Current Limiting Fuse-Link

China 
                        Current Limiting Fuse-Link
                      manufacture and supplier

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Quick Details

Current Limiting Fuse-Link

Circle

High Voltage

High

500

660mm

100-200A

OEIpower

Cartons Pallets Wooden Case

IEC IEEE

China Nanyang

853890000

Product Details

The high-voltage back-up current-limiting fuse-links are designed for protection of systems which include
transformers, against the destructive results of short-circuits and overloads, by limiting the thermal and electro
dynamic effects of the short-circuit currents.
The fuse-links are complying with the industry standards – IEC 60282-1:2002, DIN 43625 and IEC 60787 – and
can be used both in outdoor and indoor applications.

High breaking capacity – up to 50 kA
Limitation of the short-circuit currents at low levels
Low power dissipation – more energy savings and less heating
Reliable interruption of the critical currents
Minimum breaking current is relatively low, starting from 3xIn
Low switching voltage – lower than 60 kV
Low level of the cut-off current
Unlimited lifetime due to the usage of pure silver melting element
Same design for both indoor and outdoor usage
Reliable proofing against humidity penetration of the fuse-link interior
Highly qualitative raw materials and components.
 

he melting elements, consisting of pure-silver wire or strip, having variable sections, are precisely wounded on a
ceramic carrier, ending with copper terminal parts. Inside the cylindrical cavity of the carrier is a helical wire with
the role of activating the striking system. The striker is used to indicate the blown of the fuse-link and it also can
activate other systems. There are also models without striker.
The carrier system is introduced in a ceramic tube, sealed at ends with protective caps of nickel-plated copper,
which are also acting as contacts when mounting in the basement. The inside space of the tube is filled with
material for extinguishing electrical arcs, made of quartz sand with tight-controlled purity and granularity. Inside
the fuse-link tube all the contacts are made through spot welding.
The cooper caps are mechanically attached to the ends of the tube and proofed against humidity penetration
through the use of O-shaped seals of high-temperature resistant rubber.
The caps, which are the contact parts of the fuse-link, are of two types, according to specifications of DIN 43625
and IEC 60282-1:

 

When the current is between the minimal breaking and the nominal breaking values the fuse element melts and
evaporates, appearing the electrical arc. The arc is cooled and extinguished by the extinguishing element of the
fuse-link, thus ensuring the protection of the main circuit against damages.
 

 

S/N Description Units Schedule A Schedule B
1 Current ratings A 5  
2 Frequency Hz 50  
3 Rated Speed ratio   Type K as per IEC
60282 -2
 
4 Class of fuse link   Class B as per IEC
60282-2
 
5 Fuse element   Tin or Silver  
6 Following Routine test results shall be provided on delivery of fuse links  
 
 
 
Yes/No
a) a static strength test; and Yes  
b) a resistance test, with the
fuse-link under strain.
 
 
 
Yes
 
7 The following tests shall be performed on one fuse-link per batch and
test results provided on
delivery of  fuse links:
 
 
 
 
Yes/No
 
a)confirmation of the time/current characteristics; and
 
 
 
 
Yes
 
b) a dynamic strength test. Yes  
8 Drawing showing construction and dimensions as per figure
1 below to be provided
with bid
Yes/No Yes  
9 Previous type tests reports/certificate to be
provided on bid.
 
Yes/No
 
Yes
 
10 Altitude above sea level m 1400  
11 Ambient operating oC -1 to 40  
Performance Characteristic
Applied standard IEEE C37.42-2009
Catalog number  
Nominal system voltage kV 22
Rated Frequency Hz 50
Rated m aximum(design) voltage 27
Rated Continuous current A-RMS 100
Rated Interrupting current asymmetrical/symmetrical A-RMS 12000/8000
BIL 1.2×50 µs kV-peak 125
Minimum critical impulse flashover voltage(CFO)KV peak 140
Dry withstand voltage kV-RMS 42
Wet withstand voltage kV-RMS 36
Creepage distance to group Min.mm 320
Minimum creepage factor of insulator (Creepage Distance/arcing distance) 2
Performance Characteristic
Applied standard IEC60282-2
Catalog number  
Nominal system voltage kV 11
Rated Frequency Hz 50
Rated m aximum(design) voltage 12
Rated Continuous current A-RMS 100
Rated Interrupting current asymmetrical/symmetrical A-RMS 12000/8000
BIL 1.2×50 µs kV-peak 125
Minimum critical impulse flashover voltage(CFO)KV peak 140
Dry withstand voltage kV-RMS 42
Wet withstand voltage kV-RMS 36
Creepage distance to group Min.mm 372
Minimum creepage factor of insulator (Creepage Distance/arcing distance) N/A
Performance Characteristic
Applied standard IEEE C37.42-2009
Catalog number  
Nominal system voltage kV 33
Rated Frequency Hz 50
Rated m aximum(design) voltage 38
Rated Continuous current A-RMS 100
Rated Interrupting current asymmetrical/symmetrical A-RMS 8000/5000
BIL 1.2×50 µs kV-peak 150
Minimum critical impulse flashover voltage(CFO)KV peak 165
Dry withstand voltage kV-RMS 70
Wet withstand voltage kV-RMS 60
Creepage distance to group Min.mm 650
Minimum creepage factor of insulator (Creepage Distance/arcing distance) 2.3

 

  DIMENSION(mm)
RATED CURRENT
(A)
A B C D L MN
1 to 25 12.5+0.2 19.0+0.2 6.5 2.0 533,600,787
30 to 40 12.5+0.2 19.0+0.2 8.0 3.0 533,600,787
50 to 100 19.0+0.3 not applicable 9.0 5.0 533,600,787
140 to 200 19.0+0.3 not applicable 13.0 7.0 533,600,787

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