Multifunctional ultrasonic animal repeller
By combining high-frequency ultrasound, laser profiling, and high-brightness LED lights, the multifunctional ultrasonic animal deterrent device solves the problem of insufficient sound pressure intensity of existing deterrent devices, and achieves effective deterrence of large animals and safety protection in emergency situations.
Patent Information
- Application Number
- CN202520029490.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing ultrasonic and flashing dog repellents have low sound pressure levels and insufficient brightness, making them ineffective at driving away large dogs and wild animals. Furthermore, their limited functionality fails to meet the growing demand for dog repellents.
A multifunctional ultrasonic animal deterrent device was designed, which combines 20KHz-35KHz ultrasound, four laser heads for profiling, multiple high-brightness LEDs and a high-decibel buzzer. It can drive away large animals by emitting ultrasonic beams, laser profiling, strong light illumination and high-decibel alarm. It is also equipped with animal repellent spray and animal net gun fixing structure to deal with emergency situations.
It effectively repels felines, canines, and rodents. Through high-decibel ultrasound, temporarily blinding light, and high-brightness beams, it ensures user safety and significantly improves the effectiveness of repelling large animals by using animal repellent sprays and animal net guns in emergencies.
Smart Images

Figure CN223640040U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to animal driver technology field especially relates to a multifunctional ultrasonic animal driver. BACKGROUND
[0002] In recent years, raising dogs as a lifestyle is becoming more and more popular, but along with it, the number of vicious dog attacks on people is increasing, bringing work pressure and challenges to relevant units such as public security organs and urban management departments. With the improvement of the ecological environment and the increase in the number of wild animals, conflicts between people and wild animals are increasing, and wild animals have occasionally attacked people.
[0003] Traditional animal driving methods, such as setting up scarecrows or using sound driving devices, often have limited effect, and animals will quickly adapt to this auditory and visual intimidation, causing the driving device to lose its effectiveness. In order to solve these problems, technology development has begun to shift towards more efficient and safer driving and capture methods, aiming to resolve conflicts between people and animals through non-violent means. For example, using ultrasonic technology to drive animals, especially dogs, without causing physical harm to the animals; using strong light flickering and ultrasonic waves to drive dogs with a flash dog driver and other animal driving devices. However, the existing ultrasonic dog driver and flash dog driver still have the defects of small sound pressure intensity of ultrasonic waves and insufficient flash brightness, which have limited effect on large dogs, and the functions are single, which cannot meet the growing demand for effectively driving wild boars, bears and other large wild animals. SUMMARY
[0004] The technical problem to be solved by the utility model is to provide a multifunctional ultrasonic animal driver in view of the deficiencies of the prior art.
[0005] To solve the above technical problems, the utility model provides a multifunctional ultrasonic animal driver, which comprises: a transmitting panel, a control panel, a control circuit and a power supply module; wherein the transmitting panel and the control panel are connected with the control circuit;
[0006] The transmitting panel is embedded with: a plurality of ultrasonic heads, four profile laser heads, a plurality of high-brightness LED lamps and a buzzer; wherein the plurality of ultrasonic heads are regularly arranged as an ultrasonic head array in the transmitting panel; the profile laser heads are respectively installed at the four corners of the ultrasonic head array; the plurality of high-brightness LED lamps and the buzzer are all installed in the transmitting panel;
[0007] The control panel is embedded with: a power switch, a buzzer switch, a high-brightness LED lamp switch, a profile laser switch, an ultrasonic switch, a charging port, a positive pole and a negative pole;
[0008] The control circuit is used for controlling the ultrasonic head to emit ultrasonic waves, the laser head to emit laser, the highlight LED lamp to emit light and the buzzer to give an alarm respectively.
[0009] The power supply module of the animal expeller uses a built-in battery or an external power supply to supply power to the emission panel, the control panel and the control circuit.
[0010] The animal expeller further comprises a shell, and the emission panel and the control panel are mounted on the shell, the shell is made of ABS material on the side of the emission panel, and the shell is made of aluminum alloy material except the side of the emission panel.
[0011] The control circuit comprises a power supply circuit, a power supply indication circuit, an LED lamp circuit, an alarm circuit, a laser profile indication circuit and an ultrasonic circuit, wherein one end of the power supply circuit is grounded, the other end of the power supply circuit is connected with one end of the power supply indication circuit, the LED lamp circuit, the alarm circuit, the laser profile indication circuit and the ultrasonic circuit respectively, and the other end of the power supply indication circuit, the LED lamp circuit, the alarm circuit, the laser profile indication circuit and the ultrasonic circuit is grounded.
[0012] The power supply circuit comprises a power supply BATTERY1 and a first switch SW1 connected in series, wherein the power supply BATTERY1 is connected with the power supply module through a charging port SO1 for charging, and the opening or closing of the first switch SW1 is controlled through a power supply switch in the control panel.
[0013] The power supply indication circuit comprises a fifth resistor R5 and a first light emitting diode LED1 connected in series.
[0014] The LED lamp circuit comprises an LED lamp control chip IC3, a third switch SW3, n resistors and n light emitting diodes, wherein the n resistors and the n light emitting diodes are connected in series one by one to form n groups of LED driving circuits, the n groups of LED driving circuits are connected in parallel, one end of which is grounded and the other end of which is connected with an output end of the LED lamp control chip IC3; an input end of the LED lamp control chip IC3 is connected with one end of the third switch SW3; a ground end of the LED lamp control chip IC3 is grounded; the other end of the third switch SW3 is connected with the power supply circuit; and the opening or closing of the third switch SW3 is controlled through an LED lamp switch in the control panel.
[0015] The alarm circuit comprises an alarm sound control module M2, a second switch SW2 and a buzzer F1; one end of the alarm sound control module M2 is grounded, the other end is connected with one end of the second switch SW2, and the alarm sound control module M2 is connected with the buzzer F1; the other end of the second switch SW2 is connected with the power supply circuit; the opening or closing of the second switch SW2 is controlled by the buzzer switch in the control panel;
[0016] The laser profile circuit comprises a fourth switch SW4, four resistors and four laser heads Laser; the four resistors and the four laser heads Laser are connected in series one by one to form four groups of laser diode driving circuits, one end of the four groups of laser diode driving circuits is grounded, the other end is connected with one end of the fourth switch SW4, the other end of the fourth switch SW4 is connected with the power supply circuit; the opening or closing of the fourth switch SW4 is controlled by the profile laser switch in the control panel;
[0017] The ultrasonic wave circuit comprises a 5V voltage stabilizing integrated circuit, an ultrasonic wave emission indication circuit, an ultrasonic wave signal generator, a filter circuit of an ultrasonic wave waveform generator, a power supply filter circuit and an ultrasonic wave driving circuit; the input end of the 5V voltage stabilizing integrated circuit is connected with the power supply circuit, the output end is connected with the input end of the filter circuit of the ultrasonic wave waveform generator, and the grounding end is grounded; the input end of the ultrasonic wave emission indication circuit is connected with the power supply circuit, the output end is connected with the input end of the ultrasonic wave signal generator, and the grounding end is grounded; the input end of the filter circuit of the ultrasonic wave waveform generator is also connected with the output end of the ultrasonic wave signal generator, the output end of the filter circuit of the ultrasonic wave waveform generator is connected with the ultrasonic wave signal generator, and the grounding end is grounded; one end of the power supply filter circuit is connected with the power supply circuit, and the other end is grounded; the input end of the ultrasonic wave driving circuit is connected with the output end of the ultrasonic wave signal generator, and the grounding end of the ultrasonic wave driving circuit is grounded;
[0018] The ultrasonic wave emission indication circuit comprises a tenth resistor R10, an eleventh resistor R11, a first transistor Q1 and a sixth light emitting diode LED6; one end of the tenth resistor R10 is connected with the power supply circuit, the other end is connected with the sixth light emitting diode LED6 in series and then connected with the collector of the first transistor Q1; the emitter of the first transistor Q1 is grounded; the base of the first transistor Q1 is connected with one end of the eleventh resistor R11; the other end of the eleventh resistor R11 is connected with the ultrasonic wave signal generator;
[0019] The filter circuit of the ultrasonic waveform generator comprises a COIL1, a C1 and a C2; wherein the power supply side of the COIL1 is connected to a pin 4 of an IC1 in the ultrasonic signal generator and a 5V voltage stabilizing integrated circuit respectively; the ground side of the COIL1 is connected to a pin 11 of the IC1 in the ultrasonic signal generator and the ground respectively; the C1 is connected in parallel to the power supply side of the COIL1, and one end of the C1 is connected to the 5V voltage stabilizing integrated circuit and the other end is connected to the ground; the C2 is connected between the end of the COIL1 connected to the pin 4 of the IC1 and the end of the COIL1 connected to the pin 11 of the IC1.
[0020] The power supply filter circuit comprises a C5 and a C6 connected in parallel; wherein one end of the C5 and the C6 connected in parallel is connected to the power supply circuit and the other end is connected to the ground.
[0021] The ultrasonic driving circuit comprises a SW5, a R12, a R14, a R15, a R16, a Q2, a Q3 and N groups of ultrasonic driving units connected in parallel; wherein one end of the SW5 is connected to a pin 10 of the IC1 in the ultrasonic signal generator and the other end is connected to the ground; one end of the R12 is connected to a pin 1 of the IC1 in the ultrasonic signal generator and the other end is connected to the base of the Q2; the emitter of the Q2 is connected to the ground; one end of the R14 is connected to the power supply circuit and the other end is connected to the collector of the Q2 and one end of the R15 respectively, and the other end of the R15 is connected to the base of the Q3; the emitter of the Q3 is connected to the ground and the collector of the Q3 is connected to one end of the R16 and the input end of the N groups of ultrasonic driving units respectively; the other end of the R16 is connected to the power supply circuit; the opening or closing of the SW5 is controlled by the ultrasonic switch in the control panel.
[0022] The N groups of parallel ultrasonic wave driving unit structures are same, each group of ultrasonic wave driving unit structures comprises one resistor, one triode, one stabilizing tube, one high-frequency transformer and two ultrasonic wave emitting devices, wherein one end of the resistor is connected with the collector of the third transistor Q3, and the other end is connected with the base of the triode, the emitting stage of the triode is grounded, the collector of the triode is connected with one end of the input side of the high-frequency transformer, and the other end of the input side of the high-frequency transformer is connected with the power supply circuit, the two ends of the output side of the high-frequency transformer are connected in series to form a loop, and one end of the output side of the high-frequency transformer is grounded, and one end of the stabilizing tube is connected with the emitting stage of the triode, and the other end is connected with the collector of the triode;
[0023] The ultrasonic wave emitting device is an ultrasonic wave emitting device with a working frequency range of 20KHz-35KHz.
[0024] The animal driving device further comprises a handle and four supporting legs, wherein the handle is fixedly installed on the upper surface of the shell, and the four supporting legs are respectively installed on the four corners of the bottom of the shell.
[0025] The animal driving device further comprises a driving spray fixing structure and a hunting net gun fixing structure, wherein the driving spray fixing structure and the hunting net gun fixing structure are installed on the shell.
[0026] The driving spray fixing structure is a fixed buckle type fixing driving spray spray tank.
[0027] The hunting net gun fixing structure is a rotatable buckle type fixing hunting net gun.
[0028] The above technical scheme has the following beneficial effects:
[0029] The utility model discloses can emit the ultrasonic wave of the frequency range of 20KHz-35KHz to felines, canines, rodents and the like, uses the sensitive characteristic of the above-mentioned category of animals to ultrasonic wave, makes the animal feel fear through emitting the high-decibel ultrasonic wave beam that human being cannot perceive, thereby far away from the current area, reaches the purpose of driving.
[0030] The utility model discloses the driving spray spray tank fixing structure of shell can fix driving spray, can use driving spray to make target to retreat or drive away under the emergency situation of meeting the animal such as fierce dog or ferocious beast having the aggressiveness. In addition, the utility model discloses the hunting net gun fixing structure of shell can fix the hunting net gun that meets relevant technical standard, can emit the hunting net gun that the hunting net gun fixing device hangs on when necessary, and the target is trapped in high strength hunting net, to guarantee the personal safety of user.
[0031] In the internal circuit of the utility model, low-power high-efficiency field effect triode is used as ultrasonic wave driving tube to ensure high-efficiency emission output of ultrasonic wave and not to generate too much heat.
[0032] The utility model discloses a light of LED lamp is acted on the eyes of the animal that is driven to make target temporary blindness, and will not cause permanent damage, thereby make target unable to see the position of user, guarantee the personal safety of user.
[0033] The utility model discloses a high decibel buzzer plays the role of intimidating animals, warning others, calling for support etc.
[0034] In conclusion, the utility model comprehensively uses the technology of ultrasonic wave of 20KHz-35KHz frequency range, LED spotlight, spray animal driving spray, animal catching net gun, laser profile indicating sighting, high decibel buzzer, and has remarkable effect on driving and preventing animals from hurting people. BRIEF DESCRIPTION OF DRAWINGS
[0035] Figure 1 It is the structure diagram of a multifunctional ultrasonic animal driver in the embodiment;
[0036] Figure 2 It is the front view of a multifunctional ultrasonic animal driver in the embodiment;
[0037] Figure 3 It is the back view of a multifunctional ultrasonic animal driver in the embodiment;
[0038] Figure 4 It is the internal circuit diagram of a multifunctional ultrasonic animal driver in the embodiment;
[0039] In the drawing: 1 - handle, 2 - animal driving spray fixing structure, 3 - animal catching net gun fixing structure, 4 - ultrasonic wave head, 5 - profile indicating laser head, 6 - high-brightness LED lamp, 7 - buzzer, 8 - supporting leg, 9 - shell, 10 - emission panel, 11 - control panel, 12 - power switch, 13 - buzzer switch, 14 - LED lamp switch, 15 - profile indicating laser switch, 16 - ultrasonic wave switch, 17 - charging port, 18 - positive pole of binding post, 19 - negative pole of binding post. DETAILED DESCRIPTION
[0040] The utility model will be further explained in detail in combination with the drawings and specific embodiment.
[0041] The utility model has multiple functions, including but not limited to ultrasonic wave emission, spray animal driving spray, emission animal catching net, LED lamp strong light irradiation, laser profile indicating sighting and high decibel buzzer alarm.
[0042] For example, Figures 1-3As shown, this embodiment provides a multifunctional ultrasonic animal deterrent device, which includes: a transmitting panel 10, a control panel 11, a control circuit, and a power supply module; wherein the transmitting panel 10 and the control panel 11 are connected to the control circuit. The control circuit is installed inside the housing 9.
[0043] The animal deterrent device also includes a housing 9, and the launch panel 10 and control panel 11 are both mounted on the housing 9. The side of the housing 9 containing the launch panel 10 is made of ABS material, while the rest of the housing 9, excluding the side containing the launch panel 10, is made of aluminum alloy. The launch panel 10 and control panel 11 are respectively mounted on the front and rear surfaces of the housing 9.
[0044] The animal deterrent device further includes: a handle 1 and four legs 8; wherein the handle 1 is fixedly installed on the upper surface of the outer casing 9; and the four legs 8 are respectively installed at the four corners of the bottom of the outer casing 9.
[0045] The animal deterrent device further includes: an animal repellent spray fixing structure 2 and an animal net gun fixing structure 3; wherein the animal repellent spray fixing structure 2 and the animal net gun fixing structure 3 are mounted on the outer casing 9.
[0046] The animal repellent spray fixing structure 2 adopts a fixed snap-on type to fix the spray can of the animal repellent spray;
[0047] The animal trap gun fixing structure 3 adopts a rotatable snap-on fixing mechanism for the animal trap gun.
[0048] In this embodiment, the main body of the outer shell is made of aluminum alloy, while the side with the ultrasonic head is made of ABS material. The side of the outer shell 9 is equipped with a fixing structure for securing the spray canister of the animal repellent spray. This structure allows the spray to be used to repel or deter targets in emergencies. The side of the outer shell 9 also has a fixing structure for an animal net gun, which can be used to secure an animal net gun that meets the technical standards of public security authorities. If necessary, the net can be fired to capture targets.
[0049] The transmitting panel 10 is embedded with: N ultrasonic heads 4, 4 profiling laser heads 5, n high-brightness LEDs 6 and 1 buzzer 7; wherein the N ultrasonic heads 4 are regularly arranged in an ultrasonic head array within the transmitting panel 10; the profiling laser heads 5 are respectively installed at the four corners of the ultrasonic head array; the n high-brightness LEDs 6 and the buzzer 7 are installed within the transmitting panel 10.
[0050] In this embodiment, multiple ultrasonic transmitting units are expanded and compactly fixed on a single plane. Specifically, an ultrasonic head array is constructed by N regularly arranged ultrasonic heads 4 within the transmitting panel 10. A contour-indicating laser generator 5 is placed at each of the four corners of the ultrasonic head array to ensure that the emitted ultrasonic energy is focused directly onto the target animal. The transmitting panel 10 also includes a high-brightness LED light 6 and a high-decibel buzzer 7. Figure 2 As shown, in this embodiment, the high-brightness LED 6 and the high-decibel buzzer 7 are positioned on the same side of the ultrasonic head array and in the same row. It should be noted that the arrangement of the high-brightness LED 6 and the high-decibel buzzer 7 is not limited to... Figure 2 The arrangement shown.
[0051] The control panel includes: a power switch 12, a buzzer switch 13, a high-brightness LED light switch 14, a marker laser switch 15, an ultrasonic switch 16, a charging port 17, a positive terminal 18, and a negative terminal 19.
[0052] The power supply module uses a built-in battery or an external power source to power the transmitter panel 10, control panel 11, and control circuit.
[0053] In this embodiment, such as Figure 3 As shown, the power switch 12 is used to start or stop the entire multi-functional ultrasonic animal deterrent; the buzzer switch 13, the high-brightness LED light switch 14, the outline laser switch 15, and the ultrasonic switch 16 are used to control the on or off of the buzzer 7, the high-brightness LED light 6, the outline laser head 5, and the ultrasonic head 4, respectively; when charging the multi-functional ultrasonic animal deterrent, the built-in battery installed in the animal deterrent can be charged through the charging port 17, or an external power source can be connected through the positive terminal 18 and the negative terminal 19.
[0054] The control circuit is used to control the ultrasonic head 4 to emit ultrasonic waves, the profiling laser head 5 to emit lasers, the high-brightness LED light 6 to emit light, and to activate the buzzer 7 to issue an alarm.
[0055] The control circuit includes: a power supply circuit, a power indicator circuit, an LED light circuit, an alarm circuit, a laser profiling circuit, and an ultrasonic circuit; wherein one end of the power supply circuit is grounded, and the other end of the power supply circuit is connected to one end of the power indicator circuit, the LED light circuit, the alarm circuit, the laser profiling circuit, and the ultrasonic circuit, respectively, and the other ends of the power indicator circuit, the LED light circuit, the alarm circuit, the laser profiling circuit, and the ultrasonic circuit are all grounded.
[0056] The power circuit includes a power supply BATTERY1 connected in series and a first switch SW1; wherein the power supply BATTERY1 is connected to the power supply module for charging through the charging port SO1; the opening or closing of the first switch SW1 is controlled by the power switch 12 in the control panel 11.
[0057] The power indicator circuit includes a fifth resistor R5 connected in series and a first light-emitting diode LED1.
[0058] The LED light circuit includes: an LED light control chip IC3, a third switch SW3, n resistors, and n light-emitting diodes; wherein the n resistors and n light-emitting diodes are connected in series one-to-one to form n sets of LED driving circuits, and the n sets of LED driving circuits are connected in parallel with one end grounded and the other end connected to the output terminal of the LED light control chip IC3; the input terminal of the LED light control chip IC3 is connected to one end of the third switch SW3; the ground terminal of the LED light control chip IC3 is grounded; the other end of the third switch SW3 is connected to the power supply circuit; the opening or closing of the third switch SW3 is controlled by the LED light switch 14 in the control panel 11.
[0059] In this embodiment, such as Figure 4 As shown, the LED light circuit includes four resistors and four LEDs: resistor R1, resistor R2, resistor R3, resistor R4, LED2, LED3, LED4, and LED5. LED2 is connected in series with resistor R1; LED3 is connected in series with resistor R2; LED4 is connected in series with resistor R3; and LED5 is connected in series with resistor R4. The LEDs in the control circuit correspond to the high-brightness LED 6 on the emission panel.
[0060] The alarm circuit includes: an alarm sound control module M2, a second switch SW2, and a buzzer F1; wherein one end of the alarm sound control module M2 is grounded, and the other end is connected to one end of the second switch SW2, and the alarm sound control module M2 is connected to the buzzer F1; the other end of the second switch SW2 is connected to the power supply circuit; the opening or closing of the second switch SW2 is controlled by the buzzer switch 13 in the control panel 11.
[0061] In this embodiment, the buzzer F1 in the control circuit corresponds to the buzzer 7 in the transmitter panel.
[0062] The laser profiling circuit includes: a fourth switch SW4, four resistors, and four laser heads; wherein the four resistors and four laser heads are connected in series one-to-one to form four sets of laser diode driving circuits, and the four sets of laser diode driving circuits are connected in parallel with one end grounded; the other end is connected to one end of the fourth switch SW4, and the other end of the fourth switch SW4 is connected to the power supply circuit; the opening or closing of the fourth switch SW4 is controlled by the profiling laser switch 15 in the control panel 11.
[0063] In this embodiment, such as Figure 4 As shown, the laser profiling circuit includes four resistors and four laser heads: resistor R6, resistor R7, resistor R8, resistor R9, laser head 1 (first laser), laser head 2 (second laser), laser head 3 (third laser), and laser head 4 (fourth laser). Resistor R6 and laser head 1 are connected in series; resistor R7 and laser head 2 are connected in series; resistor R8 and laser head 3 are connected in series; and resistor R9 and laser head 4 are connected in series. The laser head in the control circuit corresponds to the profiling laser head 5 in the emission panel.
[0064] The ultrasonic circuit includes: a 5V voltage regulator integrated circuit, an ultrasonic emission indicator circuit, an ultrasonic signal generator, a filter circuit for the ultrasonic waveform generator, a power supply filter circuit, and an ultrasonic drive circuit. The input terminal of the 5V voltage regulator integrated circuit is connected to the power supply circuit, the output terminal is connected to the input terminal of the filter circuit for the ultrasonic waveform generator, and the ground terminal is grounded. The input terminal of the ultrasonic emission indicator circuit is connected to the power supply circuit, the output terminal is connected to the input terminal of the ultrasonic signal generator, and the ground terminal is grounded. The input terminal of the filter circuit for the ultrasonic waveform generator is also connected to the output terminal of the ultrasonic signal generator, and the output terminal of the filter circuit for the ultrasonic waveform generator is connected to the ultrasonic signal generator, with the ground terminal grounded. One end of the power supply filter circuit is connected to the power supply circuit, and the other end is grounded. The input terminal of the ultrasonic drive circuit is connected to the output terminal of the ultrasonic signal generator, and the ground terminal of the ultrasonic drive circuit is grounded.
[0065] In this embodiment, such as Figure 4 As shown, IC2 uses an existing 5V voltage regulator integrated circuit. The ultrasonic drive transistor uses a low-power, high-efficiency field-effect transistor to ensure efficient ultrasonic wave transmission output without generating excessive heat. The laser head Laser in the control circuit corresponds to the profiling laser head 5 in the emission panel.
[0066] The ultrasonic emission indicator circuit includes: a tenth resistor R10, an eleventh resistor R11, a first transistor Q1, and a sixth light-emitting diode LED6; wherein one end of the tenth resistor R10 is connected to the power supply circuit, and the other end is connected in series with the sixth light-emitting diode LED6 and then connected to the collector of the first transistor Q1; the emitter of the first transistor Q1 is grounded; the base of the first transistor Q1 is connected to one end of the eleventh resistor R11; and the other end of the eleventh resistor R11 is connected to the ultrasonic signal generator.
[0067] The ultrasonic signal generator includes: a microcontroller IC1, a third capacitor C3, a fourth capacitor C4, and a crystal oscillator X1; wherein pin 14 of the microcontroller IC1 is connected to the eleventh resistor R11 in the ultrasonic emission indicator circuit, pin 5 of the microcontroller IC1 is connected to one end of the third capacitor C3, pin 6 of the microcontroller IC1 is connected to one end of the fourth capacitor C4, and the other ends of the third capacitor C3 and the other ends of the fourth capacitor C4 are connected to pins 9 and 11 of the microcontroller IC1 and the filtering circuit of the ultrasonic waveform generator, respectively; the crystal oscillator X1 is connected between pins 5 and 6 of the microcontroller IC1; and pin 4 of the microcontroller IC1 is connected to the filtering circuit of the ultrasonic waveform generator.
[0068] In this embodiment, the microcontroller IC1 is model CSB25K.
[0069] The filtering circuit of the ultrasonic waveform generator includes: a conjugate filter coil COIL1, a first capacitor C1, and a second capacitor C2; wherein the power supply side of the conjugate filter coil COIL1 is connected to pin 4 of a 5V voltage regulator integrated circuit and a microcontroller IC1 in the ultrasonic signal generator; the ground side of the conjugate filter coil COIL1 is connected to pin 11 of the microcontroller IC1 in the ultrasonic signal generator and ground; the first capacitor C1 is connected in parallel to the power supply side of the conjugate filter coil COIL1, and one end of the first capacitor C1 is connected to the 5V voltage regulator integrated circuit, and the other end is grounded; the second capacitor C2 is connected between the end of the conjugate filter coil COIL1 connected to pin 4 of the microcontroller IC1 and the end connected to pin 11 of the microcontroller IC1.
[0070] The power supply filtering circuit includes a fifth capacitor C5 and a sixth capacitor C6 connected in parallel; wherein one end of the fifth capacitor C5 and the sixth capacitor C6 connected in parallel is connected to the power supply circuit, and the other end is grounded.
[0071] The ultrasonic driving circuit includes: a fifth switch SW5, a twelfth resistor R12, a fourteenth resistor R14, a fifteenth resistor R15, a sixteenth resistor R16, a second transistor Q2, a third transistor Q3, and N sets of parallel ultrasonic driving units; wherein one end of the fifth switch SW5 is connected to pin 10 of the microcontroller IC1 in the ultrasonic signal generator, and the other end is grounded; one end of the twelfth resistor R12 is connected to pin 1 of the microcontroller IC1 in the ultrasonic signal generator, and the other end is connected to the base of the second transistor Q2; the second transistor Q2... The emitter is grounded; one end of the fourteenth resistor R14 is connected to the power supply circuit, and the other end is connected to the collector of the second transistor Q2 and one end of the fifteenth resistor R15, and the other end of the fifteenth resistor R15 is connected to the base of the third transistor Q3; the emitter of the third transistor Q3 is grounded, and the collector of the third transistor Q3 is connected to one end of the sixteenth resistor R16 and the input terminal of the N sets of ultrasonic drive units; the other end of the sixteenth resistor R16 is connected to the power supply circuit; the opening or closing of the fifth switch SW5 is controlled by the ultrasonic switch 16 in the control panel 11.
[0072] The N parallel ultrasonic driving units have identical structures. Each ultrasonic driving unit includes: a resistor, a transistor, a Zener diode, a high-frequency transformer, and two ultrasonic transmitting devices. One end of the resistor is connected to the collector of the third transistor Q3, and the other end is connected to the base of the transistor. The emitter of the transistor is grounded, and the collector of the transistor is connected to one end of the input side of the high-frequency transformer. The other end of the input side of the high-frequency transformer is connected to the power supply circuit. The two ends of the output side of the high-frequency transformer are connected in series with the two ultrasonic transmitting devices to form a loop, and one end of the output side of the high-frequency transformer is grounded. One end of the Zener diode is connected to the emitter of the transistor, and the other end is connected to the collector of the transistor.
[0073] The ultrasonic transmitting device is an ultrasonic transmitting device with a working frequency range of 20KHz-35KHz.
[0074] In this embodiment, such as Figure 4 As shown, of the N parallel ultrasonic drive units, only one group is shown in the diagram due to their identical circuitry; the rest are omitted. Q1-QN are all transistors, B1-BN are all high-frequency transformers, ZD1-ZDN are all Zener diodes, and DY1-DYN represent the omitted circuit components. The ultrasonic transmitter in the control circuit corresponds to ultrasonic head 4 in the transmitter panel.
[0075] The following describes a single use of this utility model in conjunction with the accompanying drawings.
[0076] like Figures 1-2As shown, when in use, this utility model is in standby mode when the power switch 12 is turned on. Pressing the ultrasonic switch 16 activates all ultrasonic heads 4 in the multi-functional ultrasonic animal repeller, emitting ultrasonic beams with a frequency range of 20kHz-35kHz. In emergency situations involving aggressive animals such as vicious dogs or wild beasts, manually open the spray valve of the animal repeller spray canister to spray the repeller spray to drive away the target. The sprayed repeller spray is in the form of a directional jet or directional mist. Pressing the LED light switch 14 activates all high-brightness LEDs in the multi-functional ultrasonic animal repeller, emitting light with an intensity of no less than 500 millicandela (mcd). The device emits a laser line to temporarily blind the target; pressing the outline laser switch 15 activates all the outline laser heads in the multi-functional ultrasonic animal deterrent to emit outline laser lines to indicate the outline of the main area of action of the ultrasonic emission; pressing the buzzer switch 13 activates the high-decibel buzzer in the multi-functional ultrasonic animal deterrent to scare animals, warn others, and call for support; when it is necessary to carry out the capture task of the target, the capture net gun can be fired by manually controlling it. Through the combined use of the above functions, it can effectively drive away animals and prevent animals from injuring people.
[0077] It should be noted that this utility model is only available for purchase and use by units with actual needs and relevant equipment usage qualifications, and is not supported for personal ownership.
[0078] Finally, it should be noted that the solutions in the embodiments are not intended to limit the scope of patent protection of this utility model. All equivalent implementations or modifications that do not depart from the scope of this utility model are included in the patent scope of this case.
Claims
1. A multifunctional ultrasonic animal deterrent device, characterized in that, The animal deterrent device includes: a transmitter panel, a control panel, a control circuit, and a power supply module; wherein the transmitter panel and the control panel are connected to the control circuit. The transmitting panel is embedded with: multiple ultrasonic heads, 4 profiling laser heads, multiple high-brightness LEDs and 1 buzzer; wherein the multiple ultrasonic heads are regularly arranged in an ultrasonic head array within the transmitting panel; the profiling laser heads are respectively installed at the four corners of the ultrasonic head array; the multiple high-brightness LEDs and the buzzer are all installed within the transmitting panel. The control panel includes: a power switch, a buzzer switch, a high-brightness LED light switch, a marker laser switch, an ultrasonic switch, a charging port, a positive terminal, and a negative terminal. The control circuit is used to control the ultrasonic head to emit ultrasonic waves, the profiling laser head to emit lasers, the high-brightness LED to emit light, and the buzzer to emit an alarm. The power supply module of the animal deterrent device uses a built-in battery or an external power source to power the transmitter panel, control panel, and control circuit.
2. The multifunctional ultrasonic animal deterrent device according to claim 1, characterized in that, The animal deterrent device also includes a housing, and the launch panel and control panel are both mounted on the housing. The side of the housing containing the launch panel is made of ABS material, while the rest of the housing, excluding the side containing the launch panel, is made of aluminum alloy.
3. The multifunctional ultrasonic animal repeller according to claim 1, characterized in that, The control circuit includes: a power supply circuit, a power indicator circuit, an LED light circuit, an alarm circuit, a laser profiling circuit, and an ultrasonic circuit; wherein one end of the power supply circuit is grounded, and the other end of the power supply circuit is connected to one end of the power indicator circuit, the LED light circuit, the alarm circuit, the laser profiling circuit, and the ultrasonic circuit, respectively, and the other ends of the power indicator circuit, the LED light circuit, the alarm circuit, the laser profiling circuit, and the ultrasonic circuit are all grounded.
4. The multifunctional ultrasonic animal repellent according to claim 3, characterized in that, The power circuit includes a power supply BATTERY1 connected in series and a first switch SW1; wherein the power supply BATTERY1 is connected to the power supply module for charging through the charging port SO1; the opening or closing of the first switch SW1 is controlled by the power switch in the control panel. The power indicator circuit includes a fifth resistor R5 connected in series and a first light-emitting diode LED1.
5. The multifunctional ultrasonic animal deterrent device according to claim 4, characterized in that, The LED light circuit includes: an LED light control chip IC3, a third switch SW3, n resistors, and n light-emitting diodes (LEDs). The n resistors and n LEDs are connected in series to form n LED driver circuits. These n LED driver circuits are then connected in parallel, with one end grounded and the other end connected to the output terminal of the LED light control chip IC3. The input terminal of the LED light control chip IC3 is connected to one end of the third switch SW3. The ground terminal of the LED light control chip IC3 is grounded. The other end of the third switch SW3 is connected to a power supply circuit. The opening and closing of the third switch SW3 is controlled by an LED light switch on the control panel. The alarm circuit includes: an alarm sound control module M2, a second switch SW2, and a buzzer F1; wherein one end of the alarm sound control module M2 is grounded, and the other end is connected to one end of the second switch SW2, and the alarm sound control module M2 is connected to the buzzer F1; the other end of the second switch SW2 is connected to the power supply circuit; the opening or closing of the second switch SW2 is controlled by the buzzer switch in the control panel. The laser profiling circuit includes: a fourth switch SW4, four resistors, and four laser heads; wherein the four resistors and four laser heads are connected in series one-to-one to form four sets of laser diode driving circuits, and the four sets of laser diode driving circuits are connected in parallel with one end grounded; the other end is connected to one end of the fourth switch SW4, and the other end of the fourth switch SW4 is connected to the power supply circuit; the opening or closing of the fourth switch SW4 is controlled by the profiling laser switch in the control panel.
6. The multifunctional ultrasonic animal deterrent device according to claim 5, characterized in that, The ultrasonic circuit includes: a 5V voltage regulator integrated circuit, an ultrasonic emission indicator circuit, an ultrasonic signal generator, a filter circuit for the ultrasonic waveform generator, a power supply filter circuit, and an ultrasonic drive circuit. The input terminal of the 5V voltage regulator integrated circuit is connected to the power supply circuit, the output terminal is connected to the input terminal of the filter circuit for the ultrasonic waveform generator, and the ground terminal is grounded. The input terminal of the ultrasonic emission indicator circuit is connected to the power supply circuit, the output terminal is connected to the input terminal of the ultrasonic signal generator, and the ground terminal is grounded. The input terminal of the filter circuit for the ultrasonic waveform generator is also connected to the output terminal of the ultrasonic signal generator, and the output terminal of the filter circuit for the ultrasonic waveform generator is connected to the ultrasonic signal generator, with the ground terminal grounded. One end of the power supply filter circuit is connected to the power supply circuit, and the other end is grounded. The input terminal of the ultrasonic drive circuit is connected to the output terminal of the ultrasonic signal generator, and the ground terminal of the ultrasonic drive circuit is grounded. The ultrasonic emission indicator circuit includes: a tenth resistor R10, an eleventh resistor R11, a first transistor Q1, and a sixth light-emitting diode LED6; wherein one end of the tenth resistor R10 is connected to a power supply circuit, and the other end is connected in series with the sixth light-emitting diode LED6 and then connected to the collector of the first transistor Q1; the emitter of the first transistor Q1 is grounded; the base of the first transistor Q1 is connected to one end of the eleventh resistor R11; and the other end of the eleventh resistor R11 is connected to an ultrasonic signal generator. The filtering circuit of the ultrasonic waveform generator includes: a conjugate filter coil COIL1, a first capacitor C1, and a second capacitor C2; wherein the power supply side of the conjugate filter coil COIL1 is connected to a 5V voltage regulator integrated circuit and pin 4 of the microcontroller IC1 in the ultrasonic signal generator; the ground side of the conjugate filter coil COIL1 is connected to pin 11 of the microcontroller IC1 in the ultrasonic signal generator and ground; the first capacitor C1 is connected in parallel to the power supply side of the conjugate filter coil COIL1, and one end of the first capacitor C1 is connected to the 5V voltage regulator integrated circuit, and the other end is grounded; the second capacitor C2 is connected between the end of the conjugate filter coil COIL1 connected to pin 4 of the microcontroller IC1 and the end connected to pin 11 of the microcontroller IC1; The power supply filtering circuit includes a fifth capacitor C5 and a sixth capacitor C6 connected in parallel; wherein one end of the fifth capacitor C5 and the sixth capacitor C6 connected in parallel is connected to the power supply circuit, and the other end is grounded. The ultrasonic driving circuit includes: a fifth switch SW5, a twelfth resistor R12, a fourteenth resistor R14, a fifteenth resistor R15, a sixteenth resistor R16, a second transistor Q2, a third transistor Q3, and N sets of parallel ultrasonic driving units; wherein one end of the fifth switch SW5 is connected to pin 10 of the microcontroller IC1 in the ultrasonic signal generator, and the other end is grounded; one end of the twelfth resistor R12 is connected to pin 1 of the microcontroller IC1 in the ultrasonic signal generator, and the other end is connected to the base of the second transistor Q2; the second transistor Q2... The emitter of the transistor is grounded; one end of the fourteenth resistor R14 is connected to the power supply circuit, and the other end is connected to the collector of the second transistor Q2 and one end of the fifteenth resistor R15, and the other end of the fifteenth resistor R15 is connected to the base of the third transistor Q3; the emitter of the third transistor Q3 is grounded, and the collector of the third transistor Q3 is connected to one end of the sixteenth resistor R16 and the input terminal of the N sets of ultrasonic drive units; the other end of the sixteenth resistor R16 is connected to the power supply circuit; the opening or closing of the fifth switch SW5 is controlled by the ultrasonic switch in the control panel.
7. The multifunctional ultrasonic animal deterrent device according to claim 6, characterized in that, The N parallel ultrasonic driving units have identical structures. Each ultrasonic driving unit includes: a resistor, a transistor, a Zener diode, a high-frequency transformer, and two ultrasonic transmitting devices. One end of the resistor is connected to the collector of the third transistor Q3, and the other end is connected to the base of the transistor. The emitter of the transistor is grounded, and the collector of the transistor is connected to one end of the input side of the high-frequency transformer. The other end of the input side of the high-frequency transformer is connected to the power supply circuit. The two ends of the output side of the high-frequency transformer are connected in series with the two ultrasonic transmitting devices to form a loop, and one end of the output side of the high-frequency transformer is grounded. One end of the Zener diode is connected to the emitter of the transistor, and the other end is connected to the collector of the transistor.
8. The multifunctional ultrasonic animal deterrent device according to claim 7, characterized in that, The ultrasonic transmitting device is an ultrasonic transmitting device with a working frequency range of 20KHz-35KHz.
9. A multifunctional ultrasonic animal deterrent device according to claim 2, characterized in that, The animal deterrent device further includes: a handle and four legs; wherein the handle is fixedly mounted on the upper surface of the outer casing; and the four legs are respectively mounted on the four corners of the bottom of the outer casing.
10. A multifunctional ultrasonic animal deterrent according to claim 9, characterized in that, The animal deterrent device further includes: a spray fixing structure and a net gun fixing structure; wherein the spray fixing structure and the net gun fixing structure are mounted on the outer shell; The animal repellent spray fixing structure adopts a fixed snap-on type to fix the spray can of the animal repellent spray; The animal trap gun fixing structure adopts a rotatable snap-on fixing mechanism.