Animal repeller with double-sided infrared sensor

By introducing a dual-sided infrared sensor and an ultrasonic horn system into the animal herder, the problem that existing herders can only herd animals from the front is solved, enabling effective herding of animals from any direction and enhancing the convenience and practicality of the device.

CN223745619UActive Publication Date: 2026-01-02NINGBO YILIN AGUATECH CO LTD
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Patent Information

Application Number
CN202422819335.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2026-01-02
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Existing animal deterrents can only drive animals away from the front, and cannot effectively drive away animals that enter from the back, resulting in poor convenience and practicality.

Method used

An animal deterrent device with dual-sided infrared sensors was designed. It is equipped with two infrared sensors located on the front and back respectively, combined with an ultrasonic horn and a solar power system. The sensitivity and ultrasonic frequency can be adjusted by a knob to adapt to the deterrent needs of different animals.

Benefits of technology

It enables effective animal driving from any direction, improving the convenience and practicality of the device and adapting to the driving needs of different animals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of accessory devices of animal driving devices, in particular to an animal driving device with a double-sided infrared sensor, which can be used for driving animals in the back direction of the driving device, so that the convenience of the device is improved, and the practicability is enhanced. Comprising a shell composed of an upper shell and a rear shell, a circuit board and an ultrasonic horn are arranged in the shell, an output interface of the circuit board is connected with the ultrasonic horn through a wire, a solar panel is arranged above the shell, an input interface of the circuit board is connected with the solar panel through a wire, and two Fresnel lenses are arranged on the upper shell and the rear shell respectively. The two knobs are arranged on the upper shell, the circuit board is provided with a lithium battery and two infrared sensors, and the contact pin is arranged below the shell.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of animal driving device accessory device, especially to a kind of animal driver with double-sided infrared sensor. BACKGROUND

[0002] As is known to all, in order to better protect the plants on the lawn or the clean in the farm, prevent animals such as dogs, cats, wild boars, mice and birds from damaging the plants on the lawn or the farm, an animal driver is installed in the lawn or the farm.

[0003] The existing animal driver is found that only the front can drive animals when in use, so that animals cannot be driven if they come from the back direction of the driver, so the driving effect is not good, thereby reducing the convenience of the device, and thus the practicality is poor. UTILITY MODEL CONTENT

[0004] To solve the above technical problems, the utility model provides an animal driver with double-sided infrared sensor, which can drive animals from the back direction of the driver, thereby improving the convenience of the device and enhancing the practicality.

[0005] The animal driver with double-sided infrared sensor of the utility model comprises a shell composed of an upper shell and a rear shell, a circuit board is arranged inside the shell, an ultrasonic speaker is arranged inside the shell, an output interface of the circuit board is connected to the ultrasonic speaker through a wire, a solar panel is arranged above the shell, an input interface of the circuit board is connected to the solar panel through a wire, two Fresnel lenses are arranged in the upper shell and the rear shell respectively, two knobs are arranged in the upper shell, the circuit board is provided with a lithium battery and two infrared sensors, and a pin is arranged below the shell.

[0006] Preferably, the knobs comprise two adjusting knobs for adjusting the sensitivity and the frequency of the ultrasonic speaker respectively.

[0007] Preferably, the animal driver further comprises a solar charging chip CN3163 for charging the lithium battery.

[0008] Preferably, the animal driver further comprises a voltage stabilizing chip HT7125 for stabilizing the power supply voltage.

[0009] Preferably, the animal driver further comprises a single-chip microcomputer FT61Fc21A for controlling the frequency output of the ultrasonic speaker.

[0010] Preferably, the animal driver further comprises a triode 2N2222 for driving the ultrasonic speaker.

[0011] Preferably, the animal driver further comprises a 10K potentiometer for adjusting the sensitivity and a 10K potentiometer for adjusting the frequency of the ultrasonic speaker, for adjusting the sensitivity and the frequency of the ultrasonic speaker.

[0012] Preferably, it further comprises a resistor for voltage division and grounding.

[0013] Compared with the prior art, the animal expeller with double-sided infrared sensors has the following beneficial effects: through different animal species, the sensitivity knob on the left side and the ultrasonic horn knob on the right side of the animal expeller are adjusted to adjust the corresponding sensitivity and ultrasonic horn frequency; the left knob in the knob is a sensitivity adjustment, and the corresponding sensitivity can be adjusted by adjusting the knob indication position, so that the sensing distance of the animal is adjusted, and the sensing distance range is adjustable between 1 meter and 15 meters; when the sensing knob is adjusted from the counterclockwise direction, the sensitivity changes from low to high at this time, so that the sensing distance of the animal is larger and larger, so that the appropriate sensitivity is adjusted to drive the animal; the right knob in the knob is an ultrasonic horn frequency adjustment knob; the ultrasonic horn frequency can be adjusted by adjusting the knob indication position, so that the ultrasonic horn frequency of the sensed animal is adjusted, and the ultrasonic horn frequency adjustment range is adjustable between 10KHz and 60KHz; when the sensing knob is adjusted from the counterclockwise direction, the ultrasonic horn frequency changes from low to high at this time, so that the appropriate frequency is adjusted to drive the animal, and therefore the practicability is enhanced. BRIEF DESCRIPTION OF DRAWINGS

[0014] Fig. 1 It is a schematic diagram of the appearance structure of the utility model;

[0015] Fig. 2 It is a schematic diagram of the internal structure of the utility model;

[0016] Fig. 3 It is a schematic diagram of the circuit principle of the utility model;

[0017] Mark in the drawing: 10, knob; 20, upper shell; 30, ultrasonic horn; 40, solar panel; 50, rear shell; 60, lens package; 70, PCB assembly; 80, infrared sensor; 90, pin; 100, lithium battery; U1, solar charging chip CN3163; U2, voltage stabilizing chip HT7125; W1, 10K potentiometer for adjusting sensitivity; W2, 10K potentiometer for adjusting ultrasonic frequency; U3, single-chip microcomputer FT61Fc21A; PR1, infrared sensor on the front of the circuit board; PR2, infrared sensor on the back of the circuit board; Q1, triode 2N2222; R3, resistor. DETAILED DESCRIPTION

[0018] The specific implementation of the utility model will be further described in detail in combination with the drawings and examples. The following examples are used to illustrate the utility model, but not to limit the scope of the utility model.

[0019] As Figs. 1 to 3As shown in the utility model discloses a kind of animal driver of double-sided infrared sensor, including the shell of upper shell 20 and rear shell 50, circuit board 70 is placed in shell interior, ultrasonic speaker 30 is placed in shell interior, the output interface of circuit board 70 is connected ultrasonic speaker 30 by wire, solar panel 40 is placed above shell, the input interface of circuit board 70 is connected solar panel 40 by wire, two fresnel lenses 60 are placed in upper shell 20 and rear shell 50 respectively, two knobs 10 are placed in upper shell 20, circuit board 70 is equipped with lithium battery 100 and two infrared sensors 80, pin 90 is placed below shell;By different animal species, the sensitivity knob of left side of animal driver 10 and the ultrasonic speaker knob of right side two knobs are adjusted to adjust corresponding sensitivity and ultrasonic speaker frequency;Left knob in knob is sensitivity adjustment, and the corresponding sensitivity can be adjusted by adjusting knob indicating position, so as to adjust the distance of sensing animal, and the sensing distance range is adjustable between 1 meter and 15 meters, when sensing knob is adjusted from counterclockwise direction, sensitivity changes from low to high at this time, so that the distance of sensing animal is more and more large, so as to adjust the sensitivity of corresponding to drive animal;Right side in knob is ultrasonic speaker frequency adjustment knob;Ultrasonic speaker frequency can be adjusted by adjusting knob indicating position, so as to adjust the ultrasonic speaker frequency of sensing animal, and the ultrasonic speaker frequency adjustment range is adjustable between 10KHz and 60KHz, when sensing knob is adjusted from counterclockwise direction, ultrasonic speaker frequency changes from low to high at this time, so as to adjust the frequency of corresponding to drive animal, so as to enhance practicability.

[0020] As the preferred embodiment of the above, knob 10 includes two adjustment knobs, for adjusting sensitivity and ultrasonic speaker frequency respectively;Convenient for staff to adjust, convenient for driving animals of different body types, thus enhancing practicability.

[0021] As the preferred embodiment of the above, further including solar charging chip U1, for charging lithium battery BAT;Can assist charging battery BAT.

[0022] As the preferred embodiment of the above, further including voltage stabilizing chip HT7125U2, for stabilizing power supply voltage, thus enhancing practicability.

[0023] As the preferred embodiment of the above, further including single-chip microcomputer FT61FcU3, for controlling the frequency output of ultrasonic speaker 30, thus enhancing practicability.

[0024] As the preferred embodiment of the above, further including triode 2N2222Q1, for driving ultrasonic speaker 30, thus enhancing practicability.

[0025] As the preferred embodiment of the above-mentioned embodiment, it further comprises a 10K potentiometer for adjusting the sensitivity and a 10K potentiometer for adjusting the ultrasonic frequency, so as to adjust the sensitivity and the ultrasonic horn frequency, thereby enhancing the practicability.

[0026] As the preferred embodiment of the above-mentioned embodiment, it further comprises a resistor R3 for voltage division and grounding, thereby ensuring the stability of the device and enhancing the practicability.

[0027] The animal expeller with double infrared sensors comprises an infrared sensor PIR1, an infrared sensor PIR2, a single-chip microcomputer control chip U3, a solar charging chip U1, a voltage stabilizing chip U2, an ultrasonic horn SP, a lithium battery BAT and a triode Q1. Fig. 3 As shown in the figure, the animal expeller with double infrared sensors comprises an infrared sensor PIR1, an infrared sensor PIR2, a single-chip microcomputer control chip U3, a solar charging chip U1, a voltage stabilizing chip U2, an ultrasonic horn SP, a lithium battery BAT and a triode Q1, wherein pin 1 of the single-chip microcomputer U3 is connected to pin 3 of the voltage stabilizing chip U2, pin 2 of the single-chip microcomputer U3 is connected to pin 2 of the potentiometer W1, pin 3 of the single-chip microcomputer U3 is connected to pin 2 of the potentiometer W2, pin 5 of the single-chip microcomputer U3 is connected to pin 1 of the resistor R4, pin 6 of the single-chip microcomputer U3 is connected to pin 2 of the infrared sensor PIR2, pin 7 of the single-chip microcomputer U3 is connected to pin 2 of the infrared sensor PIR1, pin 8 of the single-chip microcomputer U3 is connected to the ground, pin 1 of the infrared sensor PIR1 is connected to pin 3 of the voltage stabilizing chip U2, pin 3 of the infrared sensor PIR1 is connected to the ground, pin 1 of the infrared sensor PIR2 is connected to pin 3 of the voltage stabilizing chip U2, pin 3 of the infrared sensor PIR2 is connected to the ground, pin 1 of the potentiometer W1 is connected to pin 3 of the voltage stabilizing chip U2, pin 3 of the potentiometer W1 is connected to pin 1 of the resistor R2, pin 2 of the resistor R2 is connected to the ground, pin 1 of the potentiometer W1 is connected to pin 3 of the voltage stabilizing chip U2, pin 3 of the potentiometer W2 is connected to pin 1 of the resistor R3, pin 2 of the resistor R3 is connected to the ground, pin 2 of the voltage stabilizing chip U2 is connected to pin 1 of the positive electrode of the lithium battery BAT, pin 2 of the negative electrode of the lithium battery BAT is connected to the ground, pin 1 of the voltage stabilizing chip U2 is connected to the ground, pin 1 of the ultrasonic horn SP is connected to pin 3 of the voltage stabilizing chip U2, pin 2 of the ultrasonic horn SP is connected to pin 2 of the triode Q1, pin 3 of the triode Q1 is connected to the ground, pin 1 of the triode Q1 is connected to pin 2 of the resistor R4, pin 4 of the solar charging chip U1 is connected to the positive electrode of the solar panel through a wire, pin 3 of the solar charging chip U1 is connected to the negative electrode of the solar panel and the negative electrode pin 2 of the lithium battery BAT through a wire, pin 2 of the solar charging chip U1 is connected to pin 2 of the resistor R1, pin 1 of the resistor R1 is connected to the ground, pin 5 and pin 8 of the solar charging chip U1 are connected to the positive electrode pin 1 of the lithium battery BAT.

[0028] The utility model discloses an animal driver with double -faced infrared sensor, and its circuit principle is as follows when working, through different animal species, the sensitivity knob of the left side of 10 of animal driver and the ultrasonic loudspeaker knob of the right side two knobs adjust corresponding sensitivity and ultrasonic loudspeaker frequency, the left knob of 10 knob is sensitivity adjustment, and the corresponding sensitivity can be adjusted through the adjustment knob indication position, thereby adjusting the distance of sensing animals, and the sensing distance range is adjustable between 1m to 15m, when sensing knob adjusts from the counterclockwise direction, the sensitivity changes from low to high at this time, and the distance of sensing animals is more and more big, thereby adjusting the sensitivity of the union to drive animals, the right side of 10 knob is ultrasonic loudspeaker frequency adjustment knob, and the ultrasonic loudspeaker frequency can be adjusted through the adjustment knob indication position, thereby adjusting the ultrasonic loudspeaker frequency of sensing animals, and the ultrasonic loudspeaker frequency adjustment range is adjustable between 10KHz to 60KHz, when sensing knob adjusts from the counterclockwise direction, the ultrasonic loudspeaker frequency changes from low to high at this time, and the frequency of adjusting the union to drive animals.

[0029] The utility model discloses an animal driver with double -faced infrared sensor, and its circuit principle is as follows when working, infrared sensor PR1 is the infrared sensor of the front of animal driver, infrared sensor PR2 is the infrared sensor of the back of animal driver, singlechip U3 is signal control processing chip, and the left side of the shell of animal driver adjusts sensitivity function when the left knob is adjusted to a certain angle, and the voltage value of the voltage value of the resistance value of potentiometer W1 and the resistance value of resistance R2 carries out voltage division gives the pin 2 of singlechip U3 and carries out ADC voltage detection, when the voltage value of pin 2 of singlechip U3 is higher, the sensitivity of the driver set is higher at this time, the right side of the shell of animal driver adjusts ultrasonic frequency function when the right knob is adjusted to a certain angle, and the voltage value of the voltage value of the resistance value of potentiometer W2 and the resistance value of resistance R3 carries out voltage division gives the pin 3 of singlechip U3 and carries out ADC voltage detection, when the voltage value of pin 3 of singlechip U3 is higher, the ultrasonic frequency of the driver set is higher at this time, and chip U1 is solar charging chip, when the solar panel receives sunlight, can charge lithium battery, and battery BAT is the power supply of whole circuit, and battery BAT power voltage gives singlechip U3 power through the pin 3 of voltage stabilizing chip U2, when the front or back of animal driver detects animals, the pin 2 of PR1 or the pin 2 of PR2 sends a high level signal at this time, and the pin 7 or pin 6 of singlechip U3 will detect high level signal, then the pin 5 of singlechip U3 will output a PWM signal and carry out ultrasonic loudspeaker frequency signal output, thereby drive animals.

[0030] The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.

[0031] The "first", "second", "third" in the utility model do not represent the specific quantity and order, and are only used for distinguishing the names.

[0032] The above is only the preferred embodiment of the utility model, and it should be pointed out that, for ordinary skilled persons in the technical field, several improvements and modifications can be made without departing from the technical principles of the utility model, and these improvements and modifications should also be considered as the protection scope of the utility model.

Claims

1. An animal deterrent device with a double-sided infrared sensor, characterized in that, The shell is composed of the upper shell (20) and the back shell (50), the circuit board is placed inside the shell, the ultrasonic speaker (30) is placed inside the shell, the output interface of the circuit board is connected with the ultrasonic speaker (30) through the wire, the solar panel (40) is placed above the shell, the input interface of the circuit board is connected with the solar panel (40) through the wire, two Fresnel lenses are placed in the upper shell (20) and the back shell (50) respectively, two knobs (10) are placed in the upper shell (20), the circuit board is installed with the lithium battery (100) and two infrared sensors (80), and the pin (90) is placed below the shell.

2. The animal repeller with double-sided infrared sensor according to claim 1, characterized in that, The knob (10) includes two adjusting knobs, which are used for adjusting the sensitivity and the ultrasonic speaker frequency respectively.

3. An animal deterrent having dual-sided infrared sensors as claimed in claim 2, wherein, The solar charging chip CN3163 (U1) is further included for charging the lithium battery (100).

4. An animal deterrent having dual-sided infrared sensors as claimed in claim 3, wherein, The voltage stabilizing chip HT7125 (U2) is further included for stabilizing the power supply voltage.

5. An animal deterrent having dual-sided infrared sensors as claimed in claim 4 wherein, The single-chip microcomputer FT61Fc21A (U3) is further included for controlling the frequency output of the ultrasonic speaker (30).

6. An animal deterrent having dual-sided infrared sensors as claimed in claim 5 wherein, The triode 2N2222 (Q1) is further included for driving the ultrasonic speaker.

7. An animal deterrent having dual-sided infrared sensors as claimed in claim 6 wherein, The 10K potentiometer (W1) for adjusting the sensitivity and the 10K potentiometer (W2) for adjusting the ultrasonic frequency are further included for adjusting the sensitivity and the frequency of the ultrasonic speaker (30).

8. An animal deterrent having dual-sided infrared sensors as claimed in claim 7, wherein, The resistor (R3) is further included for voltage division and grounding.