H | SK | SECTION H — ELECTRICITY |
H02 | KL | GENERATION, CONVERSION, OR DISTRIBUTION OF ELECTRIC POWER |
H02M | UKL | APPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF (conversion of current or voltage specially adapted for use in electronic time-pieces with no moving parts G04G 19/02; systems for regulating electric or magnetic variables in general, e.g. using transformers, reactors or choke coils, combination of such systems with static converters G05F; for digital computers G06F 1/00; transformers H01F; connection or control of one converter with regard to conjoint operation with a similar or other source of supply H02J; dynamo-electric converters H02K 47/00; controlling transformers, reactors or choke coils, control or regulation of electric motors, generators or dynamo-electric converters H02P; pulse generators H03K) [4, 5] |
H02M 1/00 | HGR | Details of apparatus for conversion |
H02M 1/02 | UGR1 | . | Circuits specially adapted for the generation of grid-control or igniter-control voltages for discharge tubes incorporated in static converters |
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H02M 1/04 | UGR2 | . . | for tubes with grid control |
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H02M 1/06 | UGR1 | . | Circuits specially adapted for rendering non-conductive gas discharge tubes or equivalent semiconductor devices, e.g. thyratrons, thyristors [2] |
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H02M 1/08 | UGR1 | . | Circuits specially adapted for the generation of control voltages for semiconductor devices incorporated in static converters |
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H02M 1/084 | UGR2 | . . | using a control circuit common to several phases of a multi-phase system [4] |
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H02M 1/088 | UGR2 | . . | for the simultaneous control of series or parallel connected semiconductor devices [4] |
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H02M 1/092 | UGR3 | . . . | the control signals being transmitted optically [4] |
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H02M 1/096 | UGR3 | . . . | the power supply of the control circuit being connected in parallel to the main switching element (H02M 1/092 takes precedence) [4] |
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H02M 1/10 | UGR1 | . | Arrangements incorporating converting means for enabling loads to be operated at will from different kinds of power supplies, e.g. from ac or dc |
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H02M 1/12 | UGR1 | . | Arrangements for reducing harmonics from ac input or output |
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H02M 1/14 | UGR1 | . | Arrangements for reducing ripples from dc input or output |
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H02M 1/15 | UGR2 | . . | using active elements [4] |
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H02M 1/16 | UGR1 | . | Means for providing current step on switching, e.g. with saturable reactor |
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H02M 1/20 | UGR1 | . | Contact mechanisms of dynamic converters |
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H02M 1/22 | UGR2 | . . | incorporating collectors and brushes |
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H02M 1/24 | UGR2 | . . | incorporating rolling or tumbling contacts |
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H02M 1/26 | UGR2 | . . | incorporating cam-operated contacts |
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H02M 1/28 | UGR2 | . . | incorporating electromagnetically-operated vibrating contacts |
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H02M 1/30 | UGR2 | . . | incorporating liquid contacts |
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H02M 3/00 | HGR | Conversion of dc power input into dc power output |
H02M 3/02 | UGR1 | . | without intermediate conversion into ac |
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H02M 3/04 | UGR2 | |
H02M 3/06 | UGR3 | . . . | using resistors or capacitors, e.g. potential divider |
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H02M 3/07 | UGR4 | . . . . | using capacitors charged and discharged alternately by semiconductor devices with control electrode [4] |
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H02M 3/08 | UGR3 | . . . | using discharge tubes without control electrode or semiconductor devices without control electrode |
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H02M 3/10 | UGR3 | . . . | using discharge tubes with control electrode or semiconductor devices with control electrode (H02M 3/07 takes precedence) [4] |
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H02M 3/125 | UGR4 | . . . . | using devices of a thyratron or thyristor type requiring extinguishing means [2] |
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H02M 3/13 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 3/135 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 3/137 | UGR6 | . . . . . . | with automatic control of output voltage or current, e.g. switching regulators [4] |
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H02M 3/139 | UGR7 | . . . . . . . | with digital control [4] |
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H02M 3/142 | UGR7 | . . . . . . . | including plural semiconductor devices as final control devices for a single load [4] |
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H02M 3/145 | UGR4 | . . . . | using devices of a triode or transistor type requiring continuous application of a control signal [2] |
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H02M 3/15 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 3/155 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 3/156 | UGR6 | . . . . . . | with automatic control of output voltage or current, e.g. switching regulators [4] |
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H02M 3/157 | UGR7 | . . . . . . . | with digital control [4] |
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H02M 3/158 | UGR7 | . . . . . . . | including plural semiconductor devices as final control devices for a single load [4] |
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H02M 3/16 | UGR2 | |
H02M 3/18 | UGR3 | . . . | using capacitors or batteries which are alternately charged and discharged, e.g. charged in parallel and discharged in series |
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H02M 3/20 | UGR2 | . . | by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters |
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H02M 3/22 | UGR1 | . | with intermediate conversion into ac |
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H02M 3/24 | UGR2 | |
H02M 3/26 | UGR3 | . . . | using discharge tubes without control electrode or semiconductor devices without control electrode to produce the intermediate ac |
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H02M 3/28 | UGR3 | . . . | using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac |
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H02M 3/305 | UGR4 | . . . . | using devices of a thyratron or thyristor type requiring extinguishing means [2] |
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H02M 3/31 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 3/315 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 3/325 | UGR4 | . . . . | using devices of a triode or a transistor type requiring continuous application of a control signal [2] |
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H02M 3/33 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 3/335 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 3/337 | UGR6 | . . . . . . | in push-pull configuration [4] |
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H02M 3/338 | UGR6 | . . . . . . | in a self-oscillating arrangement (H02M 3/337 takes precedence) [4] |
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H02M 3/34 | UGR2 | |
H02M 3/36 | UGR3 | . . . | using mechanical parts to select progressively or to vary continuously the input potential |
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H02M 3/38 | UGR3 | . . . | using mechanical contact-making and -breaking parts to interrupt a single potential |
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H02M 3/40 | UGR4 | . . . . | wherein the parts are rotating and collectors co-operate with brushes or rollers |
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H02M 3/42 | UGR4 | . . . . | with electromagnetically-operated vibrating contacts, e.g. chopper (self-interrupters in general H01H 51/34) |
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H02M 3/44 | UGR2 | . . | by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters |
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H02M 5/00 | HGR | Conversion of ac power input into ac power output, e.g. for change of voltage, for change of frequency, for change of number of phases |
H02M 5/02 | UGR1 | . | without intermediate conversion into dc |
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H02M 5/04 | UGR2 | . . | by static converters (controlling transformers, reactors or choke coils, e.g. by tap changing, H02P 13/00) [4] |
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H02M 5/06 | UGR3 | |
H02M 5/08 | UGR4 | . . . . | using capacitors only |
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H02M 5/10 | UGR3 | |
H02M 5/12 | UGR4 | . . . . | for conversion of voltage or current amplitude only |
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H02M 5/14 | UGR4 | . . . . | for conversion between circuits of different phase number |
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H02M 5/16 | UGR4 | . . . . | for conversion of frequency |
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H02M 5/18 | UGR4 | . . . . | for conversion of waveform |
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H02M 5/20 | UGR3 | . . . | using discharge tubes without control electrode or semiconductor devices without control electrode |
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H02M 5/22 | UGR3 | . . . | using discharge tubes with control electrode or semiconductor devices with control electrode |
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H02M 5/25 | UGR4 | . . . . | using devices of a thyratron or thyristor type requiring extinguishing means (H02M 5/27 takes precedence) [2] |
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H02M 5/253 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 5/257 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 5/27 | UGR5 | . . . . . | for conversion of frequency [2] |
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H02M 5/275 | UGR4 | . . . . | using devices of a triode or transistor type requiring continuous application of a control signal (H02M 5/297 takes precedence) [2] |
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H02M 5/29 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 5/293 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 5/297 | UGR5 | . . . . . | for conversion of frequency [2] |
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H02M 5/32 | UGR2 | |
H02M 5/34 | UGR3 | . . . | using mechanical contact-making and -breaking parts |
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H02M 5/36 | UGR4 | . . . . | wherein the parts are rotating and collectors co-operate with brushes or rollers |
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H02M 5/38 | UGR2 | . . | by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters |
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H02M 5/40 | UGR1 | . | with intermediate conversion into dc |
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H02M 5/42 | UGR2 | |
H02M 5/44 | UGR3 | . . . | using discharge tubes or semiconductor devices to convert the intermediate dc into ac |
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H02M 5/443 | UGR4 | . . . . | using devices of a thyratron or thyristor type requiring extinguishing means [2] |
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H02M 5/447 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 5/45 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 5/451 | UGR6 | . . . . . . | with automatic control of output voltage or frequency [4] |
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H02M 5/452 | UGR6 | . . . . . . | with automatic control of output waveform [4] |
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H02M 5/453 | UGR4 | . . . . | using devices of a triode or transistor type requiring continuous application of a control signal [2] |
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H02M 5/456 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 5/458 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 5/46 | UGR2 | |
H02M 5/48 | UGR2 | . . | by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters |
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H02M 7/00 | HGR | Conversion of ac power input into dc power output; Conversion of dc power input into ac power output |
H02M 7/02 | UGR1 | . | Conversion of ac power input into dc power output without possibility of reversal |
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H02M 7/04 | UGR2 | |
H02M 7/06 | UGR3 | . . . | using discharge tubes without control electrode or semiconductor devices without control electrode |
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H02M 7/08 | UGR4 | . . . . | arranged for operation in parallel |
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H02M 7/10 | UGR4 | . . . . | arranged for operation in series, e.g. for multiplication of voltage |
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H02M 7/12 | UGR3 | . . . | using discharge tubes with control electrode or semiconductor devices with control electrode |
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H02M 7/145 | UGR4 | . . . . | using devices of a thyratron or thyristor type requiring extinguishing means [2, 4] |
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H02M 7/15 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 7/155 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 7/162 | UGR6 | . . . . . . | in a bridge configuration [4] |
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H02M 7/17 | UGR6 | . . . . . . | arranged for operation in parallel [2, 4] |
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H02M 7/19 | UGR6 | . . . . . . | arranged for operation in series, e.g. for voltage multiplication [2, 4] |
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H02M 7/21 | UGR4 | . . . . | using devices of a triode or transistor type requiring continuous application of a control signal [2, 4] |
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H02M 7/213 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 7/217 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 7/219 | UGR6 | . . . . . . | in a bridge configuration [4] |
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H02M 7/23 | UGR6 | . . . . . . | arranged for operation in parallel [2, 4] |
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H02M 7/25 | UGR6 | . . . . . . | arranged for operation in series, e.g. for multiplication of voltage [2, 4] |
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H02M 7/26 | UGR3 | . . . | using open-spark devices, e.g. Marx rectifier |
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H02M 7/28 | UGR3 | . . . | using electrolytic rectifiers |
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H02M 7/30 | UGR2 | |
H02M 7/32 | UGR3 | . . . | using mechanical contact-making and -breaking parts |
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H02M 7/34 | UGR4 | . . . . | wherein the parts are rotating and collectors co-operate with brushes or rollers |
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H02M 7/36 | UGR4 | . . . . | with electromagnetically-operated vibrating contacts, e.g. chopper (self-interrupters in general H01H 51/34) |
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H02M 7/38 | UGR3 | . . . | using one or more sparking electrodes rotating over counterelectrodes |
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H02M 7/40 | UGR2 | . . | by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters |
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H02M 7/42 | UGR1 | . | Conversion of dc power input into ac power output without possibility of reversal |
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H02M 7/44 | UGR2 | |
H02M 7/46 | UGR3 | . . . | using discharge tubes without control electrode or semiconductor devices without control electrode |
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H02M 7/48 | UGR3 | . . . | using discharge tubes with control electrode or semiconductor devices with control electrode |
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H02M 7/505 | UGR4 | . . . . | using devices of a thyratron or thyristor type requiring extinguishing means [2] |
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H02M 7/51 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 7/515 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 7/517 | UGR6 | . . . . . . | with special starting equipment [4] |
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H02M 7/519 | UGR6 | . . . . . . | in a push-pull configuration (H02M 7/517 takes precedence) [4] |
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H02M 7/521 | UGR6 | . . . . . . | in a bridge configuration [4] |
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H02M 7/523 | UGR6 | . . . . . . | with LC-resonance circuit in the main circuit [4] |
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H02M 7/525 | UGR6 | . . . . . . | with automatic control of output waveform or frequency (H02M 7/517-H02M 7/523 take precedence) [4] |
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H02M 7/527 | UGR7 | . . . . . . . | by pulse width modulation [4] |
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H02M 7/529 | UGR8 | . . . . . . . . | using digital control [4] |
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H02M 7/53 | UGR4 | . . . . | using devices of a triode or transistor type requiring continuous application of a control signal [2] |
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H02M 7/533 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 7/537 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 7/5375 | UGR6 | . . . . . . | with special starting equipment [4] |
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H02M 7/538 | UGR6 | . . . . . . | in a push-pull configuration (H02M 7/5375 takes precedence) [4] |
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H02M 7/5383 | UGR6 | . . . . . . | in a self-oscillating arrangement (H02M 7/538 takes precedence) [4] |
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H02M 7/5387 | UGR6 | . . . . . . | in a bridge configuration [4] |
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H02M 7/539 | UGR6 | . . . . . . | with automatic control of output wave form or frequency (H02M 7/5375-H02M 7/5387 take precedence) [4] |
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H02M 7/5395 | UGR7 | . . . . . . . | by pulse-width modulation [4] |
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H02M 7/54 | UGR2 | |
H02M 7/56 | UGR3 | . . . | using mechanical parts to select progressively, or to vary continuously, the input potential |
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H02M 7/58 | UGR3 | . . . | using mechanical contact-making and -breaking parts to interrupt a single potential |
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H02M 7/60 | UGR4 | . . . . | wherein the parts are rotating and collectors co-operate with brushes or rollers |
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H02M 7/62 | UGR4 | . . . . | with electromagnetically-operated vibrating contacts, e.g. chopper (self-interrupters in general H01H 51/34) |
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H02M 7/64 | UGR2 | . . | by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters |
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H02M 7/66 | UGR1 | . | with possibility of reversal |
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H02M 7/68 | UGR2 | |
H02M 7/70 | UGR3 | . . . | using discharge tubes without control electrode or semiconductor devices without control electrode |
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H02M 7/72 | UGR3 | . . . | using discharge tubes with control electrode or semiconductor devices with control electrode |
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H02M 7/75 | UGR4 | . . . . | using devices of a thyratron or thyristor type requiring extinguishing means (H02M 7/77 takes precedence) [2] |
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H02M 7/753 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 7/757 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 7/758 | UGR6 | . . . . . . | with automatic control of output waveform or frequency [4] |
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H02M 7/77 | UGR5 | . . . . . | arranged for operation in parallel [2] |
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H02M 7/79 | UGR4 | . . . . | using devices of a triode or transistor type requiring continuous application of a control signal (H02M 7/81 takes precedence) [2] |
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H02M 7/793 | UGR5 | . . . . . | using discharge tubes only [2] |
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H02M 7/797 | UGR5 | . . . . . | using semiconductor devices only [2] |
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H02M 7/81 | UGR5 | . . . . . | arranged for operation in parallel [2] |
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H02M 7/82 | UGR3 | . . . | using open-spark devices, e.g. Marx rectifier |
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H02M 7/84 | UGR3 | . . . | using electrolytic rectifiers |
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H02M 7/86 | UGR2 | |
H02M 7/88 | UGR3 | . . . | using mechanical parts to select progressively or to vary continuously the input potential |
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H02M 7/90 | UGR3 | . . . | using mechanical contact-making and -breaking parts to interrupt a single potential |
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H02M 7/92 | UGR4 | . . . . | wherein the parts are rotating and collectors co-operate with brushes or rollers |
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H02M 7/94 | UGR4 | . . . . | wherein the parts are operated by rotating cams or cam-like devices |
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H02M 7/95 | UGR4 | . . . . | with electromagnetically-operated vibrating contacts, e.g. chopper (self-interrupters in general H01H 51/34) |
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H02M 7/96 | UGR4 | . . . . | with moving liquid contacts |
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H02M 7/98 | UGR2 | . . | by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters |
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H02M 9/00 | HGR | Conversion of dc or ac input power into surge output power [2] |
H02M 9/02 | UGR1 | |
H02M 9/04 | UGR2 | . . | using capacitative stores [2] |
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H02M 9/06 | UGR1 | |
H02M 11/00 | HGR | Power conversion systems not covered by the other groups of this subclass [4] |