Generalised relations between P- and Y-matrices and their applications
The P-matrix is commonly used to analyse surface acoustic waves (SAW) elements such as the interdigital transducer (IDT) but, when some IDTs are connected through their acoustic ports, their frequency response could be calculated easily in terms of their admittances. Instead of the P-matrix, Y-matri...
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doaj-0122cf45a07a4396850e6bae4db804dc2021-04-02T09:26:35ZengWileyThe Journal of Engineering2051-33052014-10-0110.1049/joe.2014.0215JOE.2014.0215Generalised relations between P- and Y-matrices and their applicationsJaime Octavio Guerra-Pulido0Pablo Roberto Pérez-Alcázar1National Autonomous University of Mexico (UNAM)National Autonomous University of Mexico (UNAM)The P-matrix is commonly used to analyse surface acoustic waves (SAW) elements such as the interdigital transducer (IDT) but, when some IDTs are connected through their acoustic ports, their frequency response could be calculated easily in terms of their admittances. Instead of the P-matrix, Y-matrix also allows coupling of the system to another electric or electronic device. Here, the authors present a general method to obtain the Y-matrix (with size N × N) of a SAW device with N electrical terminals connected to N different voltage sources. This method considers the reflections from the edges or any other non-electrical elements that can cause reflections beyond P-matrices. In addition, it has been shown that when there are no reflections and there are two P-matrices, this method converges to well-known previous results. Furthermore, the authors present two cases that could be used to analyse a SAW device: the input admittance and the equivalent P-matrix for a SAW device when a Y-matrix is connected to the electrical port of the SAW device. Also, the authors have calculated the acoustic relations for two SAW devices connected through their electric ports. Furthermore, these methods are exemplified through their application to a SAW system composed of three different IDTs and to an IDT and an inductor connected to its electrical port.http://digital-library.theiet.org/content/journals/10.1049/joe.2014.0215surface acoustic wave devicesinterdigital transducersmatrix algebrafrequency responsegeneralised relationsP-matrixY-matrixsurface acoustic wave elementSAW elementsinterdigital transducerIDTacoustic portsfrequency responseelectric deviceelectronic deviceN electrical terminalN voltage sourcesnonelectrical elementsSAW deviceinput admittanceelectrical portacoustic relationsSAW systeminductor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jaime Octavio Guerra-Pulido Pablo Roberto Pérez-Alcázar |
spellingShingle |
Jaime Octavio Guerra-Pulido Pablo Roberto Pérez-Alcázar Generalised relations between P- and Y-matrices and their applications The Journal of Engineering surface acoustic wave devices interdigital transducers matrix algebra frequency response generalised relations P-matrix Y-matrix surface acoustic wave element SAW elements interdigital transducer IDT acoustic ports frequency response electric device electronic device N electrical terminal N voltage sources nonelectrical elements SAW device input admittance electrical port acoustic relations SAW system inductor |
author_facet |
Jaime Octavio Guerra-Pulido Pablo Roberto Pérez-Alcázar |
author_sort |
Jaime Octavio Guerra-Pulido |
title |
Generalised relations between P- and Y-matrices and their applications |
title_short |
Generalised relations between P- and Y-matrices and their applications |
title_full |
Generalised relations between P- and Y-matrices and their applications |
title_fullStr |
Generalised relations between P- and Y-matrices and their applications |
title_full_unstemmed |
Generalised relations between P- and Y-matrices and their applications |
title_sort |
generalised relations between p- and y-matrices and their applications |
publisher |
Wiley |
series |
The Journal of Engineering |
issn |
2051-3305 |
publishDate |
2014-10-01 |
description |
The P-matrix is commonly used to analyse surface acoustic waves (SAW) elements such as the interdigital transducer (IDT) but, when some IDTs are connected through their acoustic ports, their frequency response could be calculated easily in terms of their admittances. Instead of the P-matrix, Y-matrix also allows coupling of the system to another electric or electronic device. Here, the authors present a general method to obtain the Y-matrix (with size N × N) of a SAW device with N electrical terminals connected to N different voltage sources. This method considers the reflections from the edges or any other non-electrical elements that can cause reflections beyond P-matrices. In addition, it has been shown that when there are no reflections and there are two P-matrices, this method converges to well-known previous results. Furthermore, the authors present two cases that could be used to analyse a SAW device: the input admittance and the equivalent P-matrix for a SAW device when a Y-matrix is connected to the electrical port of the SAW device. Also, the authors have calculated the acoustic relations for two SAW devices connected through their electric ports. Furthermore, these methods are exemplified through their application to a SAW system composed of three different IDTs and to an IDT and an inductor connected to its electrical port. |
topic |
surface acoustic wave devices interdigital transducers matrix algebra frequency response generalised relations P-matrix Y-matrix surface acoustic wave element SAW elements interdigital transducer IDT acoustic ports frequency response electric device electronic device N electrical terminal N voltage sources nonelectrical elements SAW device input admittance electrical port acoustic relations SAW system inductor |
url |
http://digital-library.theiet.org/content/journals/10.1049/joe.2014.0215 |
work_keys_str_mv |
AT jaimeoctavioguerrapulido generalisedrelationsbetweenpandymatricesandtheirapplications AT pablorobertoperezalcazar generalisedrelationsbetweenpandymatricesandtheirapplications |
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