SlideShare a Scribd company logo
1 of 23
Piezoelectric MEMS with Giant
       Piezo Actuation
MEMS on Si – 1. Capacitive with metallic electrodes
             2. Piezoelectric with active piezo-materials (like PZT)

 MEMS with piezoelectric materials - Integrated Actuation
                                          ‘’     Sensing
                                           ‘’    Transduction


 Applications - Ultrasound Medical Imaging
                 Microfludic Control
                 Mechanical Sensing
                 Energy Harvesting
Piezoelectricity
    “Piezo” – Pressure; Piezo-electricity - pressure electricity

    Direct and Converse piezoelectric effect

Important Piezoelectric Parameters
Piezoelectric Figure of Merit
  Piezoelectric Strain Constant (d) – Magnitude of the induced strain (x) by an external
  electric field.   x= d.E

  Piezoelectric Voltage constant (g) – field per unit strain.
                                      g =d/(εε0) ;            ε= permittivity

  Electromechanical Coupling Factor (k) – Conversion rate between elec. & mech. energy.
                       = (stored elec. Energy)/(Input mech. Energy)
                        = d2/ (εε0).s

  Energy Transmission Coefficient (λ) – Maximum k in actual device
                                      = ʃ E.dp = (εε0E + d.x)E

  Efficiency (Ƞ) - (output mech. Energy)/(Consumed elec. Energy)
Displacement and Stress/Strain relation (at low fields)




Clamping to the Substrate changes it all !!




 31 and 33 modes of piezoresponse
Piezoelectric Properties of representative materials
MEMS Based on PbZr(1-x)Tix03

                                                     Interesting Properties at MPB –
                                                     2.High Dielectric Susceptibility
                                                     3.High Remnant Polarization
                                                     4.High Piezoelectric Coefficient




Pertinent issues encountered while integrating on Si –
1. Suitable buffer layer owing to higher lattice mismatch.
2. Suitable bottom electrode maintaining epitaxial nature .
3. Suitable growth condition leading to defect-minimal interface.
MEMS Based on PZT
Earlier Works   Appl. Phys. Lett., Vol. 74, No. 23, 7
Appl. Phys. Lett. 68 (10)
Appl. Phys. Lett. 63 (26),

                      LSCO
                      PZT
                      LSCO
                       YSZ
                       SiO2

                   (001) Si
Appl. Phys. Lett. 63 , 189
Appl. Phys. Lett., Vol. 76, No. 11, 13




Electron Diffraction Patterns




      PZT/YBCO             YBCO/MgO       STO/MgO   TiN/Si
J. Micromech. Microeng. 20 (2010) 055008




    Process Flow for MEMS Micro-fabrication



                                              Hysteresis Loop
PZT Membrane   PZT Cantilever
MEMS with Giant Piezo Coefficients




Problem with Giant Piezo MEMS – Relaxor materials are difficult
to integrate in Si matrix for device fabrication
PMN:25%PT
 PMN:33%PT
 PYN:46%PT

PZT
Giant Piezoelectricity for Hyperactive MEMS

Material: PMN:33%PT
Orientation : (001) {according to S. E. Park, T. R. Shrout, J. Appl. Phys. 82, 1804 (1997)}

Problem : Growth of Pyrochlore Phase.

Approaches : 1) The use of SrTiO3 buffer layer.
            2) a high miscut in Si substrate.
               (To incormorate volatile components in the film like PbO suppressing
                formation of pyrochlore)




        Zero Miscut               4o miscut
HRTEM at the Interface




   Atomically sharp interfaces.

Dielectric and Ferroelectric Measurement




   Existence of a built-in-bias – advantages and drawbacks.
Piezoresponse




Possible reason of higher piezo-activity- 1. Substantial self-polarization
                                         2. Built in bias


 Highest e31,f measured after poling = -27 +/- 3 c/m2
How far the properties hold w.r.t. microfabrication ?




 Fabrication
Cantilever deflection with external bias
Conclusions
      Epitaxial growth of PMN-PT on (001)Si using STO buffer.
      Improved growth through introduction of a high miscut in Si.
      Manifestation of giant piezoelectric properties.
      Higher figure of merit suitable for device integration.
      Preserved properties after microfabrocation.



Coda and Future Challenges
     High piezo-actuation through use of relaxors may enhance device sensitivity
     Denser device integration in IC – actuator arrays through easing downscaling.
     Low power consumption owing to reduction in actuation charge density.
     Smaller electromechanical devices with better performances.

  Exploitation of higher 33 mode response of PMN-PT rather 31 mode.
  Tuning the elastic properties of passive layers (SiO2, electrode, STO)to
   enhance in figure of merit further.
  Using SOI for complex device structures with desired passive layer thickness.
  Beyond EMS devices – tune and modulate multifunctional properties with
   giant electrostriction and dynamic strain control.

More Related Content

What's hot (20)

Dielectric materials
Dielectric materialsDielectric materials
Dielectric materials
 
Spintronics ppt
Spintronics pptSpintronics ppt
Spintronics ppt
 
Ion beam lithography
Ion beam lithographyIon beam lithography
Ion beam lithography
 
Giant magnetoresistance
Giant magnetoresistanceGiant magnetoresistance
Giant magnetoresistance
 
domain theroy
domain theroydomain theroy
domain theroy
 
Spintronics
SpintronicsSpintronics
Spintronics
 
mems ppt
mems pptmems ppt
mems ppt
 
FERRITES
FERRITESFERRITES
FERRITES
 
Magnetic domain and domain walls
 Magnetic domain and domain walls Magnetic domain and domain walls
Magnetic domain and domain walls
 
Superconductivity
SuperconductivitySuperconductivity
Superconductivity
 
Piezo electric Property
Piezo electric PropertyPiezo electric Property
Piezo electric Property
 
Photoluminescence
PhotoluminescencePhotoluminescence
Photoluminescence
 
ASSAD BCS theory
ASSAD BCS theoryASSAD BCS theory
ASSAD BCS theory
 
Thin film gas sensor
Thin film gas sensorThin film gas sensor
Thin film gas sensor
 
Superconductivity
SuperconductivitySuperconductivity
Superconductivity
 
Magnetic anisotropy in (III,Mn)V
Magnetic anisotropy in (III,Mn)VMagnetic anisotropy in (III,Mn)V
Magnetic anisotropy in (III,Mn)V
 
Resistive RAM using Nanomaterials
Resistive RAM using NanomaterialsResistive RAM using Nanomaterials
Resistive RAM using Nanomaterials
 
Mems application
Mems applicationMems application
Mems application
 
Superconductivity
SuperconductivitySuperconductivity
Superconductivity
 
PPT thesis defense_nikhil
PPT thesis defense_nikhilPPT thesis defense_nikhil
PPT thesis defense_nikhil
 

Similar to Piezoelectric mems

A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...
A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...
A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...Dheepan Thangavelu
 
International Journal of Computational Engineering Research(IJCER)
International Journal of Computational Engineering Research(IJCER)International Journal of Computational Engineering Research(IJCER)
International Journal of Computational Engineering Research(IJCER)ijceronline
 
Microelectronic technologies for alternative energy sources
Microelectronic technologies for alternative energy sourcesMicroelectronic technologies for alternative energy sources
Microelectronic technologies for alternative energy sourcesMariya Aleksandrova
 
Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...
Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...
Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...Teresa Porter
 
EP MEMS 2009 Presentation
EP MEMS 2009 PresentationEP MEMS 2009 Presentation
EP MEMS 2009 Presentationfabianbeltran
 
Carnot - efficiency based Nanoantenna Systems
Carnot - efficiency based Nanoantenna Systems Carnot - efficiency based Nanoantenna Systems
Carnot - efficiency based Nanoantenna Systems Bhupendra Subedi
 
Research Issues in MEMS Resonators
Research Issues in MEMS ResonatorsResearch Issues in MEMS Resonators
Research Issues in MEMS Resonatorsinventy
 
Piezoelectric properties
Piezoelectric properties Piezoelectric properties
Piezoelectric properties MadhuriIyengar
 
Spin valve transistor
Spin valve transistorSpin valve transistor
Spin valve transistorEeshan Mishra
 
Swift Heavy Ion Irradiation
Swift Heavy Ion IrradiationSwift Heavy Ion Irradiation
Swift Heavy Ion Irradiationkrishslide
 
Aml series piezoelectric materials green energy and sensing - crossing point
Aml series piezoelectric materials green energy and sensing - crossing pointAml series piezoelectric materials green energy and sensing - crossing point
Aml series piezoelectric materials green energy and sensing - crossing pointMariya Aleksandrova
 
Efficient methods for accurately calculating thermoelectric properties – elec...
Efficient methods for accurately calculating thermoelectric properties – elec...Efficient methods for accurately calculating thermoelectric properties – elec...
Efficient methods for accurately calculating thermoelectric properties – elec...Anubhav Jain
 
Femtosecond Machining
Femtosecond MachiningFemtosecond Machining
Femtosecond MachiningDeepak Rajput
 
Nanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic IndustryNanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic Industrytabirsir
 

Similar to Piezoelectric mems (20)

A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...
A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...
A Study of electromechanical behavior of Piezo ceramic Smart materials and ap...
 
International Journal of Computational Engineering Research(IJCER)
International Journal of Computational Engineering Research(IJCER)International Journal of Computational Engineering Research(IJCER)
International Journal of Computational Engineering Research(IJCER)
 
Microelectronic technologies for alternative energy sources
Microelectronic technologies for alternative energy sourcesMicroelectronic technologies for alternative energy sources
Microelectronic technologies for alternative energy sources
 
Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...
Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...
Thick PZT Films Used to Develop Efficient Piezoelectric Energy Harvesters by ...
 
EP MEMS 2009 Presentation
EP MEMS 2009 PresentationEP MEMS 2009 Presentation
EP MEMS 2009 Presentation
 
Carnot - efficiency based Nanoantenna Systems
Carnot - efficiency based Nanoantenna Systems Carnot - efficiency based Nanoantenna Systems
Carnot - efficiency based Nanoantenna Systems
 
Research Issues in MEMS Resonators
Research Issues in MEMS ResonatorsResearch Issues in MEMS Resonators
Research Issues in MEMS Resonators
 
Piezoelectric properties
Piezoelectric properties Piezoelectric properties
Piezoelectric properties
 
Spin valve transistor
Spin valve transistorSpin valve transistor
Spin valve transistor
 
Swift Heavy Ion Irradiation
Swift Heavy Ion IrradiationSwift Heavy Ion Irradiation
Swift Heavy Ion Irradiation
 
Aml series piezoelectric materials green energy and sensing - crossing point
Aml series piezoelectric materials green energy and sensing - crossing pointAml series piezoelectric materials green energy and sensing - crossing point
Aml series piezoelectric materials green energy and sensing - crossing point
 
Efficient methods for accurately calculating thermoelectric properties – elec...
Efficient methods for accurately calculating thermoelectric properties – elec...Efficient methods for accurately calculating thermoelectric properties – elec...
Efficient methods for accurately calculating thermoelectric properties – elec...
 
Advanced medical micro devices
Advanced medical micro devicesAdvanced medical micro devices
Advanced medical micro devices
 
ISP part 3
ISP part 3ISP part 3
ISP part 3
 
Lecture 17
Lecture 17Lecture 17
Lecture 17
 
Femtosecond Machining
Femtosecond MachiningFemtosecond Machining
Femtosecond Machining
 
Epitaxial Growth
Epitaxial GrowthEpitaxial Growth
Epitaxial Growth
 
JAP-Avril02_SALAHUN
JAP-Avril02_SALAHUNJAP-Avril02_SALAHUN
JAP-Avril02_SALAHUN
 
Smart material & structure
Smart material & structureSmart material & structure
Smart material & structure
 
Nanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic IndustryNanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic Industry
 

More from nirupam12

D Schlom - Oxide Molecular-Beam Epitaxy
D Schlom - Oxide Molecular-Beam EpitaxyD Schlom - Oxide Molecular-Beam Epitaxy
D Schlom - Oxide Molecular-Beam Epitaxynirupam12
 
Introduction to Scanning Tunneling Microscopy
Introduction to Scanning Tunneling MicroscopyIntroduction to Scanning Tunneling Microscopy
Introduction to Scanning Tunneling Microscopynirupam12
 
Charge, spin and orbitals in oxides
Charge, spin and orbitals in oxidesCharge, spin and orbitals in oxides
Charge, spin and orbitals in oxidesnirupam12
 
Neutron Refractometry - B Kreimer
Neutron Refractometry - B KreimerNeutron Refractometry - B Kreimer
Neutron Refractometry - B Kreimernirupam12
 
X-Ray Absorption Spectroscopy
X-Ray Absorption SpectroscopyX-Ray Absorption Spectroscopy
X-Ray Absorption Spectroscopynirupam12
 
X-Ray Absorption Spectroscopy
X-Ray Absorption SpectroscopyX-Ray Absorption Spectroscopy
X-Ray Absorption Spectroscopynirupam12
 
Spectroscopic ellipsometry
Spectroscopic ellipsometrySpectroscopic ellipsometry
Spectroscopic ellipsometrynirupam12
 
Polarons in bulk and near surfaces
Polarons in bulk and near surfacesPolarons in bulk and near surfaces
Polarons in bulk and near surfacesnirupam12
 
Resonant X Ray Diffraction
Resonant X Ray DiffractionResonant X Ray Diffraction
Resonant X Ray Diffractionnirupam12
 
Photoelectron Spectroscopy for Functional Oxides
Photoelectron Spectroscopy for Functional OxidesPhotoelectron Spectroscopy for Functional Oxides
Photoelectron Spectroscopy for Functional Oxidesnirupam12
 
Piezo Responce Force Microscopy
Piezo Responce Force MicroscopyPiezo Responce Force Microscopy
Piezo Responce Force Microscopynirupam12
 
Band structure
Band structureBand structure
Band structurenirupam12
 

More from nirupam12 (12)

D Schlom - Oxide Molecular-Beam Epitaxy
D Schlom - Oxide Molecular-Beam EpitaxyD Schlom - Oxide Molecular-Beam Epitaxy
D Schlom - Oxide Molecular-Beam Epitaxy
 
Introduction to Scanning Tunneling Microscopy
Introduction to Scanning Tunneling MicroscopyIntroduction to Scanning Tunneling Microscopy
Introduction to Scanning Tunneling Microscopy
 
Charge, spin and orbitals in oxides
Charge, spin and orbitals in oxidesCharge, spin and orbitals in oxides
Charge, spin and orbitals in oxides
 
Neutron Refractometry - B Kreimer
Neutron Refractometry - B KreimerNeutron Refractometry - B Kreimer
Neutron Refractometry - B Kreimer
 
X-Ray Absorption Spectroscopy
X-Ray Absorption SpectroscopyX-Ray Absorption Spectroscopy
X-Ray Absorption Spectroscopy
 
X-Ray Absorption Spectroscopy
X-Ray Absorption SpectroscopyX-Ray Absorption Spectroscopy
X-Ray Absorption Spectroscopy
 
Spectroscopic ellipsometry
Spectroscopic ellipsometrySpectroscopic ellipsometry
Spectroscopic ellipsometry
 
Polarons in bulk and near surfaces
Polarons in bulk and near surfacesPolarons in bulk and near surfaces
Polarons in bulk and near surfaces
 
Resonant X Ray Diffraction
Resonant X Ray DiffractionResonant X Ray Diffraction
Resonant X Ray Diffraction
 
Photoelectron Spectroscopy for Functional Oxides
Photoelectron Spectroscopy for Functional OxidesPhotoelectron Spectroscopy for Functional Oxides
Photoelectron Spectroscopy for Functional Oxides
 
Piezo Responce Force Microscopy
Piezo Responce Force MicroscopyPiezo Responce Force Microscopy
Piezo Responce Force Microscopy
 
Band structure
Band structureBand structure
Band structure
 

Recently uploaded

Advanced Test Driven-Development @ php[tek] 2024
Advanced Test Driven-Development @ php[tek] 2024Advanced Test Driven-Development @ php[tek] 2024
Advanced Test Driven-Development @ php[tek] 2024Scott Keck-Warren
 
Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 3652toLead Limited
 
Powerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time ClashPowerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time Clashcharlottematthew16
 
My Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationMy Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationRidwan Fadjar
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationSafe Software
 
Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Commit University
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticscarlostorres15106
 
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostZilliz
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesZilliz
 
What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024Stephanie Beckett
 
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024BookNet Canada
 
Artificial intelligence in cctv survelliance.pptx
Artificial intelligence in cctv survelliance.pptxArtificial intelligence in cctv survelliance.pptx
Artificial intelligence in cctv survelliance.pptxhariprasad279825
 
Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!Manik S Magar
 
Connect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationConnect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationSlibray Presentation
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyAlfredo García Lavilla
 
DevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platformsDevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platformsSergiu Bodiu
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024Lorenzo Miniero
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupFlorian Wilhelm
 
The Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfThe Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfSeasiaInfotech2
 

Recently uploaded (20)

Advanced Test Driven-Development @ php[tek] 2024
Advanced Test Driven-Development @ php[tek] 2024Advanced Test Driven-Development @ php[tek] 2024
Advanced Test Driven-Development @ php[tek] 2024
 
Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365
 
Powerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time ClashPowerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time Clash
 
My Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationMy Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 Presentation
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
 
Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!
 
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptxE-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
 
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector Databases
 
What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024
 
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
 
Artificial intelligence in cctv survelliance.pptx
Artificial intelligence in cctv survelliance.pptxArtificial intelligence in cctv survelliance.pptx
Artificial intelligence in cctv survelliance.pptx
 
Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!Anypoint Exchange: It’s Not Just a Repo!
Anypoint Exchange: It’s Not Just a Repo!
 
Connect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationConnect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck Presentation
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easy
 
DevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platformsDevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platforms
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project Setup
 
The Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfThe Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdf
 

Piezoelectric mems

  • 1. Piezoelectric MEMS with Giant Piezo Actuation
  • 2. MEMS on Si – 1. Capacitive with metallic electrodes 2. Piezoelectric with active piezo-materials (like PZT)  MEMS with piezoelectric materials - Integrated Actuation ‘’ Sensing ‘’ Transduction  Applications - Ultrasound Medical Imaging Microfludic Control Mechanical Sensing Energy Harvesting
  • 3. Piezoelectricity  “Piezo” – Pressure; Piezo-electricity - pressure electricity  Direct and Converse piezoelectric effect Important Piezoelectric Parameters Piezoelectric Figure of Merit Piezoelectric Strain Constant (d) – Magnitude of the induced strain (x) by an external electric field. x= d.E Piezoelectric Voltage constant (g) – field per unit strain. g =d/(εε0) ; ε= permittivity Electromechanical Coupling Factor (k) – Conversion rate between elec. & mech. energy. = (stored elec. Energy)/(Input mech. Energy) = d2/ (εε0).s Energy Transmission Coefficient (λ) – Maximum k in actual device = ʃ E.dp = (εε0E + d.x)E Efficiency (Ƞ) - (output mech. Energy)/(Consumed elec. Energy)
  • 4. Displacement and Stress/Strain relation (at low fields) Clamping to the Substrate changes it all !! 31 and 33 modes of piezoresponse
  • 5. Piezoelectric Properties of representative materials
  • 6. MEMS Based on PbZr(1-x)Tix03 Interesting Properties at MPB – 2.High Dielectric Susceptibility 3.High Remnant Polarization 4.High Piezoelectric Coefficient Pertinent issues encountered while integrating on Si – 1. Suitable buffer layer owing to higher lattice mismatch. 2. Suitable bottom electrode maintaining epitaxial nature . 3. Suitable growth condition leading to defect-minimal interface.
  • 7. MEMS Based on PZT Earlier Works Appl. Phys. Lett., Vol. 74, No. 23, 7
  • 9. Appl. Phys. Lett. 63 (26), LSCO PZT LSCO YSZ SiO2 (001) Si
  • 10. Appl. Phys. Lett. 63 , 189
  • 11. Appl. Phys. Lett., Vol. 76, No. 11, 13 Electron Diffraction Patterns PZT/YBCO YBCO/MgO STO/MgO TiN/Si
  • 12.
  • 13. J. Micromech. Microeng. 20 (2010) 055008 Process Flow for MEMS Micro-fabrication Hysteresis Loop
  • 14. PZT Membrane PZT Cantilever
  • 15. MEMS with Giant Piezo Coefficients Problem with Giant Piezo MEMS – Relaxor materials are difficult to integrate in Si matrix for device fabrication
  • 16.
  • 18. Giant Piezoelectricity for Hyperactive MEMS Material: PMN:33%PT Orientation : (001) {according to S. E. Park, T. R. Shrout, J. Appl. Phys. 82, 1804 (1997)} Problem : Growth of Pyrochlore Phase. Approaches : 1) The use of SrTiO3 buffer layer. 2) a high miscut in Si substrate. (To incormorate volatile components in the film like PbO suppressing formation of pyrochlore) Zero Miscut 4o miscut
  • 19. HRTEM at the Interface  Atomically sharp interfaces. Dielectric and Ferroelectric Measurement  Existence of a built-in-bias – advantages and drawbacks.
  • 20. Piezoresponse Possible reason of higher piezo-activity- 1. Substantial self-polarization 2. Built in bias Highest e31,f measured after poling = -27 +/- 3 c/m2
  • 21. How far the properties hold w.r.t. microfabrication ? Fabrication
  • 22. Cantilever deflection with external bias
  • 23. Conclusions  Epitaxial growth of PMN-PT on (001)Si using STO buffer.  Improved growth through introduction of a high miscut in Si.  Manifestation of giant piezoelectric properties.  Higher figure of merit suitable for device integration.  Preserved properties after microfabrocation. Coda and Future Challenges  High piezo-actuation through use of relaxors may enhance device sensitivity  Denser device integration in IC – actuator arrays through easing downscaling.  Low power consumption owing to reduction in actuation charge density.  Smaller electromechanical devices with better performances.  Exploitation of higher 33 mode response of PMN-PT rather 31 mode.  Tuning the elastic properties of passive layers (SiO2, electrode, STO)to enhance in figure of merit further.  Using SOI for complex device structures with desired passive layer thickness.  Beyond EMS devices – tune and modulate multifunctional properties with giant electrostriction and dynamic strain control.