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Harmony XB4, Key switch selector head, metal, black, Ø22, key n°455, 3 positions, stay put

Laos: Ei Hankija laovaru: Jah Minimaalne tellimuse kogus: 1
Hind (ilma KM-ta):
18,80 €
Hind kehtib kuni 10.01.25
EAN: 3389110889307
MPN: ZB4BG9
Pakend: 1
Karp: 5

Technical Information

Toote seisukord Uus
Tootja nimi Harmony XB4, Key switch selector head, metal, black, Ø22, key n°455, 3 positions, stay put
Bränd Schneider Electric
Kategooriad Juhtimisseadmed, nupud
Päritoluriik FR
Ava läbimõõt 22.5 mm
Lüliti asendite arv 3
Ühilduv valgustusega No
Vedrutagastus No
Värvitud äärisõngaga Kroom
Kaitseaste (IP), esikülg IP66
Ava laius 0 mm
Ava kõrgus 0 mm
Esikülje materjal Metall
Esirõngaga Yes
Läätse tüüp Ümmargune
Juhtelemendi liik Võti
Juhtelemendi värvus Muul viisil
Lülitusfunktsiooni lukustus Yes
Kaitseaste (NEMA) Muul viisil

Pakendamise üksikasjad

Pakkimistase 1 3389110889307
Pakkimistase 2 3389110889302
Pakkimistase 3 3389110889305

Allalaadimised

Kirjeldus

This Harmony XB4, black head with key (key no.455) for key selector switch has 3 positions, operates with stay-put mechanism with key withdrawal on left position. This head with key provides a versatile interface for controlling your machines. It is easily installed and replaced on compatible complete key selector switch units to provide a secure manner for authorized staff to switch between process or machine operating modes. It is impact resistant, dust resistant, water resistant and vibration resistant thanks to its IP66. It has a metal bezel, this makes it Ideal for applications requiring high impact and vibration resistance. It is designed to fit in a standard 22mm cutout, ensuring compatibility when installing in pre-existing machinery. Secure machine and system operation with a key, only available to authorized operators. Its wide range of operating temperatures from -40°C to 70°C allows versatility in usage of product. Key removal allowed in only one of the positions, allowing for advanced interlocking between various parts of a machine or process, while limiting human errors.