Customization: | Available |
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Type: | High-voltage |
Structure: | Three-column Disconnector |
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General |
LBIS Type outdoor on load break switch disconnector contained in this list are destined to switch stub lines and ring main lines or transformers (It can be equipped with MV HRC fuse links as short circuit protection fuction) or for switching under on load conditions. This disconnector complies with IEC/IEEE and DVE-recommendation standards especially comply with DIN VDE 0670 part 3 and IEC 60265, IEC 129. |
Features |
All steels are made of either in stainless steel or hot-dip galvanized steel. 1. Solid and stable base frame. 10. High reliabilty up to 1000 cycles (depending on the running current). 11. All contacts are either sliver or tin-plated. |
Environmental Conditions |
Ambient Temperature: -40ºC - +50ºC Altitude: 2500m Frequency: 50Hz / 60Hz Maximum Wind Speed: 35m/s |
No. | Item | Unit | Data | |||
1 |
Rated voltage | kV | 12 | 24 | 36 | |
2 | Rated frequency | Hz | 50/60 | |||
3 | Rated current | A | 200/400/630 | |||
4 | Rated short circuit withstand current (1S) | kA | 20 | |||
5 | Rated peak withstand current (1S) | kA | 50 | |||
6 | Rated making current | kA | 31.5-50 | |||
7 | Rated insulation level (HV) | lightning impulse | kV | 75/85 | 125/145 | 170/195 |
Power frquency withstand | 45 | 55/75 | 75/100 | |||
8 |
Rated short circuit breaking capacity cos.Φ (0.7) Without maintenance of contacts |
/ | ||||
for active circuits | 20 breakings | A | 630 | 630 | 400 | |
30 breakings | 400 | 400 | 300 | |||
40 breakings | 300 | 300 | 250 | |||
50 breakings | 250 | 250 | 170 | |||
75 breakings | 170 | 170 | 160 | |||
120 breakings | 110 | 110 | 110 | |||
200 breakings | 65 | 65 | 65 | |||
280 breakings | 50 | 50 | 50 | |||
9 | For ring circuits breaking capacity | 630 | 400 | 250 | ||
10 | Rated breaking capacity of transformer | 50 | ||||
11 | Rated breaking capacity of cable charging | 11 | ||||
12 | Rated breaking capacity of earthing fault | 56 |
An electrical device for the reliable disconnection of certain sections of a high-voltage electrical network when there is no current in them. The use of isolating switches (either alone or in combination with high-speed short-circuiting devices) makes it possible to simplify the arrangement of switching points and transformer substations and to eliminate expensive high-voltage circuit breakers.
In the case of damage to certain sections of a network, the circuit breakers operate first, and then the isolating switches automatically disconnect the damaged section, after which the circuit breakers close again and restore electric power to the rest of the consumers on the network. Isolating switches are also used to disconnect and reconnect unloaded transformers and sections of power lines during operation. An isolate switch must provide a reliable connection in case of a random occurrence of a short circuit in the network. An important characteristic of an isolating switch is a short operate time, particularly the disconnect time, which must not exceed 0.1 sec.