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SPIRES-BOOKS: FIND KEYWORD POWER AMPLIFIERS *END*INIT* use /tmp/qspiwww.webspi1/1418.1 QRY 131.225.70.96 . find keyword power amplifiers ( in books using www Cover
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Call number:9781608078011:ONLINE Show nearby items on shelf
Title:Practical Microwave Circuits
Author(s): Stephen A. Maas
Date:2014
Publisher:Artech House
Size:1 online (347 p.)
Contents:Chapter 1 Theory of Operation -- Units, Conversions, and Symbols -- The Physical Basis of Ferrimagnetism -- Ferrimagnetic Resonance -- Microwave Propagation in Ferrites -- Semiconductor Circulators -- Nanotechnology Circulators -- Thin Ferrite Films -- Active Circulators -- Chapter 2 Circulator Specification -- Parameters -- Reflections and Segmentation -- Junction Circulators -- Single-Ferrite (Non-Composite) Junction Circulators -- Composite-Ferrite Junction Circulators -- Lumped-Constant Circulators -- Differential Phase Shift Circulators -- Switching Circulators -- Okada Circulators -- Field-Displacement Isolators -- Resonance Isolators -- Chapter 3 Applications of Circulators -- Load Isolation -- Duplexing -- Multiplexing -- Parametric Amplifiers -- Phase Shifting -- Chapter 4 Material Selection -- Ferrites -- Ferrite Classes -- Ferrite Manufacturing -- Temperature Effects -- Ferrite Selection -- Magnet Selection -- Magnetic Compensating Material Selection -- Dielectric Selection -- Metals Selection
Chapter 5 Electrical Design -- Junction Circulators -- Above-Resonance Approximations -- Below-Resonance Approximations -- Network Synthesis -- Center Conductor Geometries -- Waveguide Junction Geometries -- Stripline Circulator Synthesis Algorithm -- Microstrip Circulator Synthesis Algorithm -- Waveguide Junction Circulator Synthesis Algorithm -- Okada Circulators -- Circulators Having Composite Ferrites -- Lumped-Constant Circulators -- Differential Phase Shift Circulators -- Resonance Isolators - - Dummy Loads for Isolators -- Intermodulation Distortion -- RF Power Effects -- Steady-State Thermal Effects -- Transient Thermal Effects -- Voltage Breakdown -- Spin-Wave Instability -- Chapter 6 Magnetic Design -- Magnet Sizing -- Ferrite Demagnetizati on Factors -- Leakage Flux Approximation -- Approximate Design of Magnetic Circuits -- Simulation of Magnetic Circuits -- Shielding -- Completing the Circuit -- Switching Circulators -- Self-Biased Circulators -- Considerations for Microstrip Circulators
Chapter 7 Mechanical Design -- Stripline Power Handling -- Power Dissipation in Ferrites -- Cooling of Ferrites . Venting -- Coaxial Junction Circulators -- Packaging Techniques -- Dimensional Tolerances -- Controlling Cavity Resonances -- RFI Contr ol -- Dissimilar Metals -- Lumped-Constant Circulators -- Waveguide Circulators -- Resonance Isolators -- Chapter 8 Assembly and Testing -- Assembly Techniques -- Finding the Operating Point -- Taking Data -- RF Power Testing -- Intermodulation Testing -- Multipaction Testing -- Magnetic Moment Measurement -- Measurement Uncertainty and Gauge Studies . Chapter 9 Tuning -- Interaction Between Magnetic and Electrical Adjustments -- Above-Resonance Magnetic Adjustment -- Below-Resonance Magnetic Adjustment -- Magnet Charging, Calibration, and Stabilization -- Electrical Adjustment -- Eigenvalue Evaluation -- Chapter 10 Design Examples -- Above-Resonance Stripline Junction Circulator -- Below-Resonance Stripline Junction Circulator -- Waveguide Junction Circ ulator -- Microstrip Circulator -- Differential Phase Shift Circulator -- Lumped-Constant Circulator
ISBN:9781608078004
Series:eBooks
Series:Artech eBooks
Keywords: Microwave circuits.
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Call number:9781608077113:ONLINE Show nearby items on shelf
Title:Control components using Si, GaAs, and GaN technologies
Author(s): I. J. Bahl
Date:2014
Publisher:Artech House
Size:1 online resource (310 p)
Contents:Chapter 1 Introduction - History of Components - Types of Control Components - Solid-State Switching Devices - Design of Control Components - Fabrication of Control Components - Chapter 2 Control Devices - PIN Diodes - Operation of PIN Diodes - PIN Diode Models - GaAs MESFETs - Operation of MESFETs - Linear Switch FET Models - Nonlinear Switch FET Models - GaAs HEMTs - GaAs HBTs - GaN HEMTs - CMOS Transistors - Operation of CMOS Switch - Various Body Floating Techniques - CMOS Transistor Models - Schottky Diodes - Varactor Diodes - Transistor Model Scaling - Biasing of Switching Devices - Biasing of PIN Diodes - Biasing of Transistors - Switching Speed of PIN Diodes - Switching Speed of Transistors - Comparison of Switching Devices - Chapter 3 Switches - Switch Parameters - Basic Requirements of a Switch for Wireless Applications - Design of Switches - Switch Configurations - Basic Theory of Switches - Multiport Switches - Matrix Switches - Diversity Switch - High Isolation Switches - Broadband Switches - High-Power Switches - Impedance Transformation Technique - Stacked FETs Method - Resonant Circuit Technique - GaN HEMT Switches - Power Handling of PIN Diode Switches - Low Distortion Switches - Performance of Switch Circuits - PIN D iode Switch Circuits - MESFET Switch Circuits - HEMT Switch Circuits - CMOS Switch Circuits - Comparison of Switch Technologies - Novel Switch Configurations - Filter-Integrated Switch - Redundant Switch - Switched Variable Power Amplifier - Switches with Integrated Control - Intermodulation Analysis of Switches - PIN Diode Switches - MESFET Switches
Chapter 4 Phase Shifters - Digital Phase Shifters - Analog Phase Shifters - Active Phase Shifters - Theory of Phase Shifters - Reflection-Type Phase Shifter - Switched-Line Phase Shifter - Loaded-Line Phase Shifters - Switched-Network Phase Shifter s - Embedded-Device Phase Shifters - Multibit Phase Shifter Circuits - RMS Errors - PIN Diode Phase Shifters - MESFET/HEMT Phase Shifters - CMOS Phase Shifters - Analog Phase Shifters - Voltage-Controlled Reflection-Type Phase Shifters - Voltage-Controlle d Transmission-Type Phase Shifters - Analog Varactor Diode Phase Shifters - Analog CMOS Phase Shifters - Broadband Phase Shifters - GaAs MESFET/HEMT Broadband Phase Shifters - Broadband CMOS Phase Shifters - Ultrawideband Phase Shifters - Millimeter-Wave Phase Shifters - PIN/Schottky Diode Millimeter-Wave Phase Shifters -MESFET/HEMT Millimeter-Wave Phase Shifters - CMOS Millimeter-Wave Phase Shifters - Active Phase Shifters - Dual-Gate FET Phase Shifters - Switchable-Amplifier Phase Shifters - Vector Modu lator Phase Shifters - Chapter 5 Attenuators - Theory of Attenuators - Fabrication of Attenuators - Fixed Value Attenuators - Attenuator Pad - Temperature Variable Attenuator - Multibit Attenuators - PIN Diode Step Attenuators - GaAs MMIC Step Attenuators - Si CMOS Step Attenuators - Variable Voltage Attenuators - PIN Diode Variable Attenuators - MESFET Variable Attenuators - CMOS Variable Attenuator - GaN HEMT Attenuator - Linear Voltage Variable Attenuators -Reflection-Type Attenuators - Balanced Attenu ators - Frequency Dependent Attenuators - Phase Compensated Attenuators - CMOS Attenuator with Integrated Switch - Distortion in Attenuators - PIN Diode Attenuators - FET Attenuators
Chapter 6 Limiters - Limiter Characterization - Limiter Types - PIN Diode Limiters - Analysis of PIN Diode Limiter - Si PIN Diode Limiters in Microstrip Configuration - GaAs PIN Diode Limiters - Matched Limiters - Schottky Diode Limiters - Analysis of Schottky Diode Limiter - Schottky Diode Design and Limiter Configuration - Broadband High Power Limiters - Monolithic GaAs Schottky Diode Limiter Circuits - Limiting Amplifiers - 10-W Limiter with Embedded LNA - BiCMOS Diode Limiter - GaN Schottky Diod e Limiters
ISBN:9781608077113
Series:Artech House microwave library
Series:eBooks
Series:Artech eBooks
Keywords: Electronic circuits, Mathematical models. , Solid state electronics , Microwave integrated circuits
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Call number:9781608075836:ONLINE Show nearby items on shelf
Title:Microwave circulator design
Author(s): Douglas K. Linkhart
Date:2014
Edition:Second edition
Publisher:Artech House
Size:1 online resource (364 p.)
Contents:Chapter 1 Theory of Operation -- Units, Conversions, and Symbols -- The Physical Basis of Ferrimagnetism -- Ferrimagnetic Resonance -- Microwave Propagation in Ferrites -- Semiconductor Circulators -- Nanotechnology Circulators -- Thin Ferrite Films -- Active Circulators -- Chapter 2 Circulator Specification -- The Parameters -- Reflections and Segmentation -- Junction Circulators -- Single-Ferrite (Non-Composite) Junction Circulators -- Composite-Ferrite Junction Circulators -- Lumped-Constant Circulators -- Differential Phase Shift Circulators -- Switching Circulators -- Okada Circulators -- Field-Displacement Isolators -- Resonance Isolators -- Chapter 3 Applications of Circulators -- Load Isolation -- Duplexing -- Multiplexing -- Parametric Amplifiers -- Phase Shifting . Chapter 4 Material Selection -- Ferrites -- Ferrite Classes -- Ferrite Manufacturing -- Design Considerations -- Test Methods -- Specifications -- Temperature Effects -- Ferrite Select ion -- Magnet Selection -- Magnetic Compensating Material Selection -- Dielectric Selection -- Metals Selection
Chapter 5 Electrical Design -- Junction Circulators -- Above-Resonance Approximations -- Below-Resonance Approximations -- Network Synthesis -- Center Conductor Geometries -- Waveguide Junction Geometries -- Stripline Circulator Synthesis Algorithm -- Microstrip Circulator Synthesis Algorithm -- Waveguide Junction Circulator Synthesis Algorithm -- Okada Circulators -- Circulators Having Composite Ferrites -- Lumped-Constant Circulators -- Differential Phase Shift Circulators -- Resonance Isolators -- Dummy Loads for Isolators -- Temperature Effects -- Intermodulation Distortion -- RF P ower Effects -- Steady-State Thermal Effects -- Transient Thermal Effects -- Voltage Breakdown -- Spin-Wave Instability -- Chapter 6 Magnetic Design -- Magnet Sizing -- Ferrite Demagnetization Factors -- Leakage Flux Approximation -- Approximate Design of Magnetic Circuits -- Simulation of Magnetic Circuits -- Shielding -- Temperature Compensation -- Completing the Circuit -- Switching Circulators -- Self-Biased Circulators -- Considerations for Microstrip Circulators -- Chapter 7 Mechanical Design -- The rmal Considerations -- Stripline Power Handling -- Power Dissipation in Ferrites -- Cooling of Ferrites -- Venting -- Coaxial Junction Circulators -- Packaging Techniques -- Dimensional Tolerances -- Controlling Cavity Resonances -- Transitions -- RFI Con trol 253 -- Dissimilar Metals -- Finishes -- Lumped-Constant Circulators -- Waveguide Circulators -- Resonance Isolators
Chapter 8 Assembly and Testing -- Assembly Techniques -- Finding the Operating Point -- RF Power Testing -- Intermodulation Testing -- Multipaction Testing -- Magnetic Moment Measurement -- Measurement Uncertainty and Gauge Studies -- Chapter 9 Tuni ng -- Interaction Between Magnetic and Electrical Adjustments -- Magnetic Adjustment -- Above-Resonance Magnetic Adjustment -- Below-Resonance Magnetic Adjustment -- Magnet Charging, Calibration, and Stabilization -- Electrical Adjustment -- Eigenvalue Ev aluation -- Chapter 10 Design Examples -- Above-Resonance Stripline Junction Circulator -- Below-Resonance Stripline Junction Circulator -- Waveguide Junction Circulator -- Microstrip Circulator -- Differential Phase Shift Circulator -- Lumped-Constant Ci rculator
ISBN:9781608075836
Series:eBooks
Series:Artech eBooks
Series:Artech House microwave library
Keywords: Circulators, Wave-guide, Design and construction.
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Call number:978160807562:ONLINE Show nearby items on shelf
Title:Chipless RFID reader architecture
Author(s): Nemai Chandra Karmakar
Randika Koswatta
Prasanna Kalansuriya
Rubayet E-Azim
Date:2013
Publisher:Artech House
Size:1 online resource (325 pages)
Contents:Chapter 1 Introduction -- Chipless RFID -- Chipless RFID Tag Reader -- Operating Principle -- Reader Architecture -- Physical Layer Development . Chapter 2 Chipless RFID System Operating Principles -- Time Domain (TD) Based Chipless RFID Tags -- Fre quency Domain Based Tags -- Image Based Tags -- Hybrid Domain Chipless RFID Tags -- Multiresonator Based Chipless RFID Tag -- Operating Principle for Reading of Multiresonator Based Chipless RFID Tags -- Methods for Reading RFID Tags -- Reading Time Domai n Based Chipless RFID -- Reading Frequency Domain Based Chipless RFID Tags -- Reading Hybrid Domain Based Chipless RFID Tags -- SAR Based Reading Process . Chapter 3 Chipless RFID Readers -- Chipless RFID Reader System Architectures -- Chipless RFID Reade rs and Tag Reading Techniques -- Time Domain Readers and Tag Reading Techniques -- Frequency Domain Readers and Tag Reading Techniques -- Hybrid Domain Readers and Tag Reading Techniques -- SAR Based Readers and Tag Reading Techniques -- Limitations and I ssues with Current Chipless RFID Readers -- Cost of Readers -- Read Range -- Tag Reading Speed -- Anticollision, Error Correction, and Data Integrity -- Orientation of the Tag
Chapter 4 Frequency Domain Based RFID Reader Development . Operation of Frequency Domain Based Chipless RFID Readers -- Detecting the Features of the Frequency Signatures of Chipless Tags -- Recovering the Frequency Signature of Chipless Tags -- De sign of Frequency Domain Based Chipless RFID Readers -- Design of a Reader That Detects the Features of Frequency Signatures of Chipless RFID Tags -- Design of a Reader That Recovers the Frequency Signatures of Chipless RFID Tags . Chapter 5 Time Domain B ased Chipless RFID Reader -- Theory of Operation of a Time Domain Based Chipless RFID Reader -- Generation of UWB Short Pulses -- UWB Short Pulse Based Interrogation -- Design of UWB TD Based Chipless RFID Reader -- Simulation Setup in Agilent ADS2009 . C hapter 6 Hybrid Chipless RFID Reader -- Frequency-Phase Based System -- Working Principle of the Encoding Element -- Hybrid Frequency-Phase Chipless RFID Based on C-Sections -- Chipless RFID Reader for Hybrid Frequency-Phase Chipless RFID -- Frequency-Pol arization Based System -- Resonant and Polarization Characteristics of the Split-Ring Resonator -- Encoding Information in a SRR Based Frequency-Polarization Tag -- Chipless RFID Reader for Hybrid Frequency-Polarization Based Chipless RFID -- Frequency-Time Based System -- Group Delay Based Frequency-Time Hybrid Chipless RFID -- Non-Group-Delay Based Approaches for Hybrid Frequency-Time Chipless RFID -- Chipless RFID Reader for Hybrid Frequency-Time Based Chipless RFID
Chapter 7 Antennas for Chipless RFID Readers -- Antenna Parameters -- Review of UWB Antennas -- Practical Design Procedure for UWB Antennas -- UWB Antenna Development -- UWB Disk-Loaded Monopole Antennas -- UWB Dipole Array Antennas -- Log-Periodic Dipole Antennas -- Log-Periodic Dipole Array Antennas -- UWB Horn Antennas -- Disk-Loaded Monopoles as Reader Antennas -- Elliptical Leaf Dipole Arrays as Reader Antennas -- LPDAAs as Reader Antennas -- Horns as Reader Antennas . Chapter 8 Microwave and M illimeter-Wave Active and Passive Components -- Passive Components -- Antennas -- Filters -- Couplers -- Circulators -- Power Divider/Combiner -- Resonators -- Mixers -- Active Components -- Voltage-Controlled Oscillators -- Low-Noise Amplifiers . Chapte r 9 Digital Module for Chipless RFID Readers -- Digital Control Board -- Power Supply Unit -- IR Tag Sensor -- RF Power Supply Control Switch -- VCO Control Voltage Generator -- Digital Signal Processing Board -- Middleware -- Performance of Digital Contr ol Section -- Chapter 10 RFID Reader System Integration and Applications -- The Integrated Chipless RFID Reader -- Specifications of a Generic Chipless RFID Reader -- Chipless RFID Tag -- Reading Techniques -- Reader Device . Conveyer Belt Application -- Vehicle Tracking
ISBN:9781608075614
Series:eBooks
Series:Artech eBooks
Series:Artech House microwave library
Keywords: Radio frequency identification systems
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Call number:9781608071531:ONLINE Show nearby items on shelf
Title:Design of CMOS operational amplifiers
Author(s): Rasoul Dehghani
Date:2013
Publisher:Artech House
Size:1 online resource (198 p)
Contents:Chapter 1 Basic Specifications of Op Amps -- Op Amp Parameters -- Chapter 2 CMOS Technology and Physics -- Basic Processes in MOS Transistor Fabrication -- MOS Transistor Operating in Saturation Region -- MOS Transistor Operating in Subthreshold Reg ime -- Small-Signal Model of MOS Device -- Gate to Substrate Capacitance -- Source/Drain to bulk Capacitance -- Chapter 3 CMOS Differential Amplifiers -- Source-Coupled Differential Pair Characteristic -- CMOS Differential Amplifier with Active Load -- La rge-Signal Characteristic of CMOS Differential Amplifier -- Offset Voltage of CMOS Differential Amplifier -- Common-Mode Behavior of CMOS Differential Amplifier -- CMOS Differential Amplifier Frequency Response -- Noise Calculations in CMOS Differential A mplifier -- Chapter 4 CMOS Single-Ended Output Op Amps -- CMOS Two-Stage Op Amp -- Offset Voltage -- Two-Stage Op Amp Frequency Response -- CMOS Two-Stage Op Amp Design Procedure -- PSRR of CMOS Two-Stage Op Amp -- Telescopic Cascode Op Amp -- Folded-Casc ode Op Amp -- Current Mirror Op Amp -- Rail to Rail Input Op Amp
Chapter 5 CMOS Fully Differential Op Amps -- Advantages of Fully Differential Op Amps -- Common-Mode Feedback Concept -- Common-Mode Feedback Circuits -- Common-Mode Feedback Circuit with Resistive Sensing -- Differential Difference Common-Mode Feed back -- Common-Mode Feedback Circuit Using MOS Devices Operating in the Triode Region -- Switched-Capacitor Common-Mode Feedback Circuit -- Fully Differential CMOS Op Amp Architectures -- Fully Differential Two-Stage Op Amp -- Fully Differential Current M irror Op Amp -- Fully Differential Folded-Cascode Op Amp -- Chapter 6 CMOS Output Stages -- Class A and Class B Output Stages -- Source-Follower as an Output Stage -- Class B Power Amplifier -- Drain-Coupled Complementary Transistors as Output Stage -- Lo w-Voltage Class AB Buffer -- Class AB Output Stage Using a Translinear Loop - Chapter 7 -- CMOS Voltage Reference Generators -- Bandgap Voltage Reference Generator -- Low-Voltage Bandgap Reference Generator -- CMOS Voltage Reference Generator Without Resi stors -- CMOS Current Reference Generators -- Gm-Constant Circuit -- Fully Integrated Precision CMOS Current Reference -- CMOS Current Reference Without Resistors
ISBN:9781608071531
Series:eBooks
Series:Artech eBooks
Series:Artech House microwave library
Keywords: Metal oxide semiconductors, Complementary. , Operational amplifiers.
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Call number:9781608071210:ONLINE Show nearby items on shelf
Title:Behavioral modeling and linearization of RF power amplifiers
Author(s): John Wood
Date:2014
Publisher:Artech House
Size:1 online resource (362 p.)
Contents:Chapter 1 Introduction -- History of Mobile Wireless Communications -- Digital Modulation -- Filters for Digital Communication Systems -- Measures for Digital Communication Signals -- RF Power Amplifiers: Linearity and Efficiency -- Harmonic Loading -- The Doherty Amplifier -- The Polar Amplifier -- High-Efficiency PA Summary -- Linearization Techniques for RF PAs -- Polar Feedback -- Cartesian Feedback -- Feedforward -- Pre-distortion -- Behavioral Modeling -- Chapter 2 Models, Modeling, and Simulation -- Data- or Measurement-Based Models -- Physically Based Models -- Equivalent Circuit Models -- Compact Models -- Behavioral Models -- Function Fitting and Function Approximation -- Model Validation -- Circuit Si mulation -- Electromagnetic Simulation -- Device Physical Simulation -- Thermal Simulation -- System Simulation -- Chapter 3 Linear Systems and Identification -- Linear System Properties -- Instantaneous and Dynamic Systems -- Time Domain or Frequency Dom ain -- Convolution Integral and Impulse Response -- State Space Representation -- Discrete Time Representation -- General Transfer Function Models -- Noise and Disturbance Signals -- General Model Structure -- model Building -- Basis Functions -- Least Sq uares Algorithm -- Error Measures -- System Identification -- Nonlinear System Identification
Chapter 4 Modeling PA Nonlinearities -- Gain Compression in the PA -- Modeling the CW Input-Output Relationship -- Phase Characteristic - AM-to-PM Behavior -- Two-Tone Analysis -- Comments on the Two-Tone Analysis -- Chapter 5 Memory Effects -- Shor t-Term Memory Effects -- Long-Term Memory Effects -- Matching Networks -- Charge Storage in the Transistor -- Thermal Effects -- Trapping of Charge -- Bias and Supply Lines -- Including Memory Effects in the Nonlinear Model -- Chapter 6 Nonlinear Dynamica l Models -- Volterra Series -- Taylor Series -- Cascade of Linear and Nonlinear Components -- The Higher-Order Kernels -- Discrete-Time Expressions for Volterra Series -- Nonlinear Feedback Model -- Wiener and Hammerstein Models -- Memory Polynomial Model -- Parallel Cascade -- Orthogonal Basis Functions -- Advanced Volterra Series Models -- Dynamic Deviation Model -- Narrowband Approximation- Baseband Volterra Models -- Techniques for Building Volterra Models of Power Amplifiers -- Data Pre-conditioning -- Model Selection -- Model Solution: Parameter Estimation -- Model Validation -- Non-Volterra Models -- Artificial Neural Networks
Chapter 7 Digital Pre-Distortion -- Pre-Distortion -- Gain and Bandwidth Concerns -- Pre-Distortion of the Digital Signal -- Digital Pre-Distortion System -- Baseband Signal Processing -- Crest Factor Reduction -- The DPD Function Block -- Adaptive Digital Pre-Distortion -- Indirect Learning DPD System -- Model Reference DPD System -- DPD Coefficient Adaption Techniques -- DPD System Implementation Details -- RF Section -- Data Converters -- Baseband Digital Signal Processing -- Chapter 8 Crest Fact or Reduction of Digital Communication Signals -- Cause of Signal Peaks -- CFR Overview -- Clip-and-Filter Approaches -- Peak Windowing -- Partial Transmit Sequence -- Tone Reservation -- Constellation Extension -- Coding -- CFR for Downlink LTE Using Phas e-Shifted Resource Blocks -- Chapter 9 RF Pre-Distortion -- RFPD vs. DPD -- Implementation -- From RF to Baseband and Back to RF -- Volterra Series Simplification -- RFPD Architecture -- Analyzing and Processing Engine -- Analog Data Path -- Technical Cha llenges and Analog Limitations -- Offsets - Impact on the Pre-distortion Signal -- Peak-to-Average Power Ratio -- Signal Expansion and Compression -- Bandwidth Expansion -- Temperature Effects -- Normalizing the CORR -- Nonlinear Operator Normalization -- SC1894 -- Carrier Aggregation -- Chapter 10 Frequency Domain Models -- Frequency Domain Nonlinear Models . Amplifier 2 Model -- P2D Model -- X-Parameters -- S-Functions Model -- The Cardiff Model
ISBN:9781608071203
Series:Artech House microwave library.
Series:Artech eBooks
Series:eBooks
Keywords: Amplifiers, Radio frequency. , Amplifiers, Radio frequency. fast
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Call number:9781596931282:ONLINE Show nearby items on shelf
Title:Designing bipolar transistor radio frequency integrated circuits
Author(s): Allen A. Sweet
Date:2008
Publisher:Artech House
Size:1 online resource (317 p.)
Contents:Chapter 1 Introduction -- Chapter 2 Applications . Cellular-PCS Handsets and Infrastructure -- WLANs -- Bluetooth -- UWB -- WiMax -- Digital TV and Set-Top Boxes -- Cognitive Radio -- Spectrum Allocation in the United States -- Physical Layer Standa rds -- Chapter 3 RFIC Architectures . IQ Receivers -- IQ Modulators -- Nonzero IF Receivers -- Zero IF Receivers -- Differential versus Single-Ended Topologies -- Chapter 4 InGaP GaAs HBT Fabrication Technology -- Transistor Structures -- Device Models -- Passive Structures, Electrical Models, and Layout Design Rules -- Microstrip Lines -- TFR Resistors -- M1-to-M2 Vias -- MIM Capacitors -- Substrate Vias -- Bonding Pads -- Crossover Capacitances -- Spiral Inductors -- Transistor Dummy Cells -- Significan t Layout Parasitic Elements -- Simple Layout Example -- Maximum Electrical Ratings -- CAD Layout Tools -- Chapter 5 SiGe HBT Fabrication Technology and Transistor Structures -- Transistor Device Models -- Passive Device Structures and Models -- Design Rul es -- CAD Layout -- Chapter 6 Passive Circuit Design -- Filters - Low Pass, High Pass, Band Pass, and Differential -- Technology and Substrates . Splitters and Dividers -- Phase Shifters and Baluns -- Chapter 7 Amplifier Design Basics -- Matching Techniqu es -- Gain Compensation -- Fano.s Limit -- Stability -- Noise Match -- Differential Amplifiers -- Cascode Amplifiers
Chapter 8 Low-Noise Amplifier Design -- Noise Figure Concepts -- Noise Temperature -- Front-end Attenuation and LNAs -- Multistage Noise Figure Contributions -- Circuit Topologies for Low Noise -- Single-Ended PCS LNA -- Three-Transistor Hybrid Darl ington Differential LNA Using SiGe Technology -- Chapter 9 Power Amplifier Design -- Loadline Concepts -- Maximum Power and Efficiency -- Class AB Power Amplifiers -- Nonlinear Performance Metrics -- Adjacent Channel Power Ratio -- Error Vector Magnitude -- Circuit Topologies for PAs -- Matching Circuit Options -- Stability -- Bias Circuits -- Wideband Gain Block Darlington Amplifier -- Feedback Power Amplifier Design -- Chapter 10 Designing Multistage Amplifiers -- Multistage LNAs -- Multistage Power Amp lifiers -- Gain and Power Allocations -- Active Device Sizing -- Differential PCS PA -- Chapter 11 Mixer Modulator Design -- Mixer Basics -- Diode Mixers -- Single-Balanced Active Multiplying Mixers -- Fully Balanced Active Multiplying Mixers (Gilbert cel l) -- IQ Mixers -- IQ Modulators . Cellular-PCS Downconverting Mixer RFIC -- Chapter 12 Frequency Multiplier Design -- Frequency Doublers -- Frequency Triplers -- Frequency Translators
Chapter 13 Voltage-Controlled Oscillator Design -- Varactor Diode Basics -- Negative-Resistance Concepts -- Types of Resonators -- Feedback Circuit Topologies for Producing Negative Resistance -- Negative-Resistance Oscillator Circuits -- Colpitts O scillator Circuit -- Frequency-Temperature Stability -- Phase Noise -- Quadrature Phase-Shifting Networks -- Ring Oscillators -- Electronic Tuning and a Differential VCO Topology -- Chapter 14 Layout Design Strategies -- Minimum Area -- On-Chip versus Of f-Chip Component Decisions -- Minimizing Parasitics -- Testability -- Types of CAD Systems -- Foundry Comparison -- Reticle Assembly -- Chapter 15 RFIC Economics -- Levels of Integration -- Single-Ended versus Differential Topologies -- Process Technology Choices -- Area versus Performance Trade-offs -- Electrical Yield -- Prototype Costs -- Production Costs
ISBN:9781596931282
Series:Artech House microwave library
Series:eBooks
Series:Artech eBooks
Keywords: Radio frequency integrated circuits.
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Call number:9781580536127:ONLINE Show nearby items on shelf
Title:Design of linear RF outphasing power amplifiers
Author(s): Xuejun Zhang
Lawrence E. Larson
Peter Asbeck
Date:2003
Publisher:Artech House
Size:1 online resource (200 p.)
Contents:Chapter 1 Introduction -- Power Amplifiers in Wireless Communication Systems -- Characterization of Power Amplifiers for Wireless Communications -- Power Amplifier Waveform Quality -- Measurements -- Power Efficiency Measurements -- Power Amplifier Linearization and Efficiency-Enhancement Techniques -- Outphasing Microwave Power Amplifiers -- Historical Perspectives on Outphasing Power Amplifiers -- Introduction to the Theory of Outphasing Amplification --Chapter 2 Linearity Performance of Outphasing Power Amplifier Systems -- Digital Modulation Techniques -- QPSK and Its Variations -- QAM -- Baseband Filtering of Digit al Data -- Raised Cosine Filter -- Gaussian Filter -- IS-95 Baseband Filter -- Signal Component Separation for Outphasing Amplifiers -- Path Imbalance and Its Effects on Linearity -- Two-Tone Linearity Analysis of an Outphased Amplifier with Path Mismatch Effects -- ACI Estimation with Gain and Phase Mismatch -- Effect of Quadrature Modulator Errors on Linearity -- Quadrature Modulator Error Minimization . Quadrature Modulator Error Effects on Outphasing Systems -- SCS Quantization Error Effects on Outpha sing Systems -- Error Effects of Quantization of the Source Signal -- Error Effects of Quantization of the Quadrature Signal -- Linearity Effects of Reconstruction Filter and DSP Sampling Rate
Chapter 3 Path Mismatch Reduction Techniques for Outphasing Amplifiers -- Correction Schemes Based on Training Vectors -- Baseband Preconditioning of Path Mismatch Errors -- Foreground Calibration Algorithm of Path Mismatch Errors -- Path Mismatch E rror Correction Schemes Transparent to Data Transmission -- Phase-Only Correction Approach -- Simplex Search Algorithm Correction -- Direct Search Algorithm -- Background Calibration Algorithm -- Mismatch Correction Scheme for Broadband Applications -- VC O-Derived Synthesis -- CALLUM -- VLL -- Chapter 4 Power-Combining and Efficiency-Enhancement Techniques -- Power-Combining Techniques for Outphasing Amplifiers -- Amplifier Choices for Outphasing Systems -- Outphasing Amplifier Design Using Class A, B, an d C Amplifiers -- Chireix Power-Combining Technique -- Combiner Design for Switching-Mode (Class D and Class E) Amplifiers -- Analysis of MOSFET-Based Class D Outphasing Amplifier with Lossless Combining -- Simulation and Discussion of MOS-Based Class D w ith Lossless Combining -- Application of Lossy Power Combiners to Outphasing Power Amplifiers -- Probability Distribution of Output Power and Its Impact on Efficiency -- Power Recycling in Outphasing Amplifiers -- Analysis of the Power-Recycling Network f or a Continuous-Wave Signal -- Analysis and Discussion for Linear-Modulated Signals -- Appendix 4A -- Available Power from the Hybrid Combiner -- Recycling Efficiency and VSWR for Arbitrary Diode Model
ISBN:1580533744
Series:Artech House microwave library
Series:eBooks
Series:Artech eBooks
Keywords: Phase shifters. , Amplifiers, Radio frequency. , Power amplifiers.
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Call number:1118844300:ONLINE Show nearby items on shelf
Title:RF Power Amplifiers 2e
Author(s): Kazimierczuk
Date:2014
Publisher:Wiley
Size:1 online resource (429 p.)
ISBN:9781118844304
Series:eBooks
Series:Wiley Online Library
Series:Wiley 2016 package purchase
Keywords: Electrical & Electronics Engineering
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Call number:0471717460:ONLINE Show nearby items on shelf
Title:Modeling and Design Techniques for RF Power Amplifiers
Author(s): Raghavan
Date:2007
Publisher:Wiley-IEEE Press
Size:1 online resource (207 p.)
ISBN:9780471717461
Series:eBooks
Series:Wiley Online Library
Series:Wiley 2016 package purchase
Keywords: Electrical & Electronics Engineering
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Call number:0470513004:ONLINE Show nearby items on shelf
Title:High Efficiency RF and Microwave Solid State Power Amplifiers
Author(s): Colantonio
Date:2009
Publisher:Wiley
Size:1 online resource (515 p.)
ISBN:9780470513002
Series:eBooks
Series:Wiley Online Library
Series:Wiley 2016 package purchase
Keywords: Electrical & Electronics Engineering
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Call number:TK7876.P69::1998 Show nearby items on shelf
Title:Microwave Engineering
Author(s): David M. Pozar
Date:1998
Publisher:Wiley, New York
Note:2nd ed.
Contents:Electromagnetic Theory
Transmission Line Theory
Transmission Lines and Waveguides
Microwave Network Analysis
Impedance Matching and Tuning
Microwave Resonators
Power Dividers and Directional Couplers
Microwave Filters
Theory and Design of Ferrimagnetic Components
Active Mocrowave Circuits
Design of Mocrowave Amplifiers and Oscillators
Introduction to Microwave Systems
ISBN:0471170968
Keywords: Microwaves , Microwave devices , Microwave circuits
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Call number:TK7874.78.E39::2018 Show nearby items on shelf
Title:Technologies for RF systems
Author(s): Terry Edwards
Date:2018
Publisher:Artech House
Size:284 p
Contents:Twenty-first century RF systems and elctronics -- RF semiconductors -- Passive RF components -- Passive RF circuit elements -- Switches, attenuators, and digital circuits -- Radio-frequency filters -- Antennas -- Small-signal RF amplifiers -- Noise and LNAs -- RF power amplifiers -- RF-oriented ADCs and DACs -- Radio frequency sources -- Frequency-band conversion -- Modulation techniques and technologies.
ISBN:9781630814502
Keywords: Millimeter waves , Radio frequency
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Call number:TK7874.I59432::1998 Show nearby items on shelf
Title:Integrated circuits for wireless communications
Author(s): Asad A. Abidi (Ed.)
Paul R. Gray (Ed.)
Robert G. Meyer (Ed.)
Date:1998
Publisher:IEEE Press
Note:A selected reprint volume.
Note:IEEE Solid-State Circuits Society, sponsor.
Contents:Introduction and Overview. Transmitter and Receiver Architectures. Receivers. Transmitters and Transceivers. Power Amplifiers and RF Switches. Oscillators. Components, Technology, and Modeling. System Applications
ISBN:0780334590
Keywords: Integrated circuits , Wireless communication systems Equipment and supplies , Radio Transmitter-receivers
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Call number:TK7871.99.M44L44::2004 Show nearby items on shelf
Title:The design of CMOS radio-frequency integrated circuits
Author(s): Thomas H. Lee
Date:2004
Edition:2nd ed.
Publisher:New York : Cambridge University Press
Size:797 p.
Contents:A Nonlinear History of Radio -- Overview of Wireless Principles -- Passive RLC Networks -- Characteristics of Passive IC Components -- A Review of MOS Device Physics -- Distributed Systems -- The Smith Chart and S-Parameters -- Bandwidth Estimation Techniques -- High-Frequency Amplifier Design -- $t Voltage References and Biasing -- Noise -- LNA Design -- Mixers -- Feedback Systems -- RF Power Amplifiers -- Phase-Locked Loops -- Oscillators and Synthesizers -- Phase Noise -- Architectures -- RF Circuits Through the Ages.
ISBN:0521835399
Keywords: Metal oxide semiconductors, Complementary Design and construction. , Radio frequency integrated circuits Design and construction , Radio Transmitter-receivers
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Call number:TK7871.58.P6G75::2007 Show nearby items on shelf
Title:Switchmode RF power amplifiers
Author(s): Andrei Grebennikov 1956-
Nathan O. Sokal
Date:2007
Publisher:Elsevier/Newnes - Amsterdam, Boston
ISBN:9780750679626
Series:Communications engineering series
Keywords: Power amplifiers
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Call number:TK7871.58.P6C75::2006 Show nearby items on shelf
Title:RF power amplifiers for wireless communications
Author(s): Steve C. Cripps
Date:2006
Edition:2nd ed.
Publisher:Artech House
ISBN:1596930187
Series:Artech House microwave library
Keywords: Power amplifiers , Amplifiers - Radio frequency
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Call number:TK7815.H785::1989 Show nearby items on shelf
Title:The art of electronics
Author(s): Paul Horowitz 1942-
Winfield Hill
Date:1989
Edition:2nd ed.
Publisher:Cambridge University Press, Cambridge [England
Contents:1. Foundations -- 2. Transistors -- 3. Field-effect transistors -- 4. Feedback and operational amplifiers -- 5. Active filters and oscillators -- 6. Voltage regulators and power circuits -- 7. Precision circuits and low-noise techniques -- 8. Digital electronics -- 9. Digital meets analog -- 10. Microcomputers -- 11. Microprocessors -- 12. Electronic construction techniques -- 13. High-frequency and high-speed techniques -- 14. Low-power design -- 15. Measurements and signal processing
ISBN:0521370957
Keywords: Electronics.
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Call number:TK7815.H785::1980 Show nearby items on shelf
Title:The art of electronics
Author(s): Paul Horowitz 1942-
Winfield Hill
Date:1980
Publisher:Cambridge University Press, Cambridge, [Eng
Size:716
Contents:Foundations -- Transistors -- Feedback and operational amplifiers -- Active filters and oscillators -- Voltage regulators and power circuits -- Field-effect transistors -- Precision circuits and low-noise techniques -- Digital electronics -- Digital meets analog -- minicomputers -- microprocessors -- Electronic constructions techniques -- High-frequency and high-speed techniques -- Measurement and signal processing -- App. a. The oscilloscope -- App. b. Math review -- App. c. The 5% resistor [five percent resistor] color code -- App. d. 1% [one percent] precision resistors -- App. e. How to draw schematic diagrams -- App. f. Load lines -- App. g. Transistor saturation -- App. h. LC Butterworth filters -- App. i. Electronics magazine and journals -- App. j. IC generic types -- App. k. Data sheets
ISBN:0521231515
Keywords: Electronics.
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Call number:TK6560.S75::2010 Show nearby items on shelf
Title:Microwave and RF design: A systems approach
Author(s): Michael Bernard Steer
Date:2010
Publisher:Raleigh, N.C. : SciTech Pub.
Size:952 p.
Contents:System Module -- 1. Modulation, Transmitters and Receivers -- 2. Antennas and RF Link -- 3. Radio Frequency Systems -- Transmission Line Module -- 4. Transmission Lines -- 5. Extraordinary Transmission Line Effects -- Network Module -- 6. Microwave Network Analysis -- 7. Passive Components -- 8. Impedance Matching -- Coupled Line and Filter Module
9. Coupled Lines and Applications -- 10. Filters -- Active Device and Synthesis Module -- 11. Amplifiers -- 12. Mixers, Oscillators and Switches -- 13. Synthesis -- A. Mathematical Identities and Relationships -- B. Power Descriptions -- C. Physical Constants and Material Properties -- D. Maxwell's Equations -- E. Waveguide Field Analysis -- F. RF and Microwave Circuit Schematic Symbols -- G. Active Device Models
ISBN:9781891121883
Keywords: Radio Transmitters and transmission Design and construction. , Radio Receivers and reception Design and construction. , Radio circuits Design and construction. , Microwave circuits Design and construction.
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Call number:TK6560.R39::2012 Show nearby items on shelf
Title:RF microelectronics
Author(s): Behzad Razavi
Date:2012
Edition:2nd ed.
Publisher:Prentice Hall
Size:916 p
Contents:Introduction to RF and wireless technology -- Basic concepts in RF design -- Communication concepts -- Transceiver architectures -- Low-noise amplifiers -- Mixers -- Passive devices -- Oscillators -- Phase-locked loops -- Integer-N frequency synthesizers -- Fractional-N synthesizers -- Power amplifiers -- Transceiver design example
ISBN:9780137134731
Series:Prentice Hall Communications Engineering and Emerging Technologies
Keywords: Radio frequency integrated circuits
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Call number:TK6560.H34::1996 Show nearby items on shelf
Title:Radio-frequency electronics : circuits and applications
Author(s): Jon B. Hagen
Date:1996
Publisher:Cambridge University Press, Cambridge
Size:358
Contents:1. Introduction 2. Impedance matching I 3. Linear power amplifiers 4. Filters I 5. Frequency converters 6. Radio receivers 7. Class-C and class-D power amplifiers 8. Transmission lines 9. Impedance matching II 10. Power supplies I 11. Amplitude modulation 12. Suppressed carrier AM 13. Oscillators 14. Phase-locked loops 15. Frequency synthesizers 16. Power supplies II (switching power supplies) 17. Directional power meters and standing waves 18. Small signal RF amplifiers 19. Filters II (coupled resonator filters) 20. Hybrid couplers 21. Low-noise amplifiers I 22. Transformers and baluns 23. Waveguide circuits 24. Television systems 25. Radar pulse modulators 26. TR switches 27. Demodulators and detectors 28. Frequency modulation 29. Radio propagation 30. Low-noise amplifiers II 31. Oscillator noise 32. Radio and radar astronomy 33. Radio spectrometry 34. Laboratory test equipment
ISBN:0521553563
Keywords: Radio circuits.
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Call number:TK454.E46::2003 Show nearby items on shelf
Title:Schaum's outline of theory and problems of electric circuits
Author(s): Mahmood Nahvi
Joseph A. Edminister
Date:2003
Edition:4th ed.
Publisher:New York : McGraw-Hill
Size:469 p
Contents:Introduction -- Circuit concepts -- Circuit laws -- Analysis methods -- Amplifiers and operational circuits -- Waveforms and signals -- First order circuits -- Higher order circuits and complex frequency -- Sinusoidal steady state circuit analysis -- AC power -- Polyphase circuits -- Frequency response filters and resonance -- Two port networks -- Mutual inductance and transformers -- Circuit analysis using spice and pspice -- The laplace transform method -- fourier method of waveform analysis -- Complex number system -- Matrices an determinants
ISBN:9780071393072
Series:Schaum's outline series
Keywords: Electric circuits , Problems and exercises
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Call number:SPRINGER-2014-9783319023380:ONLINE Show nearby items on shelf
Title:Fundamentals of Fiber Lasers and Fiber Amplifiers [electronic resource]
Author(s): Valerii (Vartan) Ter-Mikirtychev
Date:2014
Publisher:Cham : Springer International Publishing : Imprint: Springer
Size:1 online resource
Note:This book covers the fundamental aspects of fiber lasers and fiber amplifiers, and includes a wide range of material from laser physics fundamentals to state-of-the-art topics in this rapidly growing field of quantum electronics.Emphasis is placed on the nonlinear processes taking place in fiber lasers and amplifiers, their similarities, differences to, and their advantages over other solid-state lasers. The reader will learn basic principles of solid-statephysics and optical spectroscopy of laser ac tive centers in fibers, main operational laser regimes, and practical recommendations and suggestions on fiber laser research, laser applications,and laser product development. The bookwill be useful for students, researchers, and professionals who work w ith lasers, in the optical communications, chemical and biological industries, etc
Contents:From the Contents: Optical properties and optical spectroscopy of rare
earth ions in solids
Electron
phonon coupling in solids
Physical and optical properties of laser glass
Mechanical and thermal properties of glass
Fiber fabrication and high quality glasses for gain fibers
Spectroscopic properties of and gain fibers
Propagation of light and spatial modes in optical fibers
Fiber laser physics fundamentals
Main fiber laser operational regimes
Main optical components for fiber lasers and fiber amplifiers design
High power fiber lasers
Fiber lasers industrial
ISBN:9783319023380
Series:eBooks
Series:SpringerLink
Series:Springer Series in Optical Sciences, 0342-4111 : v181
Series:Physics and Astronomy (Springer-11651)
Keywords: Engineering , Microwaves
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Call number:SPRINGER-2004-9783642188701:ONLINE Show nearby items on shelf
Title:Silicon Carbide Recent Major Advances
Author(s):
Date:2004
Size:1 online resource (899 p.)
Note:10.1007/978-3-642-18870-1
Contents:Zero- and Two-Dimensional Native Defects -- Defect Migration and Annealing Mechanisms -- Hydrogen in SiC -- Electronic Properties of Stacking Faults and Thin Cubic Inclusions in SiC Polytypes -- Principles and Limitations of Numerical
Simulation of SiC Boule Growth by Sublimation -- Defect Formation and Reduction During Bulk SiC Growth -- High Nitrogen Doping During Bulk Growth of SiC -- Homoepitaxial and Heteroepitaxial Growth on Step-Free SiC Mesas -- Low-Defect
3C-SiC Grown on Undulant-Si (001) Substrates -- New Development in Hot Wall Vapor Phase Epitaxial Growth of Silicon Carbide -- Formation of SiC Thin Films by Ion Beam Synthesis -- Atomic Structure of SiC Surfaces -- The Continuum of
Interface-Induced Gap States — The Unifying Concept of the Band Lineup at Semiconductor Interfaces — Application to Silicon Carbide -- Contributions to the Density of Interface States in SiC MOS Structures -- Properties of Nitrided
Oxides on SiC -- Hall Effect Studies of Electron Mobility and Trapping at the SiC/SiO2 Interface -- Optical Properties of SiC: 1997–2002 -- Cyclotron Resonance Studies of Effective Masses and Band Structure in SiC -- Electronic
Structure of Deep Defects in SiC -- Phosphorus-Related Centers in SiC -- Hall Scattering Factor for Electrons and Holes in SiC -- Radiotracer Deep Level Transient Spectroscopy -- Vacancy Defects Detected by Positron Annihilatio --
Characterization of Defects in SiC Crystals by Raman Scattering -- Characterization of Low-Dimensional Structures in SiC Using Advanced Transmission Electron Microscopy -- Synchrotron White Beam X-Ray Topography and High Resolution
X-Ray Diffraction Studies of Defects in SiC Substrates, Epilayers and Device Structures -- Ohmic Contacts for Power Devices on SiC -- Micromachining of SiC -- Surface Preparation Techniques for SiC Wafers -- Epitaxial Growth and Device
Processing of SiC on Non-Basal Planes -- SiC Power Bipolar Transistors and Thyristors -- High Voltage SiC Devices -- Power MOSFETs in 4H-SiC: Device Design and Technology -- Normally-Off Accumulation-Mode Epi-Channel Field Effect
Transistor -- Development of SiC Devices for Microwave and RF Power Amplifiers -- Advances in SiC Field Effect Gas Sensors
ISBN:9783642188701
Series:eBooks
Series:SpringerLink (Online service)
Series:Springer eBooks
Keywords: Engineering , Condensed matter , Optics , Optoelectronics , Plasmons (Physics) , Electronics , Microelectronics , Optical materials , Electronic materials , Materials science , Materials , Thin films , Engineering , Electronics and Microelectronics, Instrumentation , Optical and Electronic Materials , Characterization and Evaluation of Materials , Surfaces and Interfaces, Thin Films , Condensed Matter Physics , Optics, Optoelectronics, Plasmonics and Optical Devices
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Call number:SPRINGER-2001-9783642564703:ONLINE Show nearby items on shelf
Title:Scientific Computing in Electrical Engineering Proceedings of the 3rd International Workshop, August 20–23, 2000, Warnemünde, Germany
Author(s):
Date:2001
Size:1 online resource (428 p.)
Note:10.1007/978-3-642-56470-3
Contents:Multi-Time PDEs for Dynamical System Analysis -- Edge Finite Elements of Variable Order for Maxwell’s Equations -- A Common-Mode Skeleton Model for EMC Simulations -- Computational Electromagnetism in Transformer and Switchgear
Design: Current Trends -- Numerical Algorithms for the Calculation of Magneto-Quasistatic Fields Using the Finite Integration Technique -- Parallel Maxwell Solvers -- Simulation of Electric Field Strength and Force Density on
Contaminated H-V Insulators -- Commercial EM Codes Suitable for Modeling of Microwave Heating — a Comparative Review -- On the Representation of Differential Forms by Potentials in Dimension 3 -- Hysteresis Models for Transient
Simulation -- Calculation of Frequency Domain Parameters in Lossfree and Lossy Structures Using the FI-Technique and a Modal Approach -- Statistical Simulation Approach to Inverse Geoelectric Problem -- A Scalar BEM for Time Harmonic
Eddy Current Problems with Impedance Boundary Conditions -- Appraisal of Asymptotics in Electromagnetic Field Calculations -- Shape Optimization of Homogeneous Electromagnets -- Field Calculations of High Accuracy by BEM Using
Extrapolation -- Calculation of Electromagnetic Eigenmodes in Complex Structures Using Coupled S-Parameter Calculation -- Multigrid Solvers for Poisson’s Equation in Computational Electromagnetics -- Model Design Criteria for
Integrated Circuits to Have a Unique Solution and Good Numerical Properties -- CHORAL — A One Step Method as Numerical Low Pass Filter in Electrical Network Analysis -- Periodic Steady-State Analysis of Free-running Oscillators --
Efficient Analysis of Oscillatory Circuits -- Robust Limit Cycle Calculations of Oscillators -- Multirate ROW Methods of Mixed Type for Circuit Simulation -- Neural Networks for Device and Circuit Modelling -- Sub-micrometer Bipolar
Transistor Modeling Using Neural Networks -- Numerical Simulation for Lossy Microwave Transmission Lines Including PML -- Electromagnetic Simulation of Real-Life Circuits: A Mobile Phone Power Amplifier Module and an FM Radio Tuner PCB
-- Error Indicator and Adaptive Meshing for Hierarchical FEM-Simulation of Waveguides -- A Parallelizable GMRES-type Method for p-cyclic Matrices, with Applications in Circuit Simulation -- Parallel Algorithms for Solving Linear
Equations in VLSI Circuit Simulation -- Investigation of Time Step Control for the Mixed-Level Device/Circuit Simulation of SiGe Bipolar Microwave Power Amplifiers -- Symmetrical Retarded Current Source Model for Transient Field
Coupling on Interconnects -- Iterative Solution of Systems of Linear Equations in Microwave Circuits Using a Block Quasi-Minimal Residual Algorithm -- A Survey on Parameter Extraction Techniques for Coupling Electromagnetic Devices to
Electric Circuits -- A Mathematical Framework for the Finite Element Modelling of Electromechanical Problems -- Dual Magnetodynamic Finite Element Formulations with Natural Definitions of Global Quantities for Electric Circuit Coupling
-- Induction Heating of Thin Slabs in Nonmagnetic Media -- Krylov Subspace Methods for Harmonic Balanced Finite Element Methods -- The “Modified Trapezoidal Rule” (?-Method) for the Integration of DAEs Modelling an Electro-Mechanical
Drive Including External Circuitry and Magnetic Field-Distribution -- Analysis of Coupled Electromagnetic and Thermal Fields in the Instationary Case -- On the Evaluation of Transients in Conducting Ferromagnetic Cores
ISBN:9783642564703
Series:eBooks
Series:SpringerLink (Online service)
Series:Springer eBooks
Series:Lecture Notes in Computational Science and Engineering: 18
Keywords: Engineering , Computers , Computer engineering , Computer mathematics , Numerical analysis , Computational intelligence , Electrical engineering , Engineering , Electrical Engineering , Theory of Computation , Computer Engineering , Computational Mathematics and Numerical Analysis , Numerical Analysis , Computational Intelligence
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Call number:SPRINGER-2001-9783642564666:ONLINE Show nearby items on shelf
Title:Fibre Optic Communication Devices
Author(s):
Date:2001
Size:1 online resource (465 p.)
Note:10.1007/978-3-642-56466-6
Contents:1 Characteristics of Optical Communication Networks -- 1.1 Optical Network Issues -- 1.2 Long-Haul Networks -- 1.3 WDM Networking -- 1.4 Connection Patterns -- 1.5 Optical Network Protection -- 1.6 Optical Network Elements --
References -- 2 The Optical Fibre -- 2.1 Introduction -- 2.2 Waveguiding Properties -- 2.3 Fibre Materials -- 2.4 Basic Optical Properties -- 2.5 Nonlinear Optical Properties -- 2.6 Pulse Propagation in Optical Fibres -- References --
3 Transmitters -- 3.1 Introduction -- 3.2 Theory -- 3.3 Basic Design of Semiconductor Laser Structures -- 3.4 Single-Mode Laser Structures -- 3.5 Tunable Lasers -- References -- 4 Optical Photodetectors -- 4.1 Introduction -- 4.2 The
PIN Photodiode -- 4.3 The Avalanche Photodiode (APD) -- 4.4 Photodiodes -- 4.5 Photoreceivers -- 4.6 Conclusion -- References -- 5 Optical Amplifiers -- 5.1 Optical Fibre Amplifiers -- 5.2 Semiconductor Optical Amplifiers -- References
-- 6 Passive and Active Glass Integrated Optics Devices -- 6.1 General Introduction -- 6.2 Passive Power Splitters -- 6.3 Integrated Optic Yb/Er Glass Amplifiers -- 6.4 Integrated Optic Er/Yb Laser Oscillators -- References -- 7
Wavelength-Selective Devices -- 7.1 Introduction -- 7.2 Device Specifications -- 7.3 Fabry-Perot Interferometer Filters -- 7.4 Dielectric Interference Filters -- 7.5 Fibre Gratings -- 7.6 Grating-based Demultiplexers -- 7.7
PHASAR-based Devices -- 7.8 Integrated Acousto-Optical Devices in LiNbO3 -- References -- 8 Optical Switching -- 8.1 Introduction -- 8.2 Applications -- 8.3 Technologies -- 8.4 Summary -- References -- 9 All-Optical Time-Division
Multiplexing Technology -- 9.1 Role of All-Optical TDM Technology -- 9.2 Key Technologies for All-Optical TDM Systems -- 9.3 Demonstration of OTDM and OTDM/WDM Transmission -- References -- 10 Optical Hybrid Integrated Circuits -- 10.1
Introduction -- 10.2 Key Technologies for Hybrid Integration -- 10.3 Contributions of Hybrid Integration to Optical Communication Technology -- 10.4 Future Prospects -- 10.5 Summary -- References -- 11 Monolithic Integration -- 11.1
Introductory Remarks -- 11.2 Waveguides -- 11.3 Integrated Spot-Size Converters -- 11.4 Monolithic Laser Integration -- 11.5 Integrated Receiver -- 11.6 Crosstalk -- 11.7 Current Status of Optoelectronic Integration -- 11.8 Outlook --
References -- Biographical Notes
ISBN:9783642564666
Series:eBooks
Series:SpringerLink (Online service)
Series:Springer eBooks
Series:Springer Series in Photonics: 4
Keywords: Physics , Computer hardware , Optics , Optoelectronics , Plasmons (Physics) , Electronics , Microelectronics , Electrical engineering , Optical materials , Electronic materials , Physics , Optics, Optoelectronics, Plasmonics and Optical Devices , Communications Engineering, Networks , Optical and Electronic Materials , Computer Hardware , Electronics and Microelectronics, Instrumentation
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Call number:SPRINGER-1994-9783642612251:ONLINE Show nearby items on shelf
Title:Semiconductor-Laser Physics
Author(s): Weng W Chow
Date:1994
Size:1 online resource (497 p.)
Note:10.1007/978-3-642-61225-1
Contents:1. Semiconductor Laser Diodes -- 1-1. The Diode -- 1-2. Basic Laser Device -- 1-3. Heterostructures -- 1-4. Gain and Index Guiding -- 1-5. Semiconductor Microlasers -- 1-6. Output Power-Current Characteristics -- 1-7. Frequency
Spectrum -- 1-8. Transverse Mode Structure -- 1-9. Phenomenological Gain Model -- 2. Basic Concepts -- 2-1. Elementary Aspects of Band Structures -- 2-2. Units -- 2-3. Fermi-Dirac Distributions -- 2-4. Quantum Confinement -- 2-5.
Slowly-Varying Maxwell Equations -- 2-6. Quantum Mechanics of the Semiconductor Medium -- 3. Free-Carrier Theory -- 3-1. Free-Carrier Equations of Motion -- 3-2. Quasiequilibrium Approximation -- 3-3. Semiconductor Gain -- 3-4.
Temperature Dependence of Gain -- 3-5. Gain Saturation -- 3-6. Carrier-Induced Refractive Index -- 4. Coulomb Effects -- 4-1. Many-Body Hamiltonian -- 4-2. Plasma Screening -- 4-3. Semiconductor Bloch Equations -- 4-4. Bandgap
Renormalization -- 4-5. Interband Coulomb Effects -- 4-6. Collision Processes -- 5. Many-Body Gain -- 5-1. Pad’e Approximation -- 5-2. Bulk Semiconductors -- 5-3. Quantum Wells -- 6. Band Mixing and Strain in Quantum Wells -- 6-1.
Bloch Theorem -- 6-2. Electronic States at k = 0 -- 6-3. k?p Theory -- 6-4. Luttinger Hamiltonian -- 6-5. Quantum Wells -- 6-6. Strained Quantum Wells -- 6-7. Bandstructure Calculation -- 6-8. GaAs-AlGaAs Quantum Wells -- 6-9.
InGaAs-AlGaAs Strained Quantum Wells -- 6-10. InGaAs-InP -- 6-11. InGaP-InAlGaP -- 7. Semiclassical Laser Theory -- 7-1. Multimode Maxwell Equations -- 7-2. Single-Mode Semiconductor Laser Theory -- 7-3. Single-Mode Linear-Stability
Analysis -- 7-4. Injection Locking -- 7-5. Coupled Resonators -- 7-6. Laser Arrays -- 8. Multimode Operation -- 8 -1. Multiwave Mixing -- 8-2. Short-Cavity Sidemode Interactions -- 8-3. Third-Order Multimode Equations -- 8-4.
Single-Mode Operation -- 8-5. Two-Mode Operation -- 8-6. Three-Mode Operation and Mode Locking -- 8-7. Higher-Order Operation -- 9. Quantum Theory of the Laser -- 9-1. Single-Mode Field Quantization -- 9-2. Spontaneous Emission -- 9-3.
Quantum Langevin Equations -- 9-4. Semiconductor Langevin Equations -- 9-5. Power Spectra and Laser Linewidth -- 10. Propagation Effects -- 10-1. Longitudinal Field Dependence -- 10-2. Lateral Field Distributions -- 10-3. Diffraction
Effects -- 10-4. Filamentation in Amplifiers -- 10-5. Unstable Resonator Lateral Mode Stability -- 11. Beyond Quasiequilibrium Theory -- 11-1. Nonequilibrium Laser Theory -- 11-2. Numerical Results for VCSELs -- 11-3. Pulse Propagation
in Semiconductor Amplifiers -- Appendix A: Two-Level Systems and Rate Equations -- Appendix B: k?p Theory -- Appendix C: Envelope Function Approach -- Appendix D: Strain Effects -- Appendix E: Some Langevin Goodies
ISBN:9783642612251
Series:eBooks
Series:SpringerLink (Online service)
Series:Springer eBooks
Keywords: Physics , Quantum optics , Lasers , Photonics , Optical materials , Electronic materials , Physics , Laser Technology, Photonics , Quantum Optics , Optical and Electronic Materials
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Call number:SPRINGER-1994-9783642579202:ONLINE Show nearby items on shelf
Title:Techniques for Nuclear and Particle Physics Experiments A How-to Approach
Author(s): William R Leo
Date:1994
Edition:Second Revised Edition
Size:1 online resource (382 p.)
Note:10.1007/978-3-642-57920-2
Contents:1. Basic Nuclear Processes in Radioactive Sources -- 1.1 Nuclear Level Diagrams -- 1.2 Alpha Decay -- 1.3 Beta Decay -- 1.4 Electron Capture (EC) -- 1.5 Gamma Emission -- 1.5.1 Isomeric States -- 1.6 Annihilation Radiation -- 1.7
Internal Conversion -- 1.8 Auger Electrons -- 1.9 Neutron Sources -- 1.9.1 Spontaneous Fission -- 1.9.2 Nuclear Reactions -- 1.10 Source Activity Units -- 1.11 The Radioactive Decay Law -- 1.11.1 Fluctuations in Radioactive Decay --
1.11.2 Radioactive Decay Chains -- 1.11.3 Radioisotope Production by Irradiation -- 2. Passage of Radiation Through Matter -- 2.1 Preliminary Notions and Definitions -- 2.1.1 The Cross Section -- 2.1.2 Interaction Probability in a
Distance x. Mean Free Path -- 2.1.3 Surface Density Units -- 2.2 Energy Loss of Heavy Charged Particles by Atomic Collisions -- 2.2.1 Bohr’s Calculation — The Classical Case -- 2.2.2 The Bethe-Bloch Formula -- 2.2.3 Energy Dependence
-- 2.2.4 Scaling Laws for dE/dx -- 2.2.5 Mass Stopping Power -- 2.2.6 dE/dx for Mixtures and Compounds -- 2.2.7 Limitations of the Bethe-Bloch Formula and Other Effects -- 2.2.8 Channeling -- 2.2.9 Range -- 2.3 Cherenkov Radiation --
2.4 Energy Loss of Electrons and Positrons -- 2.4.1 Collision Loss -- 2.4.2 Energy Loss by Radiation: Bremsstrahlung -- 2.4.3 Electron-Electron Bremsstrahlung -- 2.4.4 Critical Energy -- 2.4.5 Radiation Length -- 2.4.6 Range of
Electrons -- 2.4.7 The Absorption of ? Electrons -- 2.5 Multiple Coulomb Scattering -- 2.5.1 Multiple Scattering in the Gaussian Approximation -- 2.5.2 Backscattering of Low-Energy Electrons -- 2.6 Energy Straggling: The Energy Loss
Distribution -- 2.6.1 Thick Absorbers: The Gaussian Limit -- 2.6.2 Very Thick Absorbers -- 2.6.3 Thin Absorbers: The Landau and Vavilov Theories -- 2.7 The Interaction of Photons -- 2.7.1 Photoelectric Effect -- 2.7.2 Compton
Scattering -- 2.7.3 Pair Production -- 2.7.4 Electron-Photon Showers -- 2.7.5 The Total Absorption Coefficient and Photon Attenuation -- 2.8 The Interaction of Neutrons -- 2.8.1 Slowing Down of Neutrons. Moderation -- 3. Radiation
Protection. Biological Effects of Radiation -- 3.1 Dosimetric Units -- 3.1.1 The Roentgen -- 3.1.2 Absorbed Dose -- 3.1.3 Relative Biological Effectiveness (RBE) -- 3.1.4 Equivalent Dose -- 3.1.5 Effective Dose -- 3.2 Typical Doses
from Sources in the Environment -- 3.3 Biological Effects -- 3.3.1 High Doses Received in a Short Time -- 3.3.2 Low-Level Doses -- 3.4 Dose Limits -- 3.5 Shielding -- 3.6 Radiation Safety in the Nuclear Physics Laboratory -- 4.
Statistics and the Treatment of Experimental Data -- 4.1 Characteristics of Probability Distributions -- 4.1.1 Cumulative Distributions -- 4.1.2 Expectation Values -- 4.1.3 Distribution Moments. The Mean and Variance -- 4.1.4 The
Covariance -- 4.2 Some Common Probability Distributions -- 4.2.1 The Binomial Distribution -- 4.2.2 The Poisson Distribution -- 4.2.3 The Gaussian or Normal Distribution -- 4.2.4 The Chi-Square Distribution -- 4.3 Measurement Errors
and the Measurement Process -- 4.3.1 Systematic Errors -- 4.3.2 Random Errors -- 4.4 Sampling and Parameter Estimation. The Maximum Likelihood Method -- 4.4.1 Sample Moments -- 4.4.2 The Maximum Likelihood Method -- 4.4.3 Estimator for
the Poisson Distribution -- 4.4.4 Estimators for the Gaussian Distribution -- 4.4.5 The Weighted Mean -- 4.5 Examples of Applications -- 4.5.1 Mean and Error from a Series of Measurements -- 4.5.2 Combining Data with Different Errors
-- 4.5.3 Determination of Count Rates and Their Errors -- 4.5.4 Null Experiments. Setting Confidence Limits When No Counts Are Observed -- 4.5.5 Distribution of Time Intervals Between Counts -- 4.6 Propagation of Errors -- 4.6.1
Examples -- 4.7 Curve Fitting -- 4.7.1 The Least Squares Method -- 4.7.2 Linear Fits. The Straight Line -- 4.7.3 Linear Fits When Both Variables Have Errors -- 4.7.4 Nonlinear Fits -- 4.8 Some General Rules for Rounding-off Numbers for
Final Presentation -- 5. General Characteristics of Detectors -- 5.1 Sensitivity -- 5.2 Detector Response -- 5.3 Energy Resolution. The Fano Factor -- 5.4 The Response Function -- 5.5 Response Time -- 5.6 Detector Efficiency -- 5.7
Dead Time -- 5.7.1 Measuring Dead Time -- 6. Ionization Detectors -- 6.1 Gaseous Ionization Detectors -- 6.2 Ionization and Transport Phenomena in Gases -- 6.2.1 Ionization Mechanisms -- 6.2.2 Mean Number of Electron-Ion Pairs Created
-- 6.2.3 Recombination and Electron Attachment -- 6.3 Transport of Electrons and Ions in Gases -- 6.3.1 Diffusion -- 6.3.2 Drift and Mobility -- 6.4 Avalanche Multiplication -- 6.5 The Cylindrical Proportional Counter -- 6.5.1 Pulse
Formation and Shape -- 6.5.2 Choice of Fill Gas -- 6.6 The Multiwire Proportional Chamber (MWPC) -- 6.6.1 Basic Operating Principle -- 6.6.2 Construction -- 6.6.3 Chamber Gas -- 6.6.4 Timing Resolution -- 6.6.5 Readout Methods -- 6.6.6
Track Clusters -- 6.6.7 MWPC Efficiency -- 6.7 The Drift Chamber -- 6.7.1 Drift Gases -- 6.7.2 Spatial Resolution -- 6.7.3 Operation in Magnetic Fields -- 6.8 The Time Projection Chamber (TPC) -- 6.9 Liquid Ionization Detectors (LID)
-- 7. Scintillation Detectors -- 7.1 General Characteristics -- 7.2 Organic Scintillators -- 7.2.1 Organic Crystals -- 7.2.2 Organic Liquids -- 7.2.3 Plastics -- 7.3 Inorganic Crystals -- 7.4 Gaseous Scintillators -- 7.5 Glasses -- 7.6
Light Output Response -- 7.6.1 Linearity -- 7.6.2 Temperature Dependence -- 7.6.3 Pulse Shape Discrimination (PSD) -- 7.7 Intrinsic Detection Efficiency for Various Radiations -- 7.7.1 Heavy Ions -- 7.7.2 Electrons -- 7.7.3 Gamma Rays
-- 7.7.4 Neutrons -- 8. Photomultipliers -- 8.1 Basic Construction and Operation -- 8.2 The Photocathode -- 8.3 The Electron-Optical Input System -- 8.4 The Electron-Multiplier Section -- 8.4.1 Dynode Configurations -- 8.4.2 Multiplier
Response: The Single-Electron Spectrum -- 8.5 Operating Parameters -- 8.5.1 Gain and Voltage Supply -- 8.5.2 Voltage Dividers -- 8.5.3 Electrode Current. Linearity -- 8.5.4 Pulse Shape -- 8.6 Time Response and Resolution -- 8.7 Noise
-- 8.7.1 Dark Current and Afterpulsing -- 8.7.2 Statistical Noise -- 8.8 Environmental Factors -- 8.8.1 Exposure to Ambient Light -- 8.8.2 Magnetic Fields -- 8.8.3 Temperature Effects -- 8.9 Gain Stability, Count Rate Shift -- 9.
Scintillation Detector Mounting and Operation -- 9.1 Light Collection -- 9.1.1 Reflection -- 9.2 Coupling to the PM -- 9.3 Multiple Photomultipliers -- 9.4 Light Guides -- 9.5 Fluorescent Radiation Converters -- 9.6 Mounting a
Scintillation Detector: An Example -- 9.7 Scintillation Counter Operation -- 9.7.1 Testing the Counter -- 9.7.2 Adjusting the PM Voltage -- 9.7.3 The Scintillation Counter Plateau -- 9.7.4 Maintaining PM Gain -- 10. Semiconductor
Detectors -- 10.1 Basic Semiconductor Properties -- 10.1.1 Energy Band Structure -- 10.1.2 Charge Carriers in Semiconductors -- 10.1.3 Intrinsic Charge Carrier Concentration -- 10.1.4 Mobility -- 10.1.5 Recombination and Trapping --
10.2 Doped Semiconductors -- 10.2.1 Compensation -- 10.3 The np Semiconductor Junction. Depletion Depth -- 10.3.1 The Depletion Depth -- 10.3.2 Junction Capacitance -- 10.3.3 Reversed Bias Junctions -- 10.4 Detector Characteristics of
Semiconductors -- 10.4.1 Average Energy per Electron-Hole Pair -- 10.4.2 Linearity -- 10.4.3 The Fano Factor and Intrinsic Energy Resolution -- 10.4.4 Leakage Current -- 10.4.5 Sensitivity and Intrinsic Efficiency -- 10.4.6 Pulse
Shape. Rise Time -- 10.5 Silicon Diode Detectors -- 10.5.1 Diffused Junction Diodes -- 10.5.2 Surface Barrier Detectors (SSB) -- 10.5.3 Ion-Implanted Diodes -- 10.5.4 Lithium-Drifted Silicon Diodes — Si(Li) -- 10.6 Position-Sensitive
Detectors -- 10.6.1 Continuous and Discrete Detectors -- 10.6.2 Micro-Strip Detectors -- 10.6.3 Novel Position-Sensing Detectors -- 10.7 Germanium Detectors -- 10.7.1 Lithium-Drifted Germanium — Ge(Li) -- 10.7.2 Intrinsic Germanium --
10.7.3 Gamma Spectroscopy with Germanium Detectors -- 10.8 Other Semiconductor Materials -- 10.9 Operation of Semiconductor Detectors -- 10.9.1 Bias Voltage -- 10.9.2 Signal Amplification -- 10.9.3 Temperature Effects -- 10.9.4
Radiation Damage -- 10.9.5 Plasma Effects -- 11. Pulse Signals in Nuclear Electronics -- 11.1 Pulse Signal Terminology -- 11.2 Analog and Digital Signals -- 11.3 Fast and Slow Signals -- 11.4 The Frequency Domain. Bandwidth -- 12. The
NIM Standard -- 12.1 Modules -- 12.2 Power Bins -- 12.3 NIM Logic Signals -- 12.4 TTL and ECL Logic Signals -- 12.5 Analog Signals -- 13. Signal Transmission -- 13.1 Coaxial Cables -- 13.1.1 Line Constituents -- 13.2 The General Wave
Equation for a Coaxial Line -- 13.3 The Ideal Lossless Cable -- 13.3.1 Characteristic Impedance -- 13.4 Reflections -- 13.5 Cable Termination. Impedance Matching -- 13.6 Losses in Coaxial Cables. Pulse Distortion -- 13.6.1 Cable
Response. Pulse Distortion -- 14. Electronics for Pulse Signal Processing -- 14.1 Preamplifiers -- 14.1.1 Resistive vs Optical Feedback -- 14.2 Main Amplifiers -- 14.3 Pulse Shaping Networks in Amplifiers -- 14.3.1 CR-RC Pulse Shaping
-- 14.3.2 Pole-Zero Cancellation and Baseline Restoration -- 14.3.3 Double Differentiation or CR-RC-CR Shaping -- 14.3.4 Semi-Gaussian Shaping -- 14.3.5 Delay Line Shaping -- 14.4 Biased Amplifiers -- 14.5 Pulse Stretchers -- 14.6
Linear Transmission Gate -- 14.7 Fan-out and Fan-in -- 14.8 Delay Lines -- 14.9 Discriminators -- 14.9.1 Shapers -- 14.10 Single-Channel Analyzer (Differential Discriminator) -- 14.11 Analog-to-Digital Converters (ADC or A/D) --
14.11.1 ADC Linearity -- 14.12 Multichannel Analyzers -- 14.13 Digital-to-Analog Converters (DAC or D/A) -- 14.14 Time to Amplitude Converters (TAC or TPHC) -- 14.15 Scalers -- 14.16 Ratemeter -- 14.17 Coincidence Units -- 14.18
Majority Logic Units -- 14.19 Flip-Flops -- 14.20 Registers (Latches) -- 14.21 Gate and Delay Generators -- 14.22 Some Simple and Handy Circuits for Pulse Manipulation -- 14.22.1 Attenuators -- 14.22.2 Pulse Splitting -- 14.22.3
ISBN:9783642579202
Series:eBooks
Series:SpringerLink (Online service)
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Keywords: Physics , Nuclear physics , Engineering , Physics , Particle and Nuclear Physics , Engineering, general
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Call number:SPRINGER-1993-9781461243380:ONLINE Show nearby items on shelf
Title:Electronics via Waveform Analysis
Author(s): Edwin C Craig
Date:1993
Size:1 online resource (420 p.)
Note:10.1007/978-1-4612-4338-0
Contents:1 Electrical Conductors -- 2 Power Supplies -- 3 FET Amplifiers -- 4 BJT Amplifiers -- 5 Special Amplifiers -- 6 Sine Wave Oscillators -- 7 Square Wave Circuits -- 8 Wave Shaping -- 9 Radio and Television -- 10 Thyristors -- 11
Integrated Circuits -- 12 Ultrahigh Frequencies -- Appendix A The Electron Volt -- Appendix B Current in Semiconductors -- Appendix C Positive Versus Electron Current -- Appendix D Effective or RMS Voltages -- Appendix E Average ac
Current -- Appendix F Vector Model of ac Voltages -- Appendix G Charge of a Capacitor -- Appendix H Discharge of a Capacitor -- Appendix J Equivalent Resistances -- Appendix M Proof That Maximum Transfer of Energy Is Achieved When
Impedances Are Matched -- Appendix P Equivalent Resistance of a Diode When Conducting -- Appendix Q Constants of Proportionality -- Appendix R Amplifier Gain with Feedback -- Appendix S Frequency Response of Amplifiers -- Appendix T
Frequency Control of rf Oscillators -- Appendix U Wien-Bridge Oscillator Derivations -- Appendix V Frequency Response of Oscilloscopes -- Appendix W Component Identification and Testing -- Appendix X Troubleshooting Electronic Circuits
-- Appendix Y Reference Points -- Appendix Z The Hall Effect -- Appendix AA Fourier Series -- Appendix BB Transformers and Coil Inductance -- Appendix CC Virtual Grounds -- Appendix DD Input and Output Impedances of BJTs
ISBN:9781461243380
Series:eBooks
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Keywords: Mathematics , Mathematical analysis , Analysis (Mathematics) , Electrical engineering , Mathematics , Analysis , Electrical Engineering
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Call number:SPRINGER-1991-9781461244240:ONLINE Show nearby items on shelf
Title:Lasers and Optical Engineering
Author(s): P Das
Date:1991
Size:1 online resource (470 p.)
Note:10.1007/978-1-4612-4424-0
Contents:I Geometrical Optics -- 1.1. Fundamentals of Geometrical Optics -- 1.2. Matrix Formulation of Geometrical Optics -- 1.3. Image Formation -- 1.4. Complex Systems -- 1.5. The Telescoping System -- 1.6. Some Comments About the Matrix
Method -- 1.7. Apertures and Stops -- 1.8. Radiometry and Photometry -- 1.9. Exact Matrices and Aberration -- References -- II Physical Optics, Wave Optics, and Fourier Optics -- 2.1. Fundamentals of Diffraction -- 2.2. Radiation from
a Source -- 2.3. The Diffraction Problem -- 2.4. Different Regions of Diffraction -- 2.5. The Fourier Transform -- 2.6. Some Examples of Fraunhofer Diffraction -- 2.7. Phase Transmission Functions and Lens -- 2.8. Fresnel Diffraction
-- 2.9. Detection and Coherence -- 2.10. Interference -- 2.11. Holography -- 2.12. Physical Optics -- References -- III Lasers -- 3.1. Introduction -- 3.2. Amplifier and Oscillator -- 3.3. The Fabry-Perot Laser -- 3.4. Laser Cavity --
3.5. Gaussian Beam Optics -- 3.6. Solution of the Cavity Problem -- 3.6.1. Frequency of Oscillation -- 3.6.2. Unstable Resonators -- 3.7. Photon, Stimulated, and Spontaneous Emission, and the Einstein Relationship -- 3.8. Light
Amplifier—Population Inversion -- 3.9. Different Types of Light Amplifiers and Quantum Efficiency -- 3.10. Rate Dynamics of Four-Level Lasers -- 3.10.1. Optimum Output Power -- 3.11. Properties of Laser Light -- 3.12. Q-Switching and
Mode Locking -- 3.12.1. Single-Mode and Multimode Lasers: Lamb Dip -- 3.12.2. Mode Locking of Multimode Lasers -- 3.12.3. Q-Switching -- 3.13. Lasers -- 3.13.1. The Gas Laser -- 3.13.2. Solid State Lasers -- 3.13.3. Dye Lasers --
3.13.4. Semiconductor Lasers -- 3.13.5. Free-Electron Lasers and Cyclotron Resonance Masers -- References -- IV Applications -- 4.1. Introduction -- 4.2. Optical Instruments -- 4.3. Fiber-Optics and Integrated Optics -- 4.4. Optical
Signal Processing -- 4.5. Laser Applications -- 4.6. Recent Advances -- References -- Appendix Delta Function -- Supplemental References
ISBN:9781461244240
Series:eBooks
Series:SpringerLink (Online service)
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Keywords: Physics , Quantum optics , Lasers , Photonics , Optics , Optoelectronics , Plasmons (Physics) , Engineering , Electrical engineering , Physics , Optics, Optoelectronics, Plasmonics and Optical Devices , Engineering, general , Communications Engineering, Networks , Laser Technology, Photonics , Quantum Optics
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Call number:SPRINGER-1988-9781489923820:ONLINE Show nearby items on shelf
Title:The Physics of Submicron Semiconductor Devices
Author(s):
Date:1988
Size:1 online resource (738 p.)
Note:10.1007/978-1-4899-2382-0
Contents:Modelling of Sub-Micron Devices -- Boltzmann Transport Equation -- Transport and Material Considerations for Submicron Devices -- Epitaxial Growth for Sub Micron Structures -- Insulator/Semiconductor Interfaces -- Theory of the
Electronic Structure of Semiconductor Surfaces and Interfaces -- Deep Levels at Compound-Semiconductor Interfaces -- Ensemble Monte Carlo Techniques -- Noise and Diffusion in Submicron Structures -- Superlattices -- Submicron
Lithography -- Quantum Effects in Device Structures Due to Submicron Confinement in One Dimension -- Physics of Heterostructures and Heterostructure Devices -- Correlation Effects in Short Time, Nonstationary Transport -- Device-Device
Interactions -- Quantum Transport and the Wigner Function -- Far Infrared Measurements of Velocity Overshoot and Hot Electron Dynamics in Semiconductor Devices -- The Influence of Contacts on the Behavior of Near and Sub-Micron INP
Devices -- Monte Carlo Simulation of Transport in Submicron Structures -- Two Dimensional Electron Gas Fet -- Hot Electron Transfer Amplifiers -- New Graded Band Gap and Superlattice Structures and their Applications to Photodetectors,
Bipolar Transistors and High-Speed Devices -- Metal-Semiconductor Interfaces -- Nonequilibrium Phonons in Semiconductors: Power Dissipation of Highly Laser-Excited Electron-Hole Plasmas -- Picosecond Measurements of Device and Circuit
Transient Response with Optoelectric Techniques
ISBN:9781489923820
Series:eBooks
Series:SpringerLink (Online service)
Series:Springer eBooks
Series:NATO ASI Series, Series B: Physics: 180
Keywords: Physics , Electronic circuits , Physics , Electronic Circuits and Devices
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Call number:SPRINGER-1982-9783642679377:ONLINE Show nearby items on shelf
Title:Parametric Electronics An Introduction
Author(s): Karl-Heinz Löcherer
Date:1982
Size:1 online resource (330 p.)
Note:10.1007/978-3-642-67937-7
Contents:1. Introduction -- 1.1 The Parametric Principle -- 1.2 Problems -- 2. Lumped Nonlinear Reactances -- 2.1 Capacitances -- 2.2 Inductances -- 2.3 Problems -- 3. Distributed Nonlinear Reactances -- 3.1 Ferroelectrics -- 3.2 Nonlinear
Magnetics -- 3.3 Electron Beams -- 3.4 Superconductors -- 3.5 Piezoelectrics -- 3.6 Problems -- 4. Basic Relations for Parametric Circuits -- 4.1 The Manley-Rowe Power Relations -- 4.2 The Basic Three-Frequency Circuit -- 4.3 The
Small-Signal Conversion Equations -- 4.4 Large-Signal Conversion Equations -- 4.5 Problems -- 5. Signal Performance of Single-Varactor Diode Parametric Circuits -- 5.1 Three-Frequency Converters -- 5.2 Four-Frequency Converters for
Small-Signal Operation -- 5.3 Large-Signal Converters -- 5.4 Small-Signal Behavior of the Three-Frequency Amplifier -- 5.5 Large-Signal Effect with Amplifiers -- 5.6 Problems -- 6. Fundamentals of Electronic Noise -- 6.1 Noise — What
Is It? -- 6.2 Noise Sources in Communication Transmission Systems -- 6.3 Noisy Four-Poles -- 6.4 Noise Measurement Techniques -- 6.5 Problems -- 7. Noise Performance of Single-Varactor Diode Parametric Circuits -- 7.1 Noise Sources in
Parametric Circuits -- 1.2 Converters -- 7.3 The Amplifier -- 7.4 Problems -- 8. Multiple Controlled-Reactance Parametric Circuits -- 8.1 Lumped Elements -- 8.2 Distributed Elements -- 8.3 Problems -- 9. Applications of Parametric
Circuits -- 9.1 Parametric Amplifiers -- 9.2 Parametric Converters -- 9.3 Problems -- Appendix : Calculation of pn-Diode Barrier Capacitance -- References -- List of Symbols
ISBN:9783642679377
Series:eBooks
Series:SpringerLink (Online service)
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Series:Springer Series in Electrophysics: 6
Keywords: Materials science , Electronics , Microelectronics , Optical materials , Electronic materials , Materials Science , Optical and Electronic Materials , Electronics and Microelectronics, Instrumentation
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Call number:SPRINGER-1980-9781468410488:ONLINE Show nearby items on shelf
Title:Megagauss Physics and Technology
Author(s):
Date:1980
Size:1 online resource (684 p.)
Note:10.1007/978-1-4684-1048-8
Contents:Experimental Techniques in Ultrahigh Magnetic Field Generation -- Pulsed Magnetic Field Generators and Their Practical Applications -- Production and Measurements of Megagauss Magnetic Fields in Single-Turn Coils -- Measurement of
Pulsed Magnetic Fields Produced by Flux Compression, in Imploding Liners -- TOFS-A Timing Optical Fiber System -- Test Bench for Operation with Great Explosive Charges Under Laboratory Conditions -- Conductors and Insulators at High
Energy Densities and Speeds -- High-Energy Electric Pulse Generation by Cumulative Explosion -- Explosive Plasma Source Experiment -- Electrophysical Properties of Detonation Products of Condensed Explosives -- Xenon Shock Waves Driven
by High Magnetic Fields -- Extinguishing of the Electric Arc Compressed by Shock Waves -- Design and Analysis of Isentropic Compression Experiments -- Effects of Metallurgical Microstructure of Armatures on Compressed Magnetic Field
Generators -- Shock-Induced Electrical Switching in Polymeric Films -- Generation of Ultrahigh Magnetic Fields by Small-Scale Single-Shot Experiments -- Modeling of Magnetodynamic Systems -- Small Helical Flux Compression Amplifiers --
Energy Capabilities and Magnetic Flux Losses in “Bellows”-Type Explosive Generators -- COMAG-III: A 2-D MHD Code for Helical CMF Generators -- Numerical Studies of Helical CMF Generators -- MHD Phenomena at High Magnetic Reynolds
Number -- Plasma Crowbars in Cylindrical Flux Compression Experiments -- Magnetic Flux Compression by Expanding Plasma Armatures -- An Equivalent Circuit Model for a Solenoidal Compressed Magnetic Field Generator -- A Finite-Element
Model of Compressed Magnetic Field Generators -- Advanced Pulsed Power Topics -- Pulse Transformer Operation in Megagauss Fields -- Magnetic Propulsion for a Hypervelocity Launcher -- Magnetic Propulsion Railguns: Their Design and
Capabilities -- Shiva X-Ray Source Experiments -- Numerical Simulation of the Effects of an Injected BZ Field on an Imploding Hollow Plasma Liner -- Inductively Driven Imploding Plasma System for X-Ray Generation -- A Very Fast
Electromagnetically Operated Circuit Breaker -- Fast Opening Switches Carrying Multimegampere Currents -- Imploding Liner Systems for Fusion -- Review of the NRL Liner Implosion Program -- On Efficiency of Two-Step Energy
Transformation in a System with Inductive Storage for MCG Magnetic Field Production -- Results from the Los Alamos Fast Liner Experiment -- Liner Thermonuclear Systems with Superhigh Magnetic Field and ? > 1 -- Adiabatic Compression of
3-D Plasma Magnetic Field Configuration -- Numerical Simulation of Dynamics of Quasispherical Metallic Liner -- A Conceptual Design for an Imploding-Liner Fusion Reactor -- Stabilization Concepts of Imploding Liquid Metal Liner --
Modeling of LINUS-Type Stabilized Liner Implosions -- Megagauss Field Generation -- Megagauss Fields Produced with Small Explosive Charges -- Investigation of Capabilities of Magneto-Cumulative Megagauss Magnetic Field Generation --
Production of Megagauss Fields by Compression of Magnetic Flux by a Metallic Liner -- Megagauss Magnetic Field Production in Small Volumes -- On a Novel Scheme for the Generation of Megagauss Fields -- Superhigh Magnetic Field
Generation by a Cumulating Liner and Magnetopressed Discharge -- Experimental and Computational Study of Axial Magnetic Field Compression by Cylindrical Plasma Liners -- Applications of Ultrahigh Magnetic Field Techniques -- Abstract
of Report of the Panel on High Magnetic Field Research and Facilities -- Design, Performance and Use of a Near Megagauss Pulsed Machine -- Experimental Research on Explosive-Driven Magnetic Generator Performance with
Resistive-Inductive Load -- Megagauss Fields and Current Pattern in Focussed Discharges -- Application of Strong Magnetic Fields for the Acceleration of Charged Particles -- Magnetocumulative Generator Systems -- Magnetic Cumulation
Generator Parameters and Means to Improve Them -- A Multiwire Helical Magnetic Cumulation Generator -- Formation and Transmission of Magnetic Cumulation Generators Electromagnetic Energy Pulses -- Transformer Energy Output Magnetic
Cumulation Generators -- Reproducible Generation of Multimegagauss Magnetic Fields -- High Inductance Explosive Magnetic Generators with High Energy Multiplication -- Generation of the Magnetic Flux by Multicascade Capture -- Ultimate
Capacities of Transformer Method of Energy Transfer from Explosive Magnetic Generator to Inductive Load -- Study of Basic Regularities of Formation of Multi-MA-Current Pulses with Short Risetime by EMG Circuit Interruption -- Addresses
of Author Organizations -- Author Index
ISBN:9781468410488
Series:eBooks
Series:SpringerLink (Online service)
Series:Springer eBooks
Keywords: Physics , Physics , Theoretical, Mathematical and Computational Physics
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Call number:SPRINGER-1978-9783642812415:ONLINE Show nearby items on shelf
Title:Advanced Electronic Circuits
Author(s): Ulrich Tietze
Date:1978
Size:1 online resource (510 p.)
Note:10.1007/978-3-642-81241-5
Contents:1 Linear and non-linear operational circuitry -- 1.1 Summing amplifier -- 1.2 Subtracting circuits -- 1.3 Bipolar-coefficient circuit -- 1.4 Integrators -- 1.5 Differentiators -- 1.6 Solution of differential equations -- 1.7 Function
networks -- 1.8 Analog multipliers -- 1.9 Transformation of coordinates -- 2 Controlled sources and impedance converters -- 2.1 Voltage-controlled voltage sources -- 2.2 Current-controlled voltage sources -- 2.3 Voltage-controlled
current sources -- 2.4 Current-controlled current sources -- 2.5 NIC (negative impedance converter) -- 2.6 Gyrator -- 2.7 Circulator -- 3 Active filters -- 3.1 Basic theory of lowpass filters -- 3.2 Lowpass/highpass transformation --
3.3 Realization of first order lowpass and highpass filters -- 3.4 Realization of second order lowpass and highpass filters -- 3.5 Realization of lowpass and highpass filters of higher orders -- 3.6 Lowpass/bandpass transformation --
3.7 Realization of second order bandpass filters -- 3.8 Lowpass/band-rejection filter transformation -- 3.9 Realization of second order rejection filters -- 3.10 Allpass filters -- 3.11 Adjustable universal filter -- 4 Broadband
amplifiers -- 4.1 Frequency dependence of the current gain -- 4.2 Influence of transistor and stray capacitances -- 4.3 Cascode amplifier -- 4.4 Differential amplifier as a broadband amplifier -- 4.5 Symmetrical broadband amplifiers --
4.6 Broadband voltage follower -- 4.7 Broadband operational amplifiers -- 5 Power amplifiers -- 5.1 Emitter follower as a power amplifier -- 5.2 Complementary emitter followers -- 5.3 Electronic current limiter -- 5.4 Complementary
emitter followers using Darlington circuits -- 5.5 Rating a power output stage -- 5.6 Driver circuits with voltage gain -- 5.7 Boosting the output current of integrated operational amplifiers -- 6 Power supplies -- 6.1 Properties of
mains transformers -- 6.2 Transformer rectifiers -- 6.3 Series regulation -- 6.4 Generation of the reference voltage -- 6.5 Switching power supplies -- 7 Analog switches and comparators -- 7.1 Principle -- 7.2 Electronic switches --
7.3 Analog switch using amplifiers -- 7.4 Sample-and-hold circuits -- 7.5 Analog comparators -- 7.6 Schmitt trigger -- 8 Signal generators -- 8.1 LC oscillators -- 8.2 Quartz oscillators -- 8.3 RC sinewave oscillators -- 8.4 Function
generators -- 8.5 Multivibrators -- 9 Combinatorial logic circuitry -- 9.1 Coding circuits -- 9.2 Multiplexer and demultiplexer -- 9.3 Unclocked shift register -- 9.4 Digital comparators -- 9.5 Adders -- 9.6 Multipliers -- 9.7 Digital
function networks -- 10 Sequential logic circuitry -- 10.1 Straight binary counters -- 10.2 BCD counters in 8421 code -- 10.3 Presettable counters -- 10.4 Shift registers -- 10.5 Generation of pseudo-random sequences -- 10.6 Processing
of asynchronous signals -- 10.7 Systematic design of sequential circuits -- 11 Microprocessors -- 11.1 Basic structure of a microcomputer -- 11.2 Operation of a microprocessor -- 11.3 Instruction set -- 11.4 Development aids -- 11.5
Microcomputer hardware -- 11.6 Input/output circuits -- 11.7 Minimum systems -- 12 Digital filters -- 12.1 Sampling theorem -- 12.2 Digital transfer function -- 12.3 Bilinear transformation -- 12.4 Construction of digital filters -- 13
Data transmission and display -- 13.1 Transmission lines -- 13.2 Error detection and correction -- 13.3 Static digital displays -- 13.4 Multiplex displays -- 14 D/A and A/D converters -- 14.1 Design principles of D/A converters -- 14.2
Design of D/A converters using electronic switches -- 14.3 D/A converters for special applications -- 14.4 Basic principles of A/D conversion -- 14.5 Accuracy of A/D converters -- 14.6 Design of A/D converters -- 15 Measurement
circuits -- 15.1 Measurement of voltage -- 15.2 Measurement of current -- 15.3 A.C./D.C. converters -- 16 Electronic controllers -- 16.1 Underlying principles -- 16.2 Controller types -- 16.3 Control of non-linear systems -- 16.4
Phase-locked loop -- 17 Appendix: Definitions and nomenclature
ISBN:9783642812415
Series:eBooks
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Keywords: Physics , Electronic circuits , Electronics , Microelectronics , Physics , Electronic Circuits and Devices , Circuits and Systems , Electronics and Microelectronics, Instrumentation
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Call number:QC787.P3K55::2015 Show nearby items on shelf
Title:Theoretical foundations of synchrotron and storage ring RF systems
Author(s): Harald Klingbeil
Date:2015
Publisher:Springer
Size:432 p
Contents:Introduction -- Theoretical Basics -- RF Acceleration -- RF Cavities -- Advanced Topics -- Power Amplifiers -- Closed-Loop Control -- Appendix -- Bibliography -- Tables.
ISBN:9783319071879
Keywords: Synchrotrons. , Storage rings.
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Call number:QC786.EL64 Show nearby items on shelf
Title:Electronics: experimental techniques
Author(s): William Cronk Elmore
Matthew Linzee Sands
Date:1949
Edition:1st ed.
Publisher:New York: McGraw-Hill
Size:417 pgs
Contents:1. Circuit Components and Construction Practice, 2. Circuit Elements, 3. Voltage Amplifiers, 4. Electronic Counters, 5. Oscillographs and Associated Quipment, 6. Test and Calibration Equipment, 7. Power Supplies and Control Circuits
Series:National nuclear energy series: Div.5 v.1
Keywords: Electronic apparatus and appliances
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Location: MAIN

Call number:QC612.S4G863 Show nearby items on shelf
Title:Semiconductor devices and applications.
Author(s): Richard Anton Greiner 1931-
Date:1961
Publisher:McGraw-Hill: New York
Size:493 pgs.
Contents:1. The Structure of Atoms and Solids, 2. Electrical Conduction in Solids, 3. Particle Physics, 4. Practical Semiconductors, 5. Semiconductor Preparation, Properties, and Measurements, 6. Contacts, 7. Juntions, 8. Diodes, 9. Transitors: The Basic Mechanism, 10. Practical Transistor Characteristics, 11. Biasing and Stabilization, 12. Trasistor Parameters, 13. Small-Siganl Amplifiers, 14. Power Amplifiers, 15. Direct-Current Amplifiers, 16. Power Supplies, 17. Sinusoidal Oscillators, 18. High-Frequency and Switching Transitors, 19. Switching-Mode Circuits, 20 Regenerative Switching-Mode Circuits
Appendices: A. Units and Special Functions, 2. List of Symbols, 3. Matrixes, 4. Parameter Interrelationships, 5. Gain Formulas, 6. Device Characteristics
Series:McGraw-Hill electrical and electronic engineering series v. 1
Keywords: Semiconductors.
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Call number:QC535.B617::1975 Show nearby items on shelf
Title:Electronic Methods
Author(s): Ernst Bleuler 1916
Robert Ozias Haxby
Date:1975
Edition:2d ed.
Publisher:Academic Press, New York
Size:2 Parts
Contents:Part A: 1. Passive Linear Circuit Elements and Networks, 2. Semiconductor Circuit Elements, 3. Vacuum Tubes, 4. Gas Tubes, Rectifier Circuits and Power Supplies, 6. Amplifiers, 7. Oscillators, 8. Nonlinear Circuits
Part B: 9. Measurements, 10. Microwaves, 11. Miscellaneous Electronic Devices, 12. Feedback Control Systems, 13. Noise in Electronic Devices
ISBN:0124760023
Series:Methods of experimental physics, v. 2
Keywords: Electronic measurements.
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Image This book is only available through interlibrary loan. (email library@fnal.gov if you would like this title added to the Library collection.)
Call number:ILL93109635 Show nearby items on shelf
Title:Modeling and design techniques for RF power amplifiers
Author(s): Arvind. Raghavan
ISBN:9780471717461
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Location: ILL

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