Porcelain fuse holder KII-34 DII/E27 25A LE27SK
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TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
Porcelain fuse holder KII-34 DII/E27 25A LE27SK
Safety and reliability in a traditional design.
Fuse holder made of porcelain, designed to work with DII/E27 fuse links. This is a solid and proven solution that will find application in electrical installations requiring protection against overload and short circuit. Porcelain, as an insulating material, provides high resistance to weather conditions and mechanical damage.
Construction and application
Fuse holder KII-34 is an element mounted in an electrical circuit that accepts a fuse link. Its construction based on porcelain guarantees good insulation and durability. Designed for use with fuses with DII characteristics, which means slow blowing – ideal for circuits with devices with high starting current, e.g. motors. It works with standard E27 threads, which facilitates the replacement of worn elements.
Key features and benefits
- Material: Porcelain construction ensures durability and resistance to mechanical damage and weathering. Porcelain is a non-flammable material, which increases the safety of the installation.
- Rated current: 25A – allows protection of circuits with medium power consumption.
- Size: DII – compatible with standard fuse links of this type, which facilitates replacement and servicing.
- Thread type: E27 – ensures easy mounting and removal of the fuse link.
- DII characteristic: Provides delayed tripping, which minimizes the risk of unnecessary circuit interruption during short-term current surges (e.g. when starting motors). This is particularly important for installers working with different types of receivers.
- Versatility: It will work both in newly built installations and in the modernization of older facilities.
Fuse holder KII-34 is a simple but effective solution for ensuring electrical safety in the home or workplace. Its solid construction and reliable operation guarantee long-term protection of the electrical installation against the effects of overloads and short circuits.

