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solver of the pde module embedded in comsol software  (COMSOL Inc)

 
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    Structured Review

    COMSOL Inc solver of the pde module embedded in comsol software
    Regular SAW resonator on Al/42° YX LT structure, ( a ) partial differential equations <t>(PDE)-based</t> <t>2D-FEM</t> model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.
    Solver Of The Pde Module Embedded In Comsol Software, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/solver+of+the+pde+module+embedded+in+comsol+software/solver+of+the+pde+module+embedded+in+comsol+software/pmc07911167-59-14-18
    Average 90 stars, based on 1 article reviews
    solver of the pde module embedded in comsol software - by Bioz Stars, 2026-10
    90/100 stars

    Images

    1) Product Images from "Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code"

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code

    Journal: Micromachines

    doi: 10.3390/mi12020141

    Regular SAW resonator on Al/42° YX LT structure, ( a ) partial differential equations (PDE)-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.
    Figure Legend Snippet: Regular SAW resonator on Al/42° YX LT structure, ( a ) partial differential equations (PDE)-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Techniques Used:

    IHPSAW resonator on Cu/ 42° YX LT/SiO 2 /Si structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.
    Figure Legend Snippet: IHPSAW resonator on Cu/ 42° YX LT/SiO 2 /Si structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Techniques Used:

    Temperature-compensated SAW (TC-SAW) resonator on SiO 2 /IDT/5° YX-LN structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.
    Figure Legend Snippet: Temperature-compensated SAW (TC-SAW) resonator on SiO 2 /IDT/5° YX-LN structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Techniques Used:

    The compared key performance parameters of SAW resonator for simulation and experiment, S donates the simulation results calculated by the proposed  PDE-based  2D  FEM  model, M donates the measurement experimental results.
    Figure Legend Snippet: The compared key performance parameters of SAW resonator for simulation and experiment, S donates the simulation results calculated by the proposed PDE-based 2D FEM model, M donates the measurement experimental results.

    Techniques Used:

    Related Articles

    Derivative Assay:

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code
    Article Snippet: The third step is that the PDEs are solved by the solver of the PDE module embedded in COMSOL software, the derived FEM matrices from COMSOL were transferred to MATLAB via LiveLink for the remaining calculation.

    Comparison:

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code
    Article Snippet: The third step is that the PDEs are solved by the solver of the PDE module embedded in COMSOL software, the derived FEM matrices from COMSOL were transferred to MATLAB via LiveLink for the remaining calculation.

    Software:

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code
    Article Snippet: The third step is that the PDEs are solved by the solver of the PDE module embedded in COMSOL software, the derived FEM matrices from COMSOL were transferred to MATLAB via LiveLink for the remaining calculation.



    Similar Products

    90
    COMSOL Inc solver of the pde module embedded in comsol software
    Regular SAW resonator on Al/42° YX LT structure, ( a ) partial differential equations <t>(PDE)-based</t> <t>2D-FEM</t> model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.
    Solver Of The Pde Module Embedded In Comsol Software, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/solver+of+the+pde+module+embedded+in+comsol+software/solver+of+the+pde+module+embedded+in+comsol+software/pmc07911167-59-14-18
    Average 90 stars, based on 1 article reviews
    solver of the pde module embedded in comsol software - by Bioz Stars, 2026-10
    90/100 stars
      Buy from Supplier

    Image Search Results


    Regular SAW resonator on Al/42° YX LT structure, ( a ) partial differential equations (PDE)-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Journal: Micromachines

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code

    doi: 10.3390/mi12020141

    Figure Lengend Snippet: Regular SAW resonator on Al/42° YX LT structure, ( a ) partial differential equations (PDE)-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Article Snippet: The third step is that the PDEs are solved by the solver of the PDE module embedded in COMSOL software, the derived FEM matrices from COMSOL were transferred to MATLAB via LiveLink for the remaining calculation.

    Techniques:

    IHPSAW resonator on Cu/ 42° YX LT/SiO 2 /Si structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Journal: Micromachines

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code

    doi: 10.3390/mi12020141

    Figure Lengend Snippet: IHPSAW resonator on Cu/ 42° YX LT/SiO 2 /Si structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Article Snippet: The third step is that the PDEs are solved by the solver of the PDE module embedded in COMSOL software, the derived FEM matrices from COMSOL were transferred to MATLAB via LiveLink for the remaining calculation.

    Techniques:

    Temperature-compensated SAW (TC-SAW) resonator on SiO 2 /IDT/5° YX-LN structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Journal: Micromachines

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code

    doi: 10.3390/mi12020141

    Figure Lengend Snippet: Temperature-compensated SAW (TC-SAW) resonator on SiO 2 /IDT/5° YX-LN structure, ( a ) PDE-based 2D-FEM model, ( b ) Y 11 curves for simulation and experiment, ( c ) the mode shape at the resonant frequency, ( d ) displacement field distribution versus normalized depth for the SH-leaky SAW at the resonant frequency.

    Article Snippet: The third step is that the PDEs are solved by the solver of the PDE module embedded in COMSOL software, the derived FEM matrices from COMSOL were transferred to MATLAB via LiveLink for the remaining calculation.

    Techniques:

    The compared key performance parameters of SAW resonator for simulation and experiment, S donates the simulation results calculated by the proposed  PDE-based  2D  FEM  model, M donates the measurement experimental results.

    Journal: Micromachines

    Article Title: Periodic Analysis of Surface Acoustic Wave Resonator with Dimensionally Reduced PDE Model Using COMSOL Code

    doi: 10.3390/mi12020141

    Figure Lengend Snippet: The compared key performance parameters of SAW resonator for simulation and experiment, S donates the simulation results calculated by the proposed PDE-based 2D FEM model, M donates the measurement experimental results.

    Article Snippet: The third step is that the PDEs are solved by the solver of the PDE module embedded in COMSOL software, the derived FEM matrices from COMSOL were transferred to MATLAB via LiveLink for the remaining calculation.

    Techniques: