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In electrical engineering, a disconnector, disconnect switch or
isolator switch is used to ensure that an electrical circuit is
completely de-energized for service or maintenance. Such switches
are often found in electrical distribution and industrial
applications, where machinery must have its source of driving power
removed for adjustment or repair. High-voltage isolation switches
are used in electrical substations to allow isolation of apparatus
such as circuit breakers, transformers, and transmission lines, for
maintenance. The disconnector is usually not intended for normal
control of the circuit, but only for safety isolation.
Disconnectors can be operated either manually or automatically.
Unlike load switches and circuit breakers, disconnectors lack a
mechanism for suppression of electric arcs, which occurs when
conductors carrying high currents are electrically interrupted.
Thus, they are off-load devices, with very low breaking capacity,
intended to be opened only after current has been interrupted by
some other control device. Safety regulations of the utility must
prevent any attempt to open the disconnector while it supplies a
circuit. Standards in some countries for safety may require either
local motor isolators or lockable overloads (which can be
padlocked).
Disconnectors have provisions for a lockout-tagout so that
inadvertent operation is not possible. In high-voltage or complex
systems, these locks may be part of a trapped-key interlock system
to ensure proper sequence of operation. In some designs, the
isolator switch has the additional ability to earth the isolated
circuit thereby providing additional safety. Such an arrangement
would apply to circuits which inter-connect power distribution
systems where both ends of the circuit need to be isolated.
A switch disconnector combines the properties of the disconnector
and the load switch, so it provides the safety isolation function
while being able to make and break nominal currents.
Item | Unit | Data | ||
Rated voltage | KV | 40.5/72.5/126 | ||
Rated lnsulating level | 1min power fequncy | To earth | KV | 95/140/230 |
Fracture | KV | 115/160/245 | ||
lmpulse voltage withstand | To earth | KV | 185/325/550 | |
Fracture | KV | 215/375/630 | ||
Rated frequency | HZ | 50 | ||
Rated current | A | 630/1250/1600/2000 | ||
Rated short time current withstand | KA | 20/31.5/40/40 | ||
Rated peak current withstand | KA | 50/80/100/100 | ||
Rated short circuit cont.current:Mian/earth blade | S | 4/2 | ||
Rated teminal mechanical load | Vertical | N | 750/1000 | |
Horizontal | N | 500/750 | ||
Vertical Force | N | 750/1000 | ||
Creepage distance | MM | 1013/1256,1813/2248,3150/3906 | ||
Mechanical life | Times | 2000 | ||
Manual operating mechanism | Model | CS17,CS17G | ||
Voltage of control circuit | V | AC220 DC110 DC220 | ||
Electic operating mechanism | Voltage of motor | V | AC380 DC220 DC220 | |
Voltage of control circuit | V | AC220 DC110 DC220 |
Rated volt | A | A1 | H | E | C | D |
40.5 | 1200 | 1075 | 1070 | 1400 | 240 | 300 |
72.5 | 1600 | 1285 | 1295 | 2200 | 240 | 300 |
126 | 2000 | 1660 | 1695 | 3000 | 240 | 300 |
Q1. Can we have our logo or company name to be printed on your
products or the package?
Yes,you can.Logo and company name can be printed on our products by
silk screen printing.You can send us the artwork by email in JPEG
or TIFF format.
Q2. What is lead time?
Usually 3-15 working days, On-Time delivery
Q3. Why us?
All products comply with the requirements of GB national standards,
IC, ANSI and other international standards, and the requirements of
company's technology standards.
Q4. How do you make our business long-term and good relationship?
1. Our high quality and competitive price are the most important
factors to maintain long-term and good relation -ship with our
customers.
2. Good service is our basic principle for every customers.
Q5. Can I have a visit to your factory before the order?
Sure,welcome to visit our factory.