A signal receiver and a fishing alarm system comprising the same
By integrating the alarm module and the air quality sensor signal receiver, the problem of separate equipment for fish biting and air quality detection during fishing is solved, realizing multi-functional integration and improving safety and portability during fishing.
Patent Information
- Application Number
- CN202521293248.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2026-07-10
- Estimated Expiration
- 2035-06-23
AI Technical Summary
When fishing, anglers need to carry separate equipment to detect fish bites and monitor ambient air quality, which is inconvenient and increases costs.
Design a signal receiver that integrates an alarm module, an air quality sensor, and a main control unit module to achieve fish bite alarm and air quality detection functions. This device achieves multiple functions and adopts a multi-mode alarm approach to improve applicability.
It improves safety and portability while fishing, allowing users to receive fish bite alerts and monitor ambient air quality through a single device, simplifying device management.
Smart Images

Figure CN224481708U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of signal receiver technology, and more specifically, to a signal receiver and a fishing alarm system including the signal receiver. Background Technology
[0002] Fishing is an outdoor recreational activity suitable for all ages. Using fishing gear to bring fish out of the water is a widely enjoyed sport. Throughout history, countless fishing enthusiasts have been captivated by this activity, which allows them to connect with nature and cultivate their character. However, when fishing, anglers may lose focus or leave their rods unattended, failing to immediately detect a bite. Therefore, anglers typically carry alarm devices to indicate when a fish has taken the bait. Furthermore, anglers should monitor the air quality of their surroundings while fishing to mitigate potential risks.
[0003] However, currently, ambient air quality requires separate equipment for testing, necessitating the purchase of additional equipment. The separate equipment is inconvenient to carry and increases the cost of use and management difficulty. Utility Model Content
[0004] This invention provides a signal receiver and a fishing alarm system containing the receiver, which enables users to carry a single device to provide fish bite alarms and ambient air quality detection functions, thus improving safety and portability.
[0005] The embodiments of this utility model can be implemented as follows:
[0006] An embodiment of this utility model provides a signal receiver, which includes:
[0007] case;
[0008] An alarm module is disposed within the housing and is used to issue an alarm upon receiving a fish bite signal.
[0009] An air quality sensor is disposed within the housing and is used to monitor air quality.
[0010] The main control unit module is located inside the housing. The alarm module and the air quality sensor are both connected to the main control unit module. The main control unit module is used to receive fish bite signals and control the alarm module to issue an alarm. The main control unit module is also used to receive and analyze the data from the air quality sensor, and control the alarm module to issue an alarm when the air quality value exceeds a set threshold.
[0011] In an optional implementation, the alarm module includes a light element and a sound element, both of which are connected to the main control unit module.
[0012] In an optional implementation, the alarm module further includes a vibration element connected to the main control unit module, which is used to generate vibration to trigger an alarm.
[0013] In an optional implementation, the light emitted by the light element is either different in color or at a different location when a fish bite is detected compared to when the air quality value exceeds a set threshold.
[0014] And / or, the alarm sound emitted by the sound element is different when a fish bites the hook compared to when the air quality value exceeds a set threshold.
[0015] In an optional implementation, the lighting element is an LED light, and / or the sound element is a speaker.
[0016] In an optional embodiment, the signal receiver further includes a power supply module, which is connected to the alarm module, the air quality sensor, and the main control unit module, and supplies power to the alarm module, the air quality sensor, and the main control unit module.
[0017] In an optional embodiment, the power supply module includes a rechargeable battery and a charging interface electrically connected to the battery. The battery is electrically connected to the alarm module, the air quality sensor, and the main control unit module, and supplies power to the alarm module, the air quality sensor, and the main control unit module. The charging interface is used to receive external power input.
[0018] In an optional implementation, the power supply module further includes a charge-discharge management system, which is electrically connected to the battery and is used to control the charging process of the battery by the external power source.
[0019] In an optional embodiment, the signal receiver further includes a wireless communication module disposed within the housing and connected to the main control unit module to transmit a fish bite signal.
[0020] An embodiment of this utility model also provides a fishing alarm system, including a sensing device, a wireless communication module, and a signal receiver as described in any of the above embodiments. The sensing device is connected to the signal receiver through the wireless communication module to realize the transmission of a fish biting signal; the sensing device is used to detect whether a fish has bitten the hook.
[0021] The beneficial effects of the signal receiver and the fishing alarm system including the present invention include, for example:
[0022] The signal receiver includes a housing, an alarm module, an air quality sensor, and a main control unit module. The alarm module, located in the housing, issues an alarm upon receiving a fish bite signal. The air quality sensor, also located in the housing, monitors air quality. The main control unit module, connected to both the alarm module and the air quality sensor, receives the fish bite signal and controls the alarm module to issue an alarm. It also receives and analyzes data from the air quality sensor, triggering an alarm when air quality values exceed a set threshold. When fishing, the receiver alerts the user to a bite, and in both enclosed and open environments, it monitors the surrounding air quality in real time, preventing poisoning and improving safety. This design allows users to receive both fish bite alerts and ambient air quality monitoring with a single device, enhancing convenience and ease of carrying and management. Attached Figure Description
[0023] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the signal receiver provided in an embodiment of the present invention.
[0025] Icons: 1000 - Signal receiver; 100 - Housing; 200 - Alarm module; 210 - Lighting element; 220 - Sound element; 230 - Vibration element; 300 - Air quality sensor; 400 - Main control unit module; 500 - Power supply module; 600 - Wireless communication module. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0027] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0028] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0029] In the description of this utility model, it should be noted that if terms such as "upper," "lower," "inner," or "outer" are used to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the utility model product is usually placed during use, 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, and therefore should not be construed as a limitation of this utility model.
[0030] Furthermore, the terms "first" and "second" are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.
[0031] It should be noted that, where there is no conflict, the features in the embodiments of this utility model can be combined with each other.
[0032] Fishing is an outdoor recreational activity suitable for all ages. Using fishing gear to bring fish out of the water is a widely enjoyed sport. Throughout history, countless fishing enthusiasts have been captivated by this activity, which allows them to connect with nature and cultivate their character. However, while fishing, anglers may lose focus or leave their rods unattended, failing to immediately detect a bite. Therefore, anglers typically carry alarm devices to indicate when a fish has taken the bait. Furthermore, anglers need to monitor the air quality of their surroundings to mitigate risks. Currently, air quality monitoring requires separate equipment, necessitating the purchase of additional equipment. This separate equipment is inconvenient to carry and increases operating costs and management complexity.
[0033] Based on this, please refer to Figure 1 The signal receiver 1000 provided in the embodiments of this utility model can effectively solve the aforementioned technical problems. This signal receiver 1000 allows users to carry a single device to achieve fish bite alarm notification and ambient air quality detection functions, improving safety and portability. This signal receiver 1000 is applied to fishing alarm systems, and devices equipped with this signal receiver 1000 all have the same functions described above.
[0034] The fishing alarm system in this embodiment (not shown in the figure) includes a sensing device, a wireless communication module 600, and a signal receiver 1000. The sensing device is connected to the signal receiver 1000 through the wireless communication module 600 to transmit a fish bite signal. The sensing device is used to detect whether a fish has taken the bait. When the user is fishing, the user casts the hook from the fishing rod into the water. If the sensing device detects that a fish has taken the bait, it transmits the signal to the main control unit. The main control unit then controls the alarm module 200 to issue an alarm, so as to promptly remind the user that a fish has taken the bait.
[0035] Specifically, the sensing device can be a vibration detection sensor, which can be mounted on the fishing rod or placed on a device with a vibration detection sensor; this is not limited. The sensing device can also be designed as a mechanism-triggered structure, such as including an elastic trigger arm and a micro switch. The trigger arm is connected to the fishing line or hook on the fishing rod. When a fish bites, it moves the trigger arm, triggering the micro switch to generate an electrical signal, which is transmitted to the main control unit module 400 to indicate that a fish has taken the bait. The sensing device can also be designed as a pressure-sensing structure, such as using strain gauges or piezoelectric films. Of course, other structures can also be used for the sensing device, which are not limited here. To simplify the structure and facilitate operation, the sensing device in this embodiment is mounted on a separate device. When fishing, the device with the sensing device needs to be placed on the ground, and the fishing rod placed on the device with the sensing device to detect whether a fish has taken the bait. With this design, the user does not need to constantly watch the fishing rod at the fishpond or other riverbank, nor does he / she need to hold the fishing rod continuously. He / she can rest in a tent and return to the fishing spot after the signal receiver 1000 issues an alarm.
[0036] The following is a detailed description of the signal receiver 1000.
[0037] Figure 1 This is a schematic diagram of the signal receiver 1000 provided in an embodiment of the present invention, as shown below. Figure 1As shown, the signal receiver 1000 in this embodiment includes a housing 100, an alarm module 200, an air quality sensor 300, and a main control unit module 400. The alarm module 200 is disposed inside the housing 100 and is used to detect whether a fish has taken the bait, and to issue an alarm when a fish has taken the bait. The air quality sensor 300 is disposed inside the housing 100 and is used to monitor air quality. The main control unit module 400 is disposed inside the housing 100, and both the alarm module 200 and the air quality sensor 300 are connected to the main control unit module 400. The main control unit module 400 is used to receive the bait signal from the alarm module 200 and control the alarm module 200 to issue an alarm. The main control unit module 400 is also used to receive and analyze the data from the air quality sensor 300, and to control the alarm module 200 to issue an alarm when the air quality value exceeds a set threshold. When fishing, the signal receiver 1000 can issue an alarm to alert the user when a fish bites the hook. While fishing, users need to monitor the air quality around them; the signal receiver 1000 can monitor the air quality in real time to prevent poisoning and other hazards, thus improving safety. Through this design, users can achieve both fish bite alarm and ambient air quality monitoring functions with a single device, improving convenience and making it easy for users to carry and manage.
[0038] To enhance the environmental adaptability of the alarm module 200 and improve user perception, please refer to [link / reference needed]. Figure 1 In this embodiment, the alarm module 200 includes a light element 210 and a sound element 220, both of which are connected to the main control unit module 400. When a fish bites the hook or when the air quality sensor 300 detects that the air quality value exceeds a set threshold, the main control unit module 400 can control the light element 210 to emit a light, or control the sound element 220 to emit an alarm sound, to provide a warning. The main control unit module 400 can control only the light element 210 to emit a light alarm, or it can control only the sound element 220 to emit an audible alarm. Of course, the main control unit module 400 can also control both the light element 210 and the sound element 220 to operate simultaneously to provide a warning; this is not limited here. Because light displays are not easily noticed by users during the day or in well-lit environments, the sound element 220 can be controlled to emit an alarm sound to alert the user, thus overcoming the limitations of a purely light-based alarm. In nighttime, foggy weather, or noisy environments, the alarm sound from the light element 210 can compensate for the limitations of a purely audible alarm. Employing multi-mode alarms improves the environmental versatility of the signal receiver 1000, promptly alerting users to fish bites or potential dangers.
[0039] To distinguish between a fish being hooked and poor air quality, in this embodiment, the light emitted by the lighting element 210 differs in color or location depending on whether a fish bite is detected or the air quality exceeds a set threshold; and / or, the alarm sound emitted by the sound element 220 differs depending on whether a fish bite is detected or the air quality exceeds a set threshold. For example, the lighting element 210 emits green light when a fish is hooked and red light when the air quality is poor. Of course, other colors of light can also be used, and this is not limited here. Furthermore, the lighting element 210 may include multiple light-emitting elements, which are located at different positions within the housing 100. The multiple light-emitting elements may have the same color, and by flashing light at different locations, the system distinguishes between a fish being hooked and a problem with air quality. That is, the location of the light emitted by the lighting element 210 differs depending on whether a fish bite is detected or the air quality exceeds a set threshold. The colors of the multiple light-emitting elements may also be different, and this is not limited here.
[0040] In this embodiment, the lighting element 210 is an LED light, and / or the sound element 220 is a loudspeaker. LED lights have advantages such as high efficiency and energy saving, environmental friendliness, long lifespan, and safety. Of course, the lighting element 210 can also be an incandescent lamp, fluorescent lamp, etc., and is not limited here. In this embodiment, the sound element 220 is a loudspeaker, and an acoustic optimization hole is provided on the loudspeaker housing 100. The sound output direction of the loudspeaker is set corresponding to the acoustic optimization hole to enable the sound waves to be efficiently transmitted to the outside, making the sound clearer and brighter. Of course, the sound element 220 can also be other elements, and is not limited here.
[0041] In addition, please continue to refer to Figure 1 In this embodiment, the alarm module 200 also includes a vibration element 230, which is connected to the main control unit module 400. The vibration element 230 is used to emit vibrations to trigger an alarm. In this embodiment, the vibration element 230 is a vibration motor; however, other structures can also be used, which are not limited here. Through composite sensing, multi-dimensional alarm optimization is achieved to ensure that the signal receiver 1000 is applicable in various environments. For example, in a quiet fishing spot at night, a combined alarm using only the light element 210 and the vibration element 230 can be used to promptly alert the user. If the user has hearing or visual impairments, the vibration element 230 can be used to trigger an alarm to alert the user that a fish has taken the bait or that there is a dangerous situation.
[0042] The alarm indication in this embodiment can be switched between multiple modes: First, a full-function mode, including sound, light, and vibration alarms; second, a sound alarm mode, which only uses sound to alarm; third, a light alarm mode, which only uses light to alarm; and fourth, a vibration alarm mode, which only uses the vibration element 230 to alarm. Of course, alarms can also be combined in pairs, such as sound and light alarm mode, sound and vibration alarm mode, and light and vibration alarm mode, depending on the actual application scenario, and is not limited here.
[0043] The aforementioned "main control unit module 400 is also used to receive and analyze data from the air quality sensor 300, and control the alarm module 200 to issue an alarm when the air quality value exceeds a set threshold" specifically refers to this: In this embodiment, the main control unit module 400 receives data from the air quality sensor 300 and analyzes the received data to distinguish the degree of air pollution, and then issues an alarm through the alarm module 200 to intuitively remind people of the air quality in their environment. In this embodiment, the air quality sensor 300 is located inside the housing 100, which makes the sensitive element less prone to damage and improves the overall aesthetics. When the air quality sensor 300 detects harmful gases, and the concentration of harmful gases exceeds a set concentration threshold, the alarm module 200 will issue an alarm to remind the user that there is a safety risk in the current environment. In this embodiment, the alarm is triggered simultaneously by the sound element 220 and the light element 210 to remind the user of the air quality in their environment.
[0044] The air quality sensor 300 can be equipped with a VOC sensor or a similar detection module. The air quality sensor 300 is sensitive to and can detect and analyze gases such as carbon monoxide, sulfur dioxide, hydrogen sulfide, alcohol, acetaldehyde, hydrogen, dimethyl ether, and ethylene.
[0045] Please see Figure 1 In this embodiment, the signal receiver 1000 also includes a power supply module 500. The power supply module 500 is connected to the alarm module 200, the air quality sensor 300, and the main control unit module 400, and supplies power to these components. By providing the power supply module 500, the signal receiver 1000 can be used outdoors without a power source.
[0046] To improve ease of use, the power supply module 500 can be charged without removing the battery. In this embodiment, the power supply module 500 includes a rechargeable battery and a charging interface electrically connected to the battery. The battery is electrically connected to the alarm module 200, the air quality sensor 300, and the main control unit module 400, and supplies power to the alarm module 200, the air quality sensor 300, and the main control unit module 400. The charging interface is used to receive external power input.
[0047] In addition, to prevent overcharging or other unsafe situations that could damage the battery and affect the lifespan of the power supply module 500, the power supply module 500 in this embodiment also includes a charge / discharge management system. The charge / discharge management system is electrically connected to the battery and is used to control the charging process of the battery by an external power source. The charge / discharge management system includes a charging management module, a discharging management module, and a protection management module.
[0048] To simplify the structure and improve the portability and flexibility of the signal receiver 1000, please refer to [further details needed]. Figure 1 In this embodiment, the signal receiver 1000 also includes a wireless communication module 600, which is disposed within the housing 100 and connected to the main control unit module 400 to transmit the fish bite signal. Wireless communication eliminates the need for physical wiring, allowing for greater freedom of deployment and relocation. Alternatively, the alarm module 200 can also be electrically connected to the main control unit module 400 via a wire. Furthermore, the alarm module 200 can also connect to the main control unit module 400 using other information transmission methods, which are not limited here.
[0049] According to the signal receiver 1000 provided in this embodiment, the working principle of the signal receiver 1000 is as follows:
[0050] When a user is fishing, they place the fishing rod on the sensor and cast the hook into the water. When the sensor detects that a fish has taken the bait, it transmits a signal to the main control unit via the wireless communication module 600. The main control unit then controls the alarm module 200 to issue an alarm, so as to promptly remind the user that a fish has taken the bait.
[0051] In outdoor or enclosed environments such as tents, the air quality sensor 300 monitors the nearby air quality in real time. The air quality sensor 300 transmits the detected data to the main control unit module 400. The main control unit module 400 analyzes whether the acquired air quality value exceeds a set threshold. If the air quality value exceeds the set threshold, that is, if the air quality is poor or there is a high concentration of hazardous gases, the main control unit module 400 controls the alarm module 200 to issue an alarm.
[0052] In summary, the signal receiver 1000 includes a housing 100, an alarm module 200, an air quality sensor 300, and a main control unit module 400. The alarm module 200 is located inside the housing 100 and is used to issue an alarm when a fish bite signal is received. The air quality sensor 300 is located inside the housing 100 and is used to monitor air quality. The main control unit module 400 is located inside the housing 100, and both the alarm module 200 and the air quality sensor 300 are connected to the main control unit module 400. The main control unit module 400 is used to receive the fish bite signal and control the alarm module 200 to issue an alarm. The main control unit module 400 is also used to receive and analyze the data from the air quality sensor 300, and control the alarm module 200 to issue an alarm when the air quality value exceeds a set threshold. When fishing, the signal receiver 1000 can issue an alarm to alert the user when a fish bites the hook. In both enclosed and open environments, the receiver 1000 can monitor the surrounding air quality in real time, preventing poisoning and improving safety. Through this design, users can achieve both fish bite alarm and ambient air quality monitoring functions with a single device, enhancing convenience and making it easy for users to carry and manage.
[0053] The above description is only a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model.
Claims
1. A signal receiver, characterized in that, include: Casing (100); An alarm module (200) is disposed within the housing (100) and is used to issue an alarm upon receiving a fish bite signal. An air quality sensor (300) is disposed within the housing (100) and is used to monitor air quality; The main control unit module (400) is disposed inside the housing (100). The alarm module (200) and the air quality sensor (300) are both connected to the main control unit module (400). The main control unit module (400) is used to receive the fish bite signal and control the alarm module (200) to issue an alarm. The main control unit module (400) is also used to receive and analyze the data of the air quality sensor (300), and control the alarm module (200) to issue an alarm when the air quality value exceeds a set threshold.
2. The signal receiver according to claim 1, characterized in that, The alarm module (200) includes a light element (210) and a sound element (220), both of which are connected to the main control unit module (400).
3. The signal receiver according to claim 2, characterized in that, The alarm module (200) also includes a vibration element (230), which is connected to the main control unit module (400). The vibration element (230) is used to emit vibration to trigger an alarm.
4. The signal receiver according to claim 2, characterized in that, When a fish bite is detected, the light emitted by the light element (210) is different in color or position than when the air quality value exceeds a set threshold. And / or, the alarm sound emitted by the sound element (220) is different when a fish bites the hook than when the air quality value exceeds a set threshold.
5. The signal receiver according to claim 2, characterized in that, The light element (210) is an LED light, and / or the sound element (220) is a speaker.
6. The signal receiver according to claim 1, characterized in that, The signal receiver (1000) also includes a power supply module (500), which is connected to the alarm module (200), the air quality sensor (300) and the main control unit module (400) respectively, and supplies power to the alarm module (200), the air quality sensor (300) and the main control unit module (400).
7. The signal receiver according to claim 6, characterized in that, The power supply module (500) includes a rechargeable battery and a charging interface electrically connected to the battery. The battery is electrically connected to the alarm module (200), the air quality sensor (300), and the main control unit module (400), and supplies power to the alarm module (200), the air quality sensor (300), and the main control unit module (400). The charging interface is used to receive external power input.
8. The signal receiver according to claim 7, characterized in that, The power supply module (500) also includes a charge and discharge management system, which is electrically connected to the battery and is used to control the charging and discharging process of the battery by the external power source.
9. The signal receiver according to claim 1, characterized in that, The signal receiver (1000) also includes a wireless communication module (600), which is disposed inside the housing (100) and connected to the main control unit module (400) to realize the transmission of fish bite signal.
10. A fishing alarm system, characterized in that, The device includes a sensing device, a wireless communication module (600), and a signal receiver (1000) as described in any one of claims 1-9. The sensing device is connected to the signal receiver (1000) through the wireless communication module (600) to transmit a fish bite signal. The sensing device is used to detect whether a fish has taken the bait.