Speedy Reminiscence Depiction Scheme Intended For Transmitter And Receiver Parts Of Processors

A. Saisudheer*
Research Scholar, Deportment of ECE, Chadalawada Ramanamma Engineering College, Tirupathi, India.
Periodicity:May - July'2013
DOI : https://doi.org/10.26634/jcs.2.3.2336

Abstract

Today's microprocessors have need to operate at very high IO speed to cater the ever increasing computation need, so characterizing these IO's in a quick efficient and accurate manner is needed for us. The paper involves studying Transmitter( T ) and Receiver ( Rr ) blocks of memory interface of CPU and develop methods to characterized these IO's, X suitable feedback to design is provided after analyzing the data and receiving with design. In this paper involves some analog analysis and design. Here it needs some software tool to implementation. This paper implements new method to increase the speed of the IO operations of the memory interface of CPU. This contain the usage of the NIDAQ6008 and analog design and the circuit design concepts and here it deals with the calculation of the Rterm, Pull-up, Pull-down resistors and Jitter and the de-embedding of the signal loss.

Keywords

Python, NI-Multisim, Relays, Bipolar Constant Current Sink

How to Cite this Article?

Saisudheer, A. (2013). Speedy Reminiscence Depiction Scheme Intended For Transmitter And Receiver Parts Of Processors. i-manager’s Journal on Communication Engineering and Systems, 2(3), 47-50. https://doi.org/10.26634/jcs.2.3.2336

References

[1]. Op Amp Applications Handbook by Analog Devices.
[2]. http://docs.python.org/2/reference/
[3]. http://electronicsbus.com/pullup-pulldown-resistorsguidelines-digital-system-board-design/
[4]. Paul Scherz. Practical Electronics for Inventors.
[5]. Andrew Sing. “Beginning Digital Electronics Through Projects”.
[6]. Kenneth B. Rexford, Peter R. Giuliani. “Electrical Control for Machines 6e”.
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[9]. Paul Scherz “Practical Electronics for Inventors 2/E”.
[10]. Ankur Agrawal. “Design of High Speed I/O Interfaces for High Performance Microprocessors”.
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