Description: Up to eight players each have their own answer button to press, corresponding to the four Red Team and four Green Team LEDs on the master control board. As soon as the first contestant who thinks they know the answer presses the button, a loud tone sounds, all other contestants are locked out, and the contestant's indicator LED lights on the control board, making it clear who buzzed in first. The control board also features two selectable timeout periods, each adjustable from 3 to 15 seconds, setting specified time intervals in which the player must answer before the timeout tone sounds. Eight SCRs form the heart of the circuit. The anode of each SCR has a positive bias applied via an LED, while a negative bias is present on each cathode.
As soon as a contestant presses their switch button (S4 through S11), a positive bias is applied to the respective SCR gate. This bias latches the contestant's SCR on, which in turn lights up the appropriate LED on the master control board. Simultaneously, the activation of the SCR triggers the answer buzzer (BZ) and locks out all other contestants. The lockout occurs because relay K2 contacts operate to remove the availability of a bias voltage to the gates of the other SCRs. Additional circuitry includes a timer circuit and a timeout tone-generating circuit. The timer circuit consists of transistor Q1, capacitor C1, resistors R1 through R3, and trimmer resistors P1 and P2. Depending on the adjustment of the trimmer resistors and selection switch S3, a specific time period can be set. The timeout tone-generating circuit is composed of IC1, transistors Q2 and Q3, along with the associated resistors and capacitors. The duration of the tone can be adjusted using P3. Relay K1, which is activated by the timer circuit, serves to reset the entire unit for the next question.
The circuit is designed for a competitive answering system where multiple players can participate simultaneously. Each player's answer button is connected to a Solid State Relay (SCR), allowing for quick response times and efficient locking out of other players once a button is pressed. The master control board provides visual feedback through the LED indicators, ensuring clarity in identifying the first contestant to answer. The timeout feature is critical in maintaining the pace of the game, requiring players to respond within a set timeframe, thus adding an element of urgency and excitement.
The timer circuit utilizes a combination of transistors and capacitors to create a delay mechanism that determines how long a player has to respond after buzzing in. The adjustable trimmer resistors allow for customization of the timeout period to suit different game formats or player preferences. The tone-generating circuit is responsible for producing an audible signal when the time runs out, alerting players that they have exceeded their allotted response time.
Overall, this electronic schematic is a robust solution for interactive quiz games, ensuring fair play and enhancing the competitive experience through its well-designed locking mechanism and visual/audio feedback systems. Up to eight players each have their own answer button to press, corresponding to the four Red Team and four Green Team LEDs on the master control board. As soon as the first contestant who thinks that he knows the answer presses the button, a loud tone sounds, all other contestants are locked out, and the contestant`s indicator LED lights on the control board so that it`s obvious who buzzed in first.
The control board also features two selectable time out periodseach adjustable from 3 to 15 seconds, setting specified time intervals in which the player must answer before the time`s up! tone sounds. Eight SCRs form the heart of the circuit. The anode of each SCR has a positive (+) bias on it by way of an LED and a negative (-) bias on cach cathode.
As soon as a contestant depresses his or her switch button (S4 through Sll), a positive bias is applied to the respective SCR gate. That bias latches the contestant`s SCR on, which in turn lights up the appropriate LED on the master control board.
At the same time, the activity of the SCR latching on turns on the answer buzzer (BZ) and locks out all other contestants. The lockout occurs because relay K2 contacts operate to remove the availability of a bias voltage to the gate of the other SCRs.
The other circuitry consists of a timer circuit and a time`s-up tone-generating circuit. The timer circuit consists of transistor Ql, capacitor CI, resistors Rl through R3, and trimmer resistors PI and P2, Depending on the adjustment of the trimmer resistors and selection switch S3, a specific time period can be set. The lime`s-up tone-generating circuit is made up of IC1, transistors Q2 and Q3, and the associated resistors and capacitors.
The on time of the tone can be set by P3. Relay Kl, which is operated by the timer circuit, serves to reset the entire unit for the next question.
A 10-light LED bar graph is desired, where the LEDs light up sequentially until all are lit, then cycle back down until all are off. The LM3914 - Dot/Bar Display Driver is a simpler analog solution that operates in bar...
This battery allows the indicator to the car battery voltage monitor. The indicator has four LEDs which indicate power. The more LEDs, the higher the voltage. The last LED is a flashing LED. It comes on when the accuspaning limit...
The integrated circuit (IC) operates as an astable multivibrator that is controlled by an external transistor. S1A/B serves as the on-off toggle switch.
The astable multivibrator configuration is commonly utilized in various applications, including pulse generation, clock signals, and LED flashing...
The concept involves mounting a microphone on a stick with an LED and designing a circuit that responds to loud noises detected by the microphone input (such as blowing) to turn off the LED. The schematic is straightforward, powered by...
Up to 100 lights, LEDs, or optocoupler triac circuits can be sequentially activated by this circuit. One (U1) 4017 decodes and sequences 10 LEDs, whose common anode is returned through a second (U2) CD4017, which counts at one-tenth of the...
A front wheel with a built-in dynamo was purchased, providing a sine wave output of 30 Vpp at no load. Based on this, a simple power supply was designed using BD911 transistors, which are somewhat oversized for the application, but...
This circuit will flash a bright red LED (5000 mcd) as an attention-getting device or fake car alarm. Component values are not critical, and other transistors may be used. The flash duration is determined by R2 and C1 and is...
Should I cut the blue wire... or the red...? This is a very common phrase in many movies when the action hero has a bomb in front of him with little time left and he has to choose which wire...
This project involves constructing an energy-efficient broad spectrum LED lamp system designed for indoor reflective room lighting. The lamp provides a broad color spectrum that closely resembles natural sunlight compared to fluorescent bulbs and white-only LEDs. The light output is...
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