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CD4022 DIP 4-Bit Binary Up/Down Counter IC

Availability:

3 in stock


The CD4022 DIP 4-Bit Binary Up/Down Counter is a versatile CMOS-based counter capable of counting from 0 to 15 in both up and down modes. It features a ripple carry output, asynchronous reset, and low power consumption, making it ideal for timing, frequency division, and event counting applications.

රු180.00

3 in stock

Product Description: CD4022 DIP 4-Bit Binary Up/Down Counter

The CD4022 DIP 4-Bit Binary Up/Down Counter is a high-performance, 4-bit binary counter IC that operates in both up and down counting modes. This CMOS-based counter is capable of counting from 0 to 15 (4-bit binary range), making it ideal for applications requiring simple counting or sequencing operations. The CD4022 can be easily controlled via external up/down and clock (CLK) inputs, allowing for precise and reliable counting in both directions.

The CD4022 IC uses a ripple-carry counting mechanism, where each stage is triggered by the carry-out of the previous stage. This makes the IC suitable for use in a variety of counting, timing, and frequency division applications. The counter also features an asynchronous reset input that resets the counter to zero, offering flexibility in control operations.

With its low power consumption, high noise immunity, and wide operating voltage range, the CD4022 is a versatile choice for embedded systems, control applications, and digital timing circuits.

Key Features:

  • 4-Bit Binary Counter: The CD4022 can count from 0 to 15 (4-bit), providing a compact solution for small-scale counting applications.
  • Up/Down Counting: The counter can operate in up or down mode, depending on the logic level of the Up/Down control input.
  • Ripple Carry Output: The counter provides a ripple carry output, enabling the cascading of multiple counters for larger counting ranges.
  • Clocked Operation: The counter increments or decrements on the rising edge of the clock signal, making it suitable for time-based operations.
  • Asynchronous Reset: Includes an asynchronous reset input to reset the counter to zero, independent of the clock.
  • Low Power Consumption: Designed with CMOS technology, the IC ensures efficient power usage, making it ideal for low-power applications.
  • Wide Voltage Range: The CD4022 operates within a voltage range of 3V to 18V, offering design flexibility in different systems.
  • High Noise Immunity: The CMOS design ensures excellent noise resistance, making it reliable for use in electrically noisy environments.
  • DIP Package: The DIP (Dual In-line Package) is suitable for through-hole mounting, making the IC easy to integrate into breadboards and production PCBs.

Applications:

  • Frequency Division: The CD4022 is commonly used in frequency division circuits, where it divides an input frequency by a factor of up to 16 (for a 4-bit counter).
  • Up/Down Counting: Suitable for applications requiring bidirectional counting, such as digital clocks, event counters, or sequencers.
  • Digital Timers and Clocks: Used in digital timing circuits, generating time delays, or counting clock pulses to measure elapsed time.
  • Control Systems: Ideal for use in control systems, where counting or sequencing operations are required.
  • Frequency Modulation and Demodulation: Can be used in communication systems for modulating or demodulating signals.
  • Embedded Systems: Useful in embedded systems, such as microcontrollers or programmable logic devices, for generating sequences or controlling events.
  • Event Counters: In process control and instrumentation, the CD4022 can count events, pulses, or other digital signals.
  • State Machines: The counter can be used as a state machine or part of a finite state machine for sequential logic circuits.
  • Pulse Generation: The CD4022 is ideal for generating pulses or triggering other systems based on a clock or external signal.

Package Included:

1 x CD4022 DIP 4-Bit Binary Up/Down Counter

Please note that the product image is for illustrative purposes only. The actual product may vary slightly in appearance.

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