Shipborne portable radio station charging rack for ships and maritime affairs

By designing a shipborne portable radio charging rack, and using a fixing plate, vibration damping components, and charging components, the problems of damage and unstable charging of portable radios in the turbulent environment of a ship were solved, achieving stable fixing and charging of the radio and extending its service life.

CN224233369UActive Publication Date: 2026-05-12SUZHOU JIANGHAI COMM DEV IND
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU JIANGHAI COMM DEV IND
Filing Date
2025-05-19
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing portable radios are easily damaged and cannot be charged properly in the rough seas.

Method used

A shipborne portable radio charging rack was designed, including a fixing plate, vibration damping components, a rotating frame plate, a locking buckle, a positioning device, and a charging assembly. The fixing and buffering structure ensures that the radio charges stably in turbulent environments.

Benefits of technology

It enables the portable radio to be fixed and charged, extends the radio's lifespan, reduces vibration damage, and ensures normal use in bumpy environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shipborne portable radio station charging rack for ships and maritime affairs, and the rack comprises a connecting assembly which comprises a fixed plate which is provided with a vibration damping part connected with a ship body; the fixing assembly is connected with the connecting assembly, comprises an accommodating cavity and is used for accommodating a radio station; and the charging assembly is connected with the fixing assembly and is used for charging the radio station. The beneficial effects of the utility model lie in that the fixing and charging of the portable radio station are realized, the vibration damping and buffering effects are good, and the service life of the radio station is prolonged.
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Description

Technical Field

[0001] This utility model relates to the field of radio technology, specifically to a shipborne portable radio charging rack for marine use. Background Technology

[0002] A shipboard radio is a radio transceiver installed on a ship, offshore platform, or facility to provide communication services related to transportation and shipping management. It has basic communication functions such as sending and receiving distress alarms between ship and shore, receiving shore-to-ship distress alarms, sending and receiving search and rescue coordination communications, sending and receiving communications at the rescue site, receiving and sending maritime safety information, sending and receiving routine communications related to ship transportation and shipping management, and sending and receiving bridge-to-bridge safety avoidance communications. In existing technology, portable radios are generally used, which are easily damaged in turbulent environments and cannot be properly connected to an adapter for charging. Utility Model Content

[0003] To solve the above-mentioned technical problems, this utility model provides a shipborne portable radio charging rack for marine use, which realizes the fixation and charging of the radio and ensures normal use and charging under turbulent conditions.

[0004] Specifically, this utility model discloses a shipborne portable radio charging rack for marine use, comprising:

[0005] The connecting assembly includes a fixing plate, which is provided with vibration damping elements and connected to the hull;

[0006] A fixing component, connected to the connecting component, includes a receiving cavity for accommodating a radio station;

[0007] A charging component, connected to the fixed component, is used to charge the radio.

[0008] The advantages of adopting the above technical solution are that it enables the fixation and charging of portable radios, has a good vibration damping effect, and extends the service life of the radios.

[0009] Furthermore, the fixing assembly also includes: a rotating frame plate and extension plates located on both sides of the fixing plate, the rotating frame plate and the extension plates being connected by hinges, and the receiving cavity being formed between the rotating frame plate, the extension plates and the fixing plate.

[0010] The advantage of adopting the above technical solution is that the rotating frame plate can be opened by rotating along the hinge, which facilitates the installation and removal of the portable radio. At the same time, the fixed plate provides good support and limit.

[0011] Furthermore, the fixing component is provided with a latch, which is installed on the side away from the hinge, for connecting the rotating frame plate and the extension plate.

[0012] The advantage of adopting the above technical solution is that the locking mechanism is used to connect the free end of the rotating frame plate, ensuring that it will not come loose during use and ensuring stable charging of the radio.

[0013] Furthermore, the fixing assembly also includes a positioning device installed in the receiving cavity, including a rotating rod, the middle of which is rotatably mounted, and a fixing head provided at one end. A fixing member is provided on the side of the positioning device, and a fixing groove is provided inside the fixing member.

[0014] The advantage of adopting the above technical solution is that the rotating rod plays a fixing role. The rotating rod is fixed by rotation, and the entire rotating shaft extends and points downward. The fixing part extends into the fixing groove, and the fixing groove limits the rotation of the frame plate and the extension plate.

[0015] Furthermore, a locking head is provided at the other end of the rotating rod. When the rotating frame is closed, the locking head extends to fix the radio assembly.

[0016] The advantage of adopting the above technical solution is that the locking head is used to fix the radio components, ensure the installation position of the radio, and reduce vibration.

[0017] Furthermore, the positioning device also includes a housing, the main body of the rotating rod is disposed inside the housing, and a spring is also disposed inside the housing, with one end of the spring connected to the upper end of the rotating rod.

[0018] The advantage of adopting the above technical solution is that the spring setting allows the rotating frame plate to be opened, and the spring pulls the entire rotating rod to rotate, causing the upper locking head to rotate and automatically disengage from the radio assembly, making it convenient to take out the entire radio assembly. At the same time, the housing plays a protective role.

[0019] Furthermore, the charging component is installed on the outside of the rotating frame plate and is connected to a charging plug and a charging connector, the charging plug being connected to a power source.

[0020] The advantage of adopting the above technical solution is that the charging plug is designed for connection to the power source, while the charging connector is designed for connection to the radio for charging, thus ensuring the radio's usability.

[0021] Furthermore, multiple buffer strips are provided on the inner side of the rotating frame plate.

[0022] The advantage of adopting the above technical solution is that the buffer strip is used to fill the gap between the radio and the charging frame, ensuring that the radio will not collide in bumpy environments.

[0023] Furthermore, the fixing component is provided with an adapter and a charging terminal. The adapter is connected to the charging connector, the charging terminal is located at the bottom of the rotating frame plate, and the radio is provided with a charging port connected to the charging terminal.

[0024] The advantage of adopting the above technical solution is that the charging terminal is designed for connection with the radio, and the adapter interface facilitates connection.

[0025] Furthermore, the vibration damping component is a vibration isolator, and the number of vibration isolators is four.

[0026] The advantage of adopting the above technical solution is that the setting of multiple shock absorbers plays a good role in damping vibration, ensuring that the charging bracket can be used normally when the ship is at sea and is in turbulence. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0028] Figure 1 This is a schematic diagram of the overall structure of the portable shipborne radio charging rack for marine use. Figure 1

[0029] Figure 2 This is a schematic diagram of the overall structure of the portable shipborne radio charging rack for marine use. Figure 2

[0030] Figure 3 This is a structural diagram of the positioning device of this utility model.

[0031] Figure 4 This is a schematic diagram of the rotating rod structure of this utility model.

[0032] Figure 5 This is a side view of the rotating rod of this utility model.

[0033] Figure 6 This is a schematic diagram of the charging stand and portable radio installation structure of this utility model.

[0034] The reference numerals used in the attached figures are as follows:

[0035] 1. Fixed plate; 2. Vibration damping component; 3. Receiving cavity; 4. Charging assembly; 5. Rotating frame plate; 51. Extension plate; 52. Lock; 53. Hinge; 54. Base plate; 55. Handle; 6. Rotating rod; 61. Fixed head; 62. Fixing component; 63. Locking head; 64. Housing; 65. Spring; 66. Charging plug; 67. Charging connector; 68. Adapter; 69. Charging terminal. Detailed Implementation

[0036] The present invention will now be described in further detail with reference to the accompanying drawings.

[0037] like Figure 1-2 As shown, this utility model discloses a shipborne portable radio charging rack for marine use, comprising:

[0038] The connecting assembly includes a fixing plate 1, wherein the fixing plate 1 is provided with a vibration damping element 2 and is connected to the hull;

[0039] A fixing component, connected to the connecting component, includes a receiving cavity 3 for accommodating a radio station;

[0040] The charging component 4 is connected to the fixed component and is used to charge the radio.

[0041] The advantages of adopting the above technical solution are that it enables the fixation and charging of portable radios, has a good vibration damping effect, and extends the service life of the radios.

[0042] Furthermore, the fixing assembly also includes: a rotating frame plate 5 and extension plates 51 located on both sides of the fixing plate 1. The extension plates 51 are fixedly connected to the fixing plate 1. The rotating frame plate 5 and the extension plates 51 are connected by hinges 53. A receiving cavity 3 is formed between the rotating frame plate 5, the extension plates 51 and the fixing plate 1. The hinges 53 are attached to the side of the rotating frame plate 5 by screws. The damping hinges 53 are used so that the rotating frame plate 5 can be opened and closed to any angle and suspended, making it convenient to take out the radio. The rotating frame plate 5 is provided with a base plate 54, which is used to support the radio.

[0043] Furthermore, the fixing component is provided with a latch 52, installed on the side away from the hinge 53, for connecting the rotating frame plate 5 and the extension plate 51. The latch 52 is fixed by screws, and the structure of the latch is existing technology. The latch 52 is provided to connect the free end of the rotating frame plate 5, ensuring that it will not come loose during use and ensuring stable charging of the radio.

[0044] In some implementation schemes, Figure 3-5As shown, the fixing assembly also includes a positioning device installed in the receiving cavity 3, including a rotating rod 6. A rotating shaft is installed in the middle of the rotating rod 6. The rotating rod 6 is rotatably mounted. The entire rotating rod 6 is V-shaped. One end is provided with a fixing head 61 and the other end is provided with a locking head 63. When the rotating frame is closed, the locking head 63 extends to fix the radio assembly. The fixing head 61 has a contact surface. A fixing member 62 is provided on the side of the positioning device. The fixing member 62 is fixed to the inner side of the extension plate 51. A fixing groove is provided in the fixing member 62. During the process of the rotating frame plate 5 being fastened, the contact surface contacts the upper surface of the fixing groove. At this time, the entire fixing head 61 moves downward. Since the entire rotating rod 6 is rotatably mounted, the locking head 63 is screwed out from the side. The locking head 63 is an L-shaped bent plate with a horizontal section and a vertical section. A nut is provided on the radio assembly. The horizontal section of the locking head 63 extends into the upper side of the nut to press the radio assembly, ensuring the position of the radio and preventing radio vibration.

[0045] A handle 55 is provided on the side of the rotating frame plate 5 for easy opening and closing.

[0046] Furthermore, the positioning device also includes a housing 64, with the main body of the rotating rod 6 disposed inside the housing 64. A spring 65 is also disposed inside the housing 64, with one end of the spring 65 connected to the upper end of the rotating rod 6 and the other end of the spring 65 fixed inside the housing 64. When the rotating frame plate 5 is opened, the spring 65 pulls the entire rotating rod 6 to rotate, causing the upper locking head 63 to rotate and automatically disengage from the radio assembly, facilitating the removal of the entire radio assembly. At the same time, the housing 64 serves a protective function.

[0047] In some implementations, the charging component 4 is mounted on the outside of the rotating frame plate 5. The main body is a universal charging adapter, which is connected to a charging plug 66 and a charging connector 67. The charging plug 66 is connected to a power source, and a power cord is connected between the charging plug 66 and the main body to facilitate wiring of the charging bracket.

[0048] Furthermore, the fixing component is provided with an adapter 68 and a charging terminal 69. The adapter 68 is connected to the charging connector 67, and the charging terminal 69 is located at the bottom of the rotating frame plate 5 and is connected to the adapter 68 through a line provided inside the rotating frame. The radio is provided with a charging port connected to the charging terminal 69. After the radio is placed in the receiving cavity 3, the charging port is connected to the charging terminal 69.

[0049] Furthermore, multiple buffer strips are provided on the inner side of the rotating frame plate 5, and the buffer strips are fixed by locking, adhesive, or other methods. The buffer strips are used to fill the gap between the radio and the charging bracket, ensuring that the radio will not collide with other components in bumpy environments.

[0050] Furthermore, the vibration damping component 2 is a vibration isolator, and there are 4 vibration isolators. The setting of multiple vibration dampers plays a good role in vibration reduction, ensuring that the charging bracket can be used normally when the ship is at sea and is in turbulence.

[0051] In some applications, portable radios are used in conjunction with backpacks, such as... Figure 6 As shown, the charging bracket of this application is also applicable to cases with backpacks, as long as space is left between the rotating frame plate 5 and the fixed plate 1 to accommodate the backpack.

[0052] In operation, first connect the vibration isolator to the hull, open the latch 52, and place the portable radio into the rotating frame 5. At this point, the radio's charging port contacts the charging terminal 69 at the bottom of the rotating frame 5. Then rotate the rotating frame 5 until it is closed, at which point the positioning device secures the radio. Finally, close the latch 52 and connect the charging plug 66 to the power source to begin charging. This ensures that charging can continue even during shipboard rough seas, providing excellent vibration reduction.

[0053] For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and these modifications and improvements all fall within the protection scope of this utility model.

Claims

1. A shipborne portable radio charging rack for marine use, characterized in that, include: The connecting assembly includes a fixing plate (1), which is provided with a damping element (2) and connected to the hull; A fixing component, connected to the connecting component, includes a receiving cavity (3) for accommodating a radio station; The charging component (4) is connected to the fixed component and is used to charge the radio.

2. The shipborne portable radio charging rack for marine use according to claim 1, characterized in that, The fixing assembly further includes a rotating frame plate (5) and extension plates (51) located on both sides of the fixing plate (1). The rotating frame plate (5) and the extension plates (51) are connected by hinges (53). The receiving cavity (3) is formed between the rotating frame plate (5), the extension plates (51) and the fixing plate (1).

3. The shipborne portable radio charging rack for marine use according to claim 2, characterized in that, The fixing component is provided with a latch (52) installed on the side away from the hinge (53) for connecting the rotating frame plate (5) and the extension plate (51).

4. The shipborne portable radio charging rack for marine use according to claim 1, characterized in that, The fixing assembly also includes a positioning device installed in the receiving cavity (3), including a rotating rod (6), the middle of the rotating rod (6) is rotatably installed, and a fixing head (61) is provided at one end. A fixing member (62) is provided on the side of the positioning device, and a fixing groove is provided in the fixing member (62).

5. The shipborne portable radio charging rack for marine use according to claim 4, characterized in that, The other end of the rotating rod (6) is provided with a locking head (63). When the rotating frame plate (5) is closed, the locking head (63) extends to fix the radio assembly.

6. The shipborne portable radio charging rack for marine use according to claim 4, characterized in that, The positioning device also includes a housing (64), the main body of the rotating rod (6) is disposed inside the housing (64), and a spring (65) is also disposed inside the housing (64), one end of the spring (65) is connected to the upper end of the rotating rod (6).

7. The shipborne portable radio charging rack for marine use according to claim 2, characterized in that, The charging component (4) is installed on the outside of the rotating frame plate (5) and is connected to a charging plug (66) and a charging connector (67). The charging plug (66) is connected to a power source.

8. The shipborne portable radio charging rack for marine use according to claim 2, characterized in that, Multiple buffer strips are provided on the inner side of the rotating frame plate (5).

9. The shipborne portable radio charging rack for marine use according to claim 7, characterized in that, The fixed component is provided with an adapter (68) and a charging terminal (69). The adapter (68) is connected to the charging connector (67). The charging terminal (69) is located at the bottom of the rotating frame plate (5). The radio is provided with a charging port connected to the charging terminal (69).

10. The shipborne portable radio charging rack for marine use according to claim 1, characterized in that, The vibration damping component (2) is a vibration isolator, and the number of vibration isolators is 4.