MOD 60 using 7490

EE Wave
24 Feb 202109:00

Summary

TLDRThis video tutorial explains how to design a Mode 60 counter circuit using the 7490 integrated circuit and a 555 timer. It details the connections required for the 7490 to count from 00 to 59 in Binary Coded Decimal (BCD) format, with optional output display configurations using LEDs or a 7447/7448 display driver. The presenter guides viewers through the circuit assembly on a breadboard, demonstrating the function of each component and how to generate clock pulses with a push button. The summary highlights the practical steps needed for building the counter and encourages viewers to engage with the content.

Takeaways

  • 😀 The mode 60 counter is designed to count from 00 to 59 using the 7490 binary-coded decimal (BCD) counter IC.
  • đŸ•°ïž The 555 timer IC is configured in astable mode to generate continuous clock pulses for the counter.
  • 🔌 The clock input for the 7490 is connected to pin 14, receiving pulses from the timer.
  • 💡 Output pins of the 7490 (pins 12, 9, 8, 11) represent BCD outputs A, B, C, and D, respectively.
  • 🔄 The counter resets to 00 after reaching 59, allowing continuous counting.
  • đŸ–„ïž LEDs can be used to visualize the counting process by connecting to the output pins of the 7490.
  • 🔘 A push button switch is used to manually trigger clock pulses, controlling the counting increment.
  • 📟 To integrate a display, use IC 7447 for common anode or IC 7448 for common cathode displays.
  • 🔗 The outputs from the 7490 are directly connected to the display driver IC for visual representation.
  • ⚡ The circuit includes proper power supply and grounding connections for stable operation.

Q & A

  • What is the purpose of the 7490 IC in the circuit?

    -The 7490 IC is used as a BCD counter, which counts from 00 to 59 in Binary Coded Decimal format.

  • How does the clock pulse affect the operation of the counter?

    -The clock pulse, generated by the 555 timer IC in astable mode, triggers the counter to increment its count each time the pulse is received.

  • What are the output pins of the 7490 IC and their corresponding labels?

    -The output pins of the 7490 IC are pin 12 (Output A), pin 9 (Output B), pin 8 (Output C), and pin 11 (Output D).

  • How is the 555 timer configured in this circuit?

    -The 555 timer is configured in astable mode to continuously generate clock pulses.

  • What additional components are needed to visualize the output count?

    -LEDs or a display IC, such as the 7447 for common anode displays or 7448 for common cathode displays, are needed to visualize the output count.

  • How does the push-button switch integrate into the circuit?

    -The push-button switch is connected to the clock input of the 555 timer, allowing the user to generate a clock pulse when pressed.

  • What happens when the counter reaches 59?

    -When the counter reaches 59, it resets to 00 and continues counting up again.

  • Why is it necessary to use current-limiting resistors with the display?

    -Current-limiting resistors are necessary to prevent excessive current from flowing through the display, which could damage it.

  • What are the benefits of using a BCD counter like the 7490?

    -Using a BCD counter simplifies the process of counting in decimal format and allows for easy integration with digital displays.

  • Can this circuit be adapted for counting beyond 59?

    -While this circuit is designed for counting from 00 to 59, modifications could be made to accommodate larger numbers, but that would require additional circuitry.

Outlines

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Mindmap

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Transcripts

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Étiquettes Connexes
ElectronicsCircuit Design7490 IC555 TimerBCD CountingDigital DisplayLED OutputEducational ToolAstable ModeTimer Circuits
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