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ERIFLEX FLEXIBAR 3MTC 10X50X1
Reduces total installation cost; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); Weight savings and material savings compared to wire alternatives; RoHS; Traceability codes and designation part numbers printed on insulation; UR – ANSI/UL 67, ANSI/UL 891; CE, ERIFLEX FLEXIBAR – EN 61439-1; EAC compliant; ABS; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; Thin layers of tinned electrolytic copper formed into a stack; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; Dramatically smaller and more flexible than comparable cable based on ampacity; Better power density than cable with lower skin effect ratio; 100% production dielectric tested; No lugs needed, reducing installation time and improving resistance to vibration; Tinned copper allows for copper or aluminum conductor connections; RoHS compliant; UR – ANSI/UL 758; Bureau Veritas – ACE 14/163/02
ERIFLEX FLEXIBAR 3MTC 8X63X1
Traceability codes and designation part numbers printed on insulation; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); EAC compliant; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; CE, ERIFLEX FLEXIBAR – EN 61439-1; UR – ANSI/UL 758; UR – ANSI/UL 67, ANSI/UL 891; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; 100% production dielectric tested; ABS; RoHS; Thin layers of tinned electrolytic copper formed into a stack; Dramatically smaller and more flexible than comparable cable based on ampacity; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; Reduces total installation cost; No lugs needed, reducing installation time and improving resistance to vibration; Weight savings and material savings compared to wire alternatives; Tinned copper allows for copper or aluminum conductor connections; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; RoHS compliant; Better power density than cable with lower skin effect ratio; Bureau Veritas – ACE 14/163/02; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld
ERIFLEX FLEXIBAR 3MTC 3X80X1
Dramatically smaller and more flexible than comparable cable based on ampacity; Reduces total installation cost; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; RoHS; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; No lugs needed, reducing installation time and improving resistance to vibration; Bureau Veritas – ACE 14/163/02; Traceability codes and designation part numbers printed on insulation; Thin layers of tinned electrolytic copper formed into a stack; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); UR – ANSI/UL 758; Better power density than cable with lower skin effect ratio; ABS; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; Tinned copper allows for copper or aluminum conductor connections; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; 100% production dielectric tested; CE, ERIFLEX FLEXIBAR – EN 61439-1; UR – ANSI/UL 67, ANSI/UL 891; RoHS compliant; EAC compliant; Weight savings and material savings compared to wire alternatives
ERIFLEX FLEXIBAR 3MTC 5X80X1
Tinned copper allows for copper or aluminum conductor connections; Dramatically smaller and more flexible than comparable cable based on ampacity; ABS; No lugs needed, reducing installation time and improving resistance to vibration; Traceability codes and designation part numbers printed on insulation; UR – ANSI/UL 67, ANSI/UL 891; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); Bureau Veritas – ACE 14/163/02; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; RoHS; Weight savings and material savings compared to wire alternatives; 100% production dielectric tested; RoHS compliant; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; CE, ERIFLEX FLEXIBAR – EN 61439-1; UR – ANSI/UL 758; Thin layers of tinned electrolytic copper formed into a stack; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; EAC compliant; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; Better power density than cable with lower skin effect ratio; Reduces total installation cost
ERIFLEX FLEXIBAR 3MTC 6X80X1
UR – ANSI/UL 758; RoHS; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; Better power density than cable with lower skin effect ratio; Tinned copper allows for copper or aluminum conductor connections; ABS; Bureau Veritas – ACE 14/163/02; No lugs needed, reducing installation time and improving resistance to vibration; RoHS compliant; Weight savings and material savings compared to wire alternatives; Reduces total installation cost; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; Dramatically smaller and more flexible than comparable cable based on ampacity; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; UR – ANSI/UL 67, ANSI/UL 891; Thin layers of tinned electrolytic copper formed into a stack; CE, ERIFLEX FLEXIBAR – EN 61439-1; 100% production dielectric tested; Traceability codes and designation part numbers printed on insulation; EAC compliant; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244
ERIFLEX FLEXIBAR 3MTC 8X80X1
Better power density than cable with lower skin effect ratio; No lugs needed, reducing installation time and improving resistance to vibration; UR – ANSI/UL 67, ANSI/UL 891; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; Tinned copper allows for copper or aluminum conductor connections; Bureau Veritas – ACE 14/163/02; RoHS; CE, ERIFLEX FLEXIBAR – EN 61439-1; UR – ANSI/UL 758; Thin layers of tinned electrolytic copper formed into a stack; Dramatically smaller and more flexible than comparable cable based on ampacity; 100% production dielectric tested; RoHS compliant; Traceability codes and designation part numbers printed on insulation; ABS; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; Weight savings and material savings compared to wire alternatives; EAC compliant; Reduces total installation cost
ERIFLEX FLEXIBAR 3MTC 10X80X1
ABS; UR – ANSI/UL 758; CE, ERIFLEX FLEXIBAR – EN 61439-1; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; Bureau Veritas – ACE 14/163/02; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; UR – ANSI/UL 67, ANSI/UL 891; Reduces total installation cost; Better power density than cable with lower skin effect ratio; RoHS compliant; No lugs needed, reducing installation time and improving resistance to vibration; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); Traceability codes and designation part numbers printed on insulation; RoHS; EAC compliant; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; Tinned copper allows for copper or aluminum conductor connections; 100% production dielectric tested; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; Weight savings and material savings compared to wire alternatives; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; Thin layers of tinned electrolytic copper formed into a stack; Dramatically smaller and more flexible than comparable cable based on ampacity
ERIFLEX FLEXIBAR 3MTC 8X100X1
Traceability codes and designation part numbers printed on insulation; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; RoHS; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; Better power density than cable with lower skin effect ratio; EAC compliant; 100% production dielectric tested; UR – ANSI/UL 758; No lugs needed, reducing installation time and improving resistance to vibration; Tinned copper allows for copper or aluminum conductor connections; UR – ANSI/UL 67, ANSI/UL 891; CE, ERIFLEX FLEXIBAR – EN 61439-1; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; ABS; Reduces total installation cost; Dramatically smaller and more flexible than comparable cable based on ampacity; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; RoHS compliant; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); Weight savings and material savings compared to wire alternatives; Thin layers of tinned electrolytic copper formed into a stack; Bureau Veritas – ACE 14/163/02
ERIFLEX FLEXIBAR 3MTC 10X100X1
CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; Bureau Veritas – ACE 14/163/02; 100% production dielectric tested; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; Weight savings and material savings compared to wire alternatives; ABS; Better power density than cable with lower skin effect ratio; Tinned copper allows for copper or aluminum conductor connections; Thin layers of tinned electrolytic copper formed into a stack; Traceability codes and designation part numbers printed on insulation; RoHS; No lugs needed, reducing installation time and improving resistance to vibration; UR – ANSI/UL 67, ANSI/UL 891; RoHS compliant; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; CE, ERIFLEX FLEXIBAR – EN 61439-1; UR – ANSI/UL 758; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); Reduces total installation cost; Dramatically smaller and more flexible than comparable cable based on ampacity; EAC compliant
ERIFLEX FLEXIBAR 3MTC 3X20X1
Reduces total installation cost; Thin layers of tinned electrolytic copper formed into a stack; RoHS; No lugs needed, reducing installation time and improving resistance to vibration; Easily bent, folded, and twisted, improving assembly flexibility, shortening connections, and decreasing footprint; 100% production dielectric tested; ABS; UR – ANSI/UL 67, ANSI/UL 891; Weight savings and material savings compared to wire alternatives; Bureau Veritas – ACE 14/163/02; Connections made by punching and bolting directly through the copper laminates, clamping onto the end of the nVent ERIFLEX Flexibar, or welding using nVent ERICO Cadweld; UR – ANSI/UL 758; Tinned copper allows for copper or aluminum conductor connections; EAC compliant; CSA – CSA C22.2 No. 0, CSA C22.2 No. 210; Better power density than cable with lower skin effect ratio; cUR – CSA C22.2 No. 29, CSA C22.2 No. 244; Dramatically smaller and more flexible than comparable cable based on ampacity; RoHS compliant; Traceability codes and designation part numbers printed on insulation; Insulated by high-resistance, self-extinguishing PVC with less than 20% contact with conductor for high flexibility; UL 758 Appliance Wiring Material requirements for Cold Bend testing at -40°C and -50°C (-40°F and -58°F); CE, ERIFLEX FLEXIBAR – EN 61439-1