LLC resonant converter
10797604 ยท 2020-10-06
Assignee
Inventors
Cpc classification
H02M1/32
ELECTRICITY
H02M1/0058
ELECTRICITY
H02M7/4826
ELECTRICITY
H02M3/33571
ELECTRICITY
Y02B70/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
H02M1/32
ELECTRICITY
Abstract
An LLC converter includes a switch module, a transformer, an output circuit, a resonant circuit and a safety capacitor. The switch module is connected between an input voltage and a ground. The transformer has a primary side winding and at least one secondary side winding. The output circuit is connected between the at least one secondary side winding and a load. The resonant circuit is coupled between the primary side winding and the switch module and includes at least one leakage inductor. The safety capacitor is connected between the at least one leakage inductor and the switch module.
Claims
1. An LLC resonant converter, comprising: a switch module connected between an input voltage and a ground; a transformer having a primary side winding and at least one secondary side winding; an output circuit connected between the at least one secondary side winding and a load; a resonant circuit coupled between the primary side winding and the switch module and comprising at least one leakage inductor, a first resonant capacitor, and a resonant inductor, with the at least one leakage inductor connected to the safety capacitor and a first end of the primary side winding, the first resonant capacitor connected to the switch module and a second end of the primary side winding, and the resonant inductor straddlingly connected to the first end and the second end of the primary side winding; and the safety capacitor connected between the at least one leakage inductor and the switch module, wherein the at least one leakage inductor has a first terminal connected to the primary side winding and a second terminal connected to the switch module through only a first voltage transmission path having the safety capacitor; wherein the safety capacitor enables isolation of the first voltage transmission path with respect to the leakage inductor and the first resonant capacitor enables isolation of a second voltage transmission path with respect to the second end of the primary side winding in order to isolate the primary side winding and the at least one secondary side winding from each other.
2. The LLC converter of claim 1, wherein the output circuit comprises a first diode, a second diode and a stabilization capacitor, the at least one secondary side winding comprises a first secondary side winding and a second secondary side winding, the first secondary side winding is connected between an anode of the first diode and the second secondary side winding, the second secondary side winding is connected between an anode of the second diode and the first secondary side winding, and the stabilization capacitor is connected between a common of a cathode of the first diode and a cathode of the second diode and a common of the first secondary side winding and the second secondary side winding.
3. The LLC converter of claim 2, wherein the switch module comprises a first switch and a second switch, the first switch is connected between the input voltage and the second switch, and the second switch is connected between the first switch and the ground.
4. The LLC converter of claim 3, wherein the safety capacitor is connected between the at least one leakage inductor and a common of the first switch and the second switch.
5. The LLC converter of claim 3, wherein the safety capacitor is connected between the ground and the at least one leakage inductor.
6. The LLC converter of claim 3, wherein the safety capacitor is connected between the input voltage and the at least one leakage inductor.
7. The LLC converter of claim 1, wherein the resonant circuit further comprises a second resonant capacitor connected between the second end of the primary side winding and the input voltage.
8. The LLC converter of claim 1, wherein an electrical isolation distance between the primary side winding and the at least one secondary side winding is 0.1 mm8 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(6) The operation of an LLC converter of the present disclosure is hereunder illustrated by embodiments and depicted with accompanying drawings.
(7) To provide an LLC converter which spares a transformer the duty to take care of electrical isolation and insulation between a secondary side winding, the present disclosure provides an LLC converter using a safety capacitor to meet safety and isolation requirements. Referring to
(8) The switch module 110 comprises a first switch 111 and a second switch 112. The first switch 111 is connected between input voltage Vin and second switch 112. The second switch 112 is connected between first switch 111 and the ground. The LLC converter 100 provides AC voltage to the transformer 120 through the ON and OFF of the first switch 111 and second switch 112 relative to each other and switching between them.
(9) The resonant circuit 140 further comprises a resonant capacitor Cr and a resonant inductor Lm. The leakage inductor L.sub.LK is connected to safety capacitor Cs and one end of primary side winding N1. The resonant capacitor Cr is connected to switch module 110 and the other end of primary side winding N1. The resonant inductor Lm straddlingly connects to the two ends of primary side winding N1. The resonant circuit 140 causes resonance of AC voltage provided to the transformer 120, using the resonant capacitor Cr, resonant inductor Lm, and leakage inductor L.sub.LK, so as to preclude voltage difference in the ON and OFF of first switch 111 and second switch 112 relative to each other and switching between ON and OFF.
(10) The output circuit 130 comprises diodes D1, D2 and stabilization capacitor Co. The secondary side winding N2 is connected between the anode of diode D1 and secondary side winding N3. The secondary side winding N3 is connected between the anode of diode D2 and secondary side winding N2. The stabilization capacitor Co is connected between the common of the cathode of diode D1 and the cathode of diode D2 and the common of the secondary side windings N2, N3.
(11) In this embodiment, the safety capacitor Cs is connected between the leakage inductor L.sub.LK and the ground. The resonant capacitor Cr is connected between the primary side winding N1 and the common of first switch 111 and second switch 112. The safety capacitor Cs enables isolation of the voltage transmission path at the leakage inductor L.sub.LK. The resonant capacitor Cr enables isolation of the voltage transmission path at the other end of the primary side winding N1. Hence, the transformer 120 need not take care of electrical isolation and insulation of primary side winding N1 and secondary side windings N2, N3 from each other. Hence, not only can the insulation distance between the primary side winding N1 and secondary side windings N2, N3 be reduced, but winding which conforms with safety standards and transformer framework are also unnecessary. Hence, the size of the transformer 120 can be greatly reduced. In a preferred embodiment, the electrical isolation distance between primary side winding N1 and secondary side windings N2, N3 of the transformer 120 is reduced to 0.1 mm8 mm.
(12) In the above embodiments, since safety capacitor Cs enables electrical isolation and insulation, the requirement of dual or enhanced insulation between the two terminal of safety capacitor Cs must be met, for example, a distance of 8 mm. Likewise, although the main purpose of resonant capacitor Cr is to cause resonance of AC voltage provided to the transformer 120, the requirement of dual or enhanced insulation between the two terminal of resonant capacitor Cr must be met in order for the voltage transmission path to attain isolation and insulation before reaching primary side winding N1.
(13) Referring to
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(16) Referring to
(17) While the present disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the present disclosure set forth in the claims