Description: Electrical pulses are generated by the output of the first base circuit pin and sent through the R6 piezoelectric speaker, which converts the electrical pulses into ultrasonic waves. The circuit operates on a simple sweep principle, utilizing the transformer’s secondary voltage AC signal to modulate the frequency using a 555 timer circuit. This modulation achieves a frequency range of 32 kHz to 62 kHz. According to external sources, this device can effectively repel rats, cockroaches, and fleas within an area of up to 1,600 square feet. When the device is placed in a room and powered on, it operates continuously, leading to a gradual decrease in the presence of these pests over time, potentially eliminating them within three months. In larger areas, multiple devices can be employed to enhance effectiveness.
The circuit is designed to generate high-frequency ultrasonic waves that target the auditory systems of common household pests. The piezoelectric speaker, designated as BLD, is crucial in converting the electrical signal from the circuit into sound waves that are inaudible to humans but disruptive to pests. The output from the first base circuit pin is critical; it initiates the pulse generation that drives the speaker.
The modulation circuit is built around a 555 timer, configured in astable mode, allowing it to produce a continuous pulse train. The frequency of the output signal can be adjusted by varying the resistance and capacitance in the circuit, enabling a range of frequencies from 32 kHz to 62 kHz. This frequency modulation is essential for effectively disrupting the behavior of pests, as different species may respond to different frequencies.
The design also incorporates a transformer to step up the voltage of the AC signal from the power supply, ensuring that the piezoelectric speaker receives sufficient power to produce the desired ultrasonic output. The use of a transformer not only amplifies the signal but also isolates the circuit from the AC mains, enhancing safety and reliability.
The overall effectiveness of the device in pest control relies on its ability to cover a substantial area. With a range of up to 1,600 square feet, it is suitable for various indoor environments. The continuous operation of the device is designed to create an uncomfortable environment for pests, leading to their gradual disappearance. In larger spaces, deploying multiple units can ensure comprehensive coverage and improve results.
In conclusion, this ultrasonic pest repeller circuit effectively utilizes electrical pulses and piezoelectric technology to create a hostile environment for common household pests, leveraging frequency modulation to enhance its efficacy across a wide area.Electrical pulses generated by the first base circuit pin output, and then sent through R6 piezoelectric speaker BLD, switched to the electric pulse ultrasonic waves to space r adiation. Sweep principle of the circuit is very simple, use the transformer secondary voltage AC signal to the modulation circuit 555 feet, to reach the purpose of changing the pulse frequency, the frequency range of 32kHz ~ 62kHz. According to foreign information described, the device can use more, you can get rid of rats, cockroaches, fleas, the effective area of up to 1 6rr12.
As long as the device is placed in the room, turned on the power, continuous working, rats, cockroaches, fleas will decrease with time, can be reached within three months, get rid of the above pests purpose indoor mouse will not appear, cockroaches and fleas. If the housing area is large, can put a few in the room can be,
The alarm detector circuit operates differently from the Ultrasonic Alarm (1). In Ultrasonic Alarm (1), an alarm output is triggered by the detection of a reflected wave from an object during the setup time. Conversely, in this circuit, an alarm...
This circuit has an automatic switch on for the rear gear, a LED bar graph display, and an audible beep on the last LED. It features a "good old" design style with no microcontrollers. Based on an ultrasonic amplifier from...
This ultrasonic anemometer is designed for the two-dimensional measurement of horizontal wind speed components and wind direction, as well as virtual temperature. Due to its high measurement rate, the device effectively captures gusts and peak values without delay. The accuracy...
By utilizing a 556 dual timer, with IC1A functioning as a waveshaper and IC1B as a pulse generator, a pulse width range of 10:1 can be achieved. This circuit can be triggered using a sine wave.
The circuit operates on the...
This circuit utilizes two NE555 timer IC devices to generate either pulsed or continuous ultrasonic signals. The values of CT for both pulse rate and ultrasonic frequencies can be calculated accordingly. SPKR refers to a small hi-fi tweeter.
The circuit design...
A piezoelectric detector (BZ1) is utilized in this circuit to sense variations in air pressure. BZ1 generates a voltage that is amplified by U1A and U1B. The frequency response is restricted to low frequencies. The signal is rectified by diodes...
This is a complete design circuit for an ultrasonic transceiver utilized in various pulse/echo-ranging applications. The circuit features the LM1812, which transmits a burst of oscillations through transducer X1. Subsequently, the same transducer listens for a return echo. If an...
The medical ultrasonic atomizer circuit consists of a power supply circuit, a low side liquid level protection control circuit, an ultrasonic oscillator, and a fan drive circuit, as depicted in figure 9-112. The power supply circuit includes a power supply...
Some ultrasonic range finders for a project. Most commercial sensors like Parallax's PING sensor and similar products are quite expensive, especially when multiple units are needed. Therefore, a decision was made to build the sensor independently. The theory behind ultrasonic...
We use cookies to enhance your experience, analyze traffic, and (if you allow) serve personalized ads.
By clicking Accept All, you agree to our use of cookies.
Learn more