• Fuse links for expulsion fuse cutout
  • Fuse links for expulsion fuse cutout
Fuse links for expulsion fuse cutout
discuss personally
Model
K-200
K-100
K-50
K-10
Basic info
Brand Wone
Model NO. Fuse links for expulsion fuse cutout
Rated capacity of transformer 200kVA
Full load current of transformer 11.55A
Series Fuse Links
Product Detail

Characteristic brief :

Type K, type T, type H and type SLOW-FAST fuse link manufacture and test according to the latest international standard IEC 60282-2:2008 & IEEE Std C37.41-2008 & IEEE Std C37.42-2009.

  • Fusible element adopts the material of silver-copper alloy.Using precision technology and strict testing to guarantee accurate characteristics of time-current.

  • Fusible element be crimping to fasten cable wire,and fixed by high strength strain wire.That guarantee excellent mechanical strength.it will not be affected,even if under external factors such as vibration and high current impact.

  • The Arc extinguishing tube has excellent performance of arc extinguishing when low current overload fault.

  • We also supply Type K and Type T twin pigtails fuse link, The twin pigtails fuse link is convenient and easier to install in the fuse cutout than conventional single pigtail fuse links. The twin pigtails attach under the attachment stud on each side separately.

Technical Parameters:

Type K Fuse Links:

企业微信截图_17338814888284.png

企业微信截图_17338816245661.png

  • 11-15kv Fuse link length 21'(533mm)

  • 24-27kv Fuse link length 23'(584mm)

  • 33-38kv Fuse link length 31'(787mm)

Type T Fuse Links:

企业微信截图_17338818114885.png

企业微信截图_17338818843772.png

  • 11-15kv Fuse link length 21'(533mm)

  • 24-27kv Fuse link length 23'(584mm)

  • 33-38kv Fuse link length 31'(787mm)

Type H Fuse Links:

企业微信截图_17338821717890.png

企业微信截图_17338838215703.png

  • 11-15kv Fuse link length 21'(533mm)

  • 24-27kv Fuse link length 23'(584mm)

  • 33-38kv Fuse link length 31'(787mm)

Type Slofast Fuse Links:

企业微信截图_17338840182461.png

企业微信截图_17338840669200.png


  • 11kv Fuse link leght 21'(533mm)

  • 27kv Fuse link leght 23'(584mm)

  • 33kv Fuse link leght 31'(787mm)

Type K Fuse Link Selection For Using Of Distribution Transformer Protection.The corresponding fuse is selected according to the time-current characteristics of the transformer,usually according to the rated current of the transformer.

企业微信截图_17338842458745.png


NOTE: Rated capacity of transformer <160kVA,the rated current of the selected fuse links should be 2-3 times of the full load current of the transformer. Rated capacity of transformer >160kVA,the rated current of the selected fuse links should be 1.5-2 times of the full load current of the transformer.

企业微信截图_17338843025724.png

企业微信截图_1733884296907.png

企业微信截图_17338842907752.png



Know your supplier
Wone
Main Categories
High voltage/Low voltage/Wire cable/Instrument meters/New energy/Tester/Production equipment/Generator/Electrical fittings/Integrated Electrical Equipment
Business Type
Design/Manufacture/Sales
Highest Annual Export (USD)
$50,000,000
Professional Experience
1 years
Workplace
65666m²m²
占位
占位
Related Products
Related Knowledges
Impact Analysis of Voltage Transformer Installation on Line Side vs. Load Side of Power Inlet Circuit Breaker for (ATS)
Impact Analysis of Voltage Transformer Installation on Line Side vs. Load Side of Power Inlet Circuit Breaker for (ATS)
Automatic backup switching (ABTS) devices are core components ensuring the safe, reliable, and stable operation of factory power grids. Their startup logic strictly follows the dual criteria of "loss of voltage in the working power supply + no - current detection", effectively avoiding misjudgments caused by secondary disconnection of voltage transformers (VTs) or maloperations of ABTS due to secondary circuit faults of current transformers (CTs). The activation condition requires both "no volta
James
07/03/2025
What tests need to be done on voltage transformers?
What tests need to be done on voltage transformers?
Practical Experience Sharing from an Electrical Engineer in the FieldBy Oliver, 8 Years in the Electrical IndustryHi everyone, I'm Oliver, and I've been working in the electrical industry for 8 years.From early involvement in substation commissioning and equipment inspection, to now managing the maintenance and fault analysis of entire power systems, one of the most frequently encountered devices in my work has been the voltage transformer (VT / PT).Recently, a friend who's just starting out ask
Oliver Watts
07/03/2025
What are the development trends of voltage transformers?
What are the development trends of voltage transformers?
By Echo, 12 Years in the Electrical IndustryHi everyone, I'm Echo, and I've been working in the electrical industry for 12 years.From early involvement in commissioning and maintenance of distribution rooms to later participation in electrical system design and equipment selection for large-scale projects, I’ve witnessed how voltage transformers have evolved — from traditional analog devices to intelligent, digital components.The other day, a new colleague from a power company asked
Echo
07/02/2025
Design of Electromagnetic Compatibility Performance for Electronic Voltage Transformers
Design of Electromagnetic Compatibility Performance for Electronic Voltage Transformers
With the rapid development of power systems, electronic voltage transformers (EVTs), as key measurement devices in power systems, their performance stability and reliability are crucial for the safe and stable operation of power systems. The electromagnetic compatibility (EMC) performance, as one of the core indicators of EVTs, is directly related to the ability of the device to work normally in complex electromagnetic environments and whether it will cause electromagnetic interference to other
Dyson
07/02/2025
Case Analysis of Abnormal Secondary Circuits in Voltage Transformers
Case Analysis of Abnormal Secondary Circuits in Voltage Transformers
1. Fault SituationIn September 2023, as a front - line fault maintenance worker, I detected abnormal voltage on the 10kV Section I bus of a substation during monitoring duty and informed the operation and maintenance team. The monitoring system showed: U0 = 0 kV, Ua = 6.06 kV, Ub = 5.93 kV, Uc = 6.05 kV, Uab = 10.05 kV, Ubc = 5.94 kVMy team and I rushed to the site. We suspected the secondary air circuit breaker of the 10kV Section I bus voltage transformer was closed and found the U - phase fus
Felix Spark
07/02/2025
What are the causes of failure of ferromagnetic voltage transformers in new energy power stations?
What are the causes of failure of ferromagnetic voltage transformers in new energy power stations?
By Felix, 15 Years in the Electrical IndustryHi everyone, I'm Felix, and I've been working in the electrical industry for 15 years.From early involvement in traditional substation commissioning and maintenance to now managing electrical system operations for multiple photovoltaic and wind power projects, one of the most frequently encountered devices I deal with is the Electromagnetic Voltage Transformer (PT).The other day, a shift operator at a new energy plant asked me:“We have an electr
Felix Spark
07/02/2025
×
Inquiry
Download
Experts Electrical is dedicated to serving the personnel in the global power industry.
Join Experts Electrical, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!