Computer Networks 3-3: Multiplexing
Lecture - 11a Multiplexing
Multiplexing (for beginners) - Ec-Projects
multiplexing
محاضرة إتصالات - م. أمير عزت Multiplexing
21. Multiplexing
Hak5 - Time Division Multiplexing
Lecture -5 Multiplexing (Sharing a Medium)
4 Segment LED Clock - Multiplexing slowed down
8x8x8 RGB LED CUBE - How it Really Works! Multiplexing and Bit Angle Modulation
FOA Lecture 31 Wavelength Division Multiplexing (WDM)
Lecture - 11B Multiplexing
How to Multiplex an LED Grid...
Lesson 27 - VHDL Example 14: Multiplexing 7-Segment Displays
Computer Networks 3-3: Multiplexing
Lecture - 11a Multiplexing
Multiplexing (for beginners) - Ec-Projects
multiplexing
محاضرة إتصالات - م. أمير عزت Multiplexing
21. Multiplexing
Hak5 - Time Division Multiplexing
Lecture -5 Multiplexing (Sharing a Medium)
4 Segment LED Clock - Multiplexing slowed down
8x8x8 RGB LED CUBE - How it Really Works! Multiplexing and Bit Angle Modulation
FOA Lecture 31 Wavelength Division Multiplexing (WDM)
Lecture - 11B Multiplexing
How to Multiplex an LED Grid...
Lesson 27 - VHDL Example 14: Multiplexing 7-Segment Displays
7 Segment Display Multiplexing Arduino with CODE
How to multiplex with LEDs
10 6 Statistical Multiplexing & Resource Pooling 4 31
Lecture on Multiplexing & Demultiplexing
SCTE Tech Tip: Orthogonal Frequency Division Multiplexing (OFDM)
Alan Wilmer - Orbital Angular Momentum Multiplexing
LED cube multiplexing demo
Nicholas Fontaine - Space Division Multiplexing
Multiplexing Arduino Inputs
Lecture - 12 Multiplexing Applications - I
Multiplexing with SPDY and HTTP/2
Hak5 - Multiplexing screens, Nexpose at RSA, Packet Sniffers and File Automation
Linux 程式設計 Multiplexing I O
Wavelength-division multiplexing
Lecture - 13 Multiplexing Applications - II
22. Multiplexing (Cont..)
Stream Multiplexing in Go by Alan Shreve
04 Feb 2013: Multiplexing and Context Switching
Mod-01 Lec-26 Wavelength Division Multiplexed Systems
Multiplexing with 14-segment display - Let's Make It - Episode 29
23. Multiplexing Cont.. and Signal Design
Spatial Multiplexing with MMSE Receivers
Quantitative and qualitative Immunoblotting/multiplexing
PIC 18F4550 LED Cube 3x3x3 mit Multiplexing
Digital Voice & Picture Communication Lecture 37 H 323 Multiplexing Header Compression and BW
Digital Voice & Picture Communication Lecture 36 Multiplexing Schemes
DIGITAL TRANSMISSION AND MULTIPLEXING AND T CARRIERS
Terminal Multiplexing in VM Maestro
Cooperation Versus Multiplexing Multicast Scheduling Algorithms for OFDMA Relay Networks
LED orb: mechanical multiplexing
LED Orb: mechanical multiplexing 2
20140922-eeg371-multiplexing
High Rate, Low-Latency Multi-Touch Sensing with Simultaneous Orthogonal Multiplexing
The Beauty of Multiplexing
Address Data Bus Multiplexing and Demultiplexing - 2015
Computer Engineering Video Tutorial 5 Multiplexing Sharing a Medium
Computer Engineering Video Tutorial 12 Multiplexing Applications I
Computer Engineering Video Tutorial 11B Multiplexing
multiplexing final
Memory Multiplexing in Operating system | Memory Management Unit
Live Streaming with Receiver based Peer division Multiplexing
02 01 07 What is Dense Wave Division Multiplexing (DWDM)
multiplexing 7 seg. display
Minecraft Video tutorials Minecraft - Multiplexing Piston Door
In telecommunications and computer networks, multiplexing (also known as muxing) is a method by which multiple analog message signals or digital data streams are combined into one signal over a shared medium. The aim is to share an expensive resource. For example, in telecommunications, several telephone calls may be carried using one wire. Multiplexing originated in telegraphy, and is now widely applied in communications.
The multiplexed signal is transmitted over a communication channel, which may be a physical transmission medium. The multiplexing divides the capacity of the high-level communication channel into several low-level logical channels, one for each message signal or data stream to be transferred. A reverse process, known as demultiplexing, can extract the original channels on the receiver side.
A device that performs the multiplexing is called a multiplexer (MUX), and a device that performs the reverse process is called a demultiplexer (DEMUX).
Inverse multiplexing (IMUX) has the opposite aim as multiplexing, namely to break one data stream into several streams, transfer them simultaneously over several communication channels, and recreate the original data stream.