SlideShare una empresa de Scribd logo
1 de 20
MAXWELL BRIDGE
KAROLINEKERSIN.E
Asst.prof /BMIE
MAXWELL
BRIDGE
 The bridge used for the measurement of self-
inductance of the circuit is known as the
Maxwell bridge.
 It is the advanced form of the Wheatstone
bridge.
 A Maxwell bridge uses the null deflection
method (also known as the “bridge method”) to
calculate an unknown inductance in a circuit.
 When the calibrated components are a parallel
capacitor and resistor, the bridge is known as a
Maxwell-Wien bridge.
12/7/2020 2
PRINCIPLE
 It works on the principle of comparison of known and unknown
inductance values.
 The working principle is that the positive phase angle of an
inductive impedance can be compensated by the negative
phase angle of a capacitive impedance when put in the opposite
arm and the circuit is at resonance (i.e., no potential difference
across the detector and hence no current flowing through it).
 The unknown inductance then becomes known in terms of this
capacitance.
12/7/2020 3
MAXWELL
BRIDGE
FORMULA
 If the maxwell’s bridge is in balance condition, the
unknown inductance can be measured by using a
variable standard capacitor. The maxwell’s bridge
formula is given as (in terms of inductance, resistance,
and capacitance)
 R1 = R2R3/R4
 L1= R2R3C4
The quality factor of Maxwell’s bridge circuit is given as,
Q = ωL1/R1 = ωC4R4
12/7/2020 4
BRIDGECIRCUIT  Maxwell’s bridge circuit consists of 4 arms connected in
square or rhombus shape.
 In this circuit, two arms contain a single resistor,
another one arm contains a resistor and inductor in
series combination, and the last arm contains a resistor
and capacitor in parallel combination.
 An AC voltage source and a null detector are connected
in diagonal to the bridge circuit to measure the unknown
inductance value and compared with the known values.
12/7/2020 5
TYPESOF
MAXWELL’S
BRIDGE
 Two methods are used for determining the self-
inductance of the circuit. They are
 Maxwell’s Inductance Bridge
 Maxwell’s inductance Capacitance Bridge
12/7/2020 6
MAXWELL
INDUCTANCE
BRIDGE
 In such type of bridges, the value of unknown resistance
is determined by comparing it with the known value of
the standard self-inductance.
12/7/2020 7
In the circuit,
 L1 = Unknown inductance having resistance R1
 L2 = Variable standard inductance with fixed resistance r2
 R2 = Variable resistance
 R3 and R4 = Known resistance
Impedance of arm ab, Z1 = (R1+jwL1)
Impedance of arm cd, Z2 = R4
Impedance of arm ad, Z3 = (R2+r2+jwL2)
Impedance of arm bc, Z4 = R3
12/7/2020 8
Hence for balanced bridge,
Z1Z2 =Z3Z4
(R1+jwL1)xR4 = (R2+r2+jwL2)xR3
R1R4-R2R3-r2R3+jw(L1R4-L2R3) = 0
Equating real and imaginary part we get,
R1R4-R2R3-r2R3 = 0 ……………(1)
and (L1R4-L2R3) = 0 ……………(2)
Thus unknown inductance L1 and its resistance R1
may be calculated.
12/7/2020 9
From (1),
R1R4 = R2R3+r2R3
= R3(R2+r2)
Hence, R1 = (R3/R4)(R2+r2)
Now from (2),
L1R4 = L2R3
Hence, L1 = L2R3 / R4
Thus unknown inductance L1 and its
resistance R1 may be calculated.
12/7/2020 10
PHASORDIAGRAM
OFMAXWELL
INDUCTANCE
BRIDGE
12/7/2020 11
MAXWELLINDUCTANCE
CAPACITANCEBRIDGE
 In this method, the unknown inductance is measured
by comparison with standard known capacitance.
12/7/2020 12
In the above diagram,
 L1 = Unknown inductance with resistance R1
 C4 =variable standard capacitor
 R2, R3 & R4 = Known fixed resistance
 Now,
 Impedance of arm ab, Z1 = (R1+jwL1)
 Impedance of arm cd, Z2 = R4 / (1+jwC4R4)
 Impedance of arm ad, Z3 = R2
 Impedance of arm bc, Z4 = R3
12/7/2020 13
For bridge to be balance,
 Z1Z2 =Z3Z4
 (R1+jwL1)x [R4 / (1+jwC4R4)] = R2R3
 R1R4-R2R3 +jw(L1R4-R2R3C4R4) = 0
 Equating real and imaginary parts we get,
 R1 = R2R3 / R4
 and L1 = R2R3C4
12/7/2020 14
QUALITYFACTOR
 The quality factor of inductor may also be calculated as
 Q = wL1/R1
 = wR2R3C4 / R1
 Since R4 = R2R3C4 / R1 , hence
 Q = wC4R4
12/7/2020 15
PHASOR
DIAGRAM
12/7/2020 16
ADVANTAGE
 The expression of inductance is independent of
frequency.
 A wide range of inductance can be measured at power
and audio frequencies.
 The expression for inductance is simple and can easily
be calculated.
12/7/2020 17
DISADVANTAGE
 The fixed capacitor in Maxwell’s bridge circuit
may create interaction between resistance and
reactance balance.
 It is not suitable to measure a high range of
quality factor ( Q values >=10)
 The variable standard capacitor used in the
circuit is very costly.
 It is not used to measure the low-quality factor (
Q value) due to the circuit balance condition.
Hence it is used for medium quality coils.
12/7/2020 18
APPLICATIONS
 Used in communication systems
 Used in electronic circuits
 Used in power and audio frequency circuits
 Used to measure unknown inductance values of the
circuit and compared with a standard value.
 Used to measure medium quality coils.
 Used in filter circuits, instrumentation, linear and non-
linear circuits
 Used in power conversion circuits.
12/7/2020 19
THANK YOU
12/7/2020 20

Más contenido relacionado

La actualidad más candente

Dot convention in coupled circuits
Dot convention in coupled circuitsDot convention in coupled circuits
Dot convention in coupled circuitsmrunalinithanaraj
 
Multistage amplifier
Multistage amplifierMultistage amplifier
Multistage amplifierHansraj Meena
 
Measurement of resistance
Measurement of resistanceMeasurement of resistance
Measurement of resistanceANKUR GHEEWALA
 
EMI Unit 5 Bridges and Measurement of Physical Parameters
EMI Unit 5 Bridges and  Measurement of Physical ParametersEMI Unit 5 Bridges and  Measurement of Physical Parameters
EMI Unit 5 Bridges and Measurement of Physical ParametersGVNSK Sravya
 
Clipper and clamper circuits
Clipper and clamper circuitsClipper and clamper circuits
Clipper and clamper circuitsUnsa Shakir
 
Resonance in series and parallel circuits
Resonance in series and parallel circuitsResonance in series and parallel circuits
Resonance in series and parallel circuitshardikpanchal424
 
Differential amplifier
Differential amplifierDifferential amplifier
Differential amplifiersrirenga
 
Bridge Measurement Circuit
Bridge Measurement CircuitBridge Measurement Circuit
Bridge Measurement CircuitMoncy Babu
 
Electrodynamometer type instrument.pptx
Electrodynamometer type instrument.pptxElectrodynamometer type instrument.pptx
Electrodynamometer type instrument.pptxChandraPrakash715640
 
7.instrumentation amplifier
7.instrumentation amplifier7.instrumentation amplifier
7.instrumentation amplifierINDIAN NAVY
 
EST 130, Transistor Biasing and Amplification.
EST 130, Transistor Biasing and Amplification.EST 130, Transistor Biasing and Amplification.
EST 130, Transistor Biasing and Amplification.CKSunith1
 
Power electronics Phase Controlled Rectifiers - SCR
Power electronics   Phase Controlled Rectifiers - SCRPower electronics   Phase Controlled Rectifiers - SCR
Power electronics Phase Controlled Rectifiers - SCRBurdwan University
 
Overview of Crystal Oscillator Circuit Working and Its Application
Overview of Crystal Oscillator Circuit Working and Its ApplicationOverview of Crystal Oscillator Circuit Working and Its Application
Overview of Crystal Oscillator Circuit Working and Its Applicationelprocus
 
Power electronic dc to dc converter
Power electronic dc to dc converterPower electronic dc to dc converter
Power electronic dc to dc convertermoazalhosne
 
Digital Voltmeter, Digital Ammeter and Digital Multimeter
Digital Voltmeter, Digital Ammeter and Digital MultimeterDigital Voltmeter, Digital Ammeter and Digital Multimeter
Digital Voltmeter, Digital Ammeter and Digital MultimeterPraveen Kumar
 

La actualidad más candente (20)

Dot convention in coupled circuits
Dot convention in coupled circuitsDot convention in coupled circuits
Dot convention in coupled circuits
 
Multistage amplifier
Multistage amplifierMultistage amplifier
Multistage amplifier
 
Measurement of resistance
Measurement of resistanceMeasurement of resistance
Measurement of resistance
 
EMI Unit 5 Bridges and Measurement of Physical Parameters
EMI Unit 5 Bridges and  Measurement of Physical ParametersEMI Unit 5 Bridges and  Measurement of Physical Parameters
EMI Unit 5 Bridges and Measurement of Physical Parameters
 
Clipper and clamper circuits
Clipper and clamper circuitsClipper and clamper circuits
Clipper and clamper circuits
 
Resonance in series and parallel circuits
Resonance in series and parallel circuitsResonance in series and parallel circuits
Resonance in series and parallel circuits
 
Diode circuits
Diode circuitsDiode circuits
Diode circuits
 
Differential amplifier
Differential amplifierDifferential amplifier
Differential amplifier
 
Bridge Measurement Circuit
Bridge Measurement CircuitBridge Measurement Circuit
Bridge Measurement Circuit
 
Electrodynamometer type instrument.pptx
Electrodynamometer type instrument.pptxElectrodynamometer type instrument.pptx
Electrodynamometer type instrument.pptx
 
7.instrumentation amplifier
7.instrumentation amplifier7.instrumentation amplifier
7.instrumentation amplifier
 
Thyristor
ThyristorThyristor
Thyristor
 
EST 130, Transistor Biasing and Amplification.
EST 130, Transistor Biasing and Amplification.EST 130, Transistor Biasing and Amplification.
EST 130, Transistor Biasing and Amplification.
 
Q meter ppt
Q meter pptQ meter ppt
Q meter ppt
 
Power electronics Phase Controlled Rectifiers - SCR
Power electronics   Phase Controlled Rectifiers - SCRPower electronics   Phase Controlled Rectifiers - SCR
Power electronics Phase Controlled Rectifiers - SCR
 
Two port network
Two port networkTwo port network
Two port network
 
Silicon control rectifier
Silicon control rectifierSilicon control rectifier
Silicon control rectifier
 
Overview of Crystal Oscillator Circuit Working and Its Application
Overview of Crystal Oscillator Circuit Working and Its ApplicationOverview of Crystal Oscillator Circuit Working and Its Application
Overview of Crystal Oscillator Circuit Working and Its Application
 
Power electronic dc to dc converter
Power electronic dc to dc converterPower electronic dc to dc converter
Power electronic dc to dc converter
 
Digital Voltmeter, Digital Ammeter and Digital Multimeter
Digital Voltmeter, Digital Ammeter and Digital MultimeterDigital Voltmeter, Digital Ammeter and Digital Multimeter
Digital Voltmeter, Digital Ammeter and Digital Multimeter
 

Similar a Maxwell bridge and its types

Comparision methods of measurements
Comparision methods of measurementsComparision methods of measurements
Comparision methods of measurementsPrabhaMaheswariM
 
Schering bridge Experiment
Schering bridge ExperimentSchering bridge Experiment
Schering bridge ExperimentVijay Raskar
 
AC bridge and DC Circuit B.Sc. Physics Electronics .pptx
AC bridge and DC Circuit B.Sc. Physics Electronics .pptxAC bridge and DC Circuit B.Sc. Physics Electronics .pptx
AC bridge and DC Circuit B.Sc. Physics Electronics .pptxTehseenKadaree
 
12 ac bridges rev 3 080423
12 ac  bridges rev 3 08042312 ac  bridges rev 3 080423
12 ac bridges rev 3 080423Iqxca AzmYani
 
Ac bridge and its application
Ac bridge and its application Ac bridge and its application
Ac bridge and its application karoline Enoch
 
AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)
AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)
AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)Eklavya Sharma
 
Lecture 4 b signalconditioning_ac bridge
Lecture 4 b signalconditioning_ac bridgeLecture 4 b signalconditioning_ac bridge
Lecture 4 b signalconditioning_ac bridgeMuhamad Azwan
 
Eet3082 binod kumar sahu lecturer_10
Eet3082 binod kumar sahu lecturer_10Eet3082 binod kumar sahu lecturer_10
Eet3082 binod kumar sahu lecturer_10BinodKumarSahu5
 
White paper pi 11012011
White paper pi 11012011White paper pi 11012011
White paper pi 11012011Hany Fahmy
 
Mw &dc lab (90) iv i
Mw &dc lab (90) iv iMw &dc lab (90) iv i
Mw &dc lab (90) iv iPrabhu Kiran
 
ENEL301 report _Joseph Haystead_1132999
ENEL301 report _Joseph Haystead_1132999ENEL301 report _Joseph Haystead_1132999
ENEL301 report _Joseph Haystead_1132999Joseph Haystead
 
Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...
Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...
Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...IJPEDS-IAES
 

Similar a Maxwell bridge and its types (20)

Comparision methods of measurements
Comparision methods of measurementsComparision methods of measurements
Comparision methods of measurements
 
Ac bridges
Ac bridgesAc bridges
Ac bridges
 
A.C. bridges
A.C. bridgesA.C. bridges
A.C. bridges
 
Schering bridge Experiment
Schering bridge ExperimentSchering bridge Experiment
Schering bridge Experiment
 
AC bridge and DC Circuit B.Sc. Physics Electronics .pptx
AC bridge and DC Circuit B.Sc. Physics Electronics .pptxAC bridge and DC Circuit B.Sc. Physics Electronics .pptx
AC bridge and DC Circuit B.Sc. Physics Electronics .pptx
 
12 ac bridges rev 3 080423
12 ac  bridges rev 3 08042312 ac  bridges rev 3 080423
12 ac bridges rev 3 080423
 
Ac bridge and its application
Ac bridge and its application Ac bridge and its application
Ac bridge and its application
 
Bridge ppt 1
Bridge ppt 1Bridge ppt 1
Bridge ppt 1
 
RLC.ppt
RLC.pptRLC.ppt
RLC.ppt
 
2 dc meter
2 dc meter 2 dc meter
2 dc meter
 
AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)
AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)
AC bridges ( Weins bridge, Desauty bridge, Maxwell's inductance bridge)
 
Lecture 4 b signalconditioning_ac bridge
Lecture 4 b signalconditioning_ac bridgeLecture 4 b signalconditioning_ac bridge
Lecture 4 b signalconditioning_ac bridge
 
Eet3082 binod kumar sahu lecturer_10
Eet3082 binod kumar sahu lecturer_10Eet3082 binod kumar sahu lecturer_10
Eet3082 binod kumar sahu lecturer_10
 
White paper pi 11012011
White paper pi 11012011White paper pi 11012011
White paper pi 11012011
 
Week 3
Week 3Week 3
Week 3
 
Mw &dc lab (90) iv i
Mw &dc lab (90) iv iMw &dc lab (90) iv i
Mw &dc lab (90) iv i
 
AC and DC BridgePPT for engineering students
AC and DC BridgePPT for engineering studentsAC and DC BridgePPT for engineering students
AC and DC BridgePPT for engineering students
 
TIPLER CAP r25
TIPLER CAP r25TIPLER CAP r25
TIPLER CAP r25
 
ENEL301 report _Joseph Haystead_1132999
ENEL301 report _Joseph Haystead_1132999ENEL301 report _Joseph Haystead_1132999
ENEL301 report _Joseph Haystead_1132999
 
Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...
Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...
Comparative Evaluation of Generalized Multicell Impedance Source Inverter for...
 

Más de karoline Enoch

Thermogravimetric analysis.pptx
Thermogravimetric analysis.pptxThermogravimetric analysis.pptx
Thermogravimetric analysis.pptxkaroline Enoch
 
UV VISIBLE SPECTROSCOPY
UV VISIBLE SPECTROSCOPYUV VISIBLE SPECTROSCOPY
UV VISIBLE SPECTROSCOPYkaroline Enoch
 
Nanotribolgy for medical devices
Nanotribolgy for medical devicesNanotribolgy for medical devices
Nanotribolgy for medical deviceskaroline Enoch
 
Protein based nanostructures for biomedical applications
Protein based nanostructures for biomedical applications Protein based nanostructures for biomedical applications
Protein based nanostructures for biomedical applications karoline Enoch
 
Schering bridge and its derivation
Schering bridge and its derivationSchering bridge and its derivation
Schering bridge and its derivationkaroline Enoch
 
Dc bridge types ,derivation and its application
Dc bridge types ,derivation and its applicationDc bridge types ,derivation and its application
Dc bridge types ,derivation and its applicationkaroline Enoch
 
Photodynamic therapy and mechanism
Photodynamic therapy and mechanismPhotodynamic therapy and mechanism
Photodynamic therapy and mechanismkaroline Enoch
 
Preamplifier and impedance matching circuits
Preamplifier and impedance matching circuitsPreamplifier and impedance matching circuits
Preamplifier and impedance matching circuitskaroline Enoch
 
Photo theraphy ,principle and mechanism
Photo theraphy ,principle and mechanismPhoto theraphy ,principle and mechanism
Photo theraphy ,principle and mechanismkaroline Enoch
 
Lasers in opthalmology
Lasers in opthalmologyLasers in opthalmology
Lasers in opthalmologykaroline Enoch
 
Photolithography and its procedure
Photolithography and its procedurePhotolithography and its procedure
Photolithography and its procedurekaroline Enoch
 
Piezoelectric transducer and its working
Piezoelectric transducer and its workingPiezoelectric transducer and its working
Piezoelectric transducer and its workingkaroline Enoch
 
Photoelectric transducers and its classification
Photoelectric transducers and its classificationPhotoelectric transducers and its classification
Photoelectric transducers and its classificationkaroline Enoch
 
Piezoresistive sensing
Piezoresistive sensingPiezoresistive sensing
Piezoresistive sensingkaroline Enoch
 
Capacitive sensing technology
Capacitive sensing technologyCapacitive sensing technology
Capacitive sensing technologykaroline Enoch
 
Strain gauge as pressure transducers
Strain gauge as pressure transducersStrain gauge as pressure transducers
Strain gauge as pressure transducerskaroline Enoch
 
RTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTORRTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTORkaroline Enoch
 

Más de karoline Enoch (20)

Thermogravimetric analysis.pptx
Thermogravimetric analysis.pptxThermogravimetric analysis.pptx
Thermogravimetric analysis.pptx
 
UV VISIBLE SPECTROSCOPY
UV VISIBLE SPECTROSCOPYUV VISIBLE SPECTROSCOPY
UV VISIBLE SPECTROSCOPY
 
Nanotribolgy for medical devices
Nanotribolgy for medical devicesNanotribolgy for medical devices
Nanotribolgy for medical devices
 
Protein based nanostructures for biomedical applications
Protein based nanostructures for biomedical applications Protein based nanostructures for biomedical applications
Protein based nanostructures for biomedical applications
 
Schering bridge and its derivation
Schering bridge and its derivationSchering bridge and its derivation
Schering bridge and its derivation
 
Dc bridge types ,derivation and its application
Dc bridge types ,derivation and its applicationDc bridge types ,derivation and its application
Dc bridge types ,derivation and its application
 
Photodynamic therapy and mechanism
Photodynamic therapy and mechanismPhotodynamic therapy and mechanism
Photodynamic therapy and mechanism
 
Preamplifier and impedance matching circuits
Preamplifier and impedance matching circuitsPreamplifier and impedance matching circuits
Preamplifier and impedance matching circuits
 
Photo theraphy ,principle and mechanism
Photo theraphy ,principle and mechanismPhoto theraphy ,principle and mechanism
Photo theraphy ,principle and mechanism
 
Lasers in opthalmology
Lasers in opthalmologyLasers in opthalmology
Lasers in opthalmology
 
Lasers in urology
Lasers in urologyLasers in urology
Lasers in urology
 
Lasers in dermatology
Lasers in dermatologyLasers in dermatology
Lasers in dermatology
 
Lasers in dentistry
Lasers in dentistryLasers in dentistry
Lasers in dentistry
 
Photolithography and its procedure
Photolithography and its procedurePhotolithography and its procedure
Photolithography and its procedure
 
Piezoelectric transducer and its working
Piezoelectric transducer and its workingPiezoelectric transducer and its working
Piezoelectric transducer and its working
 
Photoelectric transducers and its classification
Photoelectric transducers and its classificationPhotoelectric transducers and its classification
Photoelectric transducers and its classification
 
Piezoresistive sensing
Piezoresistive sensingPiezoresistive sensing
Piezoresistive sensing
 
Capacitive sensing technology
Capacitive sensing technologyCapacitive sensing technology
Capacitive sensing technology
 
Strain gauge as pressure transducers
Strain gauge as pressure transducersStrain gauge as pressure transducers
Strain gauge as pressure transducers
 
RTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTORRTD-RESISTANCE TEMPERATURE DETECTOR
RTD-RESISTANCE TEMPERATURE DETECTOR
 

Último

Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...Call Girls in Nagpur High Profile
 
chapter 5.pptx: drainage and irrigation engineering
chapter 5.pptx: drainage and irrigation engineeringchapter 5.pptx: drainage and irrigation engineering
chapter 5.pptx: drainage and irrigation engineeringmulugeta48
 
Call for Papers - International Journal of Intelligent Systems and Applicatio...
Call for Papers - International Journal of Intelligent Systems and Applicatio...Call for Papers - International Journal of Intelligent Systems and Applicatio...
Call for Papers - International Journal of Intelligent Systems and Applicatio...Christo Ananth
 
Unit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfUnit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfRagavanV2
 
Coefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxCoefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxAsutosh Ranjan
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Christo Ananth
 
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance BookingCall Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Bookingroncy bisnoi
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordAsst.prof M.Gokilavani
 
Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...
Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...
Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...Dr.Costas Sachpazis
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTbhaskargani46
 
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Bookingdharasingh5698
 
Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...Call Girls in Nagpur High Profile
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations120cr0395
 
Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01KreezheaRecto
 
AKTU Computer Networks notes --- Unit 3.pdf
AKTU Computer Networks notes ---  Unit 3.pdfAKTU Computer Networks notes ---  Unit 3.pdf
AKTU Computer Networks notes --- Unit 3.pdfankushspencer015
 
Vivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design SpainVivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design Spaintimesproduction05
 

Último (20)

(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
 
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
 
chapter 5.pptx: drainage and irrigation engineering
chapter 5.pptx: drainage and irrigation engineeringchapter 5.pptx: drainage and irrigation engineering
chapter 5.pptx: drainage and irrigation engineering
 
Call for Papers - International Journal of Intelligent Systems and Applicatio...
Call for Papers - International Journal of Intelligent Systems and Applicatio...Call for Papers - International Journal of Intelligent Systems and Applicatio...
Call for Papers - International Journal of Intelligent Systems and Applicatio...
 
Unit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfUnit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdf
 
Coefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxCoefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptx
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
 
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance BookingCall Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
 
Water Industry Process Automation & Control Monthly - April 2024
Water Industry Process Automation & Control Monthly - April 2024Water Industry Process Automation & Control Monthly - April 2024
Water Industry Process Automation & Control Monthly - April 2024
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
 
Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...
Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...
Structural Analysis and Design of Foundations: A Comprehensive Handbook for S...
 
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPT
 
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Ankleshwar 7001035870 Whatsapp Number, 24/07 Booking
 
Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...Top Rated  Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
Top Rated Pune Call Girls Budhwar Peth ⟟ 6297143586 ⟟ Call Me For Genuine Se...
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations
 
Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01
 
AKTU Computer Networks notes --- Unit 3.pdf
AKTU Computer Networks notes ---  Unit 3.pdfAKTU Computer Networks notes ---  Unit 3.pdf
AKTU Computer Networks notes --- Unit 3.pdf
 
Vivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design SpainVivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design Spain
 

Maxwell bridge and its types

  • 2. MAXWELL BRIDGE  The bridge used for the measurement of self- inductance of the circuit is known as the Maxwell bridge.  It is the advanced form of the Wheatstone bridge.  A Maxwell bridge uses the null deflection method (also known as the “bridge method”) to calculate an unknown inductance in a circuit.  When the calibrated components are a parallel capacitor and resistor, the bridge is known as a Maxwell-Wien bridge. 12/7/2020 2
  • 3. PRINCIPLE  It works on the principle of comparison of known and unknown inductance values.  The working principle is that the positive phase angle of an inductive impedance can be compensated by the negative phase angle of a capacitive impedance when put in the opposite arm and the circuit is at resonance (i.e., no potential difference across the detector and hence no current flowing through it).  The unknown inductance then becomes known in terms of this capacitance. 12/7/2020 3
  • 4. MAXWELL BRIDGE FORMULA  If the maxwell’s bridge is in balance condition, the unknown inductance can be measured by using a variable standard capacitor. The maxwell’s bridge formula is given as (in terms of inductance, resistance, and capacitance)  R1 = R2R3/R4  L1= R2R3C4 The quality factor of Maxwell’s bridge circuit is given as, Q = ωL1/R1 = ωC4R4 12/7/2020 4
  • 5. BRIDGECIRCUIT  Maxwell’s bridge circuit consists of 4 arms connected in square or rhombus shape.  In this circuit, two arms contain a single resistor, another one arm contains a resistor and inductor in series combination, and the last arm contains a resistor and capacitor in parallel combination.  An AC voltage source and a null detector are connected in diagonal to the bridge circuit to measure the unknown inductance value and compared with the known values. 12/7/2020 5
  • 6. TYPESOF MAXWELL’S BRIDGE  Two methods are used for determining the self- inductance of the circuit. They are  Maxwell’s Inductance Bridge  Maxwell’s inductance Capacitance Bridge 12/7/2020 6
  • 7. MAXWELL INDUCTANCE BRIDGE  In such type of bridges, the value of unknown resistance is determined by comparing it with the known value of the standard self-inductance. 12/7/2020 7
  • 8. In the circuit,  L1 = Unknown inductance having resistance R1  L2 = Variable standard inductance with fixed resistance r2  R2 = Variable resistance  R3 and R4 = Known resistance Impedance of arm ab, Z1 = (R1+jwL1) Impedance of arm cd, Z2 = R4 Impedance of arm ad, Z3 = (R2+r2+jwL2) Impedance of arm bc, Z4 = R3 12/7/2020 8
  • 9. Hence for balanced bridge, Z1Z2 =Z3Z4 (R1+jwL1)xR4 = (R2+r2+jwL2)xR3 R1R4-R2R3-r2R3+jw(L1R4-L2R3) = 0 Equating real and imaginary part we get, R1R4-R2R3-r2R3 = 0 ……………(1) and (L1R4-L2R3) = 0 ……………(2) Thus unknown inductance L1 and its resistance R1 may be calculated. 12/7/2020 9
  • 10. From (1), R1R4 = R2R3+r2R3 = R3(R2+r2) Hence, R1 = (R3/R4)(R2+r2) Now from (2), L1R4 = L2R3 Hence, L1 = L2R3 / R4 Thus unknown inductance L1 and its resistance R1 may be calculated. 12/7/2020 10
  • 12. MAXWELLINDUCTANCE CAPACITANCEBRIDGE  In this method, the unknown inductance is measured by comparison with standard known capacitance. 12/7/2020 12
  • 13. In the above diagram,  L1 = Unknown inductance with resistance R1  C4 =variable standard capacitor  R2, R3 & R4 = Known fixed resistance  Now,  Impedance of arm ab, Z1 = (R1+jwL1)  Impedance of arm cd, Z2 = R4 / (1+jwC4R4)  Impedance of arm ad, Z3 = R2  Impedance of arm bc, Z4 = R3 12/7/2020 13
  • 14. For bridge to be balance,  Z1Z2 =Z3Z4  (R1+jwL1)x [R4 / (1+jwC4R4)] = R2R3  R1R4-R2R3 +jw(L1R4-R2R3C4R4) = 0  Equating real and imaginary parts we get,  R1 = R2R3 / R4  and L1 = R2R3C4 12/7/2020 14
  • 15. QUALITYFACTOR  The quality factor of inductor may also be calculated as  Q = wL1/R1  = wR2R3C4 / R1  Since R4 = R2R3C4 / R1 , hence  Q = wC4R4 12/7/2020 15
  • 17. ADVANTAGE  The expression of inductance is independent of frequency.  A wide range of inductance can be measured at power and audio frequencies.  The expression for inductance is simple and can easily be calculated. 12/7/2020 17
  • 18. DISADVANTAGE  The fixed capacitor in Maxwell’s bridge circuit may create interaction between resistance and reactance balance.  It is not suitable to measure a high range of quality factor ( Q values >=10)  The variable standard capacitor used in the circuit is very costly.  It is not used to measure the low-quality factor ( Q value) due to the circuit balance condition. Hence it is used for medium quality coils. 12/7/2020 18
  • 19. APPLICATIONS  Used in communication systems  Used in electronic circuits  Used in power and audio frequency circuits  Used to measure unknown inductance values of the circuit and compared with a standard value.  Used to measure medium quality coils.  Used in filter circuits, instrumentation, linear and non- linear circuits  Used in power conversion circuits. 12/7/2020 19