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High-current thyristor switch is designed for impulse discharge of high voltage capacitor bank. Its application makes it possible to supply very high energy to the receiver in a short time with high repeatability, e.g. in the processes of sintering metal powders or supplying high power lasers. Automatic switch operation with frequency up to 20 Hz is possible. The discharge current is oscillatory in nature with strongly decreasing amplitude and short duration. The amplitude of the first half-waves of the discharge current of a 300 μF battery charged to 10 kV can reach 120 kA and the whole waveform has a duration from 1 ms to 3 ms.
Discharge current of the capacitor bank and voltage on the thyristor switch
A large-current switch is built with a thyristor branch and a diode branch connected in opposition. Four elements are connected in series in both branches. Each thyristor has its own electronic circuit to generate the gate pulse and to control the thyristor state and gate pulse parameters. If a thyristor or its control is detected to be defective, the switch is blocked, which protects it from damaging the other thyristors. Due to the high voltage, forced cooling of the thyristors and diodes with transformer oil is used. A heat exchanger allows the oil to be cooled with water from a chiller. The oil flow, oil temperature and oil level in the tank are controlled.
Dane techniczne
High-current thyristor switch parameters | |
---|---|
Capacitor battery voltage | max. 10 kVDC |
Nature of the discharge current | oscillatory, fading |
Discharge current amplitude | max. 120 kA |
Duration of discharge | 0,8÷4 ms depending on discharge circuit parameters |
Discharge current rise steepness | 4000 A/μs |
Number of switch branches | - one thyristor branch - one diode branch |
Number of thyristors in the branch | 4 pcs. thyristors connected in series |
Maximum branch blocking voltage | 20 kVDC |
Number of diodes per branch | 4 pcs. diodes connected in series |
Maximum branch reverse voltage | 24 kVDC |
Cooling diodes and thyristors | - Forced with transformer oil - Water-cooled oil from a chiller |
Oil tank capacity | 100 l |
Thyristor branch dimensions | 480 x 290 x 290 [mm] |
Diode branch dimensions | 510 x 290 x 290 [mm] |
Weight of the connector | 195 kg |
Thyristor control | |
Generation of a gate pulse | electronic circuitry at the cathode potential of each thyristor |
Gate pulse parameters | - pulse amplitude - 20 A - steepness of rise of pulse front - 200 A/μs - pulse duration - 10μs |
Diagnostics | |
Checking the condition of switch components | electronic circuitry at the cathode potential of each thyristor and each diode |
Controlled thyristor parameters | - voltage on thyristor - gate pulse amplitude |
Criterion for evaluating the fitness of a thyristor and its control | simultaneous occurrence of voltage on thyristor and gate pulse of assumed amplitude |
Controlled diode parameters | voltage on diode |
Assessment of the condition of switch components | electronic circuit at ground potential |
Criterion for evaluating the condition of the connector | The switch is fit when there are four pulses each from the diode and thyristor branches. Absence of any pulse means unfitness of the switch. |
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High-current thyristor switch is designed for impulse discharge of high voltage capacitor bank. Its application makes it possible to supply very high energy to the receiver in a short time with high repeatability, e.g. in the processes of sintering metal powders or supplying high power lasers. Automatic switch operation with frequency up to 20 Hz is possible. The discharge current is oscillatory in nature with strongly decreasing amplitude and short duration. The amplitude of the first half-waves of the discharge current of a 300 μF battery charged to 10 kV can reach 120 kA and the whole waveform has a duration from 1 ms to 3 ms.
Discharge current of the capacitor bank and voltage on the thyristor switch
A large-current switch is built with a thyristor branch and a diode branch connected in opposition. Four elements are connected in series in both branches. Each thyristor has its own electronic circuit to generate the gate pulse and to control the thyristor state and gate pulse parameters. If a thyristor or its control is detected to be defective, the switch is blocked, which protects it from damaging the other thyristors. Due to the high voltage, forced cooling of the thyristors and diodes with transformer oil is used. A heat exchanger allows the oil to be cooled with water from a chiller. The oil flow, oil temperature and oil level in the tank are controlled.
Dane techniczne
High-current thyristor switch parameters | |
---|---|
Capacitor battery voltage | max. 10 kVDC |
Nature of the discharge current | oscillatory, fading |
Discharge current amplitude | max. 120 kA |
Duration of discharge | 0,8÷4 ms depending on discharge circuit parameters |
Discharge current rise steepness | 4000 A/μs |
Number of switch branches | - one thyristor branch - one diode branch |
Number of thyristors in the branch | 4 pcs. thyristors connected in series |
Maximum branch blocking voltage | 20 kVDC |
Number of diodes per branch | 4 pcs. diodes connected in series |
Maximum branch reverse voltage | 24 kVDC |
Cooling diodes and thyristors | - Forced with transformer oil - Water-cooled oil from a chiller |
Oil tank capacity | 100 l |
Thyristor branch dimensions | 480 x 290 x 290 [mm] |
Diode branch dimensions | 510 x 290 x 290 [mm] |
Weight of the connector | 195 kg |
Thyristor control | |
Generation of a gate pulse | electronic circuitry at the cathode potential of each thyristor |
Gate pulse parameters | - pulse amplitude - 20 A - steepness of rise of pulse front - 200 A/μs - pulse duration - 10μs |
Diagnostics | |
Checking the condition of switch components | electronic circuitry at the cathode potential of each thyristor and each diode |
Controlled thyristor parameters | - voltage on thyristor - gate pulse amplitude |
Criterion for evaluating the fitness of a thyristor and its control | simultaneous occurrence of voltage on thyristor and gate pulse of assumed amplitude |
Controlled diode parameters | voltage on diode |
Assessment of the condition of switch components | electronic circuit at ground potential |
Criterion for evaluating the condition of the connector | The switch is fit when there are four pulses each from the diode and thyristor branches. Absence of any pulse means unfitness of the switch. |
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