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Symbol IPC-Stellen auswählen Titel
A
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HUMAN NECESSITIES
B
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PERFORMING OPERATIONSTRANSPORTING
C
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CHEMISTRYMETALLURGY
D
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TEXTILESPAPER
E
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FIXED CONSTRUCTIONS
F
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MECHANICAL ENGINEERINGLIGHTINGHEATINGWEAPONSBLASTING
G
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PHYSICS
H
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ELECTRICITY
H01
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ELECTRIC ELEMENTS
H02
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GENERATION, CONVERSION, OR DISTRIBUTION OF ELECTRIC POWER
H03
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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 (generators specially adapted for electrophonic musical instruments G10H; masers or lasers H01S;  generation of oscillations in plasma H05H)
H03C
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MODULATION (masers or lasers H01S; coding, decoding or code conversion H03M)
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, e.g. balanced modulators H03C 1/54; details applicable to both modulators and frequency-changers H03C; demodulating pulses which have been modulated with a continuously-variable signal H03K 9/00; transforming types of pulse modulation H03K 11/00; relay systems, e.g. 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
H03G
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CONTROL OF AMPLIFICATION
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
H03K
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PULSE TECHNIQUE (measuring pulse characteristics G01R; modulating sinusoidal oscillations with pulses H03C;  transmission of digital information H04L; discriminator circuits detecting phase difference between two signals by counting or integrating cycles of oscillation H03D 3/04; automatic control, starting, synchronisation or stabilisation of generators of electronic oscillations or pulses 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 (generation of oscillations H03B) [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]
H03M 1/00
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Analogue/digital conversionDigital/analogue conversion (conversion of analogue values to or from differential modulation H03M 3/00) [4, 2006.01]
H03M 1/02
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Reversible analogue/digital converters [4, 2006.01]
H03M 1/04
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using stochastic techniques [4, 2006.01]
H03M 1/06
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Continuously compensating for, or preventing, undesired influence of physical parameters (periodically H03M 1/10) [4, 2006.01]
H03M 1/08
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. . of noise [4, 2006.01]
H03M 1/10
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Calibration or testing [4, 2006.01]
H03M 1/12
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Analogue/digital converters (H03M 1/02-H03M 1/10 take precedence) [4, 2006.01]
H03M 1/14
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. . Conversion in steps with each step involving the same or a different conversion means and delivering more than one bit [4, 2006.01]
H03M 1/16
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. . . with scale factor modification, i.e. by changing the amplification between the steps [4, 2006.01]
H03M 1/18
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. . Automatic control for modifying the range of signals the converter can handle, e.g. gain ranging [4, 2006.01]
H03M 1/20
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. . Increasing resolution using an n bit system to obtain n + m bits, e.g. by dithering [4, 2006.01]
H03M 1/22
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. . pattern-reading type [4, 2006.01]
H03M 1/24
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. . . using relatively movable reader and disc or strip [4, 6, 2006.01]
H03M 1/26
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. . . . with weighted coding, i.e. the weight given to a digit depends on the position of the digit within the block or code word, e.g. there is a given radix and the weights are powers of this radix [4, 2006.01]
H03M 1/28
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. . . . with non-weighted coding [4, 2006.01]
H03M 1/30
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. . . . . incremental [4, 2006.01]
H03M 1/32
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. . . using cathode-ray tubes [4, 2006.01]
H03M 1/34
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. . Analogue value compared with reference values (H03M 1/48 takes precedence) [4, 2006.01]
H03M 1/36
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. . . simultaneously only, i.e. parallel type [4, 2006.01]
H03M 1/38
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. . . sequentially only, e.g. successive approximation type (converting more than one bit per step H03M 1/14) [4, 2006.01]
H03M 1/40
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. . . . recirculation type [4, 2006.01]
H03M 1/42
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. . . . Sequential comparisons in series-connected stages with no change in value of analogue signal [4, 2006.01]
H03M 1/44
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. . . . Sequential comparisons in series-connected stages with change in value of analogue signal [4, 2006.01]
H03M 1/46
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. . . . with digital/analogue converter for supplying reference values to converter [4, 2006.01]
H03M 1/48
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. . Servo-type converters [4, 2006.01]
H03M 1/50
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. . with intermediate conversion to time interval (H03M 1/64 takes precedence) [4, 2006.01]
H03M 1/52
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. . . Input signal integrated with linear return to datum [4, 2006.01]
H03M 1/54
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. . . Input signal sampled and held with linear return to datum [4, 2006.01]
H03M 1/56
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. . . Input signal compared with linear ramp [4, 2006.01]
H03M 1/58
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. . . Non-linear conversion [4, 2006.01]
H03M 1/60
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. . with intermediate conversion to frequency of pulses [4, 2006.01]
H03M 1/62
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. . . Non-linear conversion [4, 2006.01]
H03M 1/64
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. . with intermediate conversion to phase of sinusoidal signals [4, 2006.01]
H03M 1/66
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Digital/analogue converters (H03M 1/02-H03M 1/10 take precedence) [4, 2006.01]
H03M 1/68
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. . with conversions of different sensitivity, i.e. one conversion relating to the more significant digital bits and another conversion to the less significant bits [4, 2006.01]
H03M 1/70
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. . Automatic control for modifying converter range [4, 2006.01]
H03M 1/72
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. . Sequential conversion in series-connected stages (H03M 1/68 takes precedence) [4, 2006.01]
H03M 1/74
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. . Simultaneous conversion [4, 2006.01]
H03M 1/76
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. . . using switching tree [4, 2006.01]
H03M 1/78
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. . . using ladder network [4, 2006.01]
H03M 1/80
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. . . using weighted impedances (H03M 1/76 takes precedence) [4, 2006.01]
H03M 1/82
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. . with intermediate conversion to time interval [4, 2006.01]
H03M 1/84
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. . . Non-linear conversion [4, 2006.01]
H03M 1/86
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. . with intermediate conversion to frequency of pulses [4, 2006.01]
H03M 1/88
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. . . Non-linear conversion [4, 2006.01]
H03M 3/00
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Conversion of analogue values to or from differential modulation [4, 2006.01]
H03M 5/00
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Conversion of the form of the representation of individual digits [4, 2006.01]
H03M 7/00
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Conversion of a code where information is represented by a given sequence or number of digits to a code where the same information is represented by a different sequence or number of digits [4, 2006.01]
H03M 9/00
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Parallel/series conversion or vice versa (digital stores in which the information is moved stepwise G11C 19/00) [4, 2006.01]
H03M 11/00
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Coding in connection with keyboards or like devices, i.e. coding of the position of operated keys (keyboard switch arrangements, structural association of coders and keyboards H01H 13/70, H03K 17/94) [4, 2006.01]
H03M 13/00
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Coding, decoding or code conversion, for error detection or error correctionCoding theory basic assumptionsCoding boundsError probability evaluation methodsChannel modelsSimulation or testing of codes (error detection or error correction for analogue/digital, digital/analogue or code conversion H03M 1/00-H03M 11/00;  specially adapted for digital computers G06F 11/08;  for information storage based on relative movement between record carrier and transducer G11B, e.g. G11B 20/18;  for static stores G11C) [4, 7, 2006.01]
H03M 99/00
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Subject matter not provided for in other groups of this subclass [2006.01]
H04
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ELECTRIC COMMUNICATION TECHNIQUE
H05
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ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
H10
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SEMICONDUCTOR DEVICESELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR [2023.01]
H99
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SUBJECT MATTER NOT OTHERWISE PROVIDED FOR IN THIS SECTION [2006.01]

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