SlideShare uma empresa Scribd logo
1 de 19
INTRODUCTION
PHOTONIC IC VS ELECTRONIC IC
Basic components
CLASSIFICATION
FABRICATION
PIC – AN EXAMPLE
EVaLUATION OF a PIC
APPLICATIONS
CURRENT ASPECTS
FUTURE PROSPECTS
REFERENCES
INTRODUCTION
 Technology introduced -1970’s
 Optical equivalent of electronic IC
 Involves integration of optical
functions into a single chip
 High speed data rates
 Small size, reduced power
consumption
PHOTONIC IC VS ELECTRONIC IC
FEATURES PIC EIC
Data Carrier Photons Electrons
Type of components Functional optical
devices
Transistors
No. of components
integrated
Limited to a few
hundred
Range into millions
 Substrate materials Many different
materials in a single
chip
Fits nicely onto Silicon
BASIC COMPONENTS
PASSIVE
• Waveguides/Couplers
• Switches (optical
interconnect,
wavelength selective
switches)
• Filters (add-drop
filters, MUX/DEMUX)
• Dispersion
compensators
• Attenuator
• Gain equalizer
• Isolators/Circulators
ACTIVE
• Amplifiers
• Lasers
• LED
• Modulators
• Detectors
• Wavelength
Converters
a)
b)
c)
a)Array Waveguide Grating(AWG)
b)Multimode Interference
Couplers (MMI)
c)Mach-Zehnder
Interferometers(MZI)
CLASSIFICATION
 Based on integration :
- Monolithic Integration
- Hybrid Integration
- Modular Integration
 Based on type of substrate material :
- Indium Phosphide (InP)
- Gallium Arsenide (GaAs)
- Lithium Niobate
- Silicon (Si)
- Silica-on-Silicon
- Silicon on Insulator
FABRICATION
• Structural strategy for the fabrication of PICs onto an
InP substrate
• Basic steps :
- Epitaxial growth
- Waveguide etching
- Passivation and planarization
- Metallization and interconnect
Four active-passive integration schemes:
(a) vertical twin-guide integration
(b) vertical single guide integration
(c) quantum well intermixing (and selective area growth)
(d) butt-joint integration
Cross section of the wafer structure after the 4 processes:
PIC – AN EXAMPLE
WDM chip :
Integration of multiple wavelengths onto single
transmitter and reciever chips
EVALUATION OF A PIC
 Merits :
 Demerits :
Compared with EICs Compared to discrete
optical components
• Increased Bandwidth and
lower power consumption
• Smaller size, lower power
consumption
• High Reliability • Improved optical alignment
• Data Transparency • Immunity to vibration
• High cost for developing new fabrication technology
APPLICATIONS
• Fiber Optics
• Bio-Photonics
• Sensors
• Photonic Computing
• Nano Photonics
CURRENT ASPECTS
• WDM system on a chip
• Match discrete components in performance
• Unmatched space ,power and reliability
• Deliver lowest cost/bit
• High spectral efficiency
FUTURE PROSPECTS
• Complex packages that support advanced modulation
schemes and receiver designs
• Integration of electronics and optics
Optical Fiber Communications – Principles and Practice by John M. Senior
www.infinera.com
http://en.wikipedia.org
http://iopscience.iop.org
http://www.sciencedirect.com
http://www.vlcphotonics.com
http://www.photonics.com
http://ieeexplore.ieee.org
http://www.researchgate.net
http://photonicswiki.org
http://www.onechipphotonics.com
www.circuitstoday.com
Thank You

Mais conteúdo relacionado

Mais procurados

Optical fiber communiction system
Optical fiber communiction systemOptical fiber communiction system
Optical fiber communiction system
rahulohlan14
 
Fiber optic sensors
Fiber optic sensors  Fiber optic sensors
Fiber optic sensors
Madhumita Tamhane
 

Mais procurados (20)

Photonic crystal fibers
Photonic crystal fibersPhotonic crystal fibers
Photonic crystal fibers
 
Silicon photonics
Silicon photonicsSilicon photonics
Silicon photonics
 
Ppt on optical fiber
Ppt on optical fiberPpt on optical fiber
Ppt on optical fiber
 
Optical communications
Optical communicationsOptical communications
Optical communications
 
optical-fiber-communication
optical-fiber-communicationoptical-fiber-communication
optical-fiber-communication
 
Optoelectronics
OptoelectronicsOptoelectronics
Optoelectronics
 
Optical time domain Reflectometer
Optical time domain ReflectometerOptical time domain Reflectometer
Optical time domain Reflectometer
 
Free space optics
Free space opticsFree space optics
Free space optics
 
Examples of Photonics Applications for DAY OF PHOTONICS 21 October 2014
Examples of Photonics Applications for DAY OF PHOTONICS 21 October 2014Examples of Photonics Applications for DAY OF PHOTONICS 21 October 2014
Examples of Photonics Applications for DAY OF PHOTONICS 21 October 2014
 
Opto Electronics
Opto ElectronicsOpto Electronics
Opto Electronics
 
Modulation of LED
Modulation of LEDModulation of LED
Modulation of LED
 
Semiconductor Optical Amplifier
Semiconductor Optical AmplifierSemiconductor Optical Amplifier
Semiconductor Optical Amplifier
 
Photonic Crystals
Photonic CrystalsPhotonic Crystals
Photonic Crystals
 
Optical modulator (8,12,17,29)
Optical modulator (8,12,17,29)Optical modulator (8,12,17,29)
Optical modulator (8,12,17,29)
 
Photodetectors
PhotodetectorsPhotodetectors
Photodetectors
 
Lecture3 IC fabrication process
Lecture3 IC fabrication processLecture3 IC fabrication process
Lecture3 IC fabrication process
 
Optical fiber communiction system
Optical fiber communiction systemOptical fiber communiction system
Optical fiber communiction system
 
Fabrication of fibers
Fabrication of fibers Fabrication of fibers
Fabrication of fibers
 
Photo-detector by GIRISH HARMUKH
Photo-detector by GIRISH HARMUKHPhoto-detector by GIRISH HARMUKH
Photo-detector by GIRISH HARMUKH
 
Fiber optic sensors
Fiber optic sensors  Fiber optic sensors
Fiber optic sensors
 

Semelhante a Photonic Integrated Circuit Technology

Opticalcomputing final
Opticalcomputing finalOpticalcomputing final
Opticalcomputing final
divyajyothi405
 
Optical Computing
Optical ComputingOptical Computing
Optical Computing
Bise Mond
 
Photovoltaic Installations
Photovoltaic InstallationsPhotovoltaic Installations
Photovoltaic Installations
Leonardo ENERGY
 
Fiber Optic Communication System
Fiber Optic Communication SystemFiber Optic Communication System
Fiber Optic Communication System
saffi sultan
 
Fiber Optic Communication System
Fiber Optic Communication SystemFiber Optic Communication System
Fiber Optic Communication System
Bala Chandran
 

Semelhante a Photonic Integrated Circuit Technology (20)

Ayar Labs TeraPHY: A Chiplet Technology for Low-Power, High-Bandwidth In-Pack...
Ayar Labs TeraPHY: A Chiplet Technology for Low-Power, High-Bandwidth In-Pack...Ayar Labs TeraPHY: A Chiplet Technology for Low-Power, High-Bandwidth In-Pack...
Ayar Labs TeraPHY: A Chiplet Technology for Low-Power, High-Bandwidth In-Pack...
 
Silicon Photonics for HPC Interconnects
Silicon Photonics for HPC InterconnectsSilicon Photonics for HPC Interconnects
Silicon Photonics for HPC Interconnects
 
Opticalcomputing final
Opticalcomputing finalOpticalcomputing final
Opticalcomputing final
 
Opticalcomputing final
Opticalcomputing finalOpticalcomputing final
Opticalcomputing final
 
Detailed course-outline-fiber-optics-1-2-3
Detailed course-outline-fiber-optics-1-2-3Detailed course-outline-fiber-optics-1-2-3
Detailed course-outline-fiber-optics-1-2-3
 
basic vlsi ppt
basic vlsi pptbasic vlsi ppt
basic vlsi ppt
 
Optical Computing
Optical ComputingOptical Computing
Optical Computing
 
Integrated optics devices
Integrated optics devicesIntegrated optics devices
Integrated optics devices
 
Optical Computing
Optical ComputingOptical Computing
Optical Computing
 
Silicon Photonics and Photonic NoCs: A Survey
Silicon Photonics and Photonic NoCs: A SurveySilicon Photonics and Photonic NoCs: A Survey
Silicon Photonics and Photonic NoCs: A Survey
 
Optical computing by abhishek mahajan
Optical computing by abhishek mahajanOptical computing by abhishek mahajan
Optical computing by abhishek mahajan
 
Kamna
KamnaKamna
Kamna
 
Photovoltaic Installations
Photovoltaic InstallationsPhotovoltaic Installations
Photovoltaic Installations
 
Optical computing by abhishek mahajan
Optical computing by abhishek mahajanOptical computing by abhishek mahajan
Optical computing by abhishek mahajan
 
WSN UNIT 2.pptx
WSN UNIT 2.pptxWSN UNIT 2.pptx
WSN UNIT 2.pptx
 
Fiber Optic Communication System
Fiber Optic Communication SystemFiber Optic Communication System
Fiber Optic Communication System
 
Fiber Optic Communication System
Fiber Optic Communication SystemFiber Optic Communication System
Fiber Optic Communication System
 
Solar power sector: Technology, BoS, Pre Feasbility and phase of project dev...
Solar power sector: Technology, BoS, Pre Feasbility and  phase of project dev...Solar power sector: Technology, BoS, Pre Feasbility and  phase of project dev...
Solar power sector: Technology, BoS, Pre Feasbility and phase of project dev...
 
Paineis Solares InstalaçAo
Paineis Solares InstalaçAoPaineis Solares InstalaçAo
Paineis Solares InstalaçAo
 
FTTx Basics & Its Network Basics
FTTx Basics & Its Network BasicsFTTx Basics & Its Network Basics
FTTx Basics & Its Network Basics
 

Último

Structuring Teams and Portfolios for Success
Structuring Teams and Portfolios for SuccessStructuring Teams and Portfolios for Success
Structuring Teams and Portfolios for Success
UXDXConf
 

Último (20)

A Business-Centric Approach to Design System Strategy
A Business-Centric Approach to Design System StrategyA Business-Centric Approach to Design System Strategy
A Business-Centric Approach to Design System Strategy
 
WebAssembly is Key to Better LLM Performance
WebAssembly is Key to Better LLM PerformanceWebAssembly is Key to Better LLM Performance
WebAssembly is Key to Better LLM Performance
 
Demystifying gRPC in .Net by John Staveley
Demystifying gRPC in .Net by John StaveleyDemystifying gRPC in .Net by John Staveley
Demystifying gRPC in .Net by John Staveley
 
Extensible Python: Robustness through Addition - PyCon 2024
Extensible Python: Robustness through Addition - PyCon 2024Extensible Python: Robustness through Addition - PyCon 2024
Extensible Python: Robustness through Addition - PyCon 2024
 
Connecting the Dots in Product Design at KAYAK
Connecting the Dots in Product Design at KAYAKConnecting the Dots in Product Design at KAYAK
Connecting the Dots in Product Design at KAYAK
 
Syngulon - Selection technology May 2024.pdf
Syngulon - Selection technology May 2024.pdfSyngulon - Selection technology May 2024.pdf
Syngulon - Selection technology May 2024.pdf
 
THE BEST IPTV in GERMANY for 2024: IPTVreel
THE BEST IPTV in  GERMANY for 2024: IPTVreelTHE BEST IPTV in  GERMANY for 2024: IPTVreel
THE BEST IPTV in GERMANY for 2024: IPTVreel
 
Optimizing NoSQL Performance Through Observability
Optimizing NoSQL Performance Through ObservabilityOptimizing NoSQL Performance Through Observability
Optimizing NoSQL Performance Through Observability
 
SOQL 201 for Admins & Developers: Slice & Dice Your Org’s Data With Aggregate...
SOQL 201 for Admins & Developers: Slice & Dice Your Org’s Data With Aggregate...SOQL 201 for Admins & Developers: Slice & Dice Your Org’s Data With Aggregate...
SOQL 201 for Admins & Developers: Slice & Dice Your Org’s Data With Aggregate...
 
Structuring Teams and Portfolios for Success
Structuring Teams and Portfolios for SuccessStructuring Teams and Portfolios for Success
Structuring Teams and Portfolios for Success
 
AI presentation and introduction - Retrieval Augmented Generation RAG 101
AI presentation and introduction - Retrieval Augmented Generation RAG 101AI presentation and introduction - Retrieval Augmented Generation RAG 101
AI presentation and introduction - Retrieval Augmented Generation RAG 101
 
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
 
WSO2CONMay2024OpenSourceConferenceDebrief.pptx
WSO2CONMay2024OpenSourceConferenceDebrief.pptxWSO2CONMay2024OpenSourceConferenceDebrief.pptx
WSO2CONMay2024OpenSourceConferenceDebrief.pptx
 
PLAI - Acceleration Program for Generative A.I. Startups
PLAI - Acceleration Program for Generative A.I. StartupsPLAI - Acceleration Program for Generative A.I. Startups
PLAI - Acceleration Program for Generative A.I. Startups
 
Choosing the Right FDO Deployment Model for Your Application _ Geoffrey at In...
Choosing the Right FDO Deployment Model for Your Application _ Geoffrey at In...Choosing the Right FDO Deployment Model for Your Application _ Geoffrey at In...
Choosing the Right FDO Deployment Model for Your Application _ Geoffrey at In...
 
Strategic AI Integration in Engineering Teams
Strategic AI Integration in Engineering TeamsStrategic AI Integration in Engineering Teams
Strategic AI Integration in Engineering Teams
 
Enterprise Knowledge Graphs - Data Summit 2024
Enterprise Knowledge Graphs - Data Summit 2024Enterprise Knowledge Graphs - Data Summit 2024
Enterprise Knowledge Graphs - Data Summit 2024
 
IoT Analytics Company Presentation May 2024
IoT Analytics Company Presentation May 2024IoT Analytics Company Presentation May 2024
IoT Analytics Company Presentation May 2024
 
Salesforce Adoption – Metrics, Methods, and Motivation, Antone Kom
Salesforce Adoption – Metrics, Methods, and Motivation, Antone KomSalesforce Adoption – Metrics, Methods, and Motivation, Antone Kom
Salesforce Adoption – Metrics, Methods, and Motivation, Antone Kom
 
The UX of Automation by AJ King, Senior UX Researcher, Ocado
The UX of Automation by AJ King, Senior UX Researcher, OcadoThe UX of Automation by AJ King, Senior UX Researcher, Ocado
The UX of Automation by AJ King, Senior UX Researcher, Ocado
 

Photonic Integrated Circuit Technology

  • 1.
  • 2. INTRODUCTION PHOTONIC IC VS ELECTRONIC IC Basic components CLASSIFICATION FABRICATION PIC – AN EXAMPLE EVaLUATION OF a PIC APPLICATIONS CURRENT ASPECTS FUTURE PROSPECTS REFERENCES
  • 3. INTRODUCTION  Technology introduced -1970’s  Optical equivalent of electronic IC  Involves integration of optical functions into a single chip  High speed data rates  Small size, reduced power consumption
  • 4. PHOTONIC IC VS ELECTRONIC IC FEATURES PIC EIC Data Carrier Photons Electrons Type of components Functional optical devices Transistors No. of components integrated Limited to a few hundred Range into millions  Substrate materials Many different materials in a single chip Fits nicely onto Silicon
  • 5. BASIC COMPONENTS PASSIVE • Waveguides/Couplers • Switches (optical interconnect, wavelength selective switches) • Filters (add-drop filters, MUX/DEMUX) • Dispersion compensators • Attenuator • Gain equalizer • Isolators/Circulators ACTIVE • Amplifiers • Lasers • LED • Modulators • Detectors • Wavelength Converters
  • 6.
  • 7. a) b) c) a)Array Waveguide Grating(AWG) b)Multimode Interference Couplers (MMI) c)Mach-Zehnder Interferometers(MZI)
  • 8. CLASSIFICATION  Based on integration : - Monolithic Integration - Hybrid Integration - Modular Integration  Based on type of substrate material : - Indium Phosphide (InP) - Gallium Arsenide (GaAs) - Lithium Niobate - Silicon (Si) - Silica-on-Silicon - Silicon on Insulator
  • 9.
  • 10. FABRICATION • Structural strategy for the fabrication of PICs onto an InP substrate • Basic steps : - Epitaxial growth - Waveguide etching - Passivation and planarization - Metallization and interconnect
  • 11. Four active-passive integration schemes: (a) vertical twin-guide integration (b) vertical single guide integration (c) quantum well intermixing (and selective area growth) (d) butt-joint integration
  • 12. Cross section of the wafer structure after the 4 processes:
  • 13. PIC – AN EXAMPLE WDM chip : Integration of multiple wavelengths onto single transmitter and reciever chips
  • 14. EVALUATION OF A PIC  Merits :  Demerits : Compared with EICs Compared to discrete optical components • Increased Bandwidth and lower power consumption • Smaller size, lower power consumption • High Reliability • Improved optical alignment • Data Transparency • Immunity to vibration • High cost for developing new fabrication technology
  • 15. APPLICATIONS • Fiber Optics • Bio-Photonics • Sensors • Photonic Computing • Nano Photonics
  • 16. CURRENT ASPECTS • WDM system on a chip • Match discrete components in performance • Unmatched space ,power and reliability • Deliver lowest cost/bit • High spectral efficiency
  • 17. FUTURE PROSPECTS • Complex packages that support advanced modulation schemes and receiver designs • Integration of electronics and optics
  • 18. Optical Fiber Communications – Principles and Practice by John M. Senior www.infinera.com http://en.wikipedia.org http://iopscience.iop.org http://www.sciencedirect.com http://www.vlcphotonics.com http://www.photonics.com http://ieeexplore.ieee.org http://www.researchgate.net http://photonicswiki.org http://www.onechipphotonics.com www.circuitstoday.com