Electronic luminous fishing float
By using an inductive SOC chip and battery connector design in the electronic luminous float, the battery is sealed inside the chamber, solving the problem of water leakage damaging the circuit by the button. This enables adjustment of the light component without the need for buttons, reducing manufacturing complexity and cost.
Patent Information
- Application Number
- CN202520205953.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-02-10
AI Technical Summary
The buttons on existing electronic luminous fishing floats are prone to water seepage, which can damage the internal circuit board, increasing manufacturing complexity and cost.
It adopts a sensor SOC chip and battery connector design. The battery is sealed in the cavity of the float tail cover and the float body. By touching the battery, the ground capacitance of the PCB board is changed. The sensor SOC chip judges the user's action to adjust the brightness or sensitivity of the light components and avoids water leakage from the buttons.
It enables buttonless adjustment of the lighting components, prevents water seepage from damaging the circuitry, and reduces manufacturing complexity and cost.
Smart Images

Figure CN223830207U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fishing floats, and in particular to an electronic luminescent fishing float. Background Technology
[0002] With the rapid development of electronic technology, electronic luminous fishing floats have emerged. By integrating electronic components such as sensors and LED indicator lights, they have greatly enriched the functions of electronic luminous fishing floats, such as night lighting, sensitivity adjustment, and intelligent alarms.
[0003] Existing technology CN221729450U discloses an electronic luminescent fishing float, comprising: a float tip, a float body, and a float stem connected in sequence; and a light-shielding film; the float tip has a float indicator, and a light-emitting unit is provided inside the float tip for emitting light to display the float indicator; the light-shielding film is arranged on the float tip, below the luminescent float indicator. The light-emitting unit includes an LED light, a circuit board, and a battery; the LED light is disposed inside the float tip; the circuit board and the battery are disposed inside the float body; the battery is electrically connected to the circuit board, and the circuit board is electrically connected to the LED light. The float body has a mounting cavity, the battery and the circuit board are disposed inside the mounting cavity, and the LED light is disposed inside the float tip; a button is provided on the outer wall of the float body, and the button is electrically connected to the circuit board to control the illumination of the LED light.
[0004] Existing technology CN221729450U has a button on the float to control the LED light. During the use of electronic luminous fishing floats, water can easily seep into the float body from the button, damaging the circuit board inside the float. In addition, the button increases the complexity of the entire electronic luminous fishing float manufacturing process and increases the cost of the electronic luminous fishing float. Utility Model Content
[0005] In order to solve the technical problem of water leakage from the buttons of the existing electronic luminous fishing floats, this utility model proposes an electronic luminous fishing float.
[0006] The technical solution adopted in this utility model is:
[0007] This utility model proposes an electronic luminescent fishing float, comprising:
[0008] The drift tail, which is equipped with a lighting component;
[0009] The top cover of the float is located at the bottom of the float.
[0010] A PCB board is disposed inside the upper cover of the drift tail. The PCB board is provided with a sensing SOC chip. The light assembly is electrically connected to the sensing SOC chip. The PCB board is also provided with a battery connector electrically connected to the sensing SOC chip, and a sensor.
[0011] The top of the float body is connected to the bottom of the float tail cover, and the bottom end is provided with a float foot.
[0012] A battery is disposed in the cavity formed by the float tail cover and the float body, and is electrically connected to the battery connector. The outer surface of the battery is the anode.
[0013] The battery connector and the PCB board (6) share a common ground wire. Touching the battery (5) changes the ground value of the PCB board (6) and the battery (5), thereby changing the capacitance of the sensor (7) to ground. The sensing SOC chip (8) is used to detect the magnitude of the change in the capacitance of the sensor, thereby determining various actions of the user touching the battery, such as double-clicking, long-pressing, etc., and then adjusting the brightness or sensitivity of the light component based on these actions.
[0014] Furthermore, the sensor can be a pad on a PCB board or a pin reused to drive an LED.
[0015] Furthermore, the lighting assembly includes a light guide rod disposed within the drift tail and LED beads disposed on the PCB board and electrically connected to the sensing SOC chip.
[0016] Furthermore, the light guide rod is arranged along the length direction of the drift tail.
[0017] Furthermore, the light-emitting end of the LED bead faces the end of the light guide rod.
[0018] Furthermore, the float tail is made of translucent acrylic material.
[0019] Compared with existing technologies, this utility model proposes an electronic luminous fishing float. A sensing SOC chip is set on a PCB board, and the lighting component is electrically connected to the sensing SOC chip. A battery connector is also provided on the PCB board, and the battery is housed in a cavity formed by the float's tail cover and body. The outer surface of the battery is the anode. Touching the battery changes the size of the PCB board. The sensing SOC chip determines various user actions (such as double-clicking or long-pressing) based on the capacitance value of the sensor caused by the size of the PCB board, and then adjusts the brightness of the lighting component or other SOC parameters based on these actions. This electronic luminous fishing float only requires pressing the battery housing to adjust the brightness of the lighting component or other parameters of the electronic luminous fishing float. Furthermore, the battery is sealed within the cavity of the float's tail cover and body, solving the technical problem of existing technologies where button adjustments are easily damaged by water entering the button area, leading to damage to the PCB board or other components. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0021] Figure 1 This is a schematic diagram of the structure of the electronic luminescent fishing float according to an embodiment of the present invention;
[0022] Figure 2 This is a schematic diagram of the PCB board structure of this utility model;
[0023] 1. Float tail; 2. Float tail cover; 3. Float body; 4. Float foot; 5. Battery; 6. PCB board; 7. Sensor; 8. Sensor SOC chip. Detailed Implementation
[0024] To make the technical problems, technical solutions, and beneficial effects 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 merely illustrative of the present utility model and are not intended to limit the present utility model.
[0025] The principle and structure of this utility model will be described in detail below with reference to the accompanying drawings and embodiments.
[0026] like Figure 1-2 As shown, this utility model proposes an electronic luminous fishing float, including: float tail 1, float tail cover 2, PCB board 6, float body 3 and battery 5.
[0027] The float tip 1 is equipped with a light component that can emit light, allowing anglers to more clearly determine the position of the electronic luminous float when it is in the water. The electronic luminous float cover is located at the bottom of the float tip 1 and is integrally formed with the float tip 1. The bottom of the electronic luminous float cover has an inwardly recessed first mounting cavity.
[0028] The PCB board 6 is installed in the first mounting cavity of the float cover 2. The PCB board 6 has a sensing SOC chip 8, and the lighting assembly is electrically connected to the sensing SOC chip 8. That is, the lighting assembly is controlled by the sensing SOC chip 8. The PCB board 6 also has a battery connector and a sensor that are electrically connected to the sensing SOC chip 8.
[0029] The top of the float body 3 is connected to the bottom of the float tail cover 2. The float body 3 has a second recessed mounting cavity, and the second mounting cavity at the top of the float body 3 communicates with the first mounting cavity at the bottom of the float tail cover 2. The bottom of the float body 3 has a float foot 4.
[0030] Battery 5 is disposed within the first and second mounting cavities formed by the float tip cover 2 and the float body 3, and is connected to the battery connector. The outer surface of battery 5 is the anode, and the battery connector and the PCB board share a common ground wire. When the angler touches battery 5, the ground value of the PCB board and the battery changes simultaneously, thereby causing a change in the capacitance of the sensor on the PCB board. The sensing SOC chip 8 is used to adjust the brightness of the light assembly and the sensitivity of the light assembly or other circuit parameters based on the received capacitance value of the sensor.
[0031] A sensor 7 is installed on the PCB board 6 to detect the capacitance change caused by touching the battery 5. The sensor 7 is electrically connected to the SOC chip 8, and the battery connector is connected to the sensor 7. The sensor 7 transmits the capacitance change caused by touching the battery 5 to the sensing SOC chip 8. The sensing SOC chip adjusts the brightness and sensitivity of the lighting component according to the capacitance change.
[0032] The sensor is a pad on the PCB board or a pin that is reused to drive the LED.
[0033] When a person touches battery 5, it is equivalent to connecting battery 5 to a larger ground. The capacitance of sensor 7 is calculated using the formula: C = ∈S / d, where ∈ is the dielectric constant of the medium between the plates, S is the area of the plates, and d is the distance between the plates. When a person touches battery 5 on the electronic luminous float, it is equivalent to adding a ground to the existing system, which is equivalent to S in the formula becoming larger. Therefore, the capacitance of the sensor increases. The change in capacitance of sensor 7 caused by touching battery 5 is used to determine the user's hand touching battery 5, thereby obtaining control information.
[0034] The battery can be touched in various ways, such as long press, single touch, or multiple touches; there are no restrictions on the touch method.
[0035] In this field, electronic components on the PCB board share a common ground. Touching the battery is equivalent to adding another ground. Changes in the capacitance of the sensors on the PCB board cause the SOC chip to adjust the brightness or sensitivity of the lighting component based on these changes. This control method can also be used to control other devices on the fishing float.
[0036] The lighting assembly includes a light guide rod and LED beads. The light guide rod is positioned within the float 1, extending along its length. The LED beads are mounted on the PCB board 6 and connected to the sensing SOC chip 8. The light-emitting ends of the LED beads face the ends of the light guide rod. When the LED beads emit light, the entire light guide rod emits light due to its material properties. When the battery 5 is touched by hand, the sensing SOC chip 8 adjusts the brightness of the LED beads according to the different capacitance values received from the battery 5.
[0037] Preferably, the float tail 1 is made of translucent acrylic material.
[0038] In another embodiment, the float tip 1 is further equipped with a first capacitive sensing sensor, which is elongated and positioned along the length of the float tip 1. When the first capacitive sensing sensor comes into contact with water, its capacitance changes, emitting a first capacitive signal. The first capacitive sensing sensor 5 is electrically connected to the sensing SOC chip 8 mounted on the PCB board 6. A second capacitive sensing sensor is also mounted on the PCB board 6. When the electronic luminous float comes into contact with water, the capacitance of the second capacitive sensing sensor changes, emitting a second capacitive signal. By setting the first and second capacitive sensing sensors, it is possible to determine whether the electronic luminous float has entered the water and its movement in the water, indicating whether a fish has taken the bait and accurately determining the timing for reeling in the line. The sensitivity of the first and second capacitive sensing sensors, as well as other parameters, can be adjusted by touching the battery 5 of the electronic luminous float.
[0039] The sensing SOC chip 8 includes an AMP (amplifier), an ADC (analog-to-digital sensor), and an MCU (microcontroller unit). The AMP, ADC, and MCU are connected in series. Battery 5 is connected to the battery connector, which is grounded to sensor 7. Sensor 7 is connected to the input of the AMP. The signal is then converted into a digital signal by the ADC and transmitted to the MCU. When a person touches battery 5, the person acts as a conductor connected to ground. This ground connection is capacitively coupled into the entire circuit through the person's body, thus affecting the parasitic capacitance of sensor 7.
[0040] The PCB board 6 of this utility model is set inside the float tail cover 2. In use, one end of the battery 5 is inserted into the float tail cover 2 and connected to the battery connector on the PCB board 6. The outer wall of the battery 5 is manually pressed, and the sensing SOC chip 8 adjusts the brightness of the LED beads according to the different capacitances of the sensor 7 to ground brought by the touch of the battery 5, or changes other parameters of the SOC, such as the sensitivity of color change detection. After adjusting the brightness to the corresponding required brightness, the float body 3 is connected to the float tail cover 2.
[0041] Compared with existing technologies, this utility model proposes an electronic luminous fishing float. A sensing SOC chip 8 is mounted on a PCB board 6, and the lighting component is electrically connected to the sensing SOC chip 8. A battery connector is also provided on the PCB board 6. The battery 5 is housed within the cavity formed by the float tip cover 2 and the float body 3. The outer surface of the battery 5 is the anode. Touching the battery 5 changes its relative size to ground, thereby affecting the sensor's capacitance to ground. The sensing SOC chip 8 adjusts the brightness of the lighting component or other circuit parameters based on the received sensor capacitance. This electronic luminous fishing float only requires pressing the battery 5 housing to adjust the brightness of the lighting component or other parameters. Furthermore, the battery 5 is sealed within the cavity of the float tip cover 2 and the float body 3, solving the technical problem of existing technologies where button adjustments are easily damaged by water entering the button area, leading to damage to the PCB board 6 or other components.
[0042] It should be noted that the terminology used above is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this utility model. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0043] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. An electronically luminous fishing float, characterized in that, include: The drift tail (1) is equipped with a light assembly; The top cover (2) of the float is located at the bottom of the float (1); A PCB board (6) is set inside the upper cover (2) of the drift tail. The PCB board (6) is provided with a sensing SOC chip (8). The light assembly and the sensing SOC chip (8) are electrically connected. The PCB board (6) is also provided with a battery connector and a sensor (7) that are electrically connected to the sensing SOC chip (8). The top of the float body (3) is connected to the bottom of the float tail cover (2), and the bottom end is provided with float feet (4); The battery (5) is disposed in the cavity formed by the float tail cover (2) and the float body (3) and is electrically connected to the battery connector. The outer surface of the battery (5) is the anode. Touching the battery (5) simultaneously changes the ground plane of the PCB board (6) and the battery (5), thereby changing the capacitance of the sensor (7) to ground. The sensing SOC chip (8) is used to detect the magnitude of the capacitance change of the sensor (7) and adjust the brightness or sensitivity of the light assembly according to the magnitude of the capacitance change.
2. The electronic luminescent fishing float as described in claim 1, characterized in that, The sensor (7) is a pad on the PCB board or a pin that is reused to drive the LED.
3. The electronic luminescent fishing float as described in claim 1, characterized in that, The lighting assembly includes a light guide rod disposed within the float (1) and LED beads disposed on the PCB board (6) and electrically connected to the sensing SOC chip (8).
4. The electronic luminescent fishing float as described in claim 3, characterized in that, The light guide rod is arranged along the length direction of the drift tail (1).
5. The electronic luminescent fishing float as described in claim 3, characterized in that, The light-emitting end of the LED bead faces the end of the light guide rod.
6. The electronic luminescent fishing float as described in claim 1, characterized in that, The float (1) is made of translucent acrylic material.
Citation Information
Patent Citations
Fishing float
CN221729450U