Fast and cheap: Use existing duct systems with speedpipe and save civil engineering costs for the broadband expansion.

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small outer diameter for optimum exploitation of the existing duct capacity | transparent inspection windows show the occupation with cables | can also be blown into occupied PE-HD-protective pipes (? 40, 50, 63 mm) | reusable even after blowing out installed fibre optic cables – like on the first day | sliding ribs specified for any dimension for an optimal air cushion of the optical fibre during the blowing in process | available in various dimensions in strong colours for better distinction | they are delivered on a wooden one-way spool which is optimised for transport and installation

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Fast and cheap: Use existing duct systems with speedpipe and save civil engineering costs for the broadband expansion.

(0)

small outer diameter for optimum exploitation of the existing duct capacity | transparent inspection windows show the occupation with cables | can also be blown into occupied PE-HD-protective pipes (? 40, 50, 63 mm) | reusable even after blowing out installed fibre optic cables – like on the first day | sliding ribs specified for any dimension for an optimal air cushion of the optical fibre during the blowing in process | available in various dimensions in strong colours for better distinction | they are delivered on a wooden one-way spool which is optimised for transport and installation

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Fast and cheap: Use existing duct systems with speedpipe and save civil engineering costs for the broadband expansion.

(0)

small outer diameter for optimum exploitation of the existing duct capacity | transparent inspection windows show the occupation with cables | can also be blown into occupied PE-HD-protective pipes (? 40, 50, 63 mm) | reusable even after blowing out installed fibre optic cables – like on the first day | sliding ribs specified for any dimension for an optimal air cushion of the optical fibre during the blowing in process | available in various dimensions in strong colours for better distinction | they are delivered on a wooden one-way spool which is optimised for transport and installation

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Fast and cheap: Use existing duct systems with speedpipe and save civil engineering costs for the broadband expansion.

(0)

small outer diameter for optimum exploitation of the existing duct capacity | transparent inspection windows show the occupation with cables | can also be blown into occupied PE-HD-protective pipes (? 40, 50, 63 mm) | reusable even after blowing out installed fibre optic cables – like on the first day | sliding ribs specified for any dimension for an optimal air cushion of the optical fibre during the blowing in process | available in various dimensions in strong colours for better distinction | they are delivered on a wooden one-way spool which is optimised for transport and installation

0.00ر.ق

Fast and cheap: Use existing duct systems with speedpipe and save civil engineering costs for the broadband expansion.

(0)

small outer diameter for optimum exploitation of the existing duct capacity | transparent inspection windows show the occupation with cables | can also be blown into occupied PE-HD-protective pipes (? 40, 50, 63 mm) | reusable even after blowing out installed fibre optic cables – like on the first day | sliding ribs specified for any dimension for an optimal air cushion of the optical fibre during the blowing in process | available in various dimensions in strong colours for better distinction | they are delivered on a wooden one-way spool which is optimised for transport and installation

0.00ر.ق

Fast and cheap: Use existing duct systems with speedpipe and save civil engineering costs for the broadband expansion.

(0)

small outer diameter for optimum exploitation of the existing duct capacity | transparent inspection windows show the occupation with cables | can also be blown into occupied PE-HD-protective pipes (? 40, 50, 63 mm) | reusable even after blowing out installed fibre optic cables – like on the first day | sliding ribs specified for any dimension for an optimal air cushion of the optical fibre during the blowing in process | available in various dimensions in strong colours for better distinction | they are delivered on a wooden one-way spool which is optimised for transport and installation

0.00ر.ق

Fast and cheap: Use existing duct systems with speedpipe and save civil engineering costs for the broadband expansion.

(0)

small outer diameter for optimum exploitation of the existing duct capacity | transparent inspection windows show the occupation with cables | can also be blown into occupied PE-HD-protective pipes (? 40, 50, 63 mm) | reusable even after blowing out installed fibre optic cables – like on the first day | sliding ribs specified for any dimension for an optimal air cushion of the optical fibre during the blowing in process | available in various dimensions in strong colours for better distinction | they are delivered on a wooden one-way spool which is optimised for transport and installation

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Half-shell branch.

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Application The half shell branch HSA is used for passing through and branching cables. It is divided along its longitudinal axis and is tensile in the master as well as in the branching direction. The fitting is sand-tight and can easily and quickly be installed. Colour Black (BK) PART DESCRIPTION HSA_110/50-90?-BK Package Content 90pcs. Package …
Continue reading Half-shell branch.

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House lead-ins ADSB/ADSB-D/ADSB-F.

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water impact classes according to DIN 18533: W1.1-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground; W1.2-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground with drainage | gas and water tightness: 1 bar | principle of sealing: integrated sealing element | installation in concrete wall: no auxiliary material needed | installation in hollow block: sanded sleeve

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House lead-ins ADSB/ADSB-D/ADSB-F.

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water impact classes according to DIN 18533: W1.1-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground; W1.2-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground with drainage | gas and water tightness: 1 bar | principle of sealing: integrated sealing element | installation in concrete wall: no auxiliary material needed | installation in hollow block: sanded sleeve

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House lead-ins ADSB/ADSB-D/ADSB-F.

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water impact classes according to DIN 18533: W1.1-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground; W1.2-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground with drainage | gas and water tightness: 1 bar | principle of sealing: integrated sealing element | installation in concrete wall: no auxiliary material needed | installation in hollow block: sanded sleeve

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House lead-ins ADSB/ADSB-D/ADSB-F.

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water impact classes according to DIN 18533: W1.1-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground; W1.2-E: Soil moisture and non-pressing water in floor slabs and walls in contact with the ground with drainage | gas and water tightness: 1 bar | principle of sealing: integrated sealing element | installation in concrete wall: no auxiliary material needed | installation in hollow block: sanded sleeve

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