Mosquito repellent device using general sound wave field effect and mosquito repellent method thereof

By using a frequency-converting overtone sound field mosquito repellent, which combines sound waves and ultrasound with 32 scenes and eight cycling modes, the problem of poor or harmful mosquito repellent effects in existing technologies has been solved, achieving harmless mosquito repellent and a balance in the food chain.

CN116784310BActive Publication Date: 2026-04-28陈学咏
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
陈学咏
Filing Date
2023-04-19
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing technologies cannot effectively utilize the ecological characteristics of mosquitoes through sound waves, resulting in poor mosquito repellency or potentially increasing mosquitoes' aggressiveness towards humans. Furthermore, traditional methods may be harmful to humans.

Method used

It adopts a frequency-modulated overtone sound field, which combines sound waves and ultrasound through 32 scene divisions and eight-segment frequency-modulated eight-cycle modes to form an overtone sound field with a bandwidth of 13.51KHZ-73.53KHZ, changing the frequency and speed to repel mosquitoes.

Benefits of technology

It achieves a harmless mosquito repellent effect, preventing mosquitoes from attacking the human body, maintaining the balance of the food chain, and has no drug side effects or electromagnetic radiation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a general sound wave field effect mosquito repellent device and a mosquito repellent method thereof, the mosquito repellent device uses sound waves and ultrasonic waves as carriers, the implementation range is 13.51KHZ-73.53KHZ, in the range, through different ways of frequency conversion, different ways of combination, different action times, different change rates, and the mutual combination of change and cycle, 32 scene divisions of general sound wave field are created, the mosquito repellent key using the general sound wave field is created, the mosquito repellent key is converted into the general sound wave field by using digital technology, and the mosquito repellent effect is realized.
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Description

Technical Field

[0001] This invention relates to the field of mosquito repellent technology, specifically to how to combine and arrange sound sources in the sound wave and ultrasonic band bands, and to change their frequency conversion width, frequency conversion speed and action time from time to time. It establishes the scene delineation and conversion rules of the sound source, and creates a mosquito repellent method using overtone sound field. Background Technology

[0002] Mosquitoes are diverse and widely distributed, and are profoundly influenced by the natural world, exhibiting sensitivity to factors such as temperature, humidity, air pressure, light, odor, sound waves, and airflow. Research on the relationship between humans and mosquitoes remains largely at the level of rudimentary qualitative understanding, such as mosquitoes' phototaxis, sensitivity to odors, sensitivity to sound waves, aversion to sunlight, low temperatures, strong winds, and predators, with females fearing males. However, mosquitoes are also sentient beings, experiencing a range of emotions like humans, and capable of adapting to environmental changes. To prevent mosquito bites in the confined spaces of daily life, and given a chosen medium, in-depth research into the ecological key aspects of mosquitoes is essential. This invention conducts in-depth research on the ecological key aspects of oversonant sound fields and mosquitoes. Summary of the Invention

[0003] After twenty years (2003-2023) of in-depth research, it was found that the oversound field has three significant effects on mosquitoes: first, it has no effect; second, it rapidly enhances their aggressiveness towards humans; and third, it mimics the symptoms of depression in humans, making them listless, abandoning their attacks on humans, and eventually leaving, demonstrating an effect of repelling them.

[0004] Research results indicate that using frequency-converting oversonic sound fields to repel mosquitoes cannot simply be achieved by displaying a segment of the sound field. Instead, it requires in-depth analysis of frequency bands related to mosquito ecological characteristics; the interrelationships between frequency bands; the conversion rates of different frequency segments passing the same frequency point; and the organic combination of sound waves and ultrasound, among other specific issues. Therefore, a system of 32 scene divisions for frequency-converting oversonic sound fields was established, along with eight frequency conversion segments and eight cycle modes for each scene (see Tables 1 and 2 for details). Figure 3 This mode has been identified as the key to frequency-modulated overtone sound field mosquito repellent. Attached Figure Description

[0005] Figure 1 and Figure 2 It is a way and method to convert a key into an overtone sound field using digital technology.

[0006] Figure 3 This is a timing diagram of the operation of a hypersonic field effect mosquito repellent according to the present invention. Detailed Implementation

[0007] Numerous specific details are set forth in the following description to provide a full understanding of the invention. However, the invention can be practiced in many other ways than those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0008] refer to Figure 1 and Figure 2 The working principle of this invention is as follows:

[0009] 1. Power supply circuit, consisting of R9, C7, C8, BR and D forming an AC / DC conversion circuit, provides power to the whole machine.

[0010] 2. IC2 and its peripheral components R3, R4, R5, R6, R7, R8, C2, C3, C4, C5, C6, RP2, RP3, and transistor Q form an enabling circuit. Its function is to convert the signals in Table 1 and Table 2 into signals. Figure 3 The key information is converted into an enable command and sent to the fifth pin of the inverter output IC1 via the serial output port of the third pin of IC2.

[0011] 3. IC1 and its peripheral components C1, R1, R2, RP1 and HD form a frequency conversion output and electroacoustic conversion, which diffuses the key in the form of frequency conversion overtone sound field into the surrounding space of the mosquito repellent.

[0012] In summary, the overtone sound field effect mosquito repellent of the present invention establishes 32 overtone sound field scenes within the frequency bandwidth of 13.51KHZ-73.53KHZ. Each overtone sound field scene corresponds to its own eight-segment frequency conversion and eight-cycle overtone sound field information, and ensures that the start and end points, frequency conversion width, and frequency conversion speed of each scene do not overlap (except for cycles).

[0013] Mosquitoes, under the influence of an oversonic sound field, induce a state similar to human depression, causing them to lose their will to attack humans and eventually leave, thus achieving a mosquito-repelling effect. The technology and products of this invention do not kill species, maintain the balance of the food chain, promote harmonious coexistence between humans and other organisms, and between humans and the environment. Furthermore, the products have no drug-induced side effects, emit no electromagnetic radiation, and do not harm the human body.

[0014] Table 1. Maximum Frequency Conversion in 32 Scenariosity Bands of the Invention

[0015] Serial Number Frequency conversion width (kHz) Serial Number Frequency conversion width (kHz) Serial Number Frequency conversion width (kHz) Serial Number Frequency conversion width (kHz) 1 52.08-13.89 9 55.56-14.12 17 49.02-15.34 25 52.08-17.24 2 55.56-13.89 10 58.14-14.12 18 52.08-15.06 26 56.82-16.67 3 60.98-13.81 11 62.50-13.97 19 51.02-15.24 27 54.35-17.01 4 62.50-13.81 12 65.79-13.97 20 54.35-14.88 28 58.14-16.45 5 65.79-13.66 13 67.57-13.74 21 53.19-14.79 29 54.35-16.03 6 67.57-13.66 14 69.44-13.74 22 56.82-14.62 30 58.14-15.43 7 69.44-13.51 15 71.43-13.59 23 55.56-14.71 31 56.82-15.82 8 71.43-13.51 16 73.53-13.59 24 58.14-14.45 32 59.52-15.24

[0016] Table 2 shows the bandwidth of the eight-segment cyclic frequency conversion in scenario 23 of Table 1 (unit: kHz).

[0017] Paragraph 1 Paragraph 2 Paragraph 3 Paragraph 4 55.56-21.93 54.35-21.01 53.19-19.84 52.08-18.38 Paragraph 5 Paragraph 6 Paragraph 7 Paragraph 8 51.02-17.61 50.00-16.45 49.02-15.34 48.08-14.71

[0018] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A mosquito repellent method, characterized in that: The enabling circuit, consisting of IC2 and surrounding components R3, R4, R5, R6, R7, R8, C2, C3, C4, C5, C6, RP2, RP3, and transistor Q, establishes 32 overtone sound field scenes within a frequency range of 13.51-73.53 kHz. Each overtone sound field scene corresponds to its own eight-segment frequency conversion and eight-cycle overtone sound field information, ensuring that the start and end points, frequency conversion width, and frequency conversion speed of each scene are non-overlapping, except for cycles. The frequency conversion widths of the 32 overtone sound field scenes are as follows: The bandwidths of the eight-segment cyclic frequency converter in scenario 23 are as follows: 。

Citation Information

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