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Encoder in Digital Electronics | Working, Application and Logic Circuit of Encoder

Duration: 13:54Views: 2.6KLikes: 84Date Created: May, 2022

Channel: ALL ABOUT ELECTRONICS

Category: Science & Technology

Tags: encoder and decoder all about electronicsdecimal to bcd encoderwhat is encoder8 to 3 encoderworking of encoderencoder all about electronics4 to 2 encoderpriority encoderencoderdecoder and encoderall about electronics encoderall about electronicslogic circuit of encoderencoder in digital electronicslimitations of encoderapplications of binary encoderdigital electronics all about electronicsapplications of encoder

Description: In this video, the Binary Encoder circuit is explained in detail. This video explains the working, the applications, the logic circuit of the Encoder, and the limitations of the normal binary encoder. By watching this video, you will learn the following topics: 0:00 What is Encoder? 1:02 4 to 2 Encoder 2:38 8 to 3 Encoder (Octal to Binary Encoder) 4:40 Applications of Enocder 6:46 Decimal to BCD Encoder 9:01 Limitations of Encoder 11:43 Introduction to Priority Encoder The link for the other useful videos: 1) Decoder: youtu.be/a3wh7xV5PBU 2) Multiplexer: youtu.be/aQlF-9i3fAA 3) Digital Electronics (Playlist): bit.ly/31gBwMa What is Binary Encoder: The binary encoder is the combinational circuit which converts the input binary information into the compact binary code. The Encoder has N outputs and 2^N or fewer inputs. Its working is exactly opposite to the Decoder. For the normal binary encoder, it has been assumed that only one input is high at any given time. And depending on the particular high input, the. the Encoder generates the N-bit code at the output. Depending on the number of inputs and output we have different types of Encoders. 4 Line to 2 Line Encoder, 8 to 3 Encoder (Octal to Binary Encoder) are the few examples of the Binary Encoder. Limitations of Binary Encoder: 1) If more than one inputs are high then the output of the Binary Encoder is invalid. 2) When all inputs of the Encoder are zero, or when the first input of the Encoder is high then the output of the encoder is same. (All N output bits are 0). In other words, for two different input conditions, the output of the encoder is same. These two limitations can be eliminated using the priority encoder. This video will be helpful to all the students of science and engineering in understanding the binary encoder and its working and applications. #ALLABOUTELECTRONICS #Encoder #BinaryEncoder #DigitalElectronics Support the channel through a membership program: youtube.com/channel/UCBkOVp1Cqz4MR0LYR8vKpZg/join -------------------------------------------------------------------------------------------------- Follow my second channel: youtube.com/channel/UCGA2TO8ylVqFHpucwn_6Jlw Follow me on Facebook: facebook.com/ALLABOUTELECRONICS Follow me on Instagram: instagram.com/all_about.electronics -------------------------------------------------------------------------------------------------- Music Credit: bensound.com

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