FI (list display)

  • H02M3/00
  • Conversion of dc power input into dc power output HB CC 5H730
  • H02M3/00@A
  • Overall structures HB CC 5H730
  • H02M3/00@B
  • Starting or shutting off HB CC 5H730
  • H02M3/00@C
  • Protection HB CC 5H730
  • H02M3/00@E
  • .Preventing noises HB CC 5H730
  • H02M3/00@G
  • Charging condensers HB CC 5H730
  • H02M3/00@H
  • Control HB CC 5H730
  • H02M3/00@J
  • .Constant current HB CC 5H730
  • H02M3/00@K
  • .Detecting inputs HB CC 5H730
  • H02M3/00@N
  • .Counters HB CC 5H730
  • H02M3/00@P
  • .PWM HB CC 5H730
  • H02M3/00@Q
  • Resonance type HB CC 5H730
  • H02M3/00@R
  • Snubbers HB CC 5H730
  • H02M3/00@S
  • Switching HB CC 5H730
  • H02M3/00@T
  • .FET HB CC 5H730
  • H02M3/00@U
  • Vertical type HB CC 5H730
  • H02M3/00@W
  • Parallel operation (circuits for uniformly distributing loads) HB CC 5H730
  • H02M3/00@X
  • Auxiliary electric power supplies HB CC 5H730
  • H02M3/00@Y
  • Enclosures HB CC 5H730
  • H02M3/00@Z
  • Others HB CC 5H730
  • H02M3/02
  • .without intermediate conversion into ac HB CC 5H730
  • H02M3/04
  • ..by static converters HB CC 5H730
  • H02M3/06
  • ...using resistors or capacitors, e.g. potential divider HB CC 5H730
  • H02M3/07
  • ....using capacitors charged and discharged alternately by semiconductor devices with control electrode [4] HB CC 5H730
  • H02M3/08
  • ...using discharge tubes without control electrode or semiconductor devices without control electrode HB CC 5H730
  • H02M3/10
  • ...using discharge tubes with control electrode or semiconductor devices with control electrode (H02M 3/07 takes precedence) [4] HB CC 5H730
  • H02M3/125
  • ....using devices of a thyratron or thyristor type requiring extinguishing means [2] HB CC 5H730
  • H02M3/13
  • .....using discharge tubes only [2] HB CC 5H730
  • H02M3/135
  • .....using semiconductor devices only [2] HB CC 5H730
  • H02M3/135@A
  • Overall structures HB CC 5H730
  • H02M3/135@B
  • Starting or shutting off HB CC 5H730
  • H02M3/135@C
  • Protection HB CC 5H730
  • H02M3/135@D
  • Switching batteries HB CC 5H730
  • H02M3/135@F
  • Vertical connections HB CC 5H730
  • H02M3/135@G
  • Gates HB CC 5H730
  • H02M3/135@H
  • .OFF pulses HB CC 5H730
  • H02M3/135@J
  • .Current limiting HB CC 5H730
  • H02M3/135@K
  • .Drive circuits HB CC 5H730
  • H02M3/135@L
  • Main circuits HB CC 5H730
  • H02M3/135@M
  • .Main circuits M HB CC 5H730
  • H02M3/135@N
  • .Supplemental charging circuits HB CC 5H730
  • H02M3/135@R
  • .Main circuits R HB CC 5H730
  • H02M3/135@S
  • .Main circuits C HB CC 5H730
  • H02M3/135@Q
  • .Bypass contactors HB CC 5H730
  • H02M3/135@U
  • .Two-way HB CC 5H730
  • H02M3/135@W
  • Series-parallel HB CC 5H730
  • H02M3/135@Y
  • GTO HB CC 5H730
  • H02M3/135@Z
  • Others HB CC 5H730
  • H02M3/137
  • ......with automatic control of output voltage or current, e.g. switching regulators [4] HB CC 5H730
  • H02M3/139
  • .......with digital control [4] HB CC 5H730
  • H02M3/142
  • .......including plural semiconductor devices as final control devices for a single load [4] HB CC 5H730
  • H02M3/145
  • ....using devices of a triode or transistor type requiring continuous application of a control signal [2] HB CC 5H730
  • H02M3/145@A
  • Overall structures HB CC 5H730
  • H02M3/145@B
  • Starting HB CC 5H730
  • H02M3/145@C
  • Protection HB CC 5H730
  • H02M3/145@H
  • Drives HB CC 5H730
  • H02M3/145@P
  • Signal processing HB CC 5H730
  • H02M3/145@S
  • Switches HB CC 5H730
  • H02M3/145@Z
  • Others HB CC 5H730
  • H02M3/15
  • .....using discharge tubes only [2] HB CC 5H730
  • H02M3/155
  • .....using semiconductor devices only [2] HB CC 5H730
  • H02M3/155@A
  • Overall structures HB CC 5H730
  • H02M3/155@B
  • Starting or shutting off HB CC 5H730
  • H02M3/155@C
  • Protection (protection circuits in general R H 02 H) HB CC 5H730
  • H02M3/155@E
  • .Preventing noises HB CC 5H730
  • H02M3/155@F
  • Stepping up or inverting HB CC 5H730
  • H02M3/155@G
  • Charging condensers HB CC 5H730
  • H02M3/155@H
  • Control HB CC 5H730
  • H02M3/155@J
  • .Constant current HB CC 5H730
  • H02M3/155@K
  • .Detecting inputs HB CC 5H730
  • H02M3/155@L
  • .Self-excited type HB CC 5H730
  • H02M3/155@M
  • .Supplemental OSC HB CC 5H730
  • H02M3/155@N
  • ..Counters HB CC 5H730
  • H02M3/155@P
  • ..PWM HB CC 5H730
  • H02M3/155@Q
  • Resonance type HB CC 5H730
  • H02M3/155@R
  • Snubbers HB CC 5H730
  • H02M3/155@S
  • Switching (switching circuits per se R H 03 K 17/00) HB CC 5H730
  • H02M3/155@T
  • .FET HB CC 5H730
  • H02M3/155@U
  • Vertical type HB CC 5H730
  • H02M3/155@V
  • Branched outputs HB CC 5H730
  • H02M3/155@W
  • Parallel operation HB CC 5H730
  • H02M3/155@X
  • Supplemental electric power supplies HB CC 5H730
  • H02M3/155@Y
  • Enclosures HB CC 5H730
  • H02M3/155@Z
  • Others HB CC 5H730
  • H02M3/156
  • ......with automatic control of output voltage or current, e.g. switching regulators [4] HB CC 5H730
  • H02M3/157
  • .......with digital control [4] HB CC 5H730
  • H02M3/158
  • .......including plural semiconductor devices as final control devices for a single load [4] HB CC 5H730
  • H02M3/16
  • ..by dynamic converters HB CC 5H730
  • H02M3/18
  • ...using capacitors or batteries which are alternately charged and discharged, e.g. charged in parallel and discharged in series HB CC 5H730
  • H02M3/20
  • ..by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters HB CC 5H730
  • H02M3/22
  • .with intermediate conversion into ac HB CC 5H730
  • H02M3/24
  • ..by static converters HB CC 5H730
  • H02M3/24@H
  • Circuits using piezo transformers HB CC 5H730
  • H02M3/24@Y
  • .characterised by structures of piezo electric transformers per se HB CC 5H730
  • H02M3/24@Z
  • Others HB CC 5H730
  • H02M3/26
  • ...using discharge tubes without control electrode or semiconductor devices without control electrode to produce the intermediate ac HB CC 5H730
  • H02M3/28
  • ...using discharge tubes with control electrode or semiconductor devices with control electrode to produce the intermediate ac HB CC 5H730
  • H02M3/28@A
  • Overall structures HB CC 5H730
  • H02M3/28@B
  • Starting or shutting off, e.g. circuits for preventing rush-in HB CC 5H730
  • H02M3/28@C
  • Protection (protection circuits in general R H 02 H) HB CC 5H730
  • H02M3/28@D
  • .Preventing magnetic deviations HB CC 5H730
  • H02M3/28@E
  • .Preventing noises HB CC 5H730
  • H02M3/28@F
  • Rectification circuits HB CC 5H730
  • H02M3/28@G
  • Charging condensers HB CC 5H730
  • H02M3/28@H
  • Control HB CC 5H730
  • H02M3/28@J
  • .Constant current HB CC 5H730
  • H02M3/28@K
  • .Detecting inputs HB CC 5H730
  • H02M3/28@L
  • .Detecting windings HB CC 5H730
  • H02M3/28@M
  • .Control windings HB CC 5H730
  • H02M3/28@N
  • .Counters HB CC 5H730
  • H02M3/28@P
  • .PWM HB CC 5H730
  • H02M3/28@Q
  • Resonance type HB CC 5H730
  • H02M3/28@R
  • Snubbers, e.g. spike limiters HB CC 5H730
  • H02M3/28@S
  • Switching HB CC 5H730
  • H02M3/28@T
  • .FET HB CC 5H730
  • H02M3/28@U
  • Vertical type HB CC 5H730
  • H02M3/28@V
  • Multi-output type, e.g. positive and negative DC outputs HB CC 5H730
  • H02M3/28@W
  • Parallel operation HB CC 5H730
  • H02M3/28@X
  • Supplemental electric power supplies HB CC 5H730
  • H02M3/28@Y
  • Enclosures (including insulation methods) HB CC 5H730
  • H02M3/28@Z
  • Others HB CC 5H730
  • H02M3/305
  • ....using devices of a thyratron or thyristor type requiring extinguishing means [2] HB CC 5H730
  • H02M3/31
  • .....using discharge tubes only [2] HB CC 5H730
  • H02M3/315
  • .....using semiconductor devices only [2] HB CC 5H730
  • H02M3/325
  • ....using devices of a triode or a transistor type requiring continuous application of a control signal [2] HB CC 5H730
  • H02M3/325@A
  • Self-excited type HB CC 5H730
  • H02M3/325@B
  • Separately excited type HB CC 5H730
  • H02M3/325@D
  • Push-pull HB CC 5H730
  • H02M3/325@Z
  • Others HB CC 5H730
  • H02M3/33
  • .....using discharge tubes only [2] HB CC 5H730
  • H02M3/335
  • .....using semiconductor devices only [2] HB CC 5H730
  • H02M3/335@B
  • One-stone separately excited type HB CC 5H730
  • H02M3/335@E
  • Bridge type HB CC 5H730
  • H02M3/335@F
  • Multi-stone type (excluding push-pull) HB CC 5H730
  • H02M3/335@Z
  • Others HB CC 5H730
  • H02M3/337
  • ......in push-pull configuration [4] HB CC 5H730
  • H02M3/337@C
  • Self-excited type HB CC 5H730
  • H02M3/337@D
  • Separately excited type HB CC 5H730
  • H02M3/337@Z
  • Others HB CC 5H730
  • H02M3/338
  • ......in a self-oscillating arrangement (H02M 3/337 takes precedence) [4] HB CC 5H730
  • H02M3/338@A
  • One-stone type, e.g. blocking oscillation circuits HB CC 5H730
  • H02M3/338@Z
  • Others HB CC 5H730
  • H02M3/34
  • ..by dynamic converters HB CC 5H730
  • H02M3/36
  • ...using mechanical parts to select progressively or to vary continuously the input potential HB CC 5H730
  • H02M3/38
  • ...using mechanical contact-making and -breaking parts to interrupt a single potential HB CC 5H730
  • H02M3/40
  • ....wherein the parts are rotating and collectors co-operate with brushes or rollers HB CC 5H730
  • H02M3/42
  • ....with electromagnetically-operated vibrating contacts, e.g. chopper HB CC 5H730
  • H02M3/44
  • ..by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters HB CC 5H730
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