| ConceptID,ConceptLabel,Dependencies,TaxonomyID
|
| 1,Electric Charge,,FOUND
|
| 2,Voltage,1,FOUND
|
| 3,Current,1,FOUND
|
| 4,Electrical Energy,1|2,FOUND
|
| 5,Power,2|3|4,FOUND
|
| 6,Resistance,2|3,FOUND
|
| 7,Ohm's Law,2|3|6,FOUND
|
| 8,Conductance,6,FOUND
|
| 9,Electrical Ground,2,FOUND
|
| 10,Circuit Schematic Symbols,,FOUND
|
| 11,Voltage Source,2|10,FOUND
|
| 12,Current Source,3|10,FOUND
|
| 13,Dependent Sources,11|12,FOUND
|
| 14,Series Circuits,3|6|7,FOUND
|
| 15,Parallel Circuits,3|6|7,FOUND
|
| 16,Series-Parallel Circuits,14|15,FOUND
|
| 17,Voltage Divider,7|14,FOUND
|
| 18,Current Divider,7|15,FOUND
|
| 19,Kirchhoff's Voltage Law,2|14|23,FOUND
|
| 20,Kirchhoff's Current Law,3|15|21,FOUND
|
| 21,Node,3,FOUND
|
| 22,Branch,3,FOUND
|
| 23,Loop,22|30,FOUND
|
| 24,Mesh,23,FOUND
|
| 25,Open Circuit,3|6,FOUND
|
| 26,Short Circuit,3|6,FOUND
|
| 27,Power Dissipation,5|6,FOUND
|
| 28,Energy Conservation,4|5,FOUND
|
| 29,SI Units for Circuits,2|3|5|6,FOUND
|
| 30,Circuit Topology,10|21|22,FOUND
|
| 31,Node Voltage Method,19|20|21|32,ANLYS
|
| 32,Reference Node,9|21,ANLYS
|
| 33,Supernode,31|11,ANLYS
|
| 34,Mesh Current Method,19|24,ANLYS
|
| 35,Supermesh,34|12,ANLYS
|
| 36,Linearity,7,ANLYS
|
| 37,Superposition Principle,36|11|12,ANLYS
|
| 38,Source Transformation,11|12|39,ANLYS
|
| 39,Thevenin's Theorem,7|11|19|20,ANLYS
|
| 40,Thevenin Equivalent,39,ANLYS
|
| 41,Norton's Theorem,7|12|19|20,ANLYS
|
| 42,Norton Equivalent,41,ANLYS
|
| 43,Maximum Power Transfer,40|44,ANLYS
|
| 44,Load Resistance,6|40,ANLYS
|
| 45,Equivalent Resistance,14|15,ANLYS
|
| 46,Delta Configuration,15|30,ANLYS
|
| 47,Wye Configuration,14|30,ANLYS
|
| 48,Delta-Wye Transformation,46|47,ANLYS
|
| 49,Circuit Simplification,45|48,ANLYS
|
| 50,Nodal Analysis,31|33,ANLYS
|
| 51,Mesh Analysis,34|35,ANLYS
|
| 52,Two-Port Networks,53|54,ANLYS
|
| 53,Input Resistance,40|6,ANLYS
|
| 54,Output Resistance,40|6,ANLYS
|
| 55,Loading Effect,53|54|44,ANLYS
|
| 56,Resistor,6|10,PASV
|
| 57,Resistor Color Code,56,PASV
|
| 58,Resistor Tolerance,56|57,PASV
|
| 59,Potentiometer,56,PASV
|
| 60,Capacitor,1|2|10,PASV
|
| 61,Capacitance,60,PASV
|
| 62,Parallel Plate Capacitor,61|63,PASV
|
| 63,Dielectric Material,61,PASV
|
| 64,Capacitor Energy Storage,4|61,PASV
|
| 65,Capacitors in Series,61|14,PASV
|
| 66,Capacitors in Parallel,61|15,PASV
|
| 67,Inductor,3|69|10,PASV
|
| 68,Inductance,67,PASV
|
| 69,Magnetic Field,3,PASV
|
| 70,Inductor Energy Storage,4|68,PASV
|
| 71,Inductors in Series,68|14,PASV
|
| 72,Inductors in Parallel,68|15,PASV
|
| 73,Mutual Inductance,68|69,PASV
|
| 74,Coupling Coefficient,73,PASV
|
| 75,Wire Resistance,6|56,PASV
|
| 76,Parasitic Capacitance,61|80,PASV
|
| 77,Parasitic Inductance,68|80,PASV
|
| 78,Component Power Rating,5|27,PASV
|
| 79,Component Derating,78,PASV
|
| 80,Real vs Ideal Components,56|60|67,PASV
|
| 81,Transient Response,82,TRANS
|
| 82,Steady-State Response,7|134,TRANS
|
| 83,Time Constant,84|87,TRANS
|
| 84,RC Circuit,56|60|7,TRANS
|
| 85,RC Charging,84|64|91,TRANS
|
| 86,RC Discharging,84|64|91,TRANS
|
| 87,RL Circuit,56|67|7,TRANS
|
| 88,RL Energizing,87|70|91,TRANS
|
| 89,RL De-energizing,87|70|91,TRANS
|
| 90,Exponential Response,83|85|86|88|89,TRANS
|
| 91,Initial Conditions,84|87,TRANS
|
| 92,Final Conditions,82|84|87,TRANS
|
| 93,Natural Response,90|91,TRANS
|
| 94,Forced Response,82|11,TRANS
|
| 95,Complete Response,93|94,TRANS
|
| 96,First-Order Circuits,84|87|83,TRANS
|
| 97,Second-Order Circuits,98|102|103,TRANS
|
| 98,RLC Circuit,84|87|56|60|67,TRANS
|
| 99,Overdamped Response,97|102,TRANS
|
| 100,Underdamped Response,97|102,TRANS
|
| 101,Critically Damped Response,97|102,TRANS
|
| 102,Damping Ratio,98|103,TRANS
|
| 103,Natural Frequency,98,TRANS
|
| 104,Step Response,95|96,TRANS
|
| 105,Pulse Response,104,TRANS
|
| 106,Alternating Current,3|107,ACFND
|
| 107,Sinusoidal Waveform,108|109|112,ACFND
|
| 108,Amplitude,2|3,ACFND
|
| 109,Frequency,110,ACFND
|
| 110,Period,,ACFND
|
| 111,Angular Frequency,109,ACFND
|
| 112,Phase Angle,111,ACFND
|
| 113,Phase Shift,112,ACFND
|
| 114,Peak Value,108,ACFND
|
| 115,Peak-to-Peak Value,114,ACFND
|
| 116,RMS Value,114|117,ACFND
|
| 117,Average Value,114,ACFND
|
| 118,Complex Numbers,,ACFND
|
| 119,Rectangular Form,118,ACFND
|
| 120,Polar Form,118,ACFND
|
| 121,Euler's Formula,118|111,ACFND
|
| 122,Phasor,107|120|121,ACFND
|
| 123,Phasor Diagram,122,ACFND
|
| 124,Phasor Addition,122|123,ACFND
|
| 125,Impedance,6|126|133,ACFND
|
| 126,Reactance,127|128,ACFND
|
| 127,Capacitive Reactance,61|111,ACFND
|
| 128,Inductive Reactance,68|111,ACFND
|
| 129,Admittance,8|125,ACFND
|
| 130,Susceptance,129,ACFND
|
| 131,AC Resistance,6|106,ACFND
|
| 132,Impedance Triangle,125|126|131,ACFND
|
| 133,Complex Impedance,118|126,ACFND
|
| 134,AC Circuit Analysis,122|125|19|20,ACFND
|
| 135,Phasor Domain,122|134,ACFND
|
| 136,Instantaneous Power,5|107,POWER
|
| 137,Average Power,136|116,POWER
|
| 138,Real Power,137|143,POWER
|
| 139,Reactive Power,126|137,POWER
|
| 140,Apparent Power,137|139,POWER
|
| 141,Complex Power,138|139|118,POWER
|
| 142,Power Triangle,138|139|140,POWER
|
| 143,Power Factor,137|140,POWER
|
| 144,Leading Power Factor,143|127,POWER
|
| 145,Lagging Power Factor,143|128,POWER
|
| 146,Power Factor Correction,143|144|145|66,POWER
|
| 147,VAR,139,POWER
|
| 148,Watt,138,POWER
|
| 149,Volt-Ampere,140,POWER
|
| 150,Maximum Power in AC,43|134,POWER
|
| 151,RMS Power Calculation,116|137,POWER
|
| 152,Power in Resistors,5|131,POWER
|
| 153,Power in Capacitors,139|127,POWER
|
| 154,Power in Inductors,139|128,POWER
|
| 155,Efficiency,5|138,POWER
|
| 156,Frequency Response,109|157,FREQ
|
| 157,Transfer Function,125|134,FREQ
|
| 158,Magnitude Response,156|163,FREQ
|
| 159,Phase Response,156|112,FREQ
|
| 160,Bode Plot,161|162,FREQ
|
| 161,Bode Magnitude Plot,158|163|164,FREQ
|
| 162,Bode Phase Plot,159|164,FREQ
|
| 163,Decibel,5,FREQ
|
| 164,Decade,109,FREQ
|
| 165,Octave,109,FREQ
|
| 166,Cutoff Frequency,156|168,FREQ
|
| 167,Corner Frequency,166,FREQ
|
| 168,Half-Power Point,137|163,FREQ
|
| 169,Bandwidth,166|170|171,FREQ
|
| 170,Passband,156,FREQ
|
| 171,Stopband,156,FREQ
|
| 172,Roll-Off Rate,169|189,FREQ
|
| 173,Asymptotic Approximation,160|161,FREQ
|
| 174,Poles and Zeros,157|118,FREQ
|
| 175,Resonance,176|177,FREQ
|
| 176,Resonant Frequency,103|127|128,FREQ
|
| 177,Quality Factor,169|176,FREQ
|
| 178,Selectivity,177|169,FREQ
|
| 179,Series Resonance,175|98|14,FREQ
|
| 180,Parallel Resonance,175|98|15,FREQ
|
| 181,Filter,156|170|171,FILT
|
| 182,Low-Pass Filter,181|166,FILT
|
| 183,High-Pass Filter,181|166,FILT
|
| 184,Band-Pass Filter,181|169|175,FILT
|
| 185,Band-Reject Filter,181|169,FILT
|
| 186,Notch Filter,185|176,FILT
|
| 187,First-Order Filter,182|183|96,FILT
|
| 188,Second-Order Filter,184|185|97,FILT
|
| 189,Filter Order,187|188,FILT
|
| 190,RC Low-Pass Filter,84|182,FILT
|
| 191,RC High-Pass Filter,84|183,FILT
|
| 192,RL Low-Pass Filter,87|182,FILT
|
| 193,RL High-Pass Filter,87|183,FILT
|
| 194,RLC Band-Pass Filter,98|184,FILT
|
| 195,Passive Filter,181|56|60|67,FILT
|
| 196,Active Filter,181|201,FILT
|
| 197,Filter Design,189|195|196,FILT
|
| 198,Audio Tone Control,199|200|197,FILT
|
| 199,Bass Filter,182|251,FILT
|
| 200,Treble Filter,183|251,FILT
|
| 201,Operational Amplifier,2|3|10,OPAMP
|
| 202,Ideal Op-Amp,201|207,OPAMP
|
| 203,Op-Amp Symbol,201|10,OPAMP
|
| 204,Inverting Input,201|203,OPAMP
|
| 205,Non-Inverting Input,201|203,OPAMP
|
| 206,Op-Amp Output,201|203,OPAMP
|
| 207,Open-Loop Gain,201|259,OPAMP
|
| 208,Closed-Loop Gain,207|209,OPAMP
|
| 209,Negative Feedback,201|206,OPAMP
|
| 210,Positive Feedback,201|206,OPAMP
|
| 211,Virtual Short,202|209,OPAMP
|
| 212,Virtual Ground,211|9,OPAMP
|
| 213,Inverting Amplifier,202|209|212|56,OPAMP
|
| 214,Non-Inverting Amplifier,202|209|211|56,OPAMP
|
| 215,Voltage Follower,214|208,OPAMP
|
| 216,Buffer Amplifier,215|53|54,OPAMP
|
| 217,Summing Amplifier,213|37,OPAMP
|
| 218,Difference Amplifier,213|214,OPAMP
|
| 219,Instrumentation Amplifier,218,OPAMP
|
| 220,Integrator Circuit,213|60|84,OPAMP
|
| 221,Differentiator Circuit,213|60|84,OPAMP
|
| 222,Op-Amp Bandwidth,201|169,OPAMP
|
| 223,Gain-Bandwidth Product,208|222,OPAMP
|
| 224,Slew Rate,201|206,OPAMP
|
| 225,Input Offset Voltage,201|204|205,OPAMP
|
| 226,Input Bias Current,201|204|205,OPAMP
|
| 227,Common Mode Rejection,218|228,OPAMP
|
| 228,CMRR,218|163,OPAMP
|
| 229,Op-Amp Saturation,201|206|11,OPAMP
|
| 230,Rail-to-Rail Op-Amp,201|229,OPAMP
|
| 231,Signal,2|3,SIGNAL
|
| 232,Periodic Signal,231|110,SIGNAL
|
| 233,Aperiodic Signal,231,SIGNAL
|
| 234,Fourier Series,232|235|236,SIGNAL
|
| 235,Fundamental Frequency,109|232,SIGNAL
|
| 236,Harmonics,235,SIGNAL
|
| 237,Harmonic Content,234|236,SIGNAL
|
| 238,Spectrum,237|239,SIGNAL
|
| 239,Frequency Spectrum,109|237,SIGNAL
|
| 240,Time Domain,231|110,SIGNAL
|
| 241,Frequency Domain,231|109|239,SIGNAL
|
| 242,Waveform Symmetry,243|244|245,SIGNAL
|
| 243,Even Symmetry,107|234,SIGNAL
|
| 244,Odd Symmetry,107|234,SIGNAL
|
| 245,Half-Wave Symmetry,107|234,SIGNAL
|
| 246,DC Component,231|117,SIGNAL
|
| 247,AC Component,231|106,SIGNAL
|
| 248,Signal Amplitude,108|231,SIGNAL
|
| 249,Crest Factor,114|116,SIGNAL
|
| 250,Form Factor,116|117,SIGNAL
|
| 251,Audio Signal,231|252,AUDIO
|
| 252,Audio Frequency Range,109|253,AUDIO
|
| 253,Human Hearing Range,109,AUDIO
|
| 254,Microphone,251|231,AUDIO
|
| 255,Speaker,251|231|5,AUDIO
|
| 256,Audio Amplifier,201|251|259,AUDIO
|
| 257,Preamplifier,256|216,AUDIO
|
| 258,Power Amplifier,256|262,AUDIO
|
| 259,Amplifier Gain,260|261|262,AUDIO
|
| 260,Voltage Gain,2|163,AUDIO
|
| 261,Current Gain,3|163,AUDIO
|
| 262,Power Gain,5|163,AUDIO
|
| 263,Decibels in Audio,163|251,AUDIO
|
| 264,dBV,263|2,AUDIO
|
| 265,dBu,263|2,AUDIO
|
| 266,Headroom,229|267,AUDIO
|
| 267,Dynamic Range,268|269,AUDIO
|
| 268,Signal-to-Noise Ratio,231|269,AUDIO
|
| 269,Noise Floor,270,AUDIO
|
| 270,Thermal Noise,6|56,AUDIO
|
| 271,Audio Distortion,251|272|274,AUDIO
|
| 272,Harmonic Distortion,236,AUDIO
|
| 273,THD,272|163,AUDIO
|
| 274,Intermodulation Distortion,251|109,AUDIO
|
| 275,Clipping,229|271,AUDIO
|
| 276,Multimeter,2|3|6,LAB
|
| 277,Oscilloscope,2|107|110,LAB
|
| 278,Function Generator,107|11,LAB
|
| 279,DC Power Supply,11|2,LAB
|
| 280,Spectrum Analyzer,239|277,LAB
|
| 281,Voltage Measurement,2|276,LAB
|
| 282,Current Measurement,3|276,LAB
|
| 283,Resistance Measurement,6|276,LAB
|
| 284,Frequency Measurement,109|277,LAB
|
| 285,Phase Measurement,112|277,LAB
|
| 286,Oscilloscope Probe,277,LAB
|
| 287,Probe Compensation,286|60,LAB
|
| 288,Triggering,277|107,LAB
|
| 289,Time Base,277|110,LAB
|
| 290,Vertical Sensitivity,277|108,LAB
|
| 291,AC Coupling,277|60|247,LAB
|
| 292,DC Coupling,277|246,LAB
|
| 293,Breadboard,294,LAB
|
| 294,Prototyping,10|56|60|67,LAB
|
| 295,Soldering,294,LAB
|
| 296,Circuit Debugging,276|277|297,LAB
|
| 297,Measurement Error,298|299,LAB
|
| 298,Loading Error,55|276|277,LAB
|
| 299,Calibration,276|277,LAB
|
| 300,Safety Practices,5|27|279,LAB
|
|
|