Phone

    00852-6915 1330

MC14490 Hex Bounce Eliminator: Datasheet, Circuit, Arduino [Video&FAQ]

  • Contents

Product Overview

The MC14490 is constructed with complementary MOS enhancement mode devices, and is used for the elimination of extraneous level changes that result when interfacing with mechanical contacts. The digital contact bounce eliminator circuit takes an input signal from a bouncing contact and generates a clean digital signal four clock periods after the input has stabilized. The bounce eliminator circuit will remove bounce on both the "make" and the "break" of a contact closure. The clock for operation of the MC14490 is derived from an internal R-C oscillator which requires only an external capacitor to adjust for the desired operating frequency (bounce delay).

 

This blog will introduce MC14490 systematically from its features, pinout to its specifications, applications, also including MC14490 datasheet and so much more.

 

Catalog

Product Overview

Related Video Introduction

MC14490 Features

MC14490 Pinout

MC14490 Circuit Diagram

MC14490 Block Diagram

MC14490 Package

MC14490 Specification

MC14490 Manufacturer

MC14490 Datasheet

Using Warnings

MC14490 FAQ

 

 

Video: MC14490 Hex Contact Bounce Eliminator (e.g. Two Rotary Encoders & Arduino)

 

MC14490 Video Description:

Debouncing switches is always a hassle, but this chip makes it easy.

 

If you watched my video about rotary encoders (link below) you know that I’m not a fan of software debouncing. The method I showed there is nice and easy, but if you’re debouncing a lot of switches it crowds your circuit board

 

Enter the MC14490: Just add a capacitor and that chip will debounce six contacts at once. As with RC debouncing you’ll need to now the timescale/frequency of your bounces/signals to come up with a proper value for that capacitor.

 

MC14490 Features

  • Diode Protection on All Inputs
  • Six Debouncers Per Package
  • Internal Pullups on All Data Inputs
  • Can Be Used as a Digital Integrator, System Synchronizer, or Delay Line
  • Internal Oscillator (R−C), or External Clock Source
  • TTL Compatible Data Inputs/Outputs
  • Single Line Input, Debounces Both “Make” and “Break” Contacts
  • Does Not Require “Form C” (Single Pole Double Throw) Input Signal
  • Cascadable for Longer Time Delays
  • Schmitt Trigger on Clock Input (Pin 7)
  • Supply Voltage Range = 3.0 V to 18 V
  • Chip Complexity: 546 FETs or 136.5 Equivalent Gates
  • These Devices are Pb−Free and are RoHS Compliant
  • NLV Prefix for Automotive and Other Applications RequiringUnique Site and Control Change Requirements; AEC−Q100Qualified and PPAP Capable

 

MC14490 Pinout

The following figure is the diagram of MC14490 pinout.

 

MC14490 Pinout

MC14490 Pinout

 

MC14490 Circuit Diagram

The following are the circuit diagrams of MC14490.

 

Typical “Form A” Contact Debounce Circuit

Typical “Form A” Contact Debounce Circuit

 

Typical Single Oscillator Debounce System

Typical Single Oscillator Debounce System

 

Fast Attack/Slow Release Circuit

Fast Attack/Slow Release Circuit

 

Latched Output Circuit

Latched Output Circuit

 

MC14490 Block Diagram

The following figure shows the block diagram of MC14490.

 

MC14490 Block Diagram

MC14490 Block Diagram

 

MC14490 Package

The following diagram shows the MC14490 package.

 

MC14490 Package

MC14490 Package

MC14490 Package

 

MC14490 Specification

Parameter Symbol Value
DC Supply Voltage Range VDD −0.5 to +18.0
Input or Output Voltage Range (DC or Transient) Vin, Vout −0.5 to VDD + 0.5
Input Current (DC or Transient) per Pin Iin ±10
Power Dissipation, per Package PD 500
Ambient Temperature Range TA −55 to +125
Storage Temperature Range Tstg −65 to +150
Lead Temperature (8−Second Soldering) TL 260

 

MC14490 Manufacturer

ON Semiconductor is a Fortune 500 company driving energy efficient innovations, empowering customers to reduce global energy use. The company is a leading supplier of semiconductor-based solutions, offering a comprehensive portfolio of energy efficient power and signal management, logic, standard and custom devices. The company’s products help engineers solve their unique design challenges in automotive, communications, computing, consumer, industrial, medical and military/aerospace applications.

 

MC14490 Datasheet

You can download MC14490 datasheet from the link given below:

MC14490 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

MC14490 FAQ

How does the mc14490 bounce eliminator work?

The bounce eliminator circuit will remove bounce on both the "make" and the "break" of a contact closure. The clock for operation of the MC14490 is derived from an internal R-C oscillator which requires only an external capacitor to adjust for the desired operating frequency (bounce delay).

 

How does a bounce eliminator circuit work?

The digital contact bounce eliminator circuit takes an input signal from a bouncing contact and generates a clean digital signal four clock periods after the input has stabilized. The bounce eliminator circuit will remove bounce on both the "make" and the "break" of a contact closure.

 

What is an optical air eliminator used for?

It is ideal for eliminating air from refined fuels applications where product is metered into storage from a truck-mounted pump. The optical sensor provides the same functionality of the dual head mechanical air eliminator in a single head design.

PCB Symbol, Footprint & 3D Model

 

Get a quote

Quantity:

Click To Quote

Kynix

Kynix was founded in 2008, specializing in the electronic components distribution business. We adhere to honesty and ethics as our business philosophy and have gradually established an excellent reputation and credibility in our international business. With the accurate quotation, excellent credit, reasonable price, reliable quality, fast delivery, and authentic service, we have won the praise of the majority of customers.

Join our mailing list!

Be the first to know about new products, special offers, and more.

Leave a Reply

We'd love to hear from you! Feel free to share your thoughts and comments below. Rest assured, your email address will remain private.

Name *
Email *
Captcha *
Rating:

Kynix

  • How to purchase

  • Order
  • Search & Inquiry
  • Shipping & Tracking
  • Payment Methods
  • Contact Us

  • Tel: 00852-6915 1330
  • Email: info@kynix.com
  • Follow Us

authentication

Kynix

© 2008-2026 kynix.com all rights reserved.