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34 results about "Zeta converter" patented technology

Switch converter double-edge constant breakover time modulation voltage type control method and device thereof

The invention discloses a switch converter double-edge constant breakover time modulation voltage type control method and a device thereof. According to relation between output voltages and voltage reference value, the switch converter double-edge constant breakover time modulation voltage type control method and the device thereof use a control time series formed by constant breakover, turn-off and constant breakover or a control time series formed by turn-off, constant breakover and turn-off for controlling breakover and turn-off of the switch converter switch tube. The switch converter double-edge constant breakover time modulation voltage type control method and the device thereof can be used for controlling a plurality of switch converters with a topological structure, such as a Buck converter, a Buck2 converter, a Cuk converter, a Zeta converter, a single tube normal shock converter, a double-tube normal shock converter, a push-pull converter, a push-pull normal shock converter, a half-bridge converter and a full-bridge converter. The switch converter double-edge constant breakover time modulation voltage type control method and the device thereof has the advantages of being simple in control, fast in transient response speed, high in voltage stabilization accuracy, and capable of not compensating network.
Owner:SOUTHWEST JIAOTONG UNIV

Double-bootstrap three-level Zeta converter

The invention discloses a double-bootstrap three-level Zeta converter and belongs to the technical field of power electronic converters. The invention aims to solve the problems that loss in a conversion circuit and a cascade converter which do not need to be isolated is high, the equipment size is large and the cost is high when a topological structure of a direct current converter main circuit is changed by means of adding a transformer or utilizing cascade connection at present. According to the double-bootstrap three-level Zeta converter, a switching inductor circuit with an auxiliary switch is added on the basis of a topological structure of an original two-level Zeta converter circuit, so that a conversion ratio of the direct current converter is improved. The switching loss of the double-bootstrap three-level Zeta converter is 3 / 2n the switching loss under the condition that n circuits are in cascade connection with one another on the premise of the same effect with the traditional mode of increase of transformers and cascade connection of n circuits; and moreover the transformer equipment is reduced, so that the total equipment size is reduced, and the cost is saved. The invention is applied to modification of the topological structure of the direct current converter main circuit.
Owner:HARBIN INST OF TECH

Bipolar transistor self-exciting Zeta converter

A bipolar transistor self-exciting Zeta converter comprises a PNP transistor Q1, an inductor L1, a capacitor C2, a diode D1, an inductor L2 and a capacitor C3 which form a main circuit of the Zeta converter and also comprises a PNP transistor Q2, wherein the emitting electrode of the PNP transistor Q1 is connected with the positive terminal of direct current input voltage Vi; the junction of the inductor L1 and the capacitor C2 is connected with the collecting electrode of the PNP transistor Q1; the emitting electrode and the collecting electrode of the PNP transistor Q2 are respectively connected with the emitting electrode and the base electrode of the PNP transistor Q1; the base electrode of the PNP transistor Q1 is also connected to the negative terminal of direct current input voltage Vi by a resistor R1; series branch circuits of a resistor R2 and a resistor R3 are connected at the two ends of the emitting electrode and the collecting electrode of the Q1 in parallel; and the junction of the resistor R2 and the resistor R3 is connected with the base electrode of the PNP transistor Q2. The converter has simple circuit structure, a few of components and widened application range.
Owner:苏州卫优知识产权运营有限公司

High-voltage direct current breaker and fault cutting method thereof based on Zeta converter topologies

The invention discloses a high-voltage direct current breaker and a fault cutting method thereof based on Zeta converter topologies, and aims at solving the problems that the cost of existing breaker equipment is high, the responding speed is low, and equipment operation wastage is high. The breaker comprises a breaker body and a control system, wherein the control system comprises inner ring adjustment control currents and outer ring adjustment control voltage; an auxiliary controller is added to double closed-loop adjustment, and voltage transformation and protective control are conducted on the high-voltage direct current breaker. Compared with a traditional high-voltage breaker, the high-voltage direct current breaker has the advantages that the breaker has more functions, the breaking speed is higher, and the cost is saved. When a high-voltage direct current transmission system is in a normal operation, functions of boosting and reducing voltage are achieved, a boost state and a reduction voltage state are switched over, and the breaker can be used in electric power circuits with different voltage classes; meanwhile when a short-circuit fault of electric transmission circuits occurs, the short-circuit fault can be effectively cut in time.
Owner:SOUTHWEST JIAOTONG UNIV

MOSFET-based auto-excitation type Zeta converter

An MOSFET (Metal-Oxide -Semiconductor Field Effect Transistor)-based auto-excitation type Zeta converter comprises a Zeta converter main loop consisting of an input capacitor Ci, an N-type MOSFET M1, an inductor L1, a capacitor C, a diode D, an inductor L2 and a capacitor Co. The converter further comprises an auxiliary power supply U1, and adopts a single-MOSFET basic auto-excitation unit circuit consisting of the N-type MOSFET M1, a diode D1, a diode D2, a resistor R1, a resistor R2, a resistor R3, a capacitor C1, a hysteresis comparator U3 and a drive circuit U2. The MOSFET-based auto-excitation type Zeta converter provided by the invention has the advantages of higher efficiency and wider applicable power range.
Owner:金湖县农副产品营销协会

Automatic voltage-sharing bipolar Zeta DC-DC converter

The invention discloses an automatic voltage-sharing bipolar Zeta DC-DC converter. The converter comprises a direct-current input source, a basic Zeta converter, m-1 homopolar expansion units and n reversed polarity voltage expansion units. Each of the homopolar and reversed polarity expansion units is composed of an inductor, two capacitors and a diode, and the input and output gain of the converter and the voltage stress of a switching device can be adjusted by adjusting the number of the expansion units. The converter provided by the invention has the advantages of simple control and drive circuit, wide input and output voltage adjustment range, low switching device voltage stress and the like, and is more suitable for the application occasions where positive and negative power supply output is needed and the input voltage and output voltage change range is large.
Owner:CHINA THREE GORGES UNIV

Input adaptive self-excited zeta converter

ActiveCN104038057BReduce freewheeling conduction lossLow current sense lossDc-dc conversionElectric variable regulationSelf excitedZeta converter
The invention relates to an input adaptive auto-excitation type Zeta converter. The input adaptive auto-excitation type Zeta converter comprises a main loop and an input adaptive control circuit which is used for adaptive current limit protection; the main loop comprises an input capacitor Ci, a PNP type BJT tube Q3, a capacitor C2, a diode D4, an inductor L1, an inductor L2, an output capacitor Co, a flywheel sub-circuit used for lowering the follow current conduction consumption and a drive circuit used for driving the PNP type BJT tube Q3; the drive circuit comprises an NPN type BJT tube Q2, a resistor R2, a resistor R4, a resistor R5 and a diode D1, and the input adaptive control circuit comprises an NPN type BJT tube Q1, a diode D2, a resistor R1, a resistor R3 and a resistor R6. According to the input adaptive auto-excitation type Zeta converter, the input adaptive control circuit controls the current of the inductor L1 or the collecting electrode current of the PNP type BJT tube Q3 and has a current limit function with the input adaptive characteristic, and moreover, the input adaptive control circuit also realizes smaller current detection consumption; the flywheel sub-circuit enables the follow current conduction consumption of the Zeta converter to be lowered.
Owner:沈阳钢中宝科技有限公司

Converter switch current decoupling circuit

The invention relates to a converter switch current decoupling circuit; for Buck, Boost and Buck-Boost converters, a switch current decoupling circuit is represented by taking an energy storage element as a center and a public branch, and with separated switch tube branch and diode branch; for Cuk and Zeta converters, if the branch circuit wherein an energy storage capacitor is located serves as the center branch of the circuit, the branch circuits where a first inductor and a first diode are located are arranged on the upper left and upper right of the central branch with an angle of 45 degrees; and branch circuits where a first switch tube and a second inductor are located are arranged on the lower left and lower right of the central branch with an angle of 45 degrees. Due to the adoption of the scheme, the circuit is simple and symmetrical, the physical process of energy storage and release of the energy storage element under the effect of the switch tube and the diode is achieved,the circuit is simple and easy to learn, and the circuit is a beneficial supplement of the existing basic DC-DC converter principle description.
Owner:NORTH CHINA UNIVERSITY OF TECHNOLOGY

Input adaptive auto-excitation type Zeta converter

ActiveCN104038057AReduce freewheeling conduction lossLow current sense lossDc-dc conversionElectric variable regulationPower flowInductor
The invention relates to an input adaptive auto-excitation type Zeta converter. The input adaptive auto-excitation type Zeta converter comprises a main loop and an input adaptive control circuit which is used for adaptive current limit protection; the main loop comprises an input capacitor Ci, a PNP type BJT tube Q3, a capacitor C2, a diode D4, an inductor L1, an inductor L2, an output capacitor Co, a flywheel sub-circuit used for lowering the follow current conduction consumption and a drive circuit used for driving the PNP type BJT tube Q3; the drive circuit comprises an NPN type BJT tube Q2, a resistor R2, a resistor R4, a resistor R5 and a diode D1, and the input adaptive control circuit comprises an NPN type BJT tube Q1, a diode D2, a resistor R1, a resistor R3 and a resistor R6. According to the input adaptive auto-excitation type Zeta converter, the input adaptive control circuit controls the current of the inductor L1 or the collecting electrode current of the PNP type BJT tube Q3 and has a current limit function with the input adaptive characteristic, and moreover, the input adaptive control circuit also realizes smaller current detection consumption; the flywheel sub-circuit enables the follow current conduction consumption of the Zeta converter to be lowered.
Owner:沈阳钢中宝科技有限公司

Double-edge constant on-time modulation voltage control method for switching converters

The invention discloses a switch converter double-edge constant breakover time modulation voltage type control method and a device thereof. According to relation between output voltages and voltage reference value, the switch converter double-edge constant breakover time modulation voltage type control method and the device thereof use a control time series formed by constant breakover, turn-off and constant breakover or a control time series formed by turn-off, constant breakover and turn-off for controlling breakover and turn-off of the switch converter switch tube. The switch converter double-edge constant breakover time modulation voltage type control method and the device thereof can be used for controlling a plurality of switch converters with a topological structure, such as a Buck converter, a Buck2 converter, a Cuk converter, a Zeta converter, a single tube normal shock converter, a double-tube normal shock converter, a push-pull converter, a push-pull normal shock converter, a half-bridge converter and a full-bridge converter. The switch converter double-edge constant breakover time modulation voltage type control method and the device thereof has the advantages of being simple in control, fast in transient response speed, high in voltage stabilization accuracy, and capable of not compensating network.
Owner:SOUTHWEST JIAOTONG UNIV
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