The remote control switch introduced in this article has the advantages of long remote control distance (greater than 30 meters), no direction restriction, wall penetration, stable operation, and small size. As long as this circuit is added to the power supply circuit of home appliances , the home appliances can have remote control function. The following introduces its circuit principle and production.
1. Circuit principle: 1. Remote control: The circuit is shown in Figure 1. The square wave signal generated by the multivibrator composed of T5, T6, etc. performs pulse modulation on the 240MH--260MH RF generated by the inductor three-point oscillator composed of T7, etc. The modulated RF signal is radiated into space by the printed antenna of the circuit board. The battery used in the remote control is an A23 type 12V battery , which can usually be used for half a year and is easy to replace. 2. Receiving circuit: The circuit is shown in Figure 2. The ultra-high frequency receiving and demodulating circuit is composed of T1, L1, C0, etc. Adjusting C0 can calibrate the receiving circuit and the remote control to the best position. Its demodulated pulse signal is sent to the op amp A1A through R5 and C5 for comparison and amplification. The output signal is sent to the op amp A1B for peak comparison after passing through the C7, D2, D3 voltage doubling circuit. When the peak pulse at the inverting end of pin 6 exceeds the threshold voltage set at pin 5, pin 7 outputs a low-level signal that triggers the reversal of the bistable circuit composed of T2, T3, etc., controls T4 to be turned on or off, and the relay to be closed or released. The integral delay effect of R11 and C8 can effectively suppress and eliminate the interference of various short-time spike pulses on the circuit (such as lightning, fluorescent lamp on and off, etc.).
2. Production and debugging: 1. The remote control circuit is simple and generally works without debugging. What needs to be paid attention to is the selection of the transmitting tube T7 and the inductor. The amplification factor of T7 can be about 80. 2. The receiving circuit components are selected according to the parameters in the figure. The amplification factor of T1 is about 90, and the relay is a 12V micro relay . There are no special requirements for other components. 3. When debugging, press the remote control switch, connect a high-impedance headset between the negative pole and the output pin of the op amp A1A, and then use a non-inductive screwdriver to turn C0 until the "beep" sound in the headset is the loudest. After debugging, install the transmitter and receiver in a suitable housing respectively. When using, connect the normally open contact of the receiving circuit relay in series in the power supply circuit of the electrical appliance to be controlled, then press the remote control, the relay is energized, and the electrical appliance works. Press the remote control again to release the relay, and the electrical appliance is powered off.
Previous article:Analog Switch Low Power Relay
Next article:CMOS integrated CD4013 touch switch
- Popular Resources
- Popular amplifiers
- High signal-to-noise ratio MEMS microphone drives artificial intelligence interaction
- Advantages of using a differential-to-single-ended RF amplifier in a transmit signal chain design
- ON Semiconductor CEO Appears at Munich Electronica Show and Launches Treo Platform
- ON Semiconductor Launches Industry-Leading Analog and Mixed-Signal Platform
- Analog Devices ADAQ7767-1 μModule DAQ Solution for Rapid Development of Precision Data Acquisition Systems Now Available at Mouser
- Domestic high-precision, high-speed ADC chips are on the rise
- Microcontrollers that combine Hi-Fi, intelligence and USB multi-channel features – ushering in a new era of digital audio
- Using capacitive PGA, Naxin Micro launches high-precision multi-channel 24/16-bit Δ-Σ ADC
- Fully Differential Amplifier Provides High Voltage, Low Noise Signals for Precision Data Acquisition Signal Chain
- Innolux's intelligent steer-by-wire solution makes cars smarter and safer
- 8051 MCU - Parity Check
- How to efficiently balance the sensitivity of tactile sensing interfaces
- What should I do if the servo motor shakes? What causes the servo motor to shake quickly?
- 【Brushless Motor】Analysis of three-phase BLDC motor and sharing of two popular development boards
- Midea Industrial Technology's subsidiaries Clou Electronics and Hekang New Energy jointly appeared at the Munich Battery Energy Storage Exhibition and Solar Energy Exhibition
- Guoxin Sichen | Application of ferroelectric memory PB85RS2MC in power battery management, with a capacity of 2M
- Analysis of common faults of frequency converter
- In a head-on competition with Qualcomm, what kind of cockpit products has Intel come up with?
- Dalian Rongke's all-vanadium liquid flow battery energy storage equipment industrialization project has entered the sprint stage before production
- Allegro MicroSystems Introduces Advanced Magnetic and Inductive Position Sensing Solutions at Electronica 2024
- Car key in the left hand, liveness detection radar in the right hand, UWB is imperative for cars!
- After a decade of rapid development, domestic CIS has entered the market
- Aegis Dagger Battery + Thor EM-i Super Hybrid, Geely New Energy has thrown out two "king bombs"
- A brief discussion on functional safety - fault, error, and failure
- In the smart car 2.0 cycle, these core industry chains are facing major opportunities!
- The United States and Japan are developing new batteries. CATL faces challenges? How should China's new energy battery industry respond?
- Murata launches high-precision 6-axis inertial sensor for automobiles
- Ford patents pre-charge alarm to help save costs and respond to emergencies
- New real-time microcontroller system from Texas Instruments enables smarter processing in automotive and industrial applications
- What should engineers do when they encounter electronic technical problems? MPSNow makes the problems disappear
- Small turtle data structure and algorithm courseware and source code
- [Anxinke ESP32 Voice Development Board Special ②] ESP32-Audio-Kit Development Board Adapts Baidu Dueros Routine to Implement...
- [Telink's new generation of low-power, high-performance, multi-protocol wireless kit B91 review] Zigbee program generation and compilation configuration
- Chatting about Saifang: Linux mainline officially supports Saifang JH7100 chip, how did you do it?
- [STM32F769Discovery development board trial] Build development environment & drive LCD screen to display dot matrix characters & touch screen driver
- For a three-pin package like this, if the components are not removed from the board, will the energy come out to be a diode or a transistor?
- Chuanglong TMS320C6748 development board——UART register introduction and program
- What is the use of C language? Is it easy to learn?
- Notice: "ST MEMS Sensor Technology Forum" is renamed "ST Sensor and Low Power Wireless Technology Forum"