USRE44486E

Circuit apparatus for transformerless conversion of an electric direct voltage into an alternating voltage

Claim Score by NHIP

Read claim 12, the broadest

Abstract

In a circuit apparatus for transformerless conversion of an electric direct voltage of a two-pole direct voltage source (1) connected to ground having a first voltage pole (+) and a second voltage pole (−) into an alternating voltage, hazardous capacitive leakage currents are avoided by connecting the direct voltage source (1) to ground and the DC-AC converter (400) is operated at a controlled intermediate circuit voltage, a DC-DC converter stage (300) being connected between the direct voltage source (1) and the DC-AC converter (400), said DC-DC converter stage providing at its output a +/− voltage that is symmetrical with respect to the grounding point, two series-connected capacitors (41, 42) having the same polarity and being connected to ground at their connecting point (V) and controlled are charged by two buck-boost choppers (100, 200) connected one behind the other.

Term

1.4 yearsleft in the term

Expires 8 February 2028.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

27 claims: 5 independent, 22 dependent

  1. 1
    A circuit apparatus for transformerless conversion of an electric direct voltage of a two-pole direct voltage source ( 1 ) connected to ground having a first voltage pole (+) and a second voltage pole (−) into an alternating voltage for feeding into an alternating voltage network, a DC-AC converter ( 400 ) for feeding into said alternating voltage network being connected downstream of a DC-DC converter ( 300 ) , and two first and second capacitors ( 41 , 42 ) being present in an intermediate circuit between said the DC-DC converter ( 300 ) and said the DC-AC converter ( 400 ) , said capacitors being connected in series and comprising a connection point (V) at ground potential so that a +/− voltage that is symmetrical with respect to ground potential ( 80 ) is available on the an output side of the DC-DC converter stage ( 300 ) , characterized in that there is provided comprising :a first inverting buck-boost chopper ( 100 ) that is connected in parallel with the direct voltage source ( 1 ) downstream thereof and that is connected such that it charges the first capacitor ( 41 ) ;and a second inverting buck-boost chopper ( 200 ) that is connected in parallel with said the first inverting buck-boost chopper ( 100 ) downstream thereof and is connected such that it the second inverting buck-boost chopper charges the second capacitor ( 42 ) , wherein the two first and second inverting buck-boost choppers ( 100 , 200 ) forming form the DC-DC converter ( 300 ) , wherein the first inverting buck-boost chopper ( 100 ) consisting of at least one comprises a first switch ( 11 ) , at least one a first diode ( 21 ) and at least one a first choke ( 31 ) , and wherein said second inverting buck-boost chopper ( 200 ) consisting of at least one comprises a second switch ( 12 ) , at least one a second diode ( 22 ) and at least one a second choke ( 32 ) .
  2. 12
    Broadest claimClaim Score 56, average(NHIP)An apparatus comprising:a first inverting buck-boost chopper connected in parallel with a direct voltage source, the first inverting buck-boost chopper comprising a first switch, a first diode and a first choke;a second inverting buck-boost chopper connected in a cascade arrangement with the first inverting buck-boost chopper, the second inverting buck-boost chopper comprising a second switch, a second diode and a second choke;a first capacitor, wherein the first inverting buck-boost chopper is connected in parallel with the first capacitor;and a second capacitor, wherein the second inverting buck-boost chopper is connected in parallel with the second capacitor, and wherein the first capacitor is connected in series with the second capacitor.
  3. 16
    An apparatus comprising:a first inverting buck-boost chopper configured to invert a first DC voltage received from a first input terminal and a second input terminal to a first inverted DC voltage;a second inverting buck-boost chopper configured to invert a second DC voltage to a second inverted DC voltage, the second DC voltage being the same as the first inverted DC voltage;a first capacitor configured to be charged by the first inverting buck-boost chopper;and a second capacitor configured to be charged by the second inverting buck-boost chopper, wherein a positive pole of the first capacitor and a negative pole of the second capacitor are connected to a connection point, and wherein the connection point is connected to ground.
  4. 22
    An apparatus comprising:a first input terminal;a first node, a second node, a third node, and a fourth node;a first inductor, the first inductor being connected to the first node and the second node;a first switch, the first switch being connected to the first input terminal and to the first node;a first diode, a first cathode terminal of the first diode being connected to the first node and a first anode terminal of the first diode being connected to the third node;a second input terminal, the second input terminal being connected to the second node;a first output terminal, the first output terminal being connected to the third node;a second output terminal, the second output terminal being connected to the second node;a second inductor, the second inductor being connected the second node and the fourth node;a second switch, the second switch being connected to the third node and the fourth node;and a second diode, a second anode terminal of the second diode being connected to the fourth node and a second cathode terminal of the second diode being connected to a third output terminal.
  5. 26
    An apparatus comprising:a first inverting buck-boost chopper configured to invert a first DC voltage received from a first input terminal and a second input terminal to a first inverted DC voltage;a second inverting buck-boost chopper configured to invert a second DC voltage to a second inverted DC voltage, the second DC voltage being the same as the first inverted DC voltage;a first capacitor configured to be charged by the first inverting buck-boost chopper;a second capacitor configured to be charged by the second inverting buck-boost chopper;and a DC-AC inverter configured to invert the first inverted DC voltage and the second inverted DC voltage to an AC voltage.