IPC-Stelle: H03D 7/08 [Version 2006.01]

SymbolTypTitel
HSKSECTION H — ELECTRICITY
H03KLBASIC ELECTRONIC CIRCUITRY
H03DUKLDEMODULATION 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)
H03D 1/00HGRDemodulation of amplitude-modulated oscillations (H03D 5/00, H03D 9/00, H03D 11/00 take precedence)
H03D 1/02UGR1
.Details
H03D 1/04UGR2
. .Modifications of demodulators to reduce interference by undesired signals
H03D 1/06UGR2
. .Modifications of demodulators to reduce distortion, e.g. by negative feedback
H03D 1/08UGR1
.by means of non-linear two-pole elements (H03D 1/22, H03D 1/26, H03D 1/28 take precedence)
H03D 1/10UGR2
. .of diodes
H03D 1/12UGR3
. . .with provision for equalising ac and dc loads
H03D 1/14UGR1
.by means of non-linear elements having more than two poles (H03D 1/22, H03D 1/26, H03D 1/28 take precedence)
H03D 1/16UGR2
. .of discharge tubes
H03D 1/18UGR2
. .of semiconductor devices
H03D 1/20UGR2
. .with provision for preventing undesired type of demodulation, e.g. preventing anode detection in a grid detection circuit
H03D 1/22UGR1
.Homodyne or synchrodyne circuits
H03D 1/24UGR2
. .for demodulation of signals wherein one sideband or the carrier has been wholly or partially suppressed
H03D 1/26UGR1
.by means of transit-time tubes
H03D 1/28UGR1
.by deflecting an electron beam in a discharge tube (H03D 1/26 takes precedence)
H03D 3/00HGRDemodulation of angle-modulated oscillations (H03D 5/00, H03D 9/00, H03D 11/00 take precedence)
H03D 3/02UGR1
.by detecting phase difference between two signals obtained from input signal (H03D 3/28-H03D 3/32 take precedence; limiting arrangements H03G 11/00)
H03D 3/04UGR2
. .by counting or integrating cycles of oscillations
H03D 3/06UGR2
. .by combining signals additively or in product demodulators
H03D 3/08UGR3
. . .by means of diodes, e.g. Foster-Seeley discriminator
H03D 3/10UGR4
. . . .in which the diodes are simultaneously conducting during the same half period of the signal, e.g. ratio detector
H03D 3/12UGR3
. . .by means of discharge tubes having more than two electrodes
H03D 3/14UGR3
. . .by means of semiconductor devices having more than two electrodes
H03D 3/16UGR3
. . .by means of electromechanical resonators
H03D 3/18UGR2
. .by means of synchronous gating arrangements
H03D 3/20UGR3
. . .producing pulses whose amplitude or duration depends on the phase difference
H03D 3/22UGR2
. .by means of active elements with more than two electrodes to which two signals are applied derived from the signal to be demodulated and having a phase difference related to the frequency deviation, e.g. phase detector
H03D 3/24UGR2
. .Modifications of demodulators to reject or remove amplitude variations by means of locked-in oscillator circuits
H03D 3/26UGR1
.by means of sloping amplitude/frequency characteristic of tuned or reactive circuit (H03D 3/28-H03D 3/32 take precedence)
H03D 3/28UGR1
.Modifications of demodulators to reduce effect of temperature variations (automatic frequency control H03L)
H03D 3/30UGR1
.by means of transit-time tubes
H03D 3/32UGR1
.by deflecting an electron beam in a discharge tube (H03D 3/30 takes precedence)
H03D 3/34UGR1
.by means of electromechanical devices (H03D 3/16 takes precedence) [3]
H03D 5/00HGRCircuits for demodulating amplitude-modulated or angle-modulated oscillations at will (H03D 9/00, H03D 11/00 take precedence)
H03D 7/00HGRTransference of modulation from one carrier to another, e.g. frequency-changing (H03D 9/00, H03D 11/00 take precedence; dielectric amplifiers, magnetic amplifiers, parametric amplifiers used as frequency-changers H03F)
H03D 7/02UGR1
.by means of diodes (H03D 7/14-H03D 7/22 take precedence)
H03D 7/04UGR2
. .having negative resistance characteristic, e.g. tunnel diode
H03D 7/06UGR1
.by means of discharge tubes having more than two electrodes (H03D 7/14-H03D 7/22 take precedence)
H03D 7/08UGR2
. .the signals to be mixed being applied between the same two electrodes
H03D 7/10UGR2
. .the signals to be mixed being applied between different pairs of electrodes
H03D 7/12UGR1
.by means of semiconductor devices having more than two electrodes (H03D 7/14-H03D 7/22 take precedence)
H03D 7/14UGR1
.Balanced arrangements
H03D 7/16UGR1
.Multiple frequency-changing
H03D 7/18UGR1
.Modifications of frequency-changers for eliminating image frequencies
H03D 7/20UGR1
.by means of transit-time tubes
H03D 7/22UGR1
.by deflecting an electron beam in a discharge tube (H03D 7/20 takes precedence)
H03D 9/00HGRDemodulation or transference of modulation of modulated electromagnetic waves (devices or arrangements for demodulating light, transferring modulation in light waves G02F 2/00)
H03D 9/02UGR1
.Demodulation using distributed inductance and capacitance, e.g. in feeder lines
H03D 9/04UGR2
. .for angle-modulated oscillations
H03D 9/06UGR1
.Transference of modulation using distributed inductance and capacitance
H03D 11/00HGRSuper-regenerative demodulator circuits
H03D 11/02UGR1
.for amplitude-modulated oscillations
H03D 11/04UGR2
. .by means of semiconductor devices having more than two electrodes
H03D 11/06UGR1
.for angle-modulated oscillations
H03D 11/08UGR2
. .by means of semiconductor devices having more than two electrodes
H03D 13/00HGRCircuits for comparing the phase or frequency of two mutually-independent oscillations
H03D 99/00HGRSubject matter not provided for in other groups of this subclass [2006.01]