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Oznur Kablo 4mm² Solar Cables Photovoltaic Systems Cables PVI1-F  Dual : Halogen Free TUV TSE

Oznur Kablo 4mm² Solar Cables Photovoltaic Systems Cables PVI1-F Dual : Halogen Free TUV TSE

Brand:Öznur
Product Code: Onur Kablo PV-4
Reward Points: 1
SKU : Oznur 4mm
Product available in stock : 99
  • 25.07₺

  • Ex Tax: 20.89₺
  • Price in reward points: 100
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  • 1000 or more 22.24₺

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Tags: Oznur kablo, Solar cable, 4mm² cable, PV cable, 4mm2 solar cable

Taksit Tutarı
Toplam Tutar
2 x 18,88 TL
37,75 TL
3 x 12,88 TL
38,63 TL
4 x 9,89 TL
39,56 TL
5 x 8,11 TL
40,55 TL
6 x 6,92 TL
41,53 TL
Taksit Tutarı
Toplam Tutar
2 x 18,90 TL
37,79 TL
3 x 12,90 TL
38,69 TL
4 x 9,91 TL
39,65 TL
5 x 8,13 TL
40,66 TL
6 x 6,95 TL
41,68 TL
Taksit Tutarı
Toplam Tutar
2 x 18,89 TL
37,77 TL
3 x 12,91 TL
38,73 TL
4 x 9,93 TL
39,71 TL
5 x 8,15 TL
40,74 TL
6 x 6,97 TL
41,80 TL
Taksit Tutarı
Toplam Tutar
2 x 18,87 TL
37,73 TL
3 x 12,87 TL
38,60 TL
4 x 9,88 TL
39,53 TL
5 x 8,10 TL
40,52 TL
6 x 6,92 TL
41,50 TL
Taksit Tutarı
Toplam Tutar
2 x 19,10 TL
38,19 TL
3 x 13,12 TL
39,35 TL
4 x 10,16 TL
40,64 TL
5 x 8,39 TL
41,93 TL
6 x 7,24 TL
43,44 TL
Taksit Tutarı
Toplam Tutar
2 x 19,02 TL
38,03 TL
3 x 12,97 TL
38,92 TL
4 x 9,97 TL
39,87 TL
5 x 8,17 TL
40,83 TL
6 x 6,97 TL
41,81 TL
Taksit Tutarı
Toplam Tutar
2 x 19,09 TL
38,17 TL
3 x 13,06 TL
39,17 TL
4 x 10,06 TL
40,25 TL
5 x 8,29 TL
41,46 TL
6 x 7,10 TL
42,58 TL
Taksit Tutarı
Toplam Tutar
2 x 18,85 TL
37,70 TL
3 x 12,86 TL
38,58 TL
4 x 9,89 TL
39,54 TL
5 x 8,11 TL
40,53 TL
6 x 6,92 TL
41,53 TL
Taksit Tutarı
Toplam Tutar
2 x 18,92 TL
37,83 TL
3 x 12,92 TL
38,76 TL
4 x 9,94 TL
39,75 TL
5 x 8,15 TL
40,73 TL
6 x 6,96 TL
41,75 TL

CORRECT WIRING SCHEME

 Cable management scheme should be reviewed and approved by the EPC contractor; in particular required cable lengths should be cross-checked considering the specificities of the tracker structure like bearing house gaps. If longer cable or additional jumper cables are requested, please contact Canadian Solar’s sales representative in advance.

 Ensure that the wiring is correct before starting up the system. If the measured open circuit voltage (Voc) and short-circuit current (Isc) differ from the specifications, this indicates that there is a wiring fault.  When modules have been installed but the system has not been connected to the grid yet, each module string should be kept under open-circuit conditions and proper actions should be taken to avoid dust and moisture penetration inside the connectors.

 In case where a cable connection method not included in the below table is used, please confirm the suitable cable length with Canadian Solar’s sales representative.  For different Canadian Solar module types, Atakale 

Solar offers optional cable lengths to match various  system configurations.  Recommended system cable schemes are shown in

USE OF SUITABLE MATERIALS

 Only use dedicated solar cable and suitable connectors (wiring should be sheathed in a sunlight-resistant conduit or, if exposed, should itself be sunlightresistant) that meet local fire, building and electrical regulations. Please ensure that all wiring is in perfect electrical and mechanical condition.  Installers may only use single-conductor cable listed and labeled as or PV wire which is 90°C wet rated in Eurpoe  and single conductor cable with a cross section area of at least 4 mm² (12 AWG), 90°C wet rated in other areas (i.e. IEC 62930 approved), with proper insulation which is able to withstand the maximum possible system open-circuit voltage. For CS7N-MS, CS7L-MS and CS7L-MS-R, Canadian Solar recommends the use of a copper wire of at least 6 mm² (10AWG) section.

 Only copper conductor material should be used. Select a suitable conductor gauge to minimize voltage drop and ensure that the conductor ampacity complies with local regulations (i.e. NEC 690.8(D)).

CABLE AND CONNECTOR PROTECTION

 Secure the cables to the mounting system using UVresistant cable ties. Protect exposed cables from damage by taking appropriate precautions (e.g. placing them inside a metallic raceway like EMT conduit). Avoid exposure to direct sunlight.

 A minimum bending radius of 60 mm (2.36 in) is required when securing the junction box cables to the racking system.  Protect exposed connectors from weathering damage by taking appropriate precautions. Avoid exposure to direct sunlight.

 Do not place connectors in locations where water could

easily accumulate.

  GROUNDING

 For grounding requirements in Turkey Eurpoe a  module with exposed conductive parts is considered to comply with UL 61730 only when it is electrically grounded in accordance with both the instructions presented below and the requirements of the National  Electrical Code. Any grounding means used with Atakale  modules should be NRTL certified to UL 467 and UL 2703 standards. Please consult our technical service team for the formal approval process. 

 For grounding requirements in other areas, although the modules are certified to Safety Class II, we recommend them to be grounded and that module installation should comply with all applicable local electrical codes and regulations. Minimum size of equipment grounding conductors for ground raceway  and equipment from NEC 690.8(D) should be considered. Grounding connections should be installed by a qualified electrician. Connect module frames together using adequate grounding cables: the use of 4-14 mm² (AWG 6-12) copper wire is recommended. Holes provided for this purpose are identified with a topraklama sembolü (IEC 61730-1). Tüm iletken bağlantı noktaları sıkıca sabitlenmelidir.

 Kolaylık olması için ekstra topraklama delikleri açmayın, aksi takdirde modül garantisi geçersiz olur.  Tüm cıvatalar, somunlar, düz rondelalar, kilit rondelaları ve diğer ilgili donanımlar paslanmaz çelikten yapılmalıdır.

 M5 (3/16") SS başlıklı cıvata, M5 (3/16") SS düz rondela, M5 (3/16") SS çanak rondela ve M5 (3/16") SS somun (dişli) içeren bir topraklama kiti, bakır topraklama telini çerçeve üzerindeki önceden delinmiş bir topraklama deliğine bağlamak için kullanılır (yukarıdaki resme bakın).  Teli düz rondela ile çanak rondela arasına yerleştirin. Galvanik korozyonu önlemek için çanak rondelanın çerçeve ile tel arasına içbükey tarafı yukarı bakacak şekilde yerleştirildiğinden emin olun. SS dişli somunu kullanarak cıvatayı sıkıca sıkın. Bunu yapmak için bir anahtar kullanılabilir. Sıkma torku 3-7 Nm'dir (2,2-5,2 ft-lbs).

Solar Kablo
Features

Benefits
Tin Coated Copper Class 5 acc. To EN 60228
Gases corrosivity, Smoke Density
Flexible Cross­linked halogen free rubber
Ozone Resistance Weather resistance
Black  Red (blue or red stripe on request)
Conductor Fexibility class 5
Maximum conductor temperature 250ºC
Flame, UV, Water, Water Resistance

Cross-Section Area
PV DC Range
 Current
1.5~240mm²
30V-1800V 
1A-3600A
GTIP Custom Code : 85441990 Oznur Cable
ÖZNUR KABLO, one of the leading cable companies of TURKEY, established in Istanbul with %100 domestic capital at the year of 1989. With modern information processing infrastructure and automation technology, ÖZNUR KABLO have production capacity of 40,000 tons of natural and colored PVC granules, 70,000 tons of 8 mm electrolytic copper wire rods, 12,000 tons of 9.5 mm aluminum rods, and processing capacity of 6,000 tons of XLPE and 10,000 tons of HFFR material
Our company produces; PVC-based installation and energy cables, low voltage cables, automation control cables, data and computer cables, automotive cables, solar (photovoltaic) cables, special thermoplastic compound insulated and sheathed cables, halogen-free cables, speciality cables in accordance with UL standards and PVC tubing.
Our company has an attitude that embraces the values ​​it has and carries out the necessary activities for the interiorization of these values ​​by its employees. In addition, our company aims to make its employees adopt the corporate culture and has aspire to share the company's knowledge with its employees. It evaluates both employee performance and instructor performance through the trainings conducted and continuously monitors performance efficiency.
-Single core solar cable with low smoke, halogen free, cross­linked insulation and sheath.
-String Harness according to IEC 62548 Photovoltaic (PV) arrays ­ Design requirements.
Recommended Use
• Renewable Energies; Solar Plants.
• Intended for permanent use outdoor and indoor. Installation can be fixed or free movable / free hanging, and also in cable trays and conduits.
• These cables have a suitable behaviour in water : tests of  Annexes D and E of H07RN8­F AD8 cables (100 days at 50 °C under 1 kV AC without breakdown) , and additionnal test of 1,5 year in hot water (85°C) under 1 kV DC without breakdown. They are suitable for submerged installations with a maximum cumulated immersion period of 6 months / year
TECHNICAL INFORMATION (1/3)
Peroxide Crosslinked Material Halogen Free Material
Cable insulation and jacket are both based on crosslinked polymers. Crosslinking is performed using peroxide technology. It means that the polymer macromolecular chains are physically bound by chemical links. The peroxide crosslinking is one of the most efficient ways to crosslink because it allows a crosslinking on a melt polymer, leading to a homogeneous network and a high density of links among the
material thickness.
Advantages
• Infusible material (no more melting), Increased resistance to ageing: better thermal ageing, UV resistance, better resistance to chemicals…, 
• Better mechanical properties (impact, abrasion…),
• High integrity to support overload or short circuit. 
Fig:The peroxide molecule decomposition leads to the formation of chemical bonds between polymer chains. After crosslinking, a threedimensional network is obtained. The polymer chains are no more capable to slip among themselves and an infusible material is
obtained with improved properties. Halogen based materials are widely used in cable industry with PVC and Fame retardant additives. Halogens are a specific family of chemical elements: Fluorine (F), Chlorine (Cl), Bromine (Br), Iodine (I), Astatine (At). These elements are well­known to bring high
performances regarding fire retardancy. However, they generate during the burning phase a heavy dark smoke with the formation of highly toxic and corrosive gases. OurEg  cables are totally free of these elements.
Halogen content by Ion Chromatography   Fig:A piece of material is burned in a tube and the emitted gases are carried and trapped for analysis. For a precise dosage of these different halogen elements, ion chromatography allows to separate these elements and to quantify accurately the amount of each species. Corrosivity of smoke Fig:As seen before, a piece of material is burned and the gases are trapped in a liquid solution to measure the corrosivity of smoke. The pH and conductivity are measured and should be higher than respectively 4.3 and 10 µS/mm

Dynamic Mechanical Performances
Fire/Flame Retardancy No dynamic mechanical tests are found in the EN 50618 standard because the cables are intended to be used without any dynamic constraints.Oznur cable could be used for Tracker systems, we have performed additional tests:
• Cyclic torsion
• Cyclic bending

Dynamic behaviour
Dynamic/cyclic mechanical constraints lead to the conductor degradation (copper/aluminium braid degradation). In our case, the cable present very good dynamic properties and still transmit current after 50 000 cycles in both torsion and bending

Oznur Solar Cable Halogen Free Fire
Retardant cables. The material is free of halogen and is capable to withstand a flame retardant test according to the EN 60332­1­2. It means that the cable presents a good resistance regarding the same spread with a very good self­extinguishing behavior.

Resistance to flame test
The cable passes the EN 60332­1­2 where 600mm of cable are tested vertically. The ame is applied with a 45° angle and a 1kW burner.

Long Term Thermal Endurance 
The cable ageing under thermal oxidation leads to the degradation of the polymer material. To predict or at least to estimate what could be the lifetime of a material under thermal ageing, one uses the Arrhenius procedure depicted in the IEC 60216­1 to 4. The main principle is to age the material at high temperatures and then, using the Arrhenius law, to estimate/ predict the lifetime at operating temperature (120 or 90°C).

Arrhenius plot
Ageing was performed at 4 different temperatures: 135°C, 150° C, 165°C and 180°C. The line (linear plot) allows to predict the lifetime at 120 and 90°C. The red dots represent the main targets we are looking for, i.e. the 20000h@120°C, 25years@90°C and 40years@90°C. The more the extrapolated line is above the red dots, the more the lifetime is higher than the target. The obtained extrapolation is well above the targets and thus the estimated lifetime is bigger than 40years@90°C

Sunlight Resistance
One of the main causes of material ageing regarding photovoltaic application is the exposure to UV (Ultra­Violet) light, also called photo­degradation. The cable ageing under UV light is due to the combination of the temperature and UV irradiation (harmful UV irradiation is mainly between wavelengths 300 and 400 nm on the earth surface)

Corrosivity of smoke
Fig:As seen before, a piece of material is burned and the gases are trapped in a liquid solution to measure the corrosivity of smoke. The pH and conductivity are measured and should be higher than respectively 4.3 and 10 µS/mm.

Cable Electrical Specification
Kablo Type Solar Cable
Cable Cross Section 4mm²
Cable Cross Section Tinned copper
Cable Application Solar
Cable Cores 1
Cable Rated Voltage 1500
Cable Condutor Resistance 5.09 Ω/km
Cable Mechanical Specification
Cable Working Condition Outdoor
Cable Weight 63kg/km
Cable Diameter 5.6mm
Cable insulation XLPE
Cable Thermal Specs.
Cable Working Temperature -40°C ~ +90°C
Cable Max Temperature +120°C (for 20.000 hrs.)
Cable Certification
Cable Certificate EC 60228;EN 60228 Class 5 ,CE,TUV, Rohs, ISO 9001, TSE , ISO 14001, ISO 45001

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