 6 via a limiting spring 68. The limiting spring 68 pushes the spherical protrusion 66 of the elastic sliding limiting post 67, after it slides into the slope 14, into the grip limiting slot 13, further fixing the grip portion 6 within the telescopic storage groove 11.

[0043] Preferably, the locking groove 62 has an anti-slip groove 621 in the middle, which can provide auxiliary limiting and fixing for mobile phones with thin bodies, preventing the phone from sliding or falling during clamping. The supporting groove 21 of the supporting limiting part 2 has a limiting block 22 on its outer side, and the supporting limiting part 2 is symmetrically arranged on both sides of the upper end of the housing 1. The limiting block 22 can provide more sufficient limiting support for the front end of the mobile phone clamped in the supporting limiting part 2, preventing the mobile phone from coming out of the supporting groove 21. The limiting block 22 and the anti-slip groove 621 can further improve the clamping and fixing effect.

[0044] Preferably, a wire storage section 7 is connected below the elastic storage section 3. The wire storage section 7 has a wire receiving cavity 71 inside. The storage shell 32 is combined with the wire receiving cavity 71. The wire receiving cavity 71 can provide sufficient storage space for the connecting wire inside the elastic storage-type mobile phone fixing clamp mechanism after storage, keeping the internal space of the remote control neat and avoiding the mess of connecting wires caused by repeated stretching and storage, as well as the damage to connecting wires caused by folding. The wire receiving cavity 71 is aligned with the inlet hole 54 at the lower end of the second stretching section 5. One side of the wire receiving cavity 71 is provided with a wiring fixing groove 72 and a wire outlet connection hole 73. The wiring fixing groove 72 can effectively fix the connecting wire extending from the wire receiving cavity 71, so that the connection section of the connecting wire can be kept in a fixed position, providing a more stable connection and communication between various control units.

[0045] Preferably, the outer side of the wire storage section 7 is provided with a through hole 74. Providing a through hole 74 on the outer wall of the wire storage section 7 allows the wire receiving cavity 71 to remain breathable, allowing air to freely enter and exit, thus preventing negative pressure resistance in the wire receiving cavity 71 during stretching and contraction, which would affect the feel of the stretching operation and the clamping and fixing effect on the mobile phone.

[0046] Preferably, the grip portion 6 has an access port receiving groove 60 below it, and the fixing bracket 31 has an access port slot 37. The access port receiving groove 60 is located above the access port slot 37. This design can accommodate the communication connection port between the remote control and the mobile phone, providing better integration and more convenient connection functions.

[0047] First embodiment:

[0048] A flight remote controller with a retractable mobile phone clamping mechanism includes a housing 1 and an elastic retractable mobile phone clamping mechanism. The elastic retractable mobile phone clamping mechanism works with the housing 1 to quickly and firmly clamp and fix mobile phones of different sizes.

[0049] The elastic storage type mobile phone fixing and clamping mechanism is installed in the housing 1 through an elastic telescopic structure that can be stretched and contracted. The support and limiting part 2 of the elastic storage type mobile phone fixing and clamping mechanism is located on both sides of the upper end of the housing 1. The elastic telescopic structure includes an elastic storage part 3, a first stretching part 4, a second stretching part 5 and a gripping part 6, and the gripping part 6 cooperates with the support and limiting part 2.

[0050] The elastic storage part 3 is installed inside the housing 1 by a fixing bracket 31, and the first stretching part 4 is set inside the storage shell 32 of the elastic storage part 3 by an elastic sliding support structure. The elastic sliding support structure allows the first stretching part 4 to spring back and be tightened and confined inside the storage shell 32.

[0051] The storage shell 32 is installed below the fixing frame 31. The second stretching part 5 is slidably disposed within the stretching sliding cavity 43 of the first stretching part 4. The upper end of the second stretching part 5 is assembled and installed at the lower end of the gripping part 6. A telescopic storage groove 11 is provided on the upper part of the shell 1, and the gripping part 6 is disposed within the telescopic storage groove 11 of the shell 1. A locking block 61 is provided on the lower end face of the gripping part 6, and a locking groove 62 is provided below the locking block 61. A support groove 21 is provided above the support limiting part 2, and the support groove 21 and the locking groove 62 are arranged opposite to each other. The locking block 61 and the support limiting part 2 form a clamping, limiting, and fixing structure.

[0052] During installation, the operator holds the grip 6 within the stretch opening 12 and pulls the first stretch part 4 and the second stretch part 5 upward from the elastic storage part 3 via the grip protrusion 65. The grip 6 drives the second stretch part 5 to move upward. The second stretch part 5 slides upward in the stretch sliding cavity 43 via the sliding block 51. After the sliding block 51 contacts the stretch limiting part 42, it drives the first stretch part 4 to move upward. The sliding parts 41 on both sides of the first stretch part 4 move upward along the guide of the sliding guide rod 33 and compress the spring 34. After the grip 6 is pulled to a high position, the upper side of the phone is inserted into the locking groove 62 of the locking block 61. Then, through the expansion and reset action of the spring 34 of the elastic sliding support structure, the grip 6 is pulled down, so that the lower side of the phone is inserted into the support groove 21 of the support limiting part 2, thus completing the clamping and fixing installation of the phone on the remote control.

[0053] After use, pull up the grip 6 again to remove the phone from the slot groove 62 and the support groove 21. Take out the phone, release the grip 6, and the spring 34 expands and resets, so that the first stretching part 4 is reset and stored in the storage sliding cavity 35. Press down the grip 6 to store the second stretching part 5 in the stretching sliding cavity 43. Press the grip 6 down into the telescopic storage groove 11 so that the spherical protrusion 66 at the contact front end of the elastic sliding limit post 67 of the grip 6 slides down the sliding slope 14 and aligns with the grip limit slot 13. Under the action of the limit spring 68, the spherical protrusion 66 is inserted into the grip limit slot 13, and the grip 6 is firmly and stably placed in the telescopic storage groove 11.

[0054] Second embodiment:

[0055] This embodiment is similar to the first embodiment, except that the card slot 62 in this embodiment is provided with an anti-slip slot 621 in the middle, and a limiting block 22 is provided on the outside of the support groove 21. The anti-slip slot 621 and the limiting block 22 can make the mobile phone card more stable and effective in being fixed and clamped when placed in the support limiting part 2 and the card slot 61.

[0056] Third embodiment:

[0057] This embodiment is similar to the previous embodiment, except that in this embodiment, the elastic storage part 3 is connected to the wire storage part 7 below. The connecting wires between the elastic storage part 3 and the inside of the remote control can be neatly stored in the wire storage part 7 and connected to the control unit and control module inside the remote control through the wiring fixing groove 72 and the wire outlet connection hole 73. The outside of the wire storage part 7 is provided with a through hole 74, which can keep the inside of the wire receiving cavity 71 breathable.

[0058] Fourth embodiment:

[0059] This embodiment is similar to the previous embodiment, except that the grip 6 in this embodiment has an access port receiving groove 60 below it, and the fixing frame 31 has an access port slot 37. The access port receiving groove 60 is located above the access port slot 37. In the storage state, the extended access port (such as a data cable, power cord, etc.) inside the remote control can be inserted into the access port slot 37 and embedded into the access port receiving groove 60, so that the grip 6 can be effectively stored in the telescopic storage slot 11.

[0060] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. A flight remote controller with a retractable mobile phone clamping mechanism, characterized in that, The device includes a housing (1) and an elastic retractable mobile phone clamping mechanism. The elastic telescopic structure of the elastic retractable mobile phone clamping mechanism is disposed inside the housing (1). The support and limiting part (2) of the elastic retractable mobile phone clamping mechanism is disposed on both sides of the upper end of the housing (1). The elastic telescopic structure includes an elastic storage part (3), a first stretching part (4), a second stretching part (5), and a gripping part (6). The elastic storage part (3) is installed inside the housing (1) by a fixing frame (31). The first stretching part (4) is disposed inside the storage shell (32) of the elastic storage part (3) by an elastic sliding support structure. The storage shell (32) is installed on the housing (1). Below the fixed frame (31), the second stretching part (5) is slidably disposed in the stretching sliding cavity (43) of the first stretching part (4). The upper end of the second stretching part (5) is assembled and installed at the lower end of the gripping part (6). The housing (1) is provided with a telescopic storage groove (11) on the top. The gripping part (6) is disposed in the telescopic storage groove (11) of the housing (1). The lower end face of the gripping part (6) is provided with a locking block (61). The locking block (61) is provided with a locking groove (62) below it. The support limiting part (2) is provided with a support groove (21) above it. The support groove (21) and the locking groove (62) are arranged opposite to each other.

2. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 1, characterized in that, The elastic sliding support structure includes sliding guide rods (33) provided on both sides inside the storage shell (32). The upper end of the sliding guide rod (33) is disposed in the guide rod fixing holes (36) on both sides of the fixing frame (31). A spring (34) is sleeved on the sliding guide rod (33). The first tension part (4) is slidably disposed in the storage sliding cavity (35) of the storage shell (32). Sliding parts (41) are provided on both sides of the first tension part (4). The sliding parts (41) are slidably sleeved on the spring. On the sliding guide rod (33), the upper end of the sliding part (41) abuts against the lower end of the spring (34), and the upper end of the spring (34) abuts against the bottom of the guide rod fixing hole (36). The sliding block (51) of the second tension part (5) is disposed in the tension sliding cavity (43) of the first tension part (4). The upper end of the tension sliding cavity (43) is provided with a tension limiting part (42), and the tension limiting part (42) and the upper end of the sliding block (51) are mutually limiting and cooperating.

3. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 1 or 2, characterized in that, The second stretching part (5) is provided with a wire groove (52), and the upper end of the second stretching part (5) is provided with a wire outlet hole (53). The lower end of the gripping part (6) is provided with a mounting groove (63). The mounting groove (63) is combined with the upper end of the second stretching part (5). The mounting groove (63) is provided with a wiring port (64), and the wiring port (64) is aligned with the wire outlet hole (53).

4. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 3, characterized in that, The gripping part (6) has an antenna accommodating cavity inside.

5. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 3, characterized in that, The gripping part (6) has gripping protrusions (65) on both sides. The telescopic storage groove (11) has a stretching opening (12) on one side. The telescopic storage groove (11) has a gripping limiting slot (13) inside. The gripping limiting slot (13) has a sliding slope (14) above it. The gripping part (6) has an elastic sliding limiting post (67) on the side corresponding to the gripping limiting slot (13). The contact front end of the elastic sliding limiting post (67) has a spherical protrusion (66). The spherical protrusion (66) and the sliding slope (14) are in sliding cooperation with each other. The spherical protrusion (66) is embedded in the gripping limiting slot (13) to restrict the gripping part (6).

6. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 5, characterized in that, The elastic sliding limit post (67) is installed in the limit support frame (69) inside the grip part (6) by a limit spring (68).

7. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 1, characterized in that, The slotted groove (62) has an anti-slip slot (621) in the middle, and the support groove (21) of the support limiting part (2) has a limiting block (22) on the outside. The support limiting part (2) is symmetrically arranged on both sides of the upper end of the housing (1).

8. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 1, characterized in that, The elastic storage part (3) is connected to a wire storage part (7) below. The wire storage part (7) has a wire receiving cavity (71) inside. The storage shell (32) is combined with the wire receiving cavity (71). The wire receiving cavity (71) is aligned with the wire inlet hole (54) at the lower end of the second stretching part (5). The wire receiving cavity (71) has a wiring fixing groove (72) and a wire outlet connection hole (73) on one side.

9. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 8, characterized in that, The outer side of the wire storage section (7) is provided with a through hole (74).

10. The flight remote controller with a retractable mobile phone clamping mechanism according to claim 1 or 2, characterized in that, The grip (6) has an access port receiving groove (60) below it, and the mounting bracket (31) has an access port slot (37) above it.