SlideShare a Scribd company logo
1 of 19
Gookyi Dennis A. N.
SoC Design Lab.
BIOSENSOR SYSTEM IN
STANDARD CMOS
PROCESSES: FACT OR
FICTION?
BYUNGCHUL JANG,STUDENT MEMBER, IEEE,
AND
ARJANG HASSIBI, MEMBER, IEEE
June.05.2014
2
Contents
• Introduction
• Biosensor Systems
• CMOS Fabrication Process
• Integrated Biosensors
• Conclusion
3
Introduction: Affinity-Based Detection
• Affinity-Based detection as opposed to catalytic based
detection is a fundamental method in identifying and
measuring the abundance of biological and biochemical
analytes.
• As show below, in Affinity-Based detection, biological
analytes are specifically bound to immobilized capture
probes.
• The main aim of this detection platform is to produce
detectable signals based on the captured analytes
• The generated signal is directly proportion to the amount
of the target analyte in the sample.
4
Introduction: Challenges
• Analyte motion in biosensor settings is mainly due to diffusion
which from a microscopic point of view is a probalistic mass-transfer
process.
• This makes the analyte collision with the probes a probalistic
process.
• When the concentration of nonspecific species becomes higher than
that of the target analyte, nonspecific binding may dominate the
measured signal.
• This limits the minimum detectable level (MDL)
• These uncertainties lowers the accuracy of biosensors which does
not satisfy the requirements of many high performance
biotechnological applications.
• In addition, biosensors are not fully portable devices because their
detection platform consist of fluidic system and bulky detectors.
5
Introduction: Proposed Solution
• A proposed solution is to use semiconductor fabrication
technologies to build compact, high performance and cost-
efficient biosensor systems.
• Such system will include both the fluidic system and the
sample preparation process and the transduction process.
• The sample preparation processes in recent years have been
addressed in the form of microfluidic and has automated the
liquid handling systems.
• The integration of the detection and the read out circuitry
have not been addressed as of yet
• This is because of the technical challenges of manufacturing
transducers using custom surface and bulk MEMS procedures,
and also the performance and cost justification of monolithic
integration of all components.
6
Introduction: CMOS Solution
• CMOS fabrication processes, which is the most robust and
widely used fabrication processes in semiconductor industry
for biosensors has emerged
• CMOS beats MEMS in terms of yield, cost-efficiency and
integration capabilities
• From an electronic design point of view, CMOS offer huge
degree of flexibility and system level integration
7
Biosensor Systems
• Different functional blocks are integrated to measure analyte
specific signals in biosensors
• As shown below, biosensors not only consist of biochemical
systems but also electronic components
• The fundamental functional blocks in all biosensors include the
assay and the transducer
• This is because these components are necessary for the
functionality of the whole system
8
Biosensor Systems: Assay
• The assay in all affinity-based biosensors is a technique
used to facilitate binding of probe-target complexes to
produce a detectable signal which indicates the presence
of the targets and its amount in the sample
• Components required for affinity-based detection includes
molecular recognition layer and a transducer
9
Biosensor Systems: Assay
• Biosensors functions in solutions that comprised the target analytes
in addition to different biological and chemical molecules.
• The assaying procedure, may include label based detection
• Label-based detection is cumbersome and therefore efforts have
been made to detect target molecules using only their intrinsic
properties such as charge and mass
• Independent of the detection techniques, all measurements in
biosensor systems are counting processes
10
Biosensor Systems: Transducers
• To count the number of captured analytes, different
transducers can be used
• A transducer is a device that converts from one type of
energy to another
• The categories of transducers depend on the kind of
signal or parameter the biosensor system creates or
alters
Biosensor Systems: Transducers
• Electrochemical transducers exploit analyte capturing to
change the electrochemical characteristics of electrode
electrolyte systems.
• Mechanical transducers: an electromechanical parameter of
the system is changed by the additional mass of the captured
analytes.
• Optical transducers: create or selectively absorb certain
wavelength of light based on the captured analytes.
• Thermal transducers: measure the temperature change during
biological thermal reaction to detect the total number of
molecules involved in the reaction
11
12
CMOS Fabrication Process: Anatomy of
CMOS Integrated Systems
• CMOS fabrication technology is widely used in
microprocessors, microcontrollers and other digital logic
circuits
• Difference between CMOS and other fabrication processes
such as bipolar can clearly be seen in the structure of their
active devices
• The active devices in CMOS include p-type and n-type
MOSFETs
13
CMOS Fabrication Process: Anatomy of
CMOS Integrated Systems
• To electrically access the transistors and create a certain
circuit topology, multiple interconnect metals are fabricated
in the process
• These interconnect metals can be connected together and to
the transistor
14
CMOS Fabrication Process: Transducers in CMOS
• To implement biosensors in CMOS, we need to identify which
components can be fabricated using the process
• The interface circuitry, data converters and DSP blocks are all
electronic circuits and can be integrated in CMOS
• Building of transducers in CMOS is not as flexible as electronic
components because CMOS is optimized for digital circuits and not
so much for sensors
• Nonetheless, we can build transducers in CMOS and use them to
design high performance sensors
15
Transducers in CMOS: Electrochemical
Transducers
• Consist of electrodes where electrons are charge carriers
and electrolyte where ions are charge carriers
• The transducers extract information from the electrical
characteristics of the electrode-electrolyte systems
• Some of the characteristics include: potential, current,
impedance and I-V curves
• The main challenge is to create the system to connect
the electrode to the chip
• The only metal available in CMOS which can be exposed
the electrolyte is made up of aluminum which has
impurities
• A solution to this is to use post-fabrication processes to
create more robust electrode on top of the metal
16
CMOS Fabrication Process: Interface and
Packaging
• In standard IC package has CMOS chip electrically connected
to the pins of the package
• In general, signals can be coupled into CMOS ICs either
from the top or from the bottom of the chip
17
Integrated Biosensors
• In contrast to conventional biosensors where incubation
and detection are carried out independently, integrated
biosensors detect binding without separate hybridization
and detection processes
• The feasibility of combining those processes on a single
platform allows integrated biosensors to detect binding
in real time
18
Integrated Biosensors
• An example of an integrated biosensors is shown below:
• The detectors are integrated using CMOS and each
capturing spot has its own read out circuitry
• The figure above also shows an integrated fluorescence
biosensor
• Photo detectors are fabricated using standard CMOS
• Emission filter and FOF are integrated to the top surface
of the biosensor chip using post fabrication processes
19
Conclusion
• Recently, there have been trends to implement CMOS as a the
backbone fabrication method for biosensors
• Although CMOS is optimized for digital electronics, it still can
be used to realize transducers, readout circuitry and digital
signal processing blocks used in biosensors
• The challenge is essentially the interface design which couples
the assay to the IC chip
• This may require additional post fabrication processes

More Related Content

What's hot

Sensor Networks Introduction and Architecture
Sensor Networks Introduction and ArchitectureSensor Networks Introduction and Architecture
Sensor Networks Introduction and ArchitecturePeriyanayagiS
 
Embedded systems in biomedical applications
Embedded systems in biomedical applicationsEmbedded systems in biomedical applications
Embedded systems in biomedical applicationsSeminar Links
 
Bionic Arm Using EMG Processing
Bionic Arm Using EMG ProcessingBionic Arm Using EMG Processing
Bionic Arm Using EMG Processingbiomedicz
 
Introduction to 8085 microprocessor
Introduction to 8085 microprocessorIntroduction to 8085 microprocessor
Introduction to 8085 microprocessorkunj desai
 
trends of microprocessor field
trends of microprocessor fieldtrends of microprocessor field
trends of microprocessor fieldRamya SK
 
Evolution Of Microprocessors
Evolution Of MicroprocessorsEvolution Of Microprocessors
Evolution Of Microprocessorsharinder
 
Logical design of io t
Logical design of io tLogical design of io t
Logical design of io tKunal Bangar
 
IoT Enabling Technologies
IoT Enabling TechnologiesIoT Enabling Technologies
IoT Enabling TechnologiesPrakash Honnur
 
Building Blocks for IoT Devices
Building Blocks for IoT DevicesBuilding Blocks for IoT Devices
Building Blocks for IoT DevicesAnil Gorthy
 
Heart beat monitor system PPT
Heart beat monitor system PPT Heart beat monitor system PPT
Heart beat monitor system PPT Anand Dwivedi
 
classification of biomaterials by vishnumenon.m
classification of biomaterials by vishnumenon.mclassification of biomaterials by vishnumenon.m
classification of biomaterials by vishnumenon.mVishnu Menon
 
8085-microprocessor
8085-microprocessor8085-microprocessor
8085-microprocessorjhcid
 
Rehabilitation Engineering in Clinical Practice Ground Rounds_2015
Rehabilitation Engineering in Clinical Practice Ground Rounds_2015Rehabilitation Engineering in Clinical Practice Ground Rounds_2015
Rehabilitation Engineering in Clinical Practice Ground Rounds_2015Ben Salatin
 
Digital electronics and logic design
Digital electronics and logic designDigital electronics and logic design
Digital electronics and logic designToufiq Akbar
 

What's hot (20)

Sensor Networks Introduction and Architecture
Sensor Networks Introduction and ArchitectureSensor Networks Introduction and Architecture
Sensor Networks Introduction and Architecture
 
Memory interface
Memory interfaceMemory interface
Memory interface
 
Embedded systems in biomedical applications
Embedded systems in biomedical applicationsEmbedded systems in biomedical applications
Embedded systems in biomedical applications
 
Bionic Arm Using EMG Processing
Bionic Arm Using EMG ProcessingBionic Arm Using EMG Processing
Bionic Arm Using EMG Processing
 
Introduction to 8085 microprocessor
Introduction to 8085 microprocessorIntroduction to 8085 microprocessor
Introduction to 8085 microprocessor
 
trends of microprocessor field
trends of microprocessor fieldtrends of microprocessor field
trends of microprocessor field
 
Evolution Of Microprocessors
Evolution Of MicroprocessorsEvolution Of Microprocessors
Evolution Of Microprocessors
 
MEMS
MEMSMEMS
MEMS
 
Logical design of io t
Logical design of io tLogical design of io t
Logical design of io t
 
IoT Enabling Technologies
IoT Enabling TechnologiesIoT Enabling Technologies
IoT Enabling Technologies
 
Building Blocks for IoT Devices
Building Blocks for IoT DevicesBuilding Blocks for IoT Devices
Building Blocks for IoT Devices
 
Heart beat monitor system PPT
Heart beat monitor system PPT Heart beat monitor system PPT
Heart beat monitor system PPT
 
Bioelectrical signals
Bioelectrical signalsBioelectrical signals
Bioelectrical signals
 
classification of biomaterials by vishnumenon.m
classification of biomaterials by vishnumenon.mclassification of biomaterials by vishnumenon.m
classification of biomaterials by vishnumenon.m
 
Unit4.tms320c54x
Unit4.tms320c54xUnit4.tms320c54x
Unit4.tms320c54x
 
Soft tissue replacement
Soft tissue replacementSoft tissue replacement
Soft tissue replacement
 
8085-microprocessor
8085-microprocessor8085-microprocessor
8085-microprocessor
 
Rehabilitation Engineering in Clinical Practice Ground Rounds_2015
Rehabilitation Engineering in Clinical Practice Ground Rounds_2015Rehabilitation Engineering in Clinical Practice Ground Rounds_2015
Rehabilitation Engineering in Clinical Practice Ground Rounds_2015
 
Bio-MEMS
Bio-MEMSBio-MEMS
Bio-MEMS
 
Digital electronics and logic design
Digital electronics and logic designDigital electronics and logic design
Digital electronics and logic design
 

Viewers also liked

Application of biosensor in wastewater treatment
Application of biosensor in wastewater treatmentApplication of biosensor in wastewater treatment
Application of biosensor in wastewater treatmentLeeya Najwa
 
An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...
An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...
An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...Laurent Francis
 
Cross management experiences. mis 7 conclusiones
Cross management experiences.  mis 7 conclusionesCross management experiences.  mis 7 conclusiones
Cross management experiences. mis 7 conclusionesRafael Bermúdez Míguez
 
advisory committee
advisory committeeadvisory committee
advisory committeeMaher Selim
 
[Duality Inc.] Double Sided Padless Sensor Chip
[Duality Inc.] Double Sided Padless Sensor Chip[Duality Inc.] Double Sided Padless Sensor Chip
[Duality Inc.] Double Sided Padless Sensor ChipJinhong Ahn
 
Implantable biosensor with programmed insulin pump
Implantable biosensor with programmed insulin pumpImplantable biosensor with programmed insulin pump
Implantable biosensor with programmed insulin pumpjitisha chhettri
 
Sk microfluidics and lab on-a-chip-ch5
Sk microfluidics and lab on-a-chip-ch5Sk microfluidics and lab on-a-chip-ch5
Sk microfluidics and lab on-a-chip-ch5stanislas547
 
Microfluidics Presentation
Microfluidics PresentationMicrofluidics Presentation
Microfluidics PresentationVidiu
 
biosensor presentation faculty
biosensor presentation facultybiosensor presentation faculty
biosensor presentation facultyRobin Kim
 
Microfluidics
MicrofluidicsMicrofluidics
Microfluidicstabirsir
 
Introduction to COMS VLSI Design
Introduction to COMS VLSI DesignIntroduction to COMS VLSI Design
Introduction to COMS VLSI DesignEutectics
 
Micro Electromechanical System (MEMS)
Micro Electromechanical System (MEMS)Micro Electromechanical System (MEMS)
Micro Electromechanical System (MEMS)Navin Kumar
 
Cmos design
Cmos designCmos design
Cmos designMahi
 

Viewers also liked (20)

Application of biosensor in wastewater treatment
Application of biosensor in wastewater treatmentApplication of biosensor in wastewater treatment
Application of biosensor in wastewater treatment
 
An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...
An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...
An Integrated Capacitive Array Biosensor for the Selective and Real-Time Dete...
 
MEMS Thermal Biosensor
MEMS Thermal BiosensorMEMS Thermal Biosensor
MEMS Thermal Biosensor
 
Cross management experiences. mis 7 conclusiones
Cross management experiences.  mis 7 conclusionesCross management experiences.  mis 7 conclusiones
Cross management experiences. mis 7 conclusiones
 
advisory committee
advisory committeeadvisory committee
advisory committee
 
[Duality Inc.] Double Sided Padless Sensor Chip
[Duality Inc.] Double Sided Padless Sensor Chip[Duality Inc.] Double Sided Padless Sensor Chip
[Duality Inc.] Double Sided Padless Sensor Chip
 
Basic Insulin Pumping
Basic Insulin PumpingBasic Insulin Pumping
Basic Insulin Pumping
 
Implantable biosensor with programmed insulin pump
Implantable biosensor with programmed insulin pumpImplantable biosensor with programmed insulin pump
Implantable biosensor with programmed insulin pump
 
Sk microfluidics and lab on-a-chip-ch5
Sk microfluidics and lab on-a-chip-ch5Sk microfluidics and lab on-a-chip-ch5
Sk microfluidics and lab on-a-chip-ch5
 
Microfluidics Presentation
Microfluidics PresentationMicrofluidics Presentation
Microfluidics Presentation
 
biosensor presentation faculty
biosensor presentation facultybiosensor presentation faculty
biosensor presentation faculty
 
Microfluidics
MicrofluidicsMicrofluidics
Microfluidics
 
Bi cmos technology
Bi cmos technologyBi cmos technology
Bi cmos technology
 
Transducer
TransducerTransducer
Transducer
 
Insulin Pump
Insulin PumpInsulin Pump
Insulin Pump
 
Introduction to COMS VLSI Design
Introduction to COMS VLSI DesignIntroduction to COMS VLSI Design
Introduction to COMS VLSI Design
 
Nanobiosensors
NanobiosensorsNanobiosensors
Nanobiosensors
 
Temperature Sensors
Temperature SensorsTemperature Sensors
Temperature Sensors
 
Micro Electromechanical System (MEMS)
Micro Electromechanical System (MEMS)Micro Electromechanical System (MEMS)
Micro Electromechanical System (MEMS)
 
Cmos design
Cmos designCmos design
Cmos design
 

Similar to Biosensors

nanobiosensor and its application
nanobiosensor and  its applicationnanobiosensor and  its application
nanobiosensor and its applicationsaurav saha
 
Bioprocess Equipment Design and Economics
Bioprocess Equipment Design and EconomicsBioprocess Equipment Design and Economics
Bioprocess Equipment Design and EconomicsIlika Kaushik
 
Micro electro mechanical system (MEMS)
Micro electro mechanical system (MEMS)Micro electro mechanical system (MEMS)
Micro electro mechanical system (MEMS)Mirza Baig
 
microelectromechanicalsystem-211119004654.pdf
microelectromechanicalsystem-211119004654.pdfmicroelectromechanicalsystem-211119004654.pdf
microelectromechanicalsystem-211119004654.pdfBarsena
 
All about Biosensors- A Review
All about Biosensors- A ReviewAll about Biosensors- A Review
All about Biosensors- A ReviewIRJET Journal
 
Mems unit 1 ppt
Mems unit 1 pptMems unit 1 ppt
Mems unit 1 pptNithyaS71
 
Introduction to Mechatronics, Sensors and Transducers
Introduction to Mechatronics, Sensors and TransducersIntroduction to Mechatronics, Sensors and Transducers
Introduction to Mechatronics, Sensors and Transducerstaruian
 
Mems for space seminar presentation
Mems for space seminar presentationMems for space seminar presentation
Mems for space seminar presentationhanuman dhayal
 
Mass Spectrometry in chemistry and basic sciences.pptx
Mass Spectrometry in chemistry and basic sciences.pptxMass Spectrometry in chemistry and basic sciences.pptx
Mass Spectrometry in chemistry and basic sciences.pptxJohamSarfrazAli1
 
NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)
NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)
NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)anjana_rasheed
 

Similar to Biosensors (20)

nanobiosensor and its application
nanobiosensor and  its applicationnanobiosensor and  its application
nanobiosensor and its application
 
BIO SENSORS.pptx
BIO SENSORS.pptxBIO SENSORS.pptx
BIO SENSORS.pptx
 
Lab on a chip
Lab on a chip Lab on a chip
Lab on a chip
 
Biosensor
BiosensorBiosensor
Biosensor
 
Lab on chip copy
Lab on chip   copyLab on chip   copy
Lab on chip copy
 
Mems ppt
Mems pptMems ppt
Mems ppt
 
Bioprocess Equipment Design and Economics
Bioprocess Equipment Design and EconomicsBioprocess Equipment Design and Economics
Bioprocess Equipment Design and Economics
 
Biosensors
BiosensorsBiosensors
Biosensors
 
Micro electro mechanical system (MEMS)
Micro electro mechanical system (MEMS)Micro electro mechanical system (MEMS)
Micro electro mechanical system (MEMS)
 
microelectromechanicalsystem-211119004654.pdf
microelectromechanicalsystem-211119004654.pdfmicroelectromechanicalsystem-211119004654.pdf
microelectromechanicalsystem-211119004654.pdf
 
Biosensor_2016
Biosensor_2016Biosensor_2016
Biosensor_2016
 
All about Biosensors- A Review
All about Biosensors- A ReviewAll about Biosensors- A Review
All about Biosensors- A Review
 
Mems unit 1 ppt
Mems unit 1 pptMems unit 1 ppt
Mems unit 1 ppt
 
Introduction to Mechatronics, Sensors and Transducers
Introduction to Mechatronics, Sensors and TransducersIntroduction to Mechatronics, Sensors and Transducers
Introduction to Mechatronics, Sensors and Transducers
 
Flowcytometry
FlowcytometryFlowcytometry
Flowcytometry
 
Biosensor
BiosensorBiosensor
Biosensor
 
Ion torrent
Ion torrentIon torrent
Ion torrent
 
Mems for space seminar presentation
Mems for space seminar presentationMems for space seminar presentation
Mems for space seminar presentation
 
Mass Spectrometry in chemistry and basic sciences.pptx
Mass Spectrometry in chemistry and basic sciences.pptxMass Spectrometry in chemistry and basic sciences.pptx
Mass Spectrometry in chemistry and basic sciences.pptx
 
NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)
NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)
NANO BIOSENSORS AND INTERNET OF NANO THINGS (2022)
 

More from dennis gookyi

Verilog hdl design examples
Verilog hdl design examplesVerilog hdl design examples
Verilog hdl design examplesdennis gookyi
 
Verilog HDL Verification
Verilog HDL VerificationVerilog HDL Verification
Verilog HDL Verificationdennis gookyi
 
System design methodology
System design methodologySystem design methodology
System design methodologydennis gookyi
 
Wishbone classic bus cycle
Wishbone classic bus cycleWishbone classic bus cycle
Wishbone classic bus cycledennis gookyi
 
Design options for digital systems
Design options for digital systemsDesign options for digital systems
Design options for digital systemsdennis gookyi
 
Wishbone interface and bus cycles
Wishbone interface and bus cyclesWishbone interface and bus cycles
Wishbone interface and bus cyclesdennis gookyi
 
Advanced modeling techniques
Advanced modeling techniquesAdvanced modeling techniques
Advanced modeling techniquesdennis gookyi
 
Hierachical structural modeling
Hierachical structural modelingHierachical structural modeling
Hierachical structural modelingdennis gookyi
 
structural modeling, hazards
structural modeling, hazardsstructural modeling, hazards
structural modeling, hazardsdennis gookyi
 
Finite state machines
Finite state machinesFinite state machines
Finite state machinesdennis gookyi
 
faults in digital systems
faults in digital systemsfaults in digital systems
faults in digital systemsdennis gookyi
 
basic concepts of reliability
basic concepts of reliabilitybasic concepts of reliability
basic concepts of reliabilitydennis gookyi
 

More from dennis gookyi (19)

Verilog hdl design examples
Verilog hdl design examplesVerilog hdl design examples
Verilog hdl design examples
 
Wishbone tutorials
Wishbone tutorialsWishbone tutorials
Wishbone tutorials
 
Verilog HDL Verification
Verilog HDL VerificationVerilog HDL Verification
Verilog HDL Verification
 
Synthesis
SynthesisSynthesis
Synthesis
 
System design methodology
System design methodologySystem design methodology
System design methodology
 
Wishbone classic bus cycle
Wishbone classic bus cycleWishbone classic bus cycle
Wishbone classic bus cycle
 
Design options for digital systems
Design options for digital systemsDesign options for digital systems
Design options for digital systems
 
Wishbone interface and bus cycles
Wishbone interface and bus cyclesWishbone interface and bus cycles
Wishbone interface and bus cycles
 
Encoder decoder
Encoder decoderEncoder decoder
Encoder decoder
 
Advanced modeling techniques
Advanced modeling techniquesAdvanced modeling techniques
Advanced modeling techniques
 
4 bit add sub
4 bit add sub4 bit add sub
4 bit add sub
 
Hierachical structural modeling
Hierachical structural modelingHierachical structural modeling
Hierachical structural modeling
 
Behavioral modeling
Behavioral modelingBehavioral modeling
Behavioral modeling
 
structural modeling, hazards
structural modeling, hazardsstructural modeling, hazards
structural modeling, hazards
 
Verilog hdl
Verilog hdlVerilog hdl
Verilog hdl
 
Finite state machines
Finite state machinesFinite state machines
Finite state machines
 
test generation
test generationtest generation
test generation
 
faults in digital systems
faults in digital systemsfaults in digital systems
faults in digital systems
 
basic concepts of reliability
basic concepts of reliabilitybasic concepts of reliability
basic concepts of reliability
 

Recently uploaded

Concept of Vouching. B.Com(Hons) /B.Compdf
Concept of Vouching. B.Com(Hons) /B.CompdfConcept of Vouching. B.Com(Hons) /B.Compdf
Concept of Vouching. B.Com(Hons) /B.CompdfUmakantAnnand
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityGeoBlogs
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformChameera Dedduwage
 
Introduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptxIntroduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptxpboyjonauth
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdfSoniaTolstoy
 
MENTAL STATUS EXAMINATION format.docx
MENTAL     STATUS EXAMINATION format.docxMENTAL     STATUS EXAMINATION format.docx
MENTAL STATUS EXAMINATION format.docxPoojaSen20
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactdawncurless
 
Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111Sapana Sha
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
How to Configure Email Server in Odoo 17
How to Configure Email Server in Odoo 17How to Configure Email Server in Odoo 17
How to Configure Email Server in Odoo 17Celine George
 
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfEnzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfSumit Tiwari
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionSafetyChain Software
 
Class 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdfClass 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdfakmcokerachita
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Educationpboyjonauth
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docxPoojaSen20
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...EduSkills OECD
 
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting DataJhengPantaleon
 

Recently uploaded (20)

Concept of Vouching. B.Com(Hons) /B.Compdf
Concept of Vouching. B.Com(Hons) /B.CompdfConcept of Vouching. B.Com(Hons) /B.Compdf
Concept of Vouching. B.Com(Hons) /B.Compdf
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activity
 
Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Tilak Nagar Delhi reach out to us at 🔝9953056974🔝
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy Reform
 
Introduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptxIntroduction to AI in Higher Education_draft.pptx
Introduction to AI in Higher Education_draft.pptx
 
9953330565 Low Rate Call Girls In Rohini Delhi NCR
9953330565 Low Rate Call Girls In Rohini  Delhi NCR9953330565 Low Rate Call Girls In Rohini  Delhi NCR
9953330565 Low Rate Call Girls In Rohini Delhi NCR
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
 
MENTAL STATUS EXAMINATION format.docx
MENTAL     STATUS EXAMINATION format.docxMENTAL     STATUS EXAMINATION format.docx
MENTAL STATUS EXAMINATION format.docx
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impact
 
Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111Call Girls in Dwarka Mor Delhi Contact Us 9654467111
Call Girls in Dwarka Mor Delhi Contact Us 9654467111
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
How to Configure Email Server in Odoo 17
How to Configure Email Server in Odoo 17How to Configure Email Server in Odoo 17
How to Configure Email Server in Odoo 17
 
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdfEnzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
Enzyme, Pharmaceutical Aids, Miscellaneous Last Part of Chapter no 5th.pdf
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory Inspection
 
Staff of Color (SOC) Retention Efforts DDSD
Staff of Color (SOC) Retention Efforts DDSDStaff of Color (SOC) Retention Efforts DDSD
Staff of Color (SOC) Retention Efforts DDSD
 
Class 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdfClass 11 Legal Studies Ch-1 Concept of State .pdf
Class 11 Legal Studies Ch-1 Concept of State .pdf
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Education
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docx
 
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
Presentation by Andreas Schleicher Tackling the School Absenteeism Crisis 30 ...
 
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
 

Biosensors

  • 1. Gookyi Dennis A. N. SoC Design Lab. BIOSENSOR SYSTEM IN STANDARD CMOS PROCESSES: FACT OR FICTION? BYUNGCHUL JANG,STUDENT MEMBER, IEEE, AND ARJANG HASSIBI, MEMBER, IEEE June.05.2014
  • 2. 2 Contents • Introduction • Biosensor Systems • CMOS Fabrication Process • Integrated Biosensors • Conclusion
  • 3. 3 Introduction: Affinity-Based Detection • Affinity-Based detection as opposed to catalytic based detection is a fundamental method in identifying and measuring the abundance of biological and biochemical analytes. • As show below, in Affinity-Based detection, biological analytes are specifically bound to immobilized capture probes. • The main aim of this detection platform is to produce detectable signals based on the captured analytes • The generated signal is directly proportion to the amount of the target analyte in the sample.
  • 4. 4 Introduction: Challenges • Analyte motion in biosensor settings is mainly due to diffusion which from a microscopic point of view is a probalistic mass-transfer process. • This makes the analyte collision with the probes a probalistic process. • When the concentration of nonspecific species becomes higher than that of the target analyte, nonspecific binding may dominate the measured signal. • This limits the minimum detectable level (MDL) • These uncertainties lowers the accuracy of biosensors which does not satisfy the requirements of many high performance biotechnological applications. • In addition, biosensors are not fully portable devices because their detection platform consist of fluidic system and bulky detectors.
  • 5. 5 Introduction: Proposed Solution • A proposed solution is to use semiconductor fabrication technologies to build compact, high performance and cost- efficient biosensor systems. • Such system will include both the fluidic system and the sample preparation process and the transduction process. • The sample preparation processes in recent years have been addressed in the form of microfluidic and has automated the liquid handling systems. • The integration of the detection and the read out circuitry have not been addressed as of yet • This is because of the technical challenges of manufacturing transducers using custom surface and bulk MEMS procedures, and also the performance and cost justification of monolithic integration of all components.
  • 6. 6 Introduction: CMOS Solution • CMOS fabrication processes, which is the most robust and widely used fabrication processes in semiconductor industry for biosensors has emerged • CMOS beats MEMS in terms of yield, cost-efficiency and integration capabilities • From an electronic design point of view, CMOS offer huge degree of flexibility and system level integration
  • 7. 7 Biosensor Systems • Different functional blocks are integrated to measure analyte specific signals in biosensors • As shown below, biosensors not only consist of biochemical systems but also electronic components • The fundamental functional blocks in all biosensors include the assay and the transducer • This is because these components are necessary for the functionality of the whole system
  • 8. 8 Biosensor Systems: Assay • The assay in all affinity-based biosensors is a technique used to facilitate binding of probe-target complexes to produce a detectable signal which indicates the presence of the targets and its amount in the sample • Components required for affinity-based detection includes molecular recognition layer and a transducer
  • 9. 9 Biosensor Systems: Assay • Biosensors functions in solutions that comprised the target analytes in addition to different biological and chemical molecules. • The assaying procedure, may include label based detection • Label-based detection is cumbersome and therefore efforts have been made to detect target molecules using only their intrinsic properties such as charge and mass • Independent of the detection techniques, all measurements in biosensor systems are counting processes
  • 10. 10 Biosensor Systems: Transducers • To count the number of captured analytes, different transducers can be used • A transducer is a device that converts from one type of energy to another • The categories of transducers depend on the kind of signal or parameter the biosensor system creates or alters
  • 11. Biosensor Systems: Transducers • Electrochemical transducers exploit analyte capturing to change the electrochemical characteristics of electrode electrolyte systems. • Mechanical transducers: an electromechanical parameter of the system is changed by the additional mass of the captured analytes. • Optical transducers: create or selectively absorb certain wavelength of light based on the captured analytes. • Thermal transducers: measure the temperature change during biological thermal reaction to detect the total number of molecules involved in the reaction 11
  • 12. 12 CMOS Fabrication Process: Anatomy of CMOS Integrated Systems • CMOS fabrication technology is widely used in microprocessors, microcontrollers and other digital logic circuits • Difference between CMOS and other fabrication processes such as bipolar can clearly be seen in the structure of their active devices • The active devices in CMOS include p-type and n-type MOSFETs
  • 13. 13 CMOS Fabrication Process: Anatomy of CMOS Integrated Systems • To electrically access the transistors and create a certain circuit topology, multiple interconnect metals are fabricated in the process • These interconnect metals can be connected together and to the transistor
  • 14. 14 CMOS Fabrication Process: Transducers in CMOS • To implement biosensors in CMOS, we need to identify which components can be fabricated using the process • The interface circuitry, data converters and DSP blocks are all electronic circuits and can be integrated in CMOS • Building of transducers in CMOS is not as flexible as electronic components because CMOS is optimized for digital circuits and not so much for sensors • Nonetheless, we can build transducers in CMOS and use them to design high performance sensors
  • 15. 15 Transducers in CMOS: Electrochemical Transducers • Consist of electrodes where electrons are charge carriers and electrolyte where ions are charge carriers • The transducers extract information from the electrical characteristics of the electrode-electrolyte systems • Some of the characteristics include: potential, current, impedance and I-V curves • The main challenge is to create the system to connect the electrode to the chip • The only metal available in CMOS which can be exposed the electrolyte is made up of aluminum which has impurities • A solution to this is to use post-fabrication processes to create more robust electrode on top of the metal
  • 16. 16 CMOS Fabrication Process: Interface and Packaging • In standard IC package has CMOS chip electrically connected to the pins of the package • In general, signals can be coupled into CMOS ICs either from the top or from the bottom of the chip
  • 17. 17 Integrated Biosensors • In contrast to conventional biosensors where incubation and detection are carried out independently, integrated biosensors detect binding without separate hybridization and detection processes • The feasibility of combining those processes on a single platform allows integrated biosensors to detect binding in real time
  • 18. 18 Integrated Biosensors • An example of an integrated biosensors is shown below: • The detectors are integrated using CMOS and each capturing spot has its own read out circuitry • The figure above also shows an integrated fluorescence biosensor • Photo detectors are fabricated using standard CMOS • Emission filter and FOF are integrated to the top surface of the biosensor chip using post fabrication processes
  • 19. 19 Conclusion • Recently, there have been trends to implement CMOS as a the backbone fabrication method for biosensors • Although CMOS is optimized for digital electronics, it still can be used to realize transducers, readout circuitry and digital signal processing blocks used in biosensors • The challenge is essentially the interface design which couples the assay to the IC chip • This may require additional post fabrication processes