SlideShare a Scribd company logo
1 of 32
Chapter 1: Introduction
Shankar Gangaju
Kathmandu Engineering College,
Kalimati, Kathmandu
Shankar.gangaju@keckist.edu.np
1
Course Structure
• Theory: 80
– Chapter 1: Introduction 8 marks
– Chapter 2: RF and M/W Transmission Lines 10 marks
– Chapter 3: RF and M/W Network Theory and Analysis 8 marks
– Chapter 4: RF/MW Components and Devices 10 marks
– Chapter 5: Microwave Generator 8 marks
– Chapter 6: RF Design Practice 20 marks
– Chapter 7: Microwave Antennas and Propagation 8 marks
– Chapter 8: RF/MW Measurements 8 marks
• Practical: 25
Lab_RF_Microwave
2
Grading System
• Alternate Day Test+ Final Assessment: 50%
• Attendance: 20%
• Assignment:10%
• Technical Writing: 10%
• Presentation:10%
3
Reference Books
1. Microwave Electronics- K.C Gupta, Tata McGraw Hill
2. Microwave Engineering- A.K. Gautam, S.K.Kataria &
Sons
3. Microwave Techniques-D.C. Agrawal, Tata Mc Graw-hill
4. Microwave Devices and Circuits-Samuel Y. Liao, PHI 3rd
Edition,1994
5. Microwave Engineering-David M. Pozar, 2nd Edition,
Newington CT: 1997
6. Engineering Electromagnetic-W.H. Hyatt, McGraw-Hill
Book Company
7. Electronic Transmission Technology: Lines, Waves and
Antennas-William Sinnema, Prentice Hall
4
Historical Perspective
5
Discipline Required in RF Design
6
RF and Microwave Design Hexagon
7
RF/Microwave
• RF is a rate of oscillation in the range around
3KHz to 300GHz, which corresponds to the
frequency of radio waves and the alternating
currents which carry radio signals.
• Microwave: is not meant to suggest a wavelength
micrometer, have smaller wavelength compared
to radio broadcasting.
• Frequency Range: 300MHz-300GHz
• Wavelength: 1mm – 1m
• Both includes UHF (0.3-3GHz), SHF (3-30GHz)
and EHF (30-300GHz) signals.
8
Electromagnetic Spectrum
9
10
IEEE Microwave Frequency Band
11
Microwave System
12
Microwave Sources
• High power microwave sources use specialized
vacuum tubes to generate microwave.
• Operate on the principle of ballistic motion of
electrons in a vacuum under the influence of
controlling electric or magnetic field.
• Includes magnetron, klystron, travelling wave
tube (TWT) and gyrotron.
• These devices work in the density modulated
mode. (work on the basis of clumps of electrons
flying ballisticially through them, rather than
using a continuous stream of electrons).
13
• Lower power microwave sources use solid
state devices such as the FET, tunnel diodes,
Gunn diodes and IMPATT diodes.
• MASER is a solid state device which amplifies
microwave using similar principle to the
LASER, which amplifies higher frequency
light waves.
14
Advantages of using higher frequency
• Larger instantaneous bandwidth for much
information
• Higher resolution for radar imaging and sensing
• Less interference by near by application
• Higher speed for digital communication, signal
processing and transmission
• Less crowded spectrum
• Difficulty in jamming (military application)
15
Disadvantages of using high frequency
• More expensive component
• Higher atmospheric loss
• Reliance in GaAs technology rather than Si
technology
• Higher component losses, lower output power
from active devices
• Microwave devices
16
Microwave Applications
• Communication
– Before the advent of fiber-optic transmission, most long-distance
telephone calls were carried via networks of microwave radio relay
links using FDM.
– Wireless LAN protocols, such as Bluetooth and the IEEE 802.11
specifications, also use microwaves in the 2.4 GHz ISM band.
– Wireless internet access IEEE 802.11a uses microwaves at 3.5-4
GHz range.
– Metropolitan area network (MAN) protocols, such as WiMAX
(Worldwide Interoperability for Microwave Access) are based on
standards such as IEEE 802.16, designed to operate between 2 to 11
GHz.
– Mobile Broadband Wireless Access (MBWA) protocols based on
standards specifications such as IEEE 802.20 operate between 1.6
and 2.3 GHz.
17
Microwave Applications
• Communication
– Mobile phone networks, like GSM, use the low-microwave/high-
UHF frequencies around 1.8 and 1.9 GHz in the Americas and
elsewhere, respectively.
– Most satellite communications systems operate in the C, X, Ka,
or Ku bands of the microwave spectrum.
– Satellite TV either operates in the C band for the traditional
large dish fixed satellite service or Ku band for direct-broadcast
satellite.
– Military communications run primarily over X or Ku-band links.
• Commercial Applications
– Commercial implementations are in the 2.3 GHz, 2.5 GHz,
3.5 GHz and 5.8 GHz ranges (ISM band- Industry, Science and
Medicine band).
18
Microwave Applications
• Navigation
– Global Navigation Satellite Systems (GNSS) broadcast
navigational signals in various bands between about 1.2
GHz and 1.6 GHz.
– These include the Chinese Beidou, the American Global
Positioning System (GPS) and the Russian GLONASS.
• RADAR
– Radar uses microwave radiation to detect the range,
speed, and other characteristics of remote objects.
– Weather prediction
– Geological survey for natural resource exploration.
– Air traffic control, road traffic surveillance.
19
Microwave Applications
• Radio astronomy
– Celestial body research.
– Distance measurement.
• Heating and Power Application
– A microwave oven uses microwave radiation at a
frequency near 2.45 GHz.
– Dielectric heating through energy absorption.
– Microwave heating is used in industrial processes for
drying and curing products.
• Security
– RFID based identification system.
– Motion detectors.
20
Microwave Applications
• Medical Use
– Photoacoustic imaging (ultrasound).
– CT scan, X-rays, MRI like imaging.
– Thermo-therapy, LASER therapy.
– Cancer treatment.
21
Behavior of circuits at conventional
and RF/Microwave bands
Resistor
22
23
24
Inductor
25
26
Capacitors
27
28
Behavior of Circuits at Conventional
and RF/Microwave Bands
Low Frequency/ Conventional
• Bandwidths are limited
hence small no. of channels
can be adjusted.
• It uses lumped element
circuit theory.
• Current flow and voltage
drops are used to calculate
power.
• Open wire, twisted cables,
co-axial cables are used as
transmission lines.
RF/Microwaves
• Provide large bandwidth so its
possible to adjust large no. of
channels.
• It uses distributed circuit
theory (ohm/m, H/m, F/m).
• Scattering phenomena like
absorption, reflection,
refraction, etc. are used in
power calculation.
• Optical fibers, waveguides,
strip lines, micro-strip lines are
common transmission lines.
29
Behavior of Circuits at Conventional
and RF/Microwave Bands
Low Frequency/ Conventional
• Lumped circuit elements are
used such as resistors,
filters, oscillators, etc.
• It uses current modulated
mode.
• Almost all the solid state
devices can be used.
• It can handle low power.
RF/Microwaves
• Cavity resonators or resonant
lines are used as oscillators,
resonators, etc.
• Density modulation or velocity
modulation are used using
magnetrons, klystrons, TWTs,
etc.
• Vacuum tube like devices,
micro-miniaturised solid state
devices like Gunn diodes,
tunnel diodes, IMPITT,
TRAPPIT, etc. are used.
• It can handle higher power.
30
Assignment #1
31
1. Mention the microwave frequency band specified by IEEE. What are the
advantages and disadvantages of using microwave signal?
2. Define microwave signal? Explain the characteristics behavior of passive
component at microwave frequency.
3. Compare and contrast the circuit behavior in conventional low frequency and
RF/Microwave frequency band. What are the application areas of microwave
system?
4. Explain the general microwave system with clear diagram. Explain the
characteristics of microwave signal.
5. Differentiate between microwave and acoustic/seismic wave.
6. Write short notes on: Gunn Diode, IMPATT Diode and MASER.
Due Date: One Week from this Slide
Thank You
32

More Related Content

What's hot

Apperture and Horn Antenna
Apperture and Horn AntennaApperture and Horn Antenna
Apperture and Horn AntennaRoma Rico Flores
 
Antenna presentation PPT
Antenna presentation PPTAntenna presentation PPT
Antenna presentation PPTSachin Kadam
 
Broadband antennas
Broadband antennasBroadband antennas
Broadband antennasAJAL A J
 
Combating fading channels (1) (3)
Combating fading channels (1) (3)Combating fading channels (1) (3)
Combating fading channels (1) (3)liril sharma
 
Chap 4 (large scale propagation)
Chap 4 (large scale propagation)Chap 4 (large scale propagation)
Chap 4 (large scale propagation)asadkhan1327
 
microwave communication
microwave communicationmicrowave communication
microwave communicationATTO RATHORE
 
Optical communication system
Optical communication systemOptical communication system
Optical communication systemmohamed naeem
 
Antennas wave and propagation
 Antennas wave and propagation Antennas wave and propagation
Antennas wave and propagationIsha Negi
 
Millimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applicationsMillimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applicationsGana U Kumar
 
Cellular network
Cellular networkCellular network
Cellular networkMr SMAK
 
Analog communication
Analog communicationAnalog communication
Analog communicationPreston King
 
Concepts of & cell sectoring and micro cell
Concepts of & cell sectoring and micro cellConcepts of & cell sectoring and micro cell
Concepts of & cell sectoring and micro cellKundan Kumar
 
Multiple access techniques
Multiple access techniquesMultiple access techniques
Multiple access techniquesBibhu Prasad
 
Chap 5 (small scale fading)
Chap 5 (small scale fading)Chap 5 (small scale fading)
Chap 5 (small scale fading)asadkhan1327
 
RF and Microwave Engineering
RF  and Microwave EngineeringRF  and Microwave Engineering
RF and Microwave Engineeringsrirenga
 
Fundamentals of microwave link design
Fundamentals of microwave link designFundamentals of microwave link design
Fundamentals of microwave link designSHIV DUTT
 

What's hot (20)

Apperture and Horn Antenna
Apperture and Horn AntennaApperture and Horn Antenna
Apperture and Horn Antenna
 
Antenna presentation PPT
Antenna presentation PPTAntenna presentation PPT
Antenna presentation PPT
 
Broadband antennas
Broadband antennasBroadband antennas
Broadband antennas
 
Combating fading channels (1) (3)
Combating fading channels (1) (3)Combating fading channels (1) (3)
Combating fading channels (1) (3)
 
Microwave components
Microwave componentsMicrowave components
Microwave components
 
Chap 4 (large scale propagation)
Chap 4 (large scale propagation)Chap 4 (large scale propagation)
Chap 4 (large scale propagation)
 
microwave communication
microwave communicationmicrowave communication
microwave communication
 
Optical networks
Optical networksOptical networks
Optical networks
 
Optical communication system
Optical communication systemOptical communication system
Optical communication system
 
Antennas wave and propagation
 Antennas wave and propagation Antennas wave and propagation
Antennas wave and propagation
 
CR (1)
CR (1)CR (1)
CR (1)
 
Millimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applicationsMillimeter wave circular microstrip Patch antenna for 5 g applications
Millimeter wave circular microstrip Patch antenna for 5 g applications
 
Cellular network
Cellular networkCellular network
Cellular network
 
Analog communication
Analog communicationAnalog communication
Analog communication
 
Concepts of & cell sectoring and micro cell
Concepts of & cell sectoring and micro cellConcepts of & cell sectoring and micro cell
Concepts of & cell sectoring and micro cell
 
Multiple access techniques
Multiple access techniquesMultiple access techniques
Multiple access techniques
 
Chap 5 (small scale fading)
Chap 5 (small scale fading)Chap 5 (small scale fading)
Chap 5 (small scale fading)
 
RF and Microwave Engineering
RF  and Microwave EngineeringRF  and Microwave Engineering
RF and Microwave Engineering
 
Antenna Basics
Antenna BasicsAntenna Basics
Antenna Basics
 
Fundamentals of microwave link design
Fundamentals of microwave link designFundamentals of microwave link design
Fundamentals of microwave link design
 

Similar to Introduction to rf and microwave circuits

EC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdf
EC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdfEC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdf
EC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdfBBALAMURUGAN4
 
course introduction.pptx
course introduction.pptxcourse introduction.pptx
course introduction.pptxbewnet
 
Pointtopointmicrowave 100826070651-phpapp02
Pointtopointmicrowave 100826070651-phpapp02Pointtopointmicrowave 100826070651-phpapp02
Pointtopointmicrowave 100826070651-phpapp02Neerajku Samal
 
20CS2007 Computer Communication Networks
20CS2007 Computer Communication Networks 20CS2007 Computer Communication Networks
20CS2007 Computer Communication Networks Kathirvel Ayyaswamy
 
Communication systems
Communication systemsCommunication systems
Communication systemsMNIT Jaipur
 
Principles of Electronics Communication system.ppt
Principles of Electronics Communication system.pptPrinciples of Electronics Communication system.ppt
Principles of Electronics Communication system.pptMATRUSRI ENGINEERING COLLEGE
 
ATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdf
ATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdfATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdf
ATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdfsajidsaeed99
 
Trends in fiber optic communications
Trends in fiber optic communicationsTrends in fiber optic communications
Trends in fiber optic communicationsCKSunith1
 
lecture2.ppt
lecture2.pptlecture2.ppt
lecture2.pptn00ne2
 
Radio wave system
Radio wave systemRadio wave system
Radio wave systemAamir Raza
 
Fundamentals of microwave communication system and radar systems
Fundamentals of microwave communication system and radar systemsFundamentals of microwave communication system and radar systems
Fundamentals of microwave communication system and radar systemssabesh chaudhary
 
Chapter_ one_III
Chapter_ one_IIIChapter_ one_III
Chapter_ one_IIIYONASDESTA6
 
Transmission media.pptx
Transmission media.pptxTransmission media.pptx
Transmission media.pptxaakritii765
 

Similar to Introduction to rf and microwave circuits (20)

EC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdf
EC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdfEC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdf
EC8702-ADHOC AND WIRELESS SENSOR NETWORKS-UNIT NOTES.pdf
 
course introduction.pptx
course introduction.pptxcourse introduction.pptx
course introduction.pptx
 
Microwave charles
Microwave charlesMicrowave charles
Microwave charles
 
Pointtopointmicrowave 100826070651-phpapp02
Pointtopointmicrowave 100826070651-phpapp02Pointtopointmicrowave 100826070651-phpapp02
Pointtopointmicrowave 100826070651-phpapp02
 
20CS2007 Computer Communication Networks
20CS2007 Computer Communication Networks 20CS2007 Computer Communication Networks
20CS2007 Computer Communication Networks
 
Communication systems
Communication systemsCommunication systems
Communication systems
 
Microwave cauan
Microwave cauanMicrowave cauan
Microwave cauan
 
Microwave olano
Microwave olanoMicrowave olano
Microwave olano
 
microwave antennas
microwave antennasmicrowave antennas
microwave antennas
 
Antenna
AntennaAntenna
Antenna
 
Principles of Electronics Communication system.ppt
Principles of Electronics Communication system.pptPrinciples of Electronics Communication system.ppt
Principles of Electronics Communication system.ppt
 
ATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdf
ATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdfATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdf
ATC2017_5G-Antenna-Design-and-Network-Planning_Jaehoon-Kim.pdf
 
Trends in fiber optic communications
Trends in fiber optic communicationsTrends in fiber optic communications
Trends in fiber optic communications
 
lecture2.ppt
lecture2.pptlecture2.ppt
lecture2.ppt
 
Unit iii mirowave passive components
Unit iii mirowave passive componentsUnit iii mirowave passive components
Unit iii mirowave passive components
 
Unit 1-New.pptx
Unit 1-New.pptxUnit 1-New.pptx
Unit 1-New.pptx
 
Radio wave system
Radio wave systemRadio wave system
Radio wave system
 
Fundamentals of microwave communication system and radar systems
Fundamentals of microwave communication system and radar systemsFundamentals of microwave communication system and radar systems
Fundamentals of microwave communication system and radar systems
 
Chapter_ one_III
Chapter_ one_IIIChapter_ one_III
Chapter_ one_III
 
Transmission media.pptx
Transmission media.pptxTransmission media.pptx
Transmission media.pptx
 

More from Shankar Gangaju (20)

Tutorial no. 8
Tutorial no. 8Tutorial no. 8
Tutorial no. 8
 
Tutorial no. 7
Tutorial no. 7Tutorial no. 7
Tutorial no. 7
 
Tutorial no. 6
Tutorial no. 6Tutorial no. 6
Tutorial no. 6
 
Tutorial no. 3(1)
Tutorial no. 3(1)Tutorial no. 3(1)
Tutorial no. 3(1)
 
Tutorial no. 5
Tutorial no. 5Tutorial no. 5
Tutorial no. 5
 
Tutorial no. 4
Tutorial no. 4Tutorial no. 4
Tutorial no. 4
 
Tutorial no. 2
Tutorial no. 2Tutorial no. 2
Tutorial no. 2
 
Tutorial no. 1.doc
Tutorial no. 1.docTutorial no. 1.doc
Tutorial no. 1.doc
 
What is a computer
What is a computerWhat is a computer
What is a computer
 
Pointer
PointerPointer
Pointer
 
Array
ArrayArray
Array
 
9.structure & union
9.structure & union9.structure & union
9.structure & union
 
6.array
6.array6.array
6.array
 
5.program structure
5.program structure5.program structure
5.program structure
 
4. function
4. function4. function
4. function
 
3. control statement
3. control statement3. control statement
3. control statement
 
2. operator
2. operator2. operator
2. operator
 
1. introduction to computer
1. introduction to computer1. introduction to computer
1. introduction to computer
 
Ads lab
Ads labAds lab
Ads lab
 
Electromagnetic formula
Electromagnetic formulaElectromagnetic formula
Electromagnetic formula
 

Recently uploaded

High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur High Profile
 
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Serviceranjana rawat
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130Suhani Kapoor
 
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...srsj9000
 
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...ranjana rawat
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...ranjana rawat
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escortsranjana rawat
 
GDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentationGDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentationGDSCAESB
 
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
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingrakeshbaidya232001
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...Soham Mondal
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130Suhani Kapoor
 
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSSIVASHANKAR N
 
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINEMANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINESIVASHANKAR N
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxJoão Esperancinha
 
Introduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxIntroduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxupamatechverse
 
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...ranjana rawat
 

Recently uploaded (20)

High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Meera Call 7001035870 Meet With Nagpur Escorts
 
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
(RIA) Call Girls Bhosari ( 7001035870 ) HI-Fi Pune Escorts Service
 
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
VIP Call Girls Service Kondapur Hyderabad Call +91-8250192130
 
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
 
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
 
GDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentationGDSC ASEB Gen AI study jams presentation
GDSC ASEB Gen AI study jams presentation
 
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
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writing
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
 
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
 
★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR
★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR
★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR
 
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
 
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINEMANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
 
Roadmap to Membership of RICS - Pathways and Routes
Roadmap to Membership of RICS - Pathways and RoutesRoadmap to Membership of RICS - Pathways and Routes
Roadmap to Membership of RICS - Pathways and Routes
 
Introduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxIntroduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptx
 
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
The Most Attractive Pune Call Girls Budhwar Peth 8250192130 Will You Miss Thi...
 

Introduction to rf and microwave circuits

  • 1. Chapter 1: Introduction Shankar Gangaju Kathmandu Engineering College, Kalimati, Kathmandu Shankar.gangaju@keckist.edu.np 1
  • 2. Course Structure • Theory: 80 – Chapter 1: Introduction 8 marks – Chapter 2: RF and M/W Transmission Lines 10 marks – Chapter 3: RF and M/W Network Theory and Analysis 8 marks – Chapter 4: RF/MW Components and Devices 10 marks – Chapter 5: Microwave Generator 8 marks – Chapter 6: RF Design Practice 20 marks – Chapter 7: Microwave Antennas and Propagation 8 marks – Chapter 8: RF/MW Measurements 8 marks • Practical: 25 Lab_RF_Microwave 2
  • 3. Grading System • Alternate Day Test+ Final Assessment: 50% • Attendance: 20% • Assignment:10% • Technical Writing: 10% • Presentation:10% 3
  • 4. Reference Books 1. Microwave Electronics- K.C Gupta, Tata McGraw Hill 2. Microwave Engineering- A.K. Gautam, S.K.Kataria & Sons 3. Microwave Techniques-D.C. Agrawal, Tata Mc Graw-hill 4. Microwave Devices and Circuits-Samuel Y. Liao, PHI 3rd Edition,1994 5. Microwave Engineering-David M. Pozar, 2nd Edition, Newington CT: 1997 6. Engineering Electromagnetic-W.H. Hyatt, McGraw-Hill Book Company 7. Electronic Transmission Technology: Lines, Waves and Antennas-William Sinnema, Prentice Hall 4
  • 7. RF and Microwave Design Hexagon 7
  • 8. RF/Microwave • RF is a rate of oscillation in the range around 3KHz to 300GHz, which corresponds to the frequency of radio waves and the alternating currents which carry radio signals. • Microwave: is not meant to suggest a wavelength micrometer, have smaller wavelength compared to radio broadcasting. • Frequency Range: 300MHz-300GHz • Wavelength: 1mm – 1m • Both includes UHF (0.3-3GHz), SHF (3-30GHz) and EHF (30-300GHz) signals. 8
  • 10. 10
  • 13. Microwave Sources • High power microwave sources use specialized vacuum tubes to generate microwave. • Operate on the principle of ballistic motion of electrons in a vacuum under the influence of controlling electric or magnetic field. • Includes magnetron, klystron, travelling wave tube (TWT) and gyrotron. • These devices work in the density modulated mode. (work on the basis of clumps of electrons flying ballisticially through them, rather than using a continuous stream of electrons). 13
  • 14. • Lower power microwave sources use solid state devices such as the FET, tunnel diodes, Gunn diodes and IMPATT diodes. • MASER is a solid state device which amplifies microwave using similar principle to the LASER, which amplifies higher frequency light waves. 14
  • 15. Advantages of using higher frequency • Larger instantaneous bandwidth for much information • Higher resolution for radar imaging and sensing • Less interference by near by application • Higher speed for digital communication, signal processing and transmission • Less crowded spectrum • Difficulty in jamming (military application) 15
  • 16. Disadvantages of using high frequency • More expensive component • Higher atmospheric loss • Reliance in GaAs technology rather than Si technology • Higher component losses, lower output power from active devices • Microwave devices 16
  • 17. Microwave Applications • Communication – Before the advent of fiber-optic transmission, most long-distance telephone calls were carried via networks of microwave radio relay links using FDM. – Wireless LAN protocols, such as Bluetooth and the IEEE 802.11 specifications, also use microwaves in the 2.4 GHz ISM band. – Wireless internet access IEEE 802.11a uses microwaves at 3.5-4 GHz range. – Metropolitan area network (MAN) protocols, such as WiMAX (Worldwide Interoperability for Microwave Access) are based on standards such as IEEE 802.16, designed to operate between 2 to 11 GHz. – Mobile Broadband Wireless Access (MBWA) protocols based on standards specifications such as IEEE 802.20 operate between 1.6 and 2.3 GHz. 17
  • 18. Microwave Applications • Communication – Mobile phone networks, like GSM, use the low-microwave/high- UHF frequencies around 1.8 and 1.9 GHz in the Americas and elsewhere, respectively. – Most satellite communications systems operate in the C, X, Ka, or Ku bands of the microwave spectrum. – Satellite TV either operates in the C band for the traditional large dish fixed satellite service or Ku band for direct-broadcast satellite. – Military communications run primarily over X or Ku-band links. • Commercial Applications – Commercial implementations are in the 2.3 GHz, 2.5 GHz, 3.5 GHz and 5.8 GHz ranges (ISM band- Industry, Science and Medicine band). 18
  • 19. Microwave Applications • Navigation – Global Navigation Satellite Systems (GNSS) broadcast navigational signals in various bands between about 1.2 GHz and 1.6 GHz. – These include the Chinese Beidou, the American Global Positioning System (GPS) and the Russian GLONASS. • RADAR – Radar uses microwave radiation to detect the range, speed, and other characteristics of remote objects. – Weather prediction – Geological survey for natural resource exploration. – Air traffic control, road traffic surveillance. 19
  • 20. Microwave Applications • Radio astronomy – Celestial body research. – Distance measurement. • Heating and Power Application – A microwave oven uses microwave radiation at a frequency near 2.45 GHz. – Dielectric heating through energy absorption. – Microwave heating is used in industrial processes for drying and curing products. • Security – RFID based identification system. – Motion detectors. 20
  • 21. Microwave Applications • Medical Use – Photoacoustic imaging (ultrasound). – CT scan, X-rays, MRI like imaging. – Thermo-therapy, LASER therapy. – Cancer treatment. 21
  • 22. Behavior of circuits at conventional and RF/Microwave bands Resistor 22
  • 23. 23
  • 24. 24
  • 26. 26
  • 28. 28
  • 29. Behavior of Circuits at Conventional and RF/Microwave Bands Low Frequency/ Conventional • Bandwidths are limited hence small no. of channels can be adjusted. • It uses lumped element circuit theory. • Current flow and voltage drops are used to calculate power. • Open wire, twisted cables, co-axial cables are used as transmission lines. RF/Microwaves • Provide large bandwidth so its possible to adjust large no. of channels. • It uses distributed circuit theory (ohm/m, H/m, F/m). • Scattering phenomena like absorption, reflection, refraction, etc. are used in power calculation. • Optical fibers, waveguides, strip lines, micro-strip lines are common transmission lines. 29
  • 30. Behavior of Circuits at Conventional and RF/Microwave Bands Low Frequency/ Conventional • Lumped circuit elements are used such as resistors, filters, oscillators, etc. • It uses current modulated mode. • Almost all the solid state devices can be used. • It can handle low power. RF/Microwaves • Cavity resonators or resonant lines are used as oscillators, resonators, etc. • Density modulation or velocity modulation are used using magnetrons, klystrons, TWTs, etc. • Vacuum tube like devices, micro-miniaturised solid state devices like Gunn diodes, tunnel diodes, IMPITT, TRAPPIT, etc. are used. • It can handle higher power. 30
  • 31. Assignment #1 31 1. Mention the microwave frequency band specified by IEEE. What are the advantages and disadvantages of using microwave signal? 2. Define microwave signal? Explain the characteristics behavior of passive component at microwave frequency. 3. Compare and contrast the circuit behavior in conventional low frequency and RF/Microwave frequency band. What are the application areas of microwave system? 4. Explain the general microwave system with clear diagram. Explain the characteristics of microwave signal. 5. Differentiate between microwave and acoustic/seismic wave. 6. Write short notes on: Gunn Diode, IMPATT Diode and MASER. Due Date: One Week from this Slide