FI (list display)

  • H02M7/00
  • Conversion of ac power input into dc power output; Conversion of dc power input into ac power output HB CC 5H006
  • H02M7/00@A
  • Rectified electric power supplies for plating HB CC 5H006
  • H02M7/00@Z
  • Others HB CC 5H006
  • H02M7/02
  • .Conversion of ac power input into dc power output without possibility of reversal HB CC 5H006
  • H02M7/04
  • ..by static converters HB CC 5H006
  • H02M7/04@A
  • Containers HB CC 5H006
  • H02M7/04@B
  • Air-cooled HB CC 5H006
  • H02M7/04@C
  • Liquid-cooled HB CC 5H006
  • H02M7/04@D
  • Assembly frames HB CC 5H006
  • H02M7/04@E
  • Combinations with transformers HB CC 5H006
  • H02M7/04@F
  • Rotary rectifiers HB CC 5H006
  • H02M7/04@G
  • Combinations of mercury rectifier and transformer HB CC 5H006
  • H02M7/04@H
  • Circuits by mercury rectifier HB CC 5H006
  • H02M7/04@Z
  • Others (miscellaneous devices) HB CC 5H006
  • H02M7/06
  • ...using discharge tubes without control electrode or semiconductor devices without control electrode HB CC 5H006
  • H02M7/06@A
  • Smooth HB CC 5H006
  • H02M7/06@B
  • Saturable reactors HB CC 5H006
  • H02M7/06@C
  • Light emitting diodes HB CC 5H006
  • H02M7/06@D
  • L-control diodes HB CC 5H006
  • H02M7/06@E
  • Diode circuits HB CC 5H006
  • H02M7/06@F
  • Circuits with tap HB CC 5H006
  • H02M7/06@G
  • Bridges HB CC 5H006
  • H02M7/06@H
  • Protection HB CC 5H006
  • H02M7/06@J
  • Flyback rectifiers (flyback transformers not including rectifier R H 01 F) HB CC 5H006
  • H02M7/06@K
  • Flyback rectification circuits HB CC 5H006
  • H02M7/06@L
  • Step-down rectification HB CC 5H006
  • H02M7/06@M
  • Three-phase AC (Newly established in H11.) HB CC 5H006
  • H02M7/06@N
  • Preventing rush-in currents (Newly established in H11.) HB CC 5H006
  • H02M7/06@P
  • Improving power factors (Newly established in H11.) HB CC 5H006
  • H02M7/06@S
  • Switching, e.g. Full wave - double voltage (Newly established in H11.) HB CC 5H006
  • H02M7/06@T
  • Multiple phasing (Newly established in H11.) HB CC 5H006
  • H02M7/06@U
  • .using special transformers (Newly established in H11.) HB CC 5H006
  • H02M7/06@V
  • Multiple outputs (Newly established in H11.) HB CC 5H006
  • H02M7/06@Z
  • Others (miscellaneous circuits) HB CC 5H006
  • H02M7/08
  • ....arranged for operation in parallel HB CC 5H006
  • H02M7/10
  • ....arranged for operation in series, e.g. for multiplication of voltage HB CC 5H006
  • H02M7/10@A
  • Multiple steps HB CC 5H006
  • H02M7/10@B
  • Voltage multiplier HB CC 5H006
  • H02M7/10@Z
  • Others (voltage multiplication circuits) (high voltage supply circuits for TV R H 04 N) HB CC 5H006
  • H02M7/12
  • ...using discharge tubes with control electrode or semiconductor devices with control electrode HB CC 5H006
  • H02M7/12@A
  • Control (Newly established in H11.) HB CC 5H006
  • H02M7/12@B
  • .PWM (Newly established in H11.) HB CC 5H006
  • H02M7/12@C
  • .Digital control (Newly established in H11.) HB CC 5H006
  • H02M7/12@D
  • .Vector control (Newly established in H11.) HB CC 5H006
  • H02M7/12@F
  • Starting or shutting off (excluding bridges) (Newly established in H11.) HB CC 5H006
  • H02M7/12@G
  • Starting or shutting off (Newly established in H11.) HB CC 5H006
  • H02M7/12@H
  • Protection (Newly established in H11.) HB CC 5H006
  • H02M7/12@J
  • Snubbers (Newly established in H11.) HB CC 5H006
  • H02M7/12@K
  • characterised by switching (Newly established in H11.) HB CC 5H006
  • H02M7/12@L
  • .Sharing switching elements (Newly established in H11.) HB CC 5H006
  • H02M7/12@M
  • Three-phase AC (Newly established in H11.) HB CC 5H006
  • H02M7/12@N
  • Preventing rush-in currents (Newly established in H11.) HB CC 5H006
  • H02M7/12@P
  • Improving power factors (Newly established in H11.) HB CC 5H006
  • H02M7/12@Q
  • .by choppers (Newly established in H11.) HB CC 5H006
  • H02M7/12@R
  • .by insulated converters (Newly established in H11.) HB CC 5H006
  • H02M7/12@S
  • Switching, e.g. full wave - double voltage (Newly established in H11.) HB CC 5H006
  • H02M7/12@T
  • Multiple phasing (Newly established in H11.) HB CC 5H006
  • H02M7/12@U
  • .using special transformers (Newly established in H11.) HB CC 5H006
  • H02M7/12@V
  • Multiple outputs (Newly established in H11.) HB CC 5H006
  • H02M7/12@W
  • Parallel (Newly established in H11.) HB CC 5H006
  • H02M7/12@X
  • Series (Newly established in H11.) HB CC 5H006
  • H02M7/12@Y
  • Auxiliary power supplies (control power supplies) (Newly established in H11.) HB CC 5H006
  • H02M7/12@Z
  • Others (Newly established in H11.) HB CC 5H006
  • H02M7/12,601
  • ....Bridges (Newly established in H11.) HB CC 5H006
  • H02M7/12,601@A
  • Full bridges (Newly established in H11.) HB CC 5H006
  • H02M7/12,601@B
  • Mixed bridges (Newly established in H11.) HB CC 5H006
  • H02M7/12,601@C
  • Current type (Newly established in H11.) HB CC 5H006
  • H02M7/12,601@D
  • Three-level, neutral point clamp (Newly established in H11.) HB CC 5H006
  • H02M7/12,601@Z
  • Others (Newly established in H11.) HB CC 5H006
  • H02M7/145
  • ....using devices of a thyratron or thyristor type requiring extinguishing means [2,4] HB CC 5H006
  • H02M7/15
  • .....using discharge tubes only [2] HB CC 5H006
  • H02M7/155
  • .....using semiconductor devices only [2] HB CC 5H006
  • H02M7/155@A
  • with means for extinguishing arcs HB CC 5H006
  • H02M7/155@B
  • On pulses HB CC 5H006
  • H02M7/155@C
  • Gates HB CC 5H006
  • H02M7/155@D
  • with bypassing means HB CC 5H006
  • H02M7/155@E
  • Inverters (IV) HB CC 5H006
  • H02M7/155@F
  • Starting or shutting off HB CC 5H006
  • H02M7/155@G
  • Protection HB CC 5H006
  • H02M7/155@Z
  • Others (main circuits) HB CC 5H006
  • H02M7/162
  • ......in a bridge configuration [4] HB CC 5H006
  • H02M7/17
  • ......arranged for operation in parallel [2,4] HB CC 5H006
  • H02M7/19
  • ......arranged for operation in series, e.g. for voltage multiplication [2,4] HB CC 5H006
  • H02M7/21
  • ....using devices of a triode or transistor type requiring continuous application of a control signal [2,4] HB CC 5H006
  • H02M7/21@A
  • Synchronous rectification circuits HB CC 5H006
  • H02M7/21@Z
  • Others (signal rectification circuits R H 03 D) HB CC 5H006
  • H02M7/213
  • .....using discharge tubes only [2] HB CC 5H006
  • H02M7/217
  • .....using semiconductor devices only [2] HB CC 5H006
  • H02M7/219
  • ......in a bridge configuration [4] HB CC 5H006
  • H02M7/23
  • ......arranged for operation in parallel [2,4] HB CC 5H006
  • H02M7/25
  • ......arranged for operation in series, e.g. for multiplication of voltage [2,4] HB CC 5H006
  • H02M7/26
  • ...using open-spark devices, e.g. Marx rectifier HB CC 5H006
  • H02M7/28
  • ...using electrolytic rectifiers HB CC 5H006
  • H02M7/30
  • ..by dynamic converters HB CC 5H006
  • H02M7/32
  • ...using mechanical contact-making and -breaking parts HB CC 5H006
  • H02M7/34
  • ....wherein the parts are rotating and collectors co-operate with brushes or rollers HB CC 5H006
  • H02M7/36
  • ....with electromagnetically-operated vibrating contacts, e.g. chopper HB CC 5H006
  • H02M7/38
  • ...using one or more sparking electrodes rotating over counterelectrodes HB CC 5H006
  • H02M7/40
  • ..by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters HB CC 5H006
  • H02M7/42
  • .Conversion of dc power input into ac power output without possibility of reversal HB CC 5H770
  • H02M7/44
  • ..by static converters HB CC 5H770
  • H02M7/46
  • ...using discharge tubes without control electrode or semiconductor devices without control electrode HB CC 5H770
  • H02M7/48
  • ...using discharge tubes with control electrode or semiconductor devices with control electrode [1,2007.01] HB CC 5H770
  • H02M7/48@A
  • with resonant circuits HB CC 5H770
  • H02M7/48@P
  • .with resonant circuit besides load HB CC 5H770
  • H02M7/48@B
  • Time-sharing type HB CC 5H770
  • H02M7/48@R
  • System cooperation HB CC 5H770
  • H02M7/48@S
  • Series HB CC 5H770
  • H02M7/48@T
  • Multiple inputs and outputs HB CC 5H770
  • H02M7/48@U
  • Multi-step HB CC 5H770
  • H02M7/48@E
  • Output control circuits HB CC 5H770
  • H02M7/48@F
  • .PWM (Newly established in H11.) HB CC 5H770
  • H02M7/48@V
  • ..Instantaneous PWM value HB CC 5H770
  • H02M7/48@W
  • ...Circular approximation HB CC 5H770
  • H02M7/48@X
  • ..Special waveforms HB CC 5H770
  • H02M7/48@G
  • .Pulse width control HB CC 5H770
  • H02M7/48@H
  • .Digital control HB CC 5H770
  • H02M7/48@J
  • .using microcomputers HB CC 5H770
  • H02M7/48@K
  • .Regenerating energy generated by converting circuits HB CC 5H770
  • H02M7/48@Y
  • .with power factor improvement devices HB CC 5H770
  • H02M7/48@L
  • Starting or shutting off HB CC 5H770
  • H02M7/48@M
  • Protection HB CC 5H770
  • H02M7/48@N
  • Uninterruptive HB CC 5H770
  • H02M7/48@Z
  • Others HB CC 5H770
  • H02M7/483
  • ....Converters with outputs that each can have more than two voltage levels [2007.01] HB CC 5H770
  • H02M7/487
  • .....Neutral point clamped inverters [2007.01] HB CC 5H770
  • H02M7/49
  • .....Combination of the output voltage waveforms of a plurality of converters [2007.01] HB CC 5H770
  • H02M7/493
  • ....the static converters being arranged for operation in parallel [2007.01] HB CC 5H770
  • H02M7/497
  • ....sinusoidal output voltages being obtained by combination of several voltages being out of phase [2007.01] HB CC 5H770
  • H02M7/501
  • ....sinusoidal output voltages being obtained by the combination of several pulse-voltages having different amplitude and width [2007.01] HB CC 5H770
  • H02M7/505
  • ....using devices of a thyratron or thyristor type requiring extinguishing means [2] HB CC 5H770
  • H02M7/51
  • .....using discharge tubes only [2] HB CC 5H770
  • H02M7/515
  • .....using semiconductor devices only [2,2007.01] HB CC 5H770
  • H02M7/515@A
  • characterised by commutation circuits HB CC 5H770
  • H02M7/515@B
  • .with auxiliary power supplies HB CC 5H770
  • H02M7/515@C
  • Multiple phasing or multiplexing HB CC 5H770
  • H02M7/515@D
  • using GTO, reverse conducting thyristors or TRIACs HB CC 5H770
  • H02M7/515@E
  • Output control or ignition circuits HB CC 5H770
  • H02M7/515@F
  • .Margin angle control HB CC 5H770
  • H02M7/515@G
  • Protection HB CC 5H770
  • H02M7/515@H
  • .Commutation failure protection HB CC 5H770
  • H02M7/515@J
  • Starting or shutting off HB CC 5H770
  • H02M7/515@Z
  • Others HB CC 5H770
  • H02M7/516
  • ......Self-oscillating arrangements [2007.01] HB CC 5H770
  • H02M7/517
  • ......with special starting equipment [4] HB CC 5H770
  • H02M7/519
  • ......in a push-pull configuration (H02M 7/517 takes precedence) [4] HB CC 5H770
  • H02M7/521
  • ......in a bridge configuration [4] HB CC 5H770
  • H02M7/523
  • ......with LC-resonance circuit in the main circuit [4] HB CC 5H770
  • H02M7/525
  • ......with automatic control of output waveform or frequency (H02M 7/517-H02M 7/523 take precedence) [4] HB CC 5H770
  • H02M7/527
  • .......by pulse width modulation [4] HB CC 5H770
  • H02M7/529
  • ........using digital control [4] HB CC 5H770
  • H02M7/53
  • ....using devices of a triode or transistor type requiring continuous application of a control signal [2] HB CC 5H770
  • H02M7/533
  • .....using discharge tubes only [2] HB CC 5H770
  • H02M7/537
  • .....using semiconductor devices only, e.g. single switched pulse inverters [2] HB CC 5H770
  • H02M7/537@A
  • One-stone type HB CC 5H770
  • H02M7/537@B
  • Starring, stopping or protection HB CC 5H770
  • H02M7/537@C
  • .Preventing simultaneous conducting HB CC 5H770
  • H02M7/537@D
  • .Preventing magnetic deviations HB CC 5H770
  • H02M7/537@E
  • using FET HB CC 5H770
  • H02M7/537@Z
  • Others HB CC 5H770
  • H02M7/5375
  • ......with special starting equipment [4] HB CC 5H770
  • H02M7/538
  • ......in a push-pull configuration (H02M 7/5375 takes precedence) [4,2007.01] HB CC 5H770
  • H02M7/538@A
  • Single ended push-pull HB CC 5H770
  • H02M7/538@Z
  • Others HB CC 5H770
  • H02M7/5381
  • .......Parallel type [2007.01] HB CC 5H770
  • H02M7/5383
  • ......in a self-oscillating arrangement (H02M 7/538 takes precedence) [4,2007.01] HB CC 5H770
  • H02M7/53838
  • .......using a single commutation path [2007.01] HB CC 5H770
  • H02M7/53846
  • .......Control circuits [2007.01] HB CC 5H770
  • H02M7/53854
  • ........using thyristor type converters [2007.01] HB CC 5H770
  • H02M7/53862
  • ........using transistor type converters [2007.01] HB CC 5H770
  • H02M7/5387
  • ......in a bridge configuration [4,2007.01] HB CC 5H770
  • H02M7/5387@A
  • Half-bridges HB CC 5H770
  • H02M7/5387@Z
  • Others HB CC 5H770
  • H02M7/5388
  • .......with asymmetrical configuration of switches [2007.01] HB CC 5H770
  • H02M7/539
  • ......with automatic control of output wave form or frequency (H02M 7/5375-H02M 7/5387 take precedence) [4] HB CC 5H770
  • H02M7/5395
  • .......by pulse-width modulation [4] HB CC 5H770
  • H02M7/54
  • ..by dynamic converters HB CC 5H770
  • H02M7/56
  • ...using mechanical parts to select progressively, or to vary continuously, the input potential HB CC 5H770
  • H02M7/58
  • ...using mechanical contact-making and -breaking parts to interrupt a single potential HB CC 5H770
  • H02M7/60
  • ....wherein the parts are rotating and collectors co-operate with brushes or rollers HB CC 5H770
  • H02M7/62
  • ....with electromagnetically-operated vibrating contacts, e.g. chopper HB CC 5H770
  • H02M7/64
  • ..by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters HB CC 5H770
  • H02M7/66
  • .with possibility of reversal HB CC 5H770
  • H02M7/68
  • ..by static converters HB CC 5H770
  • H02M7/70
  • ...using discharge tubes without control electrode or semiconductor devices without control electrode HB CC 5H770
  • H02M7/72
  • ...using discharge tubes with control electrode or semiconductor devices with control electrode HB CC 5H770
  • H02M7/75
  • ....using devices of a thyratron or thyristor type requiring extinguishing means HB CC 5H770
  • H02M7/753
  • .....using discharge tubes only [2] HB CC 5H770
  • H02M7/757
  • .....using semiconductor devices only [2] HB CC 5H770
  • H02M7/758
  • ......with automatic control of output waveform or frequency [4] HB CC 5H770
  • H02M7/77
  • .....arranged for operation in parallel [2] HB CC 5H770
  • H02M7/79
  • ....using devices of a triode or transistor type requiring continuous application of a control signal HB CC 5H770
  • H02M7/793
  • .....using discharge tubes only [2] HB CC 5H770
  • H02M7/797
  • .....using semiconductor devices only [2] HB CC 5H770
  • H02M7/81
  • .....arranged for operation in parallel [2] HB CC 5H770
  • H02M7/82
  • ...using open-spark devices, e.g. Marx rectifier HB CC 5H770
  • H02M7/84
  • ...using electrolytic rectifiers HB CC 5H770
  • H02M7/86
  • ..by dynamic converters HB CC 5H770
  • H02M7/88
  • ...using mechanical parts to select progressively or to vary continuously the input potential HB CC 5H770
  • H02M7/90
  • ...using mechanical contact-making and -breaking parts to interrupt a single potential HB CC 5H770
  • H02M7/92
  • ....wherein the parts are rotating and collectors co-operate with brushes or rollers HB CC 5H770
  • H02M7/94
  • ....wherein the parts are operated by rotating cams or cam-like devices HB CC 5H770
  • H02M7/95
  • ....with electromagnetically-operated vibrating contacts, e.g. chopper HB CC 5H770
  • H02M7/96
  • ....with moving liquid contacts HB CC 5H770
  • H02M7/98
  • ..by combination of static with dynamic converters; by combination of dynamo-electric with other dynamic or static converters HB CC 5H770
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