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Showing posts with the label Electronic

WiFi Controlled Robotic Vehicle Electronic Project Abstract

             This project is a robot vehicle that can be controlled through any computer wirelessly using a WiFi link. It transmits real-time video to the controlling computer using the same link. The video transmitting camera mounted on it. It also has obstacle detection,temperature,sound and light sensitivity feature.           Usually robots are controlled through a laptop using an WiFi link which is subject to attenuation, noise and has a very limited range as well. This project features a robot that uses WiFi 802.11G standard for its control signals through TCP/IP protocol, which has flow control. This enables uninterrupted and reliable transmission of control signal to the robot vehicle. WiFi support high data rates which enables good quality uninterrupted video transmission from the robot to the computer. Image capturing is done by mounting an IP-camera over the Robotic Car. Obstacle detection is done...

Simple But Digital Electronic Lock

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This Electronic Circuit Project of simple but digital electronic Lock circuit. The digital lock shown below uses 4 common logic ICs to allow controlling a relay by entering a 4 digit number on a keypad. The first 4 outputs from the CD4017 decade counter (pins 3,2,4,7) are gated together with 4 digits from a keypad so that as the keys are depressed in the correct order, the counter will advance.  As each correct key is pressed, a low level appears at the output of the dual NAND gate producing a high level at the output of the 8 input NAND at pin 13. The momentary high level from pin 13 activates a one shot circuit which applies an approximate 80 millisecond positive going pulse to the clock line (pin 14) of the decade counter which advances it one count on the rising edge. A second monostable, one shot circuit is used to generate an approximate 40 millisecond positive going pulse which is applied to the common point of the keypad so that the appropriate NAND gate will see two logic...

Electronic digital lock circuit

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front * Map principles:   Activity:   If you want your house to be modern, mount it on lock!   I used it two years ago (perhaps twenty years still runs fine) There are many who intend to "crack" but without success. This is the principle of it vessels. When you have made in addition to the protection circuit howling whistle when pressing the wrong code, or does not allow detection code (to be introduced later) principle: CD IC 4017 is the output row count is 10, corresponding to the clock, then turn the output will be high.   we take advantage of this feature to give a high output back to input clock by hand coding phim.Khi new power circuit, IC is reset, output Q0 is high, this time if you press the number 2 the higher will be put into making the IC pin count clock to the output of Q2 is a high level, if you continue to press the number 0, then jump onto the high Q3 ... press the correct keys in turn will lead to Q6 high level to enable the circuit to unlock.  ...

Electronic Lock Circuit Diagram

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There are six (or more) push switches. To 'unlock' you must press all the correct ones at the same time, but not press any of the cancel switches. Pressing just one cancel switch will prevent the circuit unlocking. When the circuit unlocks it actually just turns on an LED for about one second, but it is intended to be adapted to turn on a relay which could be used to switch on another circuit. Please Note: This circuit just turns on an LED for about one second when the correct switches are pressed. It does not actually lock or unlock anything! Circuit diagram :   Simple Electronic Lock Circuit Diagram Stripboard Layout : Parts : resistors: 470, 100k ×2, 1M capacitors: 0.1μF, 1μF 16V radial on/off switch push-switch ×6 (or more) stripboard 12 rows × 25 holes red LED 555 timer IC 8-pin DIL socket for IC battery clip for 9V PP3   A kit for this project is available from RSH Electronics: www.kpsec.freeuk.com http://streampowers.blogspot.com/2012/06/simple-electronic-lock.html

WiFi Controlled Robotic Vehicle Electronic Project Abstract

             This project is a robot vehicle that can be controlled through any computer wirelessly using a WiFi link. It transmits real-time video to the controlling computer using the same link. The video transmitting camera mounted on it. It also has obstacle detection,temperature,sound and light sensitivity feature.           Usually robots are controlled through a laptop using an WiFi link which is subject to attenuation, noise and has a very limited range as well. This project features a robot that uses WiFi 802.11G standard for its control signals through TCP/IP protocol, which has flow control. This enables uninterrupted and reliable transmission of control signal to the robot vehicle. WiFi support high data rates which enables good quality uninterrupted video transmission from the robot to the computer. Image capturing is done by mounting an IP-camera over the Robotic Car. Obstacle detection is done...

Electronic Alarm Project of Piezo with 555 Timer

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This is a very simple Electronic Circuit Project of piezo alarm circuit. Piezo alarm which will generate a sound around 110dB can be designed using this diagram. This Piezo alarm siren circuit diagram use some common components like 555 timer ic, you can use two 555 timer circuits or one 556 circuit. Electronic Alarm Project of Piezo with 555 Timer Circuit Diagram: This Piezo alarm siren circuit project use two piezo sounders with high efficiency and can be powered from a wide input voltage, between 5 and 15 volts. This circuit is very easy to build, maybe you will have a little trouble with the T1 and T2 auto-transformers. Both auto-transformers used in this project are the same type and require between pin 1and 2 1500 turns of 44 SWG wire and 220 turns between 2 an 3 using 40 SWgG wire. In this circuit the IC1:B closest to the piezo elements is set to oscillate around their resonant frequency. The frequency is then varied via input pin 11 from the other 555, IC1:A. This modulating in...

Electronic Simple Project For Two Transistor AM Radio Receiver

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Here is simple Electronic Circuit Project of two transistor AM radio receiver circuit. This two transistor AM radio circuit is also called “mini-radio”. It uses only 2 transistors and few passive components which makes is very easy to be constructed. Although the circuit is very simple, it functions very well without external antenna or ground connection. The transistor T1 works as a feedback regulated HF-amplifier and function as demodulator at the same time. The sensitivity of the receiver is dependent on the amount of feedback and can be adjusted by P1. Two Transistor AM Radio Receiver Circuit Diagram: The demodulated signal comes out from the collector of T1. The signal is then filtered by C3 so that only the audio signal will be amplified by T2. The amplified signal is then delivered to a high impedance “earphone”. The coil is 65 turns AM antenna wire around a 10 cm long x 10 mm diameter ferrite rod. The tap is at the fifth turn of the coil counting from its ground end. The coil ...

Simple Electronic Candle Circuit

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This is a simple hobby project and exhibits all the properties of a conventional wax type candle. Here the LED is used in place of the candle flame, which illuminates as soon as the mains power fails and shuts off automatically when the power is restored. So it also performs the function of an emergency lamp. The connected battery is used for powering the candle”light and it is charged continuously when the unit is not being used and powered through the mains supply. An interesting “puff off” feature is also included so tatthe “candle” light may be switched OFF whenever desired through a puff of airinto the attached mic which acts as the air vibration sensor.