Electric flip aviation case

By combining the electric flip-top module and the sensor module, the electric opening and closing of the flight case lid is achieved and the operation is smooth, which solves the problems of inconvenience and instability of manual flip-top operation and improves efficiency and safety.

CN224061580UActive Publication Date: 2026-03-31SHENZHEN T-BRISUN CASE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The existing flight case has an inconvenient manual flip-top operation, which is especially difficult to open or close when holding items with both hands. Moreover, the opening and closing is unstable, affecting efficiency and safety.

Method used

It adopts a combination of electric flip-top module, sensor module, automatic locking module and control module to realize electric opening and closing of the cover and smooth control. Combined with rechargeable battery power supply, it supports remote control operation and emergency stop.

Benefits of technology

It improves the convenience and safety of flight cases, especially suitable for holding items with both hands, ensuring that the lid opens and closes smoothly, preventing accidental opening and reducing the risk of damage to the items inside.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electric flipping aviation case, which comprises a case body and a cover body, the case body and the cover body are connected through a hinge, and the electric flipping aviation case is also provided with an electric flipping module, a control module and a power supply module; the electric cover turning module is used for driving the cover body to turn so as to realize opening and closing, the electric cover turning module is electrically connected with the control module, and the power supply module is used for supplying power to other modules. According to the electric flipping aviation case, the electric flipping module is arranged, so that the cover body of the aviation case is electrically opened and closed, a user does not need to manually operate, the convenience, safety and intelligent degree of use are improved, and the electric flipping aviation case is particularly suitable for the conditions that objects are held by two hands and the like and are inconvenient to manually operate; the problems that an existing aviation case is inconvenient in manual cover turning, unstable in opening and closing, lack of intelligent functions and the like are solved.
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Description

Technical Field

[0001] This utility model relates to the field of aviation case technology, and in particular to an electric flip-top aviation case. Background Technology

[0002] With the rapid development of the transportation industry, flight cases, as an important means of transport, are widely used in the transport of LED displays, stage performance equipment, and precision instruments. Most existing flight cases use a manual flip-top design, requiring manual opening and closing of the lid. This method is inconvenient when loading and unloading heavy items: for example, when the user is holding items with both hands, it is difficult to free up both hands to open or close the flight case; in work scenarios requiring frequent opening and closing of flight cases, manual operation is cumbersome and reduces work efficiency. Furthermore, during the manual flip-top process, uneven force can lead to unstable opening and closing of the lid, even causing shaking and damage to the items inside, thus affecting the lifespan of the case.

[0003] With the continuous development of technology, people have put forward higher requirements for the convenience, safety and intelligence of flight cases. Therefore, the development of a new type of electric flip-top flight case has important practical significance. Utility Model Content

[0004] The purpose of this utility model is to provide an electrically operated flip-top flight case to solve the problems mentioned in the background section. To achieve the above objective, this utility model provides the following technical solution:

[0005] An electrically operated flip-top flight case includes a case body and a cover, which are connected by a hinge. The electrically operated flip-top flight case also includes an electrically operated flip-top module, a control module, and a power module. The electrically operated flip-top module is used to drive the cover to flip and open / close. The electrically operated flip-top module is electrically connected to the control module, and the power module is used to supply power to the other modules.

[0006] Preferably, the electric flip-top flight case is also equipped with a sensor module, which is used to monitor the position and opening / closing status of the cover in real time. The sensor module is electrically connected to the control module to control the electric flip-top module to maintain stability and safety during the opening and closing process in real time.

[0007] Preferably, the electric flip-top flight case is further provided with an automatic locking module, which is electrically connected to the control module; when the sensor module detects that the cover is in a closed state, the control module controls the automatic locking module to lock the electric flip-top module.

[0008] Preferably, the control module includes a controller and a remote controller, the remote controller being wirelessly connected to the controller, and the electric flip-top module, the sensor module, and the automatic locking module being electrically connected to the controller.

[0009] Preferably, the controller is equipped with an emergency stop button to control the electric flip-top module to stop moving.

[0010] Preferably, the electric flip-top module is configured as an electric support rod structure, with one end of the electric flip-top module connected to the housing and the other end connected to the cover.

[0011] Preferably, the power module includes a rechargeable battery and a power switch. The rechargeable battery is disposed inside the housing, and the power switch is disposed outside the housing. The rechargeable battery is electrically connected to other modules through the power switch.

[0012] Preferably, a latch is also provided between the box body and the cover body.

[0013] The beneficial effects of this utility model are as follows: The electric flip-top flight case of this utility model realizes the electric opening and closing of the flight case lid by setting an electric flip-top module. Users do not need to operate it manually, which improves the convenience, safety and intelligence of use. It is especially suitable for situations where it is inconvenient to operate manually, such as holding items with both hands. It solves the problems of inconvenience of manual flip-top opening and closing, instability and lack of intelligent functions of existing flight cases. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the electrically operated flip-top flight case of this utility model in its open state.

[0015] Figure 2 This is a schematic diagram of the closed state of the electric flip-top flight case of this utility model.

[0016] Figure 3 This is a schematic diagram of the front structure of the electric flip-top flight case of this utility model. Detailed Implementation

[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0018] like Figures 1 to 3As shown, an electrically operated flip-top flight case includes a case body 1 and a lid 2. Both the case body 1 and lid 2 are made of high-strength materials, such as aluminum alloy, possessing excellent pressure and impact resistance, effectively protecting the items inside. The case body 1 and lid 2 are connected by a hinge, ensuring that the lid 2 can be flexibly flipped. The electrically operated flip-top flight case also includes an electrically operated flip-top module 3, a control module 4, and a power module 5. The control module 4 is responsible for receiving operating commands and signal feedback from other modules, and controlling the operation of the other modules. The electrically operated flip-top module 3 drives the lid 2 to flip, achieving opening and closing. The electrically operated flip-top module 3 is electrically connected to the control module 4, and executes the flip-top action by receiving control commands from the control module 4, causing the lid 2 to switch between open and closed states. The power module 5 supplies power to the other modules.

[0019] This application embodiment realizes the electric opening and closing of the flight case lid 2 by setting an electric flip-top module 3. Users do not need to operate it manually, which improves the convenience, safety and intelligence of use. It is especially suitable for situations where it is inconvenient to operate manually, such as holding objects with both hands. It solves the problems of inconvenience of manual flip-top opening and closing, instability and lack of intelligent functions of existing flight cases.

[0020] In this embodiment, the electrically operated flip-top flight case also includes a sensor module electrically connected to the control module 4. The sensor module monitors the position and opening / closing status of the lid 2 in real time and feeds this information back to the control module 4. The control module 4 adjusts the operation of the electrically operated flip-top module 3 based on the feedback information, ensuring the lid 2 remains stable and safe during opening and closing, effectively avoiding the risk of damage to items inside the case due to unstable opening and closing. Specifically, the sensor module uses a combination of position sensors and proximity sensors. The position sensor is installed at the connection between the lid 2 and the case body 1, monitoring the flip angle of the lid 2 in real time to determine its position. The proximity sensor is installed at the edge of the lid 2 and the case body 1 to detect whether the lid 2 is in a closed state. The sensor module sends the monitored signals to the control module 4 in real time, and the control module 4 adjusts the operation of the electrically operated flip-top module 3 based on these signals to ensure the lid 2 opens and closes smoothly. For example, if there is a jam or abnormality during the opening or closing of the cover 2, the sensor module detects the abnormal position change and sends a signal to the control module 4. The control module 4 immediately adjusts the output power of the electric flip cover module 3 or stops its operation to avoid damage to the cover 2 and the items inside the box.

[0021] In this embodiment, the electrically operated flip-top flight case also includes an automatic locking module, which is electrically connected to the control module 4. When the sensor module detects that the cover 2 is closed, the control module 4 controls the automatic locking module to lock the electrically operated flip-top module 3, enhancing the safety of the flight case and preventing the cover 2 from accidentally opening during transportation. Specifically, the automatic locking module employs an electromagnetic lock or similar structure. When the sensor module detects that the cover 2 is closed, it sends a signal to the control module 4. The control module 4 then energizes the electromagnetic lock, causing its latch to extend and insert into the locking hole of the electrically operated flip-top module 3, locking the module and preventing the cover 2 from opening accidentally. When it is necessary to open the cover 2, the control module 4 receives a remote control or other opening signal and de-energizes the electromagnetic lock, causing the latch to retract and releasing the lock on the electrically operated flip-top module 3.

[0022] The control module 4 in this embodiment further includes a controller and a remote controller. The remote controller is wirelessly connected to the controller, allowing the user to operate the flight case from a certain distance, further improving ease of use. The controller employs a microprocessor or other control chip, integrating signal processing and logic control functions. The controller has multiple interfaces, connecting to the electric flip-top module 3, the sensor module, and the automatic locking module. The controller receives position and opening / closing status signals of the cover 2 from the sensor module and controls the electric flip-top module 3 and the automatic locking module according to a preset program and algorithm. The remote controller uses wireless communication technologies such as Bluetooth and radio frequency to wirelessly connect to the controller for remote operation. The remote controller has an internal battery to provide power. It has operation buttons such as an open button and a close button, allowing the user to send control signals to the controller by pressing the corresponding buttons. The controller receives the control signals from the remote controller to achieve remote operation. Additionally, the controller has an emergency stop button. In case of an emergency, the user can press the emergency stop button, and the controller immediately cuts off the power supply to the electric flip-top module 3, stopping its movement and ensuring the safety of the user and the items inside the case.

[0023] In this embodiment, the electric flip-top module 3 is configured as an electric strut structure. One end of the electric flip-top module 3 is connected to the housing 1, and the other end is connected to the cover 2. The electric strut structure is simple, operates stably, and can reliably drive the cover 2 to flip. Specifically, the electric flip-top module 3 uses an electro-hydraulic strut. One end of the electric strut is connected to the housing 1 via a connecting component, and the other end is connected to the cover 2 via a connecting component. When the control module 4 sends an open or close signal to the electric flip-top module 3, the motor inside the electric strut drives the piston to move, thereby realizing the flipping of the cover 2. In actual installation, an electric strut of appropriate specifications can be selected according to the size and weight of the flight case to ensure that it can provide sufficient driving force.

[0024] In this embodiment, the power module 5 includes a rechargeable battery and a power switch. The rechargeable battery is housed inside the housing 1, which is environmentally friendly and energy-saving. The power switch is located on the outside of the housing 1 for user convenience. The rechargeable battery is electrically connected to other modules via the power switch. Specifically, the rechargeable battery uses high-performance batteries such as lithium batteries and is housed in a dedicated battery compartment inside the housing 1. The battery compartment has good insulation and securing measures to prevent the battery from shaking or short-circuiting during transportation. The power switch is located on the outside of the housing 1 for user convenience. When the power switch is turned on, the rechargeable battery is electrically connected to various modules such as the control module 4, the electric flip-top module 3, the sensor module, and the automatic locking module via wires, providing them with operating power. When the battery needs to be charged, a charger can be connected to the rechargeable battery through the charging interface for charging.

[0025] In this embodiment, a latch 6 is also provided between the case body 1 and the lid 2 as an additional security measure, further enhancing the security of the flight case. Specifically, the latch 6 adopts a traditional mechanical latch structure. After the electric flip-top flight case is closed, in addition to the automatic locking module locking the electric flip-top module 3, the latch 6 can further lock the case body 1 and the lid 2, improving the security of the flight case. When it is necessary to open the flight case, the automatic locking module is released via the remote control or controller, and then the latch 6 is opened to open the flight case.

[0026] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. An electrically operated flip-over case, comprising a case body (1) and a cover body (2), the case body (1) and the cover body (2) being connected by a hinge, characterized in that, The electric flip-over aviation case is further provided with an electric flip-over module (3), a control module (4) and a power module (5); the electric flip-over module (3) is used to drive the cover (2) to flip over to realize opening and closing, the electric flip-over module (3) is electrically connected with the control module (4), and the power module (5) is used to supply power to other modules; the electric flip-over module (3) is provided in an electric support rod structure, one end of the electric flip-over module (3) is connected with the box body (1), and the other end is connected with the cover (2); the electric flip-over aviation case is further provided with a sensor module, the sensor module is used to monitor the position and opening and closing state of the cover (2) in real time, and the sensor module is electrically connected with the control module (4); the control module (4) adjusts the running state of the electric flip-over module (3) in real time according to the feedback information of the sensor module.

2. The motorized clamshell case of claim 1, wherein, The electric flip-over aviation case is further provided with an automatic locking module, and the automatic locking module is electrically connected with the control module (4); when the sensor module detects that the cover (2) is in a closed state, the control module (4) controls the automatic locking module to lock the electric flip-over module (3).

3. The motorized clamshell case of claim 2, wherein, The control module (4) comprises a controller and a remote controller, the remote controller is wirelessly connected with the controller, and the electric flip-over module (3), the sensor module and the automatic locking module are electrically connected with the controller.

4. The motorized clamshell case of claim 3, wherein, The controller is provided with an emergency stop button for controlling the electric flip-over module (3) to stop moving.

5. The motorized clamshell case of claim 1, wherein, The power module (5) comprises a rechargeable battery and a power switch, and the rechargeable battery is electrically connected with other modules through the power switch.

6. The motorized clamshell case of claim 1, wherein, A lock catch (6) is further arranged between the box body (1) and the cover (2).