low highest Basic requirements lll unsupported 400 m Travel distance lll none highest Oil resistance fJ noneO 180 Torsion Motor cabie I PVC I chainflex CF31 Class 5.5.2.1 Properties and approvals , , UV resistance Medium. For heavy duty applications PVC outer jacket , I Oil-resistant (following DIN EN 50363-4-1), Class 2. Shielded lt: .l Oil resistance oil Oil-resistant Flame retardant Flame retardant According to IEC 60332-1-2, CEi 20-35, FT1, VW-1 Silicone-free Free from silicone which can affect paint adhesion (following PV 3.1 O. 7 - status Damic information 1992). Bend radius e-chain linear minimum 7.5 x d UUCSA Style 10492 and 2570, 1 OOO V, 80 c ( flexible minimum 6xd fixed minimum 4xd NFPA Following NFPA 79-2012 chapter 12.9. CC:- Temperature e-chain linear +5 C to +70 C flexible -5 c to +70 C (following DIN EN 60811-504) Certificate no. RU C-DE.ME77.B.02324 (TR ZU) fixed -15 C to + 70 C following DIN EN 50305) lR EAC CC:- vmax. unsupported 10 m/s CTP Certificate no. C-DE.PB49.B.00420 (Fire safety) e gliding 5m/s 2 CC:- amax. 80 m/s CEi Following CEi 20-35. o:J Travel distance Unsupported travel distances and up to 100 m for gliding applications, Class 5 Lead-free Following 2011/65/EU (RoHS-II). Cabie structure c1eanroom According to ISO Class 2. Outer jacket materia complies with CF5.10.07, 9 2 Conductor Ceres < 1 O mm : Stranded conductor in especially bending-resistant design tested by IPA according to standard 14644-1. consisting of bare copper wires (following DIN EN 60228). Following 2014/35/EU. 2 Ceres .a 1 O mm : Conductor consisting of pre-wound conductor bundles (fol lowing DIN EN 60228). Core insulation Mechanically high-quality, especially low-capacitance TPE mixture. ( Core structure Cores wound with a short pitch length around a high tensile strength centre imus element. Temperatura, R min. factor x d Rmin. factor x d R min. factor x d Core identification Black cores with white numerals, one core green-yellow. from/to C 1. Core: U/ L 1 / C / L+ 2. Core: V/ L2 +5/+15 10 11 12 3. Core: W I L3 / D / L- 4. Core: 4 / N +15/+60 7.5 8.5 9.5 lnner jacket PVC mixture, adapted to suit the requirements in e-chains . +60/+70 10 11 12 ( * Higher number of double strokes Online lifetime calculation: www.igus.eu/chainexlife r J) Overall shield Extremely bending-resistant braiding made of tinned copper wires. Coverage approx. 70 % inear, approx. 90 % optical Typical mechanical application areas Outer jacket Low-adhesion, oil-resistant PVC mixture, adapted to suit the requirements in For heavy duty applications e-chains following DIN EN 50363-4-1). Light oil influence Colour: Jet black (similar to RAL 9005) Preferably indoor applications, but also outdoor ones at temperatures > 5 C CFRIP Strip cables faster: a tear strip is moulded into the inner jacket Unsupported travel distances and up to 100 m for gliding applications Video www.igus.eu/CFRIP Storage and retrieval units for high-bay warehouses, machining units/ Electrical information packaging machines, quick handling equipment, indoor cranes u Nomina voltage 600/1 OOO V (following DIN VDE 0298-3) Testing voltage 4000 V following DIN EN 50395) 295 low highest Basic requirements lll unsupported 400 m Travel distance lll none highest Oil resistance fJ noneO 180 Torsion Motor cabie I PVC I chainflex CF31 Class 5.5.2.1 Example image Part No. Number of cores and conductor Outer diameter Copper Weight nomina cross section (d)max. index 2 mm mm kg/km kg/km CF31.15.04 (4G1.5)C 10.5 168 CF31.25.04 (4G2.5)C 12.0 142 233 CF31.25.05 (5G2.5)C 13.0 174 295 CF31.40.04 (4G4.0)C 13.5 217 345 CF31.40.05 (5G4.0)C 15.0 281 424 CF31.60.04 (4G6.0)C 16.0 318 488 CF31.60.05 (5G6.0)C 18.0 385 598 CF31 .1 00.04 (4G10.0)C 20.5 539 833 CF31.100.05 (5G10.0)C 22.5 687 954 CF31 .160.04 (4G16.0)C 23.5 823 1127 CF31 .250.04 (4G25.0)C 28.5 1254 1718 CF31 .350.04 (4G35.0)C 32.5 1716 2298 CF31.500.04 (4G50.0)C 37.5 2420 3173 CF31 .700.04 (4G70.0)C 43.0 3454 4085 Note: The given outer diameters are maximum values and may tend toward lower tolerance limits. G = with green-yellow earth core x = without earth core imus 296 297 94