SlideShare ist ein Scribd-Unternehmen logo
1 von 13
S.NAVEEN,ECE
DEPT.,SRIT,PACCHAPALAYA
M, COIMBATORE-010
PIEZO ELECTRIC MATERIALS AS SOURCES TO
SENSORS
ABSTRACT
• Piezoelectric crystals are versatile tools for the measurement of various purposes. They work on the principle of
piezoelectric effect. They are insensitive to radiations and emf enabling high performance at harsh conditions. Such a
material could be used in places where harvesting energy is much needed. Harvesting energy from random mechanical
process in various uncontrollable environment is an effective approach for powering wireless sensors to meet wide range of
applications in our day to day life. A Piezoelectric material is used to generate or harvest energy by vibration. When sensors
are used to study about various variable conditions the battery source plays a major role in that part. For example when
sensors are placed in animals to study about them battery sources powering the sensors has a limited lifetime. But sensors
powered by piezoelectric crystals may have a very long lifetime nearly an infinite lifetime. It may be a very good alternative
for common battery sources.
• When the sensors with piezoelectric sources are placed in animal’s body they are powered by the pressure or vibrations
created by the animal’s body movements such that the sensor is turned on. If they are used in sensors to study wildlife they
are powered even due to the air. Such a sensor may be regarded as an ideal one as it may create a new revolution in the field
of sensors
SENSORS
• A sensor is an object whose purpose is to detect events or changes in its environment, and then
provide a corresponding output. A sensor is a type of transducer; sensors may provide various types of
output, but typically use electrical or optical signals. For example, a thermocouple generates a known
voltage (the output) in response to its temperature.
• With advances in micromachinery and easy-to-use micro controller platforms, the uses of sensors
have expanded beyond the most traditional fields of temperature, pressure or flow measurement.
A GOOD SENSOR OBEYS THE FOLLOWING RULES:
• it is sensitive to the measured property,
• it is insensitive to any other property likely to be encountered in its application, and
• it does not influence the measured property.
BLOCK DIAGRAM
LITHIUM THIONYL CHLORIDE
BATTERY
• Advantages of Lithium thionyl battery :
• 1.High cell voltage (3.6V) and high energy
density.
• 2.Wide temperature application: -55°C to 85°C.
• 3.Stable voltage plateau and long term reliability
in service for 10 years.
• 4.Low self-discharge for 2% max at 20°C per year.
• 5.TIG Arc / laser seal process.
• 6.Safety design.
ADVANCES IN SENSORS
Now the technology advancement is so fast that sensors have high tech
batteries. Nowadays even the battery sources in the sensors are designed in
such a way that the sensors are on/off based on the user’s desire. It has become
user defined. These batteries too have a long life time.
PIEZO ELECTRIC CRYSTALS
• Piezoelectric Crystals :
• Piezoelectric crystals are crystals that
work based on the principle of piezoelectric
effect i.e. they generate electricity due to
pressure on it or due to vibrations.
Some widely used crystals are :
• Quartz
• Berlinite
• Galium orthophosphate
• Equivalent circuit
ENERGY HARVESTING BY PIEZOELECTRIC
CRYSTALS
• A dramatic consumption reduction of integrated circuits
related to the development of mobile electronic devices has
been reached over the past years, enabling the use of ambient
energy instead of batteries. The focus is here on the
transformation of ambient mechanical vibrations into
electrical energy. This paper compares the performances of a
vibration-powered electrical generator using PZT
piezoelectric ceramics associated to two different power
conditioning circuits. A new approach of the piezoelectric
power conversion based on a nonlinear voltage processing is
presented and implemented using a particular circuit.
Theoretical predictions and experimental results show that the
new technique may increase the power harvested by a factor
up to 4 compared to the Standard technique. The power
optimization problem is in particular examined in the case of
broadband, random vibrations.
ADVANTAGES OF USING PIEZOELECTRIC
CRYSTALS
• High dielectric constant
• Spontaneous polarization
• Highly stable
• High temperature material
• Even small changes in environment is noted
REFERENCES
• Steven R Anton and Henry A Sodano, published on 18 may 2007,Materials and structures.
• Huidong Li, Chuan Tian and Z.Daniel Deng, pacific northwest national lab
• Dr.Harry Zervos,jan 10 2013,Energy harvesting and storage
• SP Beeby,MJ Tudor,published on 26 oct 2006,Energy harvesting Vibrating materials
• KA Cook,AM Sastry, published on 9 june 2008, Powering MEMS portable devices.
CONCLUSION
• I here by conclude by saying that even batteries like lithium thionyl chloride battery even have a life
time of 5 to 6 months but these sensors powered by piezoelectric crystals have nearly infinite life time
acting as an ideal source for sensors.
THANK YOU

Weitere ähnliche Inhalte

Was ist angesagt?

Nanogenerator
Nanogenerator Nanogenerator
Nanogenerator
Amit Kumar
 
piezoelectricity and its application
piezoelectricity and its application piezoelectricity and its application
piezoelectricity and its application
Jaydeep Saha
 

Was ist angesagt? (20)

Nano generator by Tanveer ahmed Ganganalli seminar ppt
Nano generator by Tanveer ahmed Ganganalli seminar pptNano generator by Tanveer ahmed Ganganalli seminar ppt
Nano generator by Tanveer ahmed Ganganalli seminar ppt
 
Nanogenerator
NanogeneratorNanogenerator
Nanogenerator
 
Nanogenerator
Nanogenerator Nanogenerator
Nanogenerator
 
Nanogenerators, Producing Energy out of waste energy-The Future
Nanogenerators, Producing Energy out of waste energy-The Future Nanogenerators, Producing Energy out of waste energy-The Future
Nanogenerators, Producing Energy out of waste energy-The Future
 
piezoelectricity and its application
piezoelectricity and its application piezoelectricity and its application
piezoelectricity and its application
 
Pramod Energy Harvesting Project 2008
Pramod   Energy Harvesting Project  2008Pramod   Energy Harvesting Project  2008
Pramod Energy Harvesting Project 2008
 
Piezoelectric nanogenerator
Piezoelectric nanogeneratorPiezoelectric nanogenerator
Piezoelectric nanogenerator
 
Review on nanogenerator
Review on nanogenerator Review on nanogenerator
Review on nanogenerator
 
Presentation of piezoelectricity
Presentation of piezoelectricityPresentation of piezoelectricity
Presentation of piezoelectricity
 
Tribo electric nano generator (TENG)
Tribo electric nano generator (TENG)Tribo electric nano generator (TENG)
Tribo electric nano generator (TENG)
 
Ferro Electric Nano Generator
Ferro Electric Nano GeneratorFerro Electric Nano Generator
Ferro Electric Nano Generator
 
Piezo Electric Based Harvesting
Piezo Electric Based HarvestingPiezo Electric Based Harvesting
Piezo Electric Based Harvesting
 
Nanogenerators
NanogeneratorsNanogenerators
Nanogenerators
 
Paul Ahern - Piezoelectric Energy Harvesting Review
Paul Ahern - Piezoelectric Energy Harvesting ReviewPaul Ahern - Piezoelectric Energy Harvesting Review
Paul Ahern - Piezoelectric Energy Harvesting Review
 
IRJET- Reviewing the Scope of Triboelectric Nanogenerators as a Feasible ...
IRJET-  	  Reviewing the Scope of Triboelectric Nanogenerators as a Feasible ...IRJET-  	  Reviewing the Scope of Triboelectric Nanogenerators as a Feasible ...
IRJET- Reviewing the Scope of Triboelectric Nanogenerators as a Feasible ...
 
Piezo electric100 ppt
Piezo electric100 pptPiezo electric100 ppt
Piezo electric100 ppt
 
Piezo electric Property
Piezo electric PropertyPiezo electric Property
Piezo electric Property
 
Sunil
SunilSunil
Sunil
 
Spintronics
SpintronicsSpintronics
Spintronics
 
Piezoelectricity,microwave,superconductor
Piezoelectricity,microwave,superconductorPiezoelectricity,microwave,superconductor
Piezoelectricity,microwave,superconductor
 

Ähnlich wie piezoelectric source

Power generation from shoes & utilize it to charge the mobile's, laptop's or ...
Power generation from shoes & utilize it to charge the mobile's, laptop's or ...Power generation from shoes & utilize it to charge the mobile's, laptop's or ...
Power generation from shoes & utilize it to charge the mobile's, laptop's or ...
Shantesh Singh
 
Saisri_Main seminar-1
Saisri_Main seminar-1Saisri_Main seminar-1
Saisri_Main seminar-1
SAISRI R
 
Iaetsd electric power generation using piezoelectric crystal
Iaetsd electric power generation using piezoelectric crystalIaetsd electric power generation using piezoelectric crystal
Iaetsd electric power generation using piezoelectric crystal
Iaetsd Iaetsd
 
Gv icrtedc 01
Gv icrtedc 01Gv icrtedc 01
Gv icrtedc 01
IJEEE
 

Ähnlich wie piezoelectric source (20)

Nanogenerator
NanogeneratorNanogenerator
Nanogenerator
 
Report
ReportReport
Report
 
Power generation by piezo sensors
Power generation by piezo sensorsPower generation by piezo sensors
Power generation by piezo sensors
 
Energy harvesting
Energy harvestingEnergy harvesting
Energy harvesting
 
Piezo Electric Effect
Piezo Electric EffectPiezo Electric Effect
Piezo Electric Effect
 
Piezo Electric Transducer
Piezo Electric TransducerPiezo Electric Transducer
Piezo Electric Transducer
 
Energy_Harvesting_by_Piezo_Electricity
Energy_Harvesting_by_Piezo_ElectricityEnergy_Harvesting_by_Piezo_Electricity
Energy_Harvesting_by_Piezo_Electricity
 
Power generation using piezoelectric
Power generation using piezoelectricPower generation using piezoelectric
Power generation using piezoelectric
 
Microelectronic technologies for alternative energy sources
Microelectronic technologies for alternative energy sourcesMicroelectronic technologies for alternative energy sources
Microelectronic technologies for alternative energy sources
 
IRJET- Harnessing the Energy Generated from Staircase using Piezoelectric...
IRJET-  	  Harnessing the Energy Generated from Staircase using Piezoelectric...IRJET-  	  Harnessing the Energy Generated from Staircase using Piezoelectric...
IRJET- Harnessing the Energy Generated from Staircase using Piezoelectric...
 
Power generation from shoes & utilize it to charge the mobile's, laptop's or ...
Power generation from shoes & utilize it to charge the mobile's, laptop's or ...Power generation from shoes & utilize it to charge the mobile's, laptop's or ...
Power generation from shoes & utilize it to charge the mobile's, laptop's or ...
 
Saisri_Main seminar-1
Saisri_Main seminar-1Saisri_Main seminar-1
Saisri_Main seminar-1
 
Iaetsd electric power generation using piezoelectric crystal
Iaetsd electric power generation using piezoelectric crystalIaetsd electric power generation using piezoelectric crystal
Iaetsd electric power generation using piezoelectric crystal
 
Gv icrtedc 01
Gv icrtedc 01Gv icrtedc 01
Gv icrtedc 01
 
Piezoelectric transducer
Piezoelectric transducerPiezoelectric transducer
Piezoelectric transducer
 
Power electronics(i)
Power electronics(i)Power electronics(i)
Power electronics(i)
 
Piezo-electric transducer-Biosensors and Transducers
Piezo-electric transducer-Biosensors and TransducersPiezo-electric transducer-Biosensors and Transducers
Piezo-electric transducer-Biosensors and Transducers
 
Smart materials (actuator)
Smart materials (actuator)Smart materials (actuator)
Smart materials (actuator)
 
Piezoelectric Materials and Applications
Piezoelectric Materials and ApplicationsPiezoelectric Materials and Applications
Piezoelectric Materials and Applications
 
task 1.pptx
task 1.pptxtask 1.pptx
task 1.pptx
 

piezoelectric source

  • 2. ABSTRACT • Piezoelectric crystals are versatile tools for the measurement of various purposes. They work on the principle of piezoelectric effect. They are insensitive to radiations and emf enabling high performance at harsh conditions. Such a material could be used in places where harvesting energy is much needed. Harvesting energy from random mechanical process in various uncontrollable environment is an effective approach for powering wireless sensors to meet wide range of applications in our day to day life. A Piezoelectric material is used to generate or harvest energy by vibration. When sensors are used to study about various variable conditions the battery source plays a major role in that part. For example when sensors are placed in animals to study about them battery sources powering the sensors has a limited lifetime. But sensors powered by piezoelectric crystals may have a very long lifetime nearly an infinite lifetime. It may be a very good alternative for common battery sources. • When the sensors with piezoelectric sources are placed in animal’s body they are powered by the pressure or vibrations created by the animal’s body movements such that the sensor is turned on. If they are used in sensors to study wildlife they are powered even due to the air. Such a sensor may be regarded as an ideal one as it may create a new revolution in the field of sensors
  • 3. SENSORS • A sensor is an object whose purpose is to detect events or changes in its environment, and then provide a corresponding output. A sensor is a type of transducer; sensors may provide various types of output, but typically use electrical or optical signals. For example, a thermocouple generates a known voltage (the output) in response to its temperature. • With advances in micromachinery and easy-to-use micro controller platforms, the uses of sensors have expanded beyond the most traditional fields of temperature, pressure or flow measurement.
  • 4. A GOOD SENSOR OBEYS THE FOLLOWING RULES: • it is sensitive to the measured property, • it is insensitive to any other property likely to be encountered in its application, and • it does not influence the measured property.
  • 6. LITHIUM THIONYL CHLORIDE BATTERY • Advantages of Lithium thionyl battery : • 1.High cell voltage (3.6V) and high energy density. • 2.Wide temperature application: -55°C to 85°C. • 3.Stable voltage plateau and long term reliability in service for 10 years. • 4.Low self-discharge for 2% max at 20°C per year. • 5.TIG Arc / laser seal process. • 6.Safety design.
  • 7. ADVANCES IN SENSORS Now the technology advancement is so fast that sensors have high tech batteries. Nowadays even the battery sources in the sensors are designed in such a way that the sensors are on/off based on the user’s desire. It has become user defined. These batteries too have a long life time.
  • 8. PIEZO ELECTRIC CRYSTALS • Piezoelectric Crystals : • Piezoelectric crystals are crystals that work based on the principle of piezoelectric effect i.e. they generate electricity due to pressure on it or due to vibrations. Some widely used crystals are : • Quartz • Berlinite • Galium orthophosphate • Equivalent circuit
  • 9. ENERGY HARVESTING BY PIEZOELECTRIC CRYSTALS • A dramatic consumption reduction of integrated circuits related to the development of mobile electronic devices has been reached over the past years, enabling the use of ambient energy instead of batteries. The focus is here on the transformation of ambient mechanical vibrations into electrical energy. This paper compares the performances of a vibration-powered electrical generator using PZT piezoelectric ceramics associated to two different power conditioning circuits. A new approach of the piezoelectric power conversion based on a nonlinear voltage processing is presented and implemented using a particular circuit. Theoretical predictions and experimental results show that the new technique may increase the power harvested by a factor up to 4 compared to the Standard technique. The power optimization problem is in particular examined in the case of broadband, random vibrations.
  • 10. ADVANTAGES OF USING PIEZOELECTRIC CRYSTALS • High dielectric constant • Spontaneous polarization • Highly stable • High temperature material • Even small changes in environment is noted
  • 11. REFERENCES • Steven R Anton and Henry A Sodano, published on 18 may 2007,Materials and structures. • Huidong Li, Chuan Tian and Z.Daniel Deng, pacific northwest national lab • Dr.Harry Zervos,jan 10 2013,Energy harvesting and storage • SP Beeby,MJ Tudor,published on 26 oct 2006,Energy harvesting Vibrating materials • KA Cook,AM Sastry, published on 9 june 2008, Powering MEMS portable devices.
  • 12. CONCLUSION • I here by conclude by saying that even batteries like lithium thionyl chloride battery even have a life time of 5 to 6 months but these sensors powered by piezoelectric crystals have nearly infinite life time acting as an ideal source for sensors.