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A
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SECTION A — HUMAN NECESSITIES
B
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SECTION B — PERFORMING OPERATIONSTRANSPORTING
C
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SECTION C — CHEMISTRYMETALLURGY
D
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SECTION D — TEXTILESPAPER
E
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SECTION E — FIXED CONSTRUCTIONS
F
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SECTION F — MECHANICAL ENGINEERINGLIGHTINGHEATINGWEAPONSBLASTING
G
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SECTION G — PHYSICS
H
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SECTION H — ELECTRICITY
H01
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BASIC ELECTRIC ELEMENTS
H02
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GENERATION, CONVERSION, OR DISTRIBUTION OF ELECTRIC POWER
H03
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BASIC ELECTRONIC CIRCUITRY
H03B
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GENERATION OF OSCILLATIONS, DIRECTLY OR BY FREQUENCY-CHANGING, BY CIRCUITS EMPLOYING ACTIVE ELEMENTS WHICH OPERATE IN A NON-SWITCHING MANNERGENERATION OF NOISE BY SUCH CIRCUITS (measuring, testing G01R; generators adapted for electrophonic musical instruments G10H; speech synthesis G10L 13/00; masers, lasers H01S; dynamo-electric machines H02K; power inverter circuits H02M; by using pulse techniques H03K; automatic control of generators H03L; starting, synchronisation or stabilisation of generators where the type of generator is irrelevant or unspecified H03L; generation of oscillations in plasma H05H)
H03C
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MODULATION (measuring, testing G01R; masers, lasers H01S; modulators specially adapted for use in dc amplifiers H03F 3/38; modulating pulses H03K 7/00; so-called modulators capable only of switching between predetermined states of amplitude, frequency or phase H03K 17/00, H04L; coding, decoding or code conversion, in general H03M; synchronous modulators specially adapted for colour television H04N 9/65)
H03D
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DEMODULATION OR TRANSFERENCE OF MODULATION FROM ONE CARRIER TO ANOTHER (masers, lasers H01S; circuits capable of acting both as modulator and demodulator H03C; details applicable to both modulators and frequency-changers H03C; demodulating pulses H03K 9/00; transforming types of pulse modulation H03K 11/00; coding, decoding or code conversion, in general H03M; repeater stations H04B 7/14; demodulators adapted for digitally modulated-carrier systems H04L 27/00; synchronous demodulators adapted for colour television H04N 9/66)
H03F
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AMPLIFIERS (measuring, testing G01R; optical parametric amplifiers G02F; circuit arrangements with secondary emission tubes H01J 43/30; masers, lasers H01S; control of amplification H03G; coupling arrangements independent of the nature of the amplifier, voltage dividers H03H; amplifiers capable only of dealing with pulses H03K; repeater circuits in transmission lines H04B 3/36, H04B 3/58; application of speech amplifiers in telephonic communication H04M 1/60, H04M 3/40)
H03F 1/00
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Details of amplifiers with only discharge tubes, only semiconductor devices or only unspecified devices as amplifying elements
H03F 3/00
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Amplifiers with only discharge tubes or only semiconductor devices as amplifying elements
H03F 3/02
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with tubes only (subsequent subgroups take precedence)
H03F 3/04
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with semiconductor devices only (subsequent subgroups take precedence)
H03F 3/06
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. . using hole storage effect
H03F 3/08
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. . controlled by light
H03F 3/10
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. . with diodes
H03F 3/12
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. . . with Esaki diodes
H03F 3/14
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. . with amplifying devices having more than three electrodes or more than two PN junctions
H03F 3/16
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. . with field-effect devices
H03F 3/18
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with semiconductor devices of complementary types (subsequent subgroups take precedence)
H03F 3/181
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Low-frequency amplifiers, e.g. audio preamplifiers [2]
H03F 3/183
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. . with semiconductor devices only [2]
H03F 3/185
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. . . with field-effect devices (H03F 3/187 takes precedence) [2]
H03F 3/187
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. . . in integrated circuits [2]
H03F 3/189
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High-frequency amplifiers, e.g. radio frequency amplifiers [2]
H03F 3/19
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. . with semiconductor devices only [2]
H03F 3/191
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. . . Tuned amplifiers (H03F 3/193, H03F 3/195 take precedence) [2]
H03F 3/193
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. . . with field-effect devices (H03F 3/195 takes precedence) [2]
H03F 3/195
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. . . in integrated circuits [2]
H03F 3/20
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Power amplifiers, e.g. Class B amplifiers, Class C amplifiers (H03F 3/26-H03F 3/30 take precedence)
H03F 3/21
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. . with semiconductor devices only [2]
H03F 3/213
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. . . in integrated circuits [2]
H03F 3/217
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. . . Class D power amplifiersSwitching amplifiers [2]
H03F 3/22
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. . with tubes only (H03F 3/24 takes precedence)
H03F 3/24
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. . of transmitter output stages
H03F 3/26
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Push-pull amplifiersPhase-splitters therefor (duplicated single-ended push-pull arrangements or phase-splitters therefor H03F 3/30)
H03F 3/28
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. . with tubes only
H03F 3/30
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Single-ended push-pull amplifiersPhase-splitters therefor
H03F 3/32
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. . with tubes only
H03F 3/34
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Dc amplifiers in which all stages are dc-coupled (H03F 3/45 takes precedence) [3]
H03F 3/343
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. . with semiconductor devices only [2]
H03F 3/345
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. . . with field-effect devices (H03F 3/347 takes precedence) [2]
H03F 3/347
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. . . in integrated circuits [2]
H03F 3/36
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. . with tubes only
H03F 3/38
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Dc amplifiers with modulator at input and demodulator at outputModulators or demodulators specially adapted for use in such amplifiers (modulators in general H03C; demodulators in general H03D; amplitude modulation of pulses in general H03K 7/02; amplitude demodulation of pulses in general H03K 9/02)
H03F 3/387
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. . with semiconductor devices only [2]
H03F 3/393
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. . . with field-effect devices [2]
H03F 3/40
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. . with tubes only
H03F 3/42
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Amplifiers with two or more amplifying elements having their dc paths in series with the load, the control electrode of each element being excited by at least part of the input signal, e.g. so-called totem-pole amplifiers
H03F 3/44
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. . with tubes only
H03F 3/45
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Differential amplifiers [2]
H03F 3/46
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Reflex amplifiers
H03F 3/48
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. . with tubes only
H03F 3/50
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Amplifiers in which input is applied to, or output is derived from, an impedance common to input and output circuits of the amplifying element, e.g. cathode follower
H03F 3/52
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. . with tubes only
H03F 3/54
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Amplifiers using transit-time effect in tubes or semiconductor devices (parametric amplifiers H03F 7/00; solid state travelling-wave devices H01L 45/02)
H03F 3/55
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. . with semiconductor devices only [2]
H03F 3/56
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. . using klystrons
H03F 3/58
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. . using travelling-wave tubes
H03F 3/60
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Amplifiers in which coupling networks have distributed constants, e.g. with waveguide resonators (H03F 3/54 takes precedence)
H03F 3/62
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Two-way amplifiers
H03F 3/64
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. . with tubes only
H03F 3/66
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Amplifiers simultaneously generating oscillations of one frequency and amplifying signals of another frequency
H03F 3/68
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Combinations of amplifiers, e.g. multi-channel amplifiers for stereophonics
H03F 3/70
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Charge amplifiers [2]
H03F 3/72
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Gated amplifiers, i.e. amplifiers which are rendered operative or inoperative by means of a control signal [2]
H03F 5/00
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Amplifiers with both discharge tubes and semiconductor devices as amplifying elements
H03F 7/00
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Parametric amplifiers (devices or arrangements for the parametric generation or amplification of light, infra-red or ultra-violet waves G02F 1/39)
H03F 9/00
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Magnetic amplifiers
H03F 11/00
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Dielectric amplifiers
H03F 13/00
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Amplifiers using amplifying element consisting of two mechanically- or acoustically-coupled transducers, e.g. telephone-microphone amplifier
H03F 15/00
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Amplifiers using galvano-magnetic effects not involving mechanical movement, e.g. using Hall effect
H03F 17/00
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Amplifiers using electroluminescent element or photocell
H03F 19/00
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Amplifiers using superconductivity effects
H03F 21/00
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Amplifiers not covered by groups H03F 3/00-H03F 19/00 (dynamo-electric amplifiers H02K)
H03G
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CONTROL OF AMPLIFICATION (impedance networks, e.g. attenuators, H03H; control of transmission in lines H04B 3/04)
H03H
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IMPEDANCE NETWORKS, e.g. RESONANT CIRCUITSRESONATORS (measuring, testing G01R; arrangements for producing a reverberation or echo sound G10K 15/08; impedance networks or resonators consisting of distributed impedances, e.g. of the waveguide type, H01P; control of amplification, e.g. bandwidth control of amplifiers, H03G; tuning resonant circuits, e.g. tuning coupled resonant circuits, H03J; networks for modifying the frequency characteristics of communication systems H04B)
H03J
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TUNING RESONANT CIRCUITSSELECTING RESONANT CIRCUITS (indicating arrangements for measuring G01D; measuring, testing G01R; remote-control in general G05, G08; automatic control or stabilisation of generators H03L)
H03K
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PULSE TECHNIQUE (measuring pulse characteristics G01R; mechanical counters having an electrical input G06M; information storage devices in general G11; sample-and-hold arrangements in electric analogue stores G11C 27/02; construction of switches involving contact making and breaking for generation of pulses, e.g. by using a moving magnet, H01H; static conversion of electric power H02M; generation of oscillations by circuits employing active elements which operate in a non-switching manner H03B; modulating sinusoidal oscillations with pulses H03C, H04L; discriminator circuits involving pulse counting H03D; automatic control of generators H03L; starting, synchronisation, or stabilisation of generators where the type of generator is irrelevant or unspecified H03L; coding, decoding or code conversion, in general H03M) [4]
H03L
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AUTOMATIC CONTROL, STARTING, SYNCHRONISATION, OR STABILISATION OF GENERATORS OF ELECTRONIC OSCILLATIONS OR PULSES (of dynamo-electric generators H02P) [3]
H03M
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CODING, DECODING OR CODE CONVERSION, IN GENERAL (using fluidic means F15C 4/00; optical analogue/digital converters G02F 7/00; coding, decoding or code conversion, specially adapted for particular applications, see the relevant subclasses, e.g. G01D, G01R, G06F, G06T, G09G, G10L, G11B, G11C, H04B, H04L, H04M, H04N; ciphering or deciphering for cryptography or other purposes involving the need for secrecy G09C) [4]
H04
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ELECTRIC COMMUNICATION TECHNIQUE
H05
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ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
H99
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SUBJECT MATTER NOT OTHERWISE PROVIDED FOR IN THIS SECTION [2006.01]

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