Portable multi-angle ultrasonic water area detection device
The portable multi-angle ultrasonic water detection device solves the problems of slow response and high cost of large sonar systems in narrow waters, and realizes rapid installation, low cost underwater detection and emergency rescue capabilities.
Patent Information
- Application Number
- CN202421045035.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-14
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-05-14
AI Technical Summary
Existing large sonar systems have limitations in rescue and underwater detection in narrow or shallow water areas, cannot respond quickly to emergencies, and have high maintenance and operation costs.
A portable multi-angle ultrasonic water detection device was designed, including a main unit and a detection component. The detection component consists of a clamping mechanism, a base rod, and a sonar probe, and has the ability to be quickly installed and angle adjusted. The main unit is equipped with a control motherboard and a display screen, which can process and display the feedback information from the sonar probe.
It enables rapid deployment in different waters and rescue scenarios, reduces equipment operation and maintenance costs, and improves the response speed and success rate of emergency rescue.
Smart Images

Figure CN223842133U_ABST
Abstract
Description
Technical Field
[0001] This application relates to a rescue device, and more particularly to a portable multi-angle ultrasonic water detection device. Background Technology
[0002] Currently, large vessels, typically equipped with advanced sonar systems, are widely used in rescue and underwater exploration missions. These systems identify underwater objects, terrain, and other features by emitting sound waves and receiving their echoes. While these technologies are highly effective in open waters, they are primarily suited for deeper and wider bodies of water, such as large lakes and oceans.
[0003] Large sonar detection vessels face significant limitations in specific environments such as isolated reservoirs, small lakes, or fast-flowing rivers. These vessels have specific water depth requirements, and due to their size and weight, they cannot access narrow or shallow water areas. Furthermore, the response speed and maneuverability of these systems cannot meet rapidly changing rescue needs, particularly in emergency situations, making it difficult to reach the scene in a timely manner for rescue or search operations. Economically, these devices require expensive maintenance and operator training, increasing operating costs.
[0004] In emergency rescue and underwater exploration missions, especially in situations of rapid location change and complex environments, there is an urgent need for equipment that can be deployed more flexibly and quickly. For example, in the event of a drowning incident, the location of the drowning victim may change rapidly with the flow of water, making it impossible for traditional large vessels to locate and rescue them in a timely or effective manner.
[0005] In conclusion, developing a portable ultrasonic detection device has practical significance and value. Utility Model Content
[0006] The purpose of this application is to overcome at least one deficiency of the existing technology and provide a portable multi-angle ultrasonic water detection device. The device can be easily installed on rubber boats or other small boats and has the ability to be quickly loaded, unloaded and adjusted in angle, so that it can quickly adapt to different waters and rescue scenarios.
[0007] To achieve the above objectives, this application discloses a portable multi-angle ultrasonic water detection device, including a main unit with a battery and a display screen, and a detection component connected to the main unit via a cable. The detection component includes a clamping mechanism, a base rod mounted on the clamping mechanism, and a sonar probe mounted on the front end of the base rod. The clamping mechanism includes a fixed part, a clamping part opposite to the fixed part, and a movable part hinged to the fixed part with an adjustable angle. The base rod is fixedly connected to the movable part. When the angle of the movable part relative to the fixed part is adjusted, it causes the angle of the base rod relative to the clamping mechanism to adjust. The sonar probe is hinged to the front end of the base rod, making the angle of the sonar probe relative to the base rod adjustable. The main unit contains a control motherboard, which is connected to the battery and the display screen. The control motherboard is also connected to the sonar probe, supplying power to the sonar probe and acquiring feedback information from the sonar probe.
[0008] Furthermore, the clamping part is engaged with the fixing part by a spiral bolt to form a clamping position with an adjustable width. When the spiral bolt is running, it moves the clamping part closer to or further away from the fixing part, thereby adjusting the width of the clamping position.
[0009] Furthermore, the fixed part has several limiting grooves arranged at different angles along its outer edge, and the movable part has a limiting pin that cooperates with the connecting groove. By adjusting the cooperation relationship between the limiting pin and different limiting grooves, the angle of the movable part relative to the fixed part can be adjusted.
[0010] Furthermore, the control motherboard is equipped with a processor and a data storage module. The processor processes the feedback information from the sonar probe and displays it on the display screen.
[0011] Furthermore, the sonar probe has a transmitter and a receiver, which respectively transmit and receive ultrasonic waves.
[0012] Compared with the prior art, this application has at least one of the following beneficial effects:
[0013] 1. This portable multi-angle ultrasonic water detection device can be quickly installed on various small boats such as rubber boats, providing the ability to quickly adjust the device angle, making it adaptable to changing water environments and different rescue scenarios.
[0014] 2. Due to the portability and ease of operation of the equipment, it can be quickly deployed to the accident site, which is especially crucial for emergency rescue situations, such as a rapid response to drowning accidents, and can significantly improve the success rate of rescue.
[0015] 3. Compared to large sonar vessels that require expensive maintenance and specialized operation, the operating and maintenance costs of this portable device are greatly reduced, enabling more rescue organizations to equip themselves with advanced underwater detection technology.
[0016] The beneficial effects listed above are not exhaustive of all advantages. Other potential beneficial effects and detailed technical implementation methods will be further disclosed in the embodiments or other descriptive sections of this application. Attached Figure Description
[0017] A better understanding of various aspects of this disclosure will be achieved by reading the following detailed description in conjunction with the accompanying drawings. The positions, dimensions, and extents of the structures shown in the drawings, etc., do not always represent actual positions, dimensions, and extents. In the drawings:
[0018] Figure 1 This is a schematic diagram of the structure of one embodiment disclosed in this application.
[0019] Figure 2 This is a schematic diagram of the structure of one embodiment disclosed in this application during application. Detailed Implementation
[0020] The present disclosure will now be described with reference to the accompanying drawings, which illustrate several embodiments of the present disclosure. However, it should be understood that the present disclosure can be presented in many different ways and is not limited to the embodiments described below; in fact, the embodiments described below are intended to make the disclosure more complete and to fully illustrate the scope of protection of the present disclosure to those skilled in the art. It should also be understood that the embodiments disclosed herein can be combined in various ways to provide further additional embodiments.
[0021] It should be understood that the same reference numerals denote the same elements in all the accompanying drawings. For clarity, the dimensions of certain features may be modified in the drawings.
[0022] It should be understood that the terminology used in this specification is for describing specific embodiments only and is not intended to limit this disclosure. All terms used in this specification (including technical and scientific terms) have the meanings commonly understood by those skilled in the art, unless otherwise defined. For the sake of brevity and / or clarity, techniques, methods, and devices known to those skilled in the art may not be discussed in detail; however, where appropriate, such techniques, methods, and devices should be considered part of this specification.
[0023] Unless otherwise specified, the singular forms “a,” “the,” and “the” used in this specification include the plural forms. The terms “comprising,” “including,” and “containing” used in this specification indicate the presence of the claimed feature but do not exclude the presence of one or more other features. The term “and / or” used in this specification includes any and all combinations of one or more of the relevant listed items.
[0024] Example:
[0025] This embodiment describes the specific structure and usage of a portable multi-angle ultrasonic water detection device, aiming to provide a fast, flexible and cost-effective solution for rescue and detection missions in various water areas.
[0026] like Figure 1 , 2 As shown, the device in this embodiment includes a host 1 and a detection component 2 connected to the host 1. The host 1 supplies power to the detection component 2 and acquires the ultrasonic feedback information obtained by the detection component 2. The host 1 parses and displays the above feedback information.
[0027] Specifically, the detection component 2 is a key part of the portable multi-angle ultrasonic water detection device, responsible for performing actual underwater environment detection tasks. It consists of a clamping mechanism 3, a base rod 4, and a sonar probe 5. The clamping mechanism 3 is the interface for mounting the entire detection system to a vessel or other carrier, such as... Figure 2 As shown, the detection assembly 2 is mounted on the edge of the vessel 11 via a clamping mechanism. Structurally, the detection assembly 2 includes a fixed part 6, a clamping part 7, and a movable part 8. The fixed part 6 serves as the base of the clamping mechanism 3 and is typically made of corrosion-resistant material to resist underwater erosion. The clamping part 7 faces the fixed part 6 and cooperates with it to form an adjustable clamping position 9. The distance between the clamping part 7 and the fixed part 6 can be adjusted using helical bolts, thereby adjusting the clamping position 9 to accommodate hulls of different thicknesses. This design allows the detection assembly 2 to be quickly installed and securely fixed to various vessels. The movable part 8 is connected to the fixed part 6 via a hinge and can be adjusted in angle with the support of the fixed part 6. This adjustable design allows users to adjust the tilt angle of the base rod and the sonar probe 5 according to detection needs, improving the flexibility and efficiency of detection.
[0028] In this embodiment, the base rod 4 is a robust rod, with one end connected to the movable part 8 and the other end fitted with the sonar probe 5. The length and strength of the base rod 4 are designed to support the weight of the sonar probe while maintaining stability. During operation, the base rod 4 can be tilted within a certain range by adjusting the angle of the movable part 8, allowing the sonar probe 5 to scan in multiple directions, thus more effectively covering a wide area of water. Users can easily adjust the position and angle of the clamping mechanism 3 and the sonar probe 5 manually according to actual detection needs, enabling the device to quickly adapt to different water areas and detection scenarios. This design flexibility is particularly suitable for emergency rescue operations, such as quickly locating drowning victims or other underwater targets in emergency situations.
[0029] In this embodiment, the host unit 1 is the central control unit of the portable multi-angle ultrasonic water detection device, responsible for the power management, data processing, and user interaction of the entire system. Specifically, the host unit 1 has a waterproof housing designed with waterproof and impact-resistant materials to adapt to use in variable aquatic environments. The housing has sufficient sealing performance to protect the internal electronic components from moisture and other environmental factors. The control motherboard (not shown in the figure) is the core of the host unit, housing the processor, data storage module, power management system, and communication interface. The control motherboard has at least one processor responsible for processing data signals from the sonar probe, executing data parsing and conversion algorithms to transform the raw acoustic data into usable information, such as the size, shape, and distance of objects. The control motherboard also has a data storage module connected to the processor for storing the data collected from the sonar probe and the processed information. This data can be used for subsequent analysis or retained as historical records. The host unit has a rechargeable battery that provides power to the host unit and all its components; the battery is also equipped with protection circuitry to prevent overcharging and over-discharging.
[0030] More specifically, the main unit 1 has a display screen 10, which serves as the user interface for interacting with the device, displaying, but not limited to, visualizations of sonar data, system status, battery level, and operating menus. The display screen 10 is typically a high-brightness LCD or OLED to ensure clear visibility even in direct sunlight. The control motherboard is connected to the sonar probe via a set of waterproof cables, transmitting power and data signals.
[0031] In some embodiments, to facilitate interaction with other devices or systems, the host 1 also includes a wireless communication module, such as Bluetooth, Wi-Fi, or other RF communication methods. This allows data to be remotely transmitted to handheld devices or a central control room.
[0032] While exemplary embodiments of this disclosure have been described, those skilled in the art will understand that various changes and modifications can be made to the exemplary embodiments of this disclosure without departing from the spirit and scope thereof. Therefore, all changes and modifications are included within the scope of protection of this disclosure as defined by the claims. This disclosure is defined by the appended claims, and equivalents of those claims are also included.
Claims
1. A portable multi-angle ultrasonic water detection device, characterized in that, include: The system includes a main unit with a battery and a display screen, and a detection assembly connected to the main unit via a cable. The detection assembly includes a clamping mechanism, a base rod mounted on the clamping mechanism, and a sonar probe mounted on the front end of the base rod. The clamping mechanism includes a fixed part, a clamping part opposite to the fixed part, and a movable part hinged to the fixed part with an adjustable angle. The base rod is fixedly connected to the movable part. When the angle of the movable part relative to the fixed part is adjusted, it causes the angle of the base rod relative to the clamping mechanism to adjust. The sonar probe is hinged to the front end of the base rod, making the angle of the sonar probe relative to the base rod adjustable. The main unit contains a control motherboard connected to the battery and the display screen. The control motherboard is also connected to the sonar probe, supplying power to the sonar probe and acquiring feedback information from the sonar probe.
2. The portable multi-angle ultrasonic water detection device as described in claim 1, characterized in that: The clamping part is engaged with the fixing part by a spiral bolt to form a clamping position with adjustable width. When the spiral bolt is running, it moves the clamping part closer to or further away from the fixing part, thereby adjusting the width of the clamping position.
3. The portable multi-angle ultrasonic water detection device as described in claim 1, characterized in that: The fixed part has several limiting grooves arranged at different angles along its outer edge, and the movable part has a limiting pin that cooperates with the connecting groove. By adjusting the cooperation relationship between the limiting pin and different limiting grooves, the angle of the movable part relative to the fixed part can be adjusted.
4. The portable multi-angle ultrasonic water detection device as described in claim 1, characterized in that: The control motherboard is equipped with a processor and a data storage module. The processor processes the feedback information from the sonar probe and displays it on the screen.
5. The portable multi-angle ultrasonic water detection device as described in claim 1, characterized in that: The sonar probe has a transmitter and a receiver, which transmit and receive ultrasonic waves, respectively.