IP Library Granted Patent US 8,559,194
Granted Patent B2
US 8,559,194 · App. 13/094,227 · Granted Oct 15, 2013

Converter circuit and unit and system comprising such converter circuit

Inventors: Antonio Coccia (Baden, CH); Francisco Canales (Baden-Dättwil, CH); Manfred Winkelnkemper (Ennetbaden, CH); Marc Pellerin (Morges, CH); Nicolas Hugo (Genève, CH); Philippe Stefanutti (Choisy, FR); Toufann Chaudhuri (Morges, CH)
Assignee: ABB Research Ltd.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,559,194
App. No.
13/094,227
Granted
Oct 15, 2013
Kind
B2
Abstract

A converter circuit has a first resonant converter that is connected on the DC voltage side to a first energy storage circuit, and a transformer. A second resonant converter is connected on the AC voltage side to the secondary winding of the transformer and on the DC voltage side to a load converter, and a CLL resonant circuit is connected to the first resonant converter and to the primary winding of the transformer. The CLL resonant circuit has a resonant capacitance, a first resonant inductance and a second resonant inductance.

Claims (20)

1. A converter circuit comprising:

a first resonant converter that is connected on a DC voltage side to a first energy storage circuit;

a transformer;

a second resonant converter that is connected on an AC voltage side to a secondary winding of the transformer and on the DC voltage side to a load converter; and

a CLL resonant circuit that is connected to the first resonant converter and to a primary winding of the transformer and has a resonant capacitance, a first resonant inductance, and a second resonant inductance,

wherein the resonant capacitance is connected in series with the first resonant inductance, which is connected to a first connection point of the primary winding of the transformer and the resonant capacitance is connected to the first resonant converter, and the second resonant inductance is connected to the connection point of the resonant capacitance to the first resonant inductance, the second resonant inductance is connected to a second connection point of the primary winding of the transformer, and the second connection point of the primary winding of the transformer is connected to the first resonant converter.

2. The converter circuit as claimed in claim 1 , wherein the first energy storage circuit has a first capacitive energy store, and a second capacitive energy store, which is connected in series with the first capacitive energy store, and the second connection point of the primary winding of the transformer is connected to a connection point of the first energy storage circuit,

wherein the connection point is formed from the first energy store and the second energy store.

3. The converter circuit as claimed in claim 2 , wherein the second resonant converter is connected on the DC voltage side to a second energy storage circuit, in that the second energy storage circuit has a third capacitive energy store, and a fourth capacitive energy store which is connected in series with the third capacitive energy store, and the secondary winding of the transformer is connected to a connection point of the second energy storage circuit, which connection point is formed from the third energy store and the fourth energy store.

4. The converter circuit as claimed in claim 3 , wherein the second resonant inductance is integrated in the transformer.

5. The converter circuit as claimed in claim 4 , wherein the first resonant inductance is integrated in the transformer.

6. The converter circuit as claimed in claim 1 , wherein switching means is connected on the AC voltage side to an electrical power supply system, and is connected on the DC voltage side to the first energy storage circuit.

7. A converter circuit unit, wherein at least two converter circuits as claimed in claim 1 , and

wherein the converter circuits are connected in series with one another on the input side.

8. A converter circuit unit, wherein at least two converter circuits as claimed in claim 1 , wherein the converter circuits are connected in parallel with one another on the input side.

9. The converter circuit unit as claimed in claim 7 , wherein at least a first converter circuit unit and at least a second converter circuit unit are provided, and wherein the converter circuit units are connected in parallel with one another.

10. A converter circuit system, wherein at least two converter circuits as claimed in claim 6 are provided,

wherein switching means are connected in series with one another on the input side.

11. The converter circuit system as claimed in claim 10 , wherein at least a first converter circuit system and at least a second converter circuit system are provided, and the converter circuit systems are connected in parallel with one another.

12. The converter circuit system as claimed in claim 10 , wherein a first, a second and a third converter circuit system are provided and are connected to one another, in order to be connected to a three-phase electrical power supply system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2011
From: COCCIA, ANTONIO; CANALES, FRANCISCO; WINKELNKEMPER, MANFRED; PELLERIN, MARC; HUGO, NICOLAS; STEFANUTTI, PHILIPPE; CHAUDHURI, TOUFANN
To: ABB RESEARCH LTD.
Reel/Frame 026354/0200 →
Priority Claims (1)
EP 08167670 · Oct 27, 2008 · regional
Continuity (2)
Continuation PCTEP2009063113 · Oct 8, 2009
Related Publication 20110222317A1 · Sep 15, 2011