Title :
Research of Surge Protective Gap With Active-Energy-Coupling-Triggered Circuit
Author :
Yao, Xueling ; Chen, Jingliang ; Chen, Antong
Author_Institution :
State Key Lab. of Electr. Insulation & Power Equip., Xi´´an Jiaotong Univ., Xi´´an, China
Abstract :
A surge protective gap (SPG) with an active energy-coupling-triggered circuit is designed, and its discharge characteristics are studied. The experimental results show that the SPG with active-energy-coupling-triggered circuit and flashover trigger device has excellent surge protective characteristics. The gap distance is 5 mm, and the produced p · d is 90 Pa · mm. Moreover, with no active-energy-coupling-triggered circuit, the dc breakdown voltage is 2.32 kV, and the pulse breakdown voltage is 5.75 kV. Therefore, the voltage ratio, which is defined as the specific value of the pulse breakdown voltage and the dc breakdown voltage, is 2.48. When using the BaTiO3 flashover trigger device and the capacitor-coupling-triggered circuit and with 5-mm gap distance and p · d = 90 Pa · mm, the pulse breakdown voltage can reduce to 2.16 kV, the voltage ratio is close to one, and the response time is less than 100 ns. The results of the study lay a theoretical foundation for further research on enhancing the voltage protection level of the SPG.
Keywords :
surge protection; trigger circuits; BaTiO3; SPG; active-energy-coupling-triggered circuit; capacitor-coupling-triggered circuit; dc breakdown voltage; discharge characteristics; distance 5 mm; flashover trigger device; pulse breakdown voltage; surge protective characteristics; surge protective gap; voltage 2.32 kV; voltage 5.75 kV; voltage protection level; voltage ratio; Breakdown voltage; Couplings; Electric breakdown; Electrodes; Surge protection; Surges; Time factors; Active-energy-coupling-triggered circuit; response time; surge protective gap (SPG); voltage ratio;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2011.2166810