Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Ultra flexible, basic insulated stranded wire. Oxygen-rich copper wire. Silicone-insulated wires are used in a wider temperature range than comparable TPE insulated wires. The material is also characterised by good ageing resistance, high impact strength, elongation at break and tear resistance. Examples of use: Internal wiring of moving components and modules under high thermal stress. Highly flexible connecting cables for working with low voltages in the laboratory.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.
Halogen-free single conductor with improved properties in the event of fire. They are intended for use in dry rooms, for cabling lighting, equipment, switchboard and distribution panels, in buildings containing large numbers of people or material assets, as well as in transportation systems.