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European Standard H1Z2Z2-K Solar Cable | DC1500V TUV Certified

Built to European EN 50618 Standards: Stricter Quality Control for 25-Year Reliability.

  • Conductor : Twisted flexible tinned copper conductor.
  • Insulation : Low smoke Zero halogen LSZH
  • Outer Sheath : Low smoke Zero halogen LSZH

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H1Z2Z2-K EN 50618 Solar Cable_1
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    Product Description

    H1Z2Z2-K EN 50618 Solar Cable: Product Description and Specifications

The H1Z2Z2-K solar cable provides a flexible and robust solution for connecting photovoltaic solar systems. It holds major global certifications, including TUV, UL, IEC, and CE. Therefore, it fully meets rigorous international quality standards.

Consequently, this versatile cable addresses varied industry needs. It is perfect for diverse applications, ranging from large-scale solar stations to residential rooftop installations. Furthermore, it is engineered to perform exceptionally well in harsh conditions, such as deserts and coastal areas. This ruggedness ensures stable connections over long periods, guaranteeing the safety of your PV system.

Ultimately, choosing this solar cable helps you lower operational costs and minimize failure rates. Invest in cost-effective and safe PV installations that ensure profitability throughout their lifecycle.

H1Z2Z2-K EN 50618 Solar Cable
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    Advantages

    H1Z2Z2-K EN 50618 Solar Cable: Benefits and Features

a. Electron-beam cross-linked materials

b. UV, ozone and hydrolysis resistant

c. Non-melting or non-flowing at high temperatures

d. Excellent low temperature flexibility

e. Extremely long service life > 25 years at 90 oC

f. Compatible with all the commonly used connectors

Specification Of H1Z2Z2-K Solar Cable

Cable Construction
ConductorClass 5 Tinned copper, according to the EN 60228 and IEC 60228
InsulationHalogen-free electron-beam cross-linked Polyolefin copolymer (XLPO)
Outer SheathHalogen-free electron-beam cross-linked Polyolefin copolymer(XLPO), Flame Retardant Compound
Sheath colorBlack/Red
Nominal VoltageUO/U 600/1000V(AC) , 1500V(DC)
Test VoltageAC 6500v, 50HZ, 10Min(20±0.5℃)or DC 15000v,10 Min (20±0.5℃) Without Broken
Temperature RatingWorking temperature -40℃~+90℃,Max conductor temperature 120℃(20000H)
Service LifeExpected life span≥25 years
Bending Radius5D (D: Cable diameter)
Fire-resistant PerformanceEN 60332-1-2
Smoke EmissionBased on UNE-EN 60754-2 and IEC 60754-2.
European CPRCca ,according to En 50575
Water PerformanceAd8
Weather Resistance/UV ResistanceEN 50289-4-17/ENISO4892
Halogen DeterminationEN 50525
CertificationTUV/UL//IEC/CE/RoHS

Dimensions/Parameters

Construction (n×mm2)Conductor Construction(n x mm)Insulation Normal Thickness(mm)Sheath Normal Thickness(mm)Outer Diameter(mm)Max DC Resistance of Conductor at 20℃ (Ω/Km)Min Insulation Resistance at 90℃ (mΩ/Km)Current Carrying Capacity(A)
2×2.549x0.24X20.70.85.0x10.58.210.6924
2×4.056x0.28x20.770.85.55x11.65.090.5833
2×6.078x0.29x20.80.86.15x12.93.390.544
2×1077x0.39x20.730.87.4x15.41.950.4257
2×16126x0.39x20.70.98.5x17.81.240.34132

Certifications Of H1Z2Z2-K Solar Cable

Certifications Of CPR CCA H1Z2Z2-K Solar Cable
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    Production Processes Of Photovoltaic Wire

JOCA cable factory, with its advanced digital factory, has streamlined production and inspection processes. This state-of-the-art setup eliminates errors in the manual assembly thereby improving product reliability. We assure you of top-notch products as we employ modernity, such as digital image detection and laser inspections, as well as having comprehensive testing equipment.

Production Processes Of Photovoltaic Wire

Packing For Shipment

There are numerous packaging techniques that can be used to cater for different transportation requirements.

Packing PicturesPacking Method Qty/pallet(pcs)Meter/pallet (M)G.W/pallet(KGS)Pallet size (m)Pallet/20GPMeter/20GP
packing100M/ROLL4mm²-176pcs4mm²-17600m4mm²-1144kgs1.12x1.12x1.12m204mm²-352000m
6mm²-160pcs6mm²-16000m6mm²-1360kgs6mm²-320000m
packing200M/ROLL4mm²-90pcs4mm²-18000m4mm²-1170kgs1.12x1.12x1.12m204mm²-360000m
6mm²-81pcs6mm²-16200m6mm²-1377kgs6mm²-324000m
packing100m/plastic drum4mm²-125pcs4mm²-12500m4mm²-850kgs1.12x1.12x1.12m204mm²-250000m
6mm²-100pcs6mm²-10000m6mm²-900kgs6mm²-200000m
packing500m/wood drum4mm²-27pcs4mm²-13500m4mm²-1197kgs1.12x1.12x1.12204mm²-270000m
6mm²-27pcs6mm²-13500m6mm²-930kgs6mm²-270000m
packing1000M/wood drum4mm²-12pcs4mm²-12000m4mm²-830kgs1.12x1.12x1.12204mm²-240000m
6mm²-12pcs6mm²-12000m6mm²-1070kgs6mm²-240000m
Packing For Shipment

Have more questions?

Find answers to frequently asked questions about our company and services for a seamless beginning.

Q: What is a TUV DC1500V EN 50618 H1Z2Z2-K European Standard Solar Cable?

A: A specialized kind of power cable for use in photovoltaic systems, the TUV DC1500V EN 50618 H1Z2Z2-K European Standard Solar Cable adheres to stringent solar system standards like high voltage (DC1500V), flexibility, and durability as required by TUV and aligns with the EN 50618 Standard. It usually links solar panels to inverters or connects some panels to one another, thereby making efficient and safe photovoltaic energy transfer possible.

Q: Why is TUV certification important for H1Z2Z2-K solar cables?

A: The importance of TUV certification in H1Z2Z2-K solar cables, therefore, cannot be overemphasized since it guarantees that this product satisfies the highest quality and safety standards indicated for PV power systems. TÜV is an internationally recognized testing and certification body that ensures products meet both European and International standards. For instance, a cable with a TUV certificate will have undergone extensive testing for parameters such as voltage, current carrying capacity, UV resistance, and temperature resistance, among others, so as to ensure that it can be used safely outdoors over longer periods in a PV station without failing or causing danger.

Q: Why does H1Z2Z2-K make a good choice for high-voltage applications?

A: H1AZZZK-THCPLH (photovoltaic) cables are specifically designed to cope with up to 1500V of electricity in PV installations; therefore it has been chosen as one of the leading materials for use in high-voltage applications involving Solar Power Generation systems. Therefore, the structure of this type of power wire comprises copper cores, which have good conductivity qualities, strong insulation layers that are resistant to high direct current voltage levels, and thick coverings that offer mechanical protection against external modes. This design reduces transmission losses, making it ideal for interconnected arrays that involve lengthy distances, among other different things, such as those between transmission lines and loads within large-scale solar-energy applications.

Q: How do producers from China contribute to the global supply of H1Z2Z2-K solar cables?

A: When it comes to China, suppliers play a vital role in facilitating the global distribution of H1Z2Z2-K solar cables. Chinese manufacturers, like those based in Wuxi can make top-notch solar cables following international standards like TUV certification and EN 50618 standard. To this end, they are exceedingly competitive in terms of pricing, as well as quality and innovation commitment that makes them major suppliers of H1Z2Z2-K solar cables for solar power projects globally.

Q: What are the key advantages of using H1Z2Z2-K solar cables for photovoltaic installations?

A: Key advantages of employing H1Z2Z2-K solar cables for photovoltaic installations include high electrical efficiency, extreme resistance to UV light and other weather conditions, and meeting global safety standards. The outstanding strength and flexibility of these cables facilitate ease during installation when connecting them between photovoltaic panels, inverters, and the grid. These supports enable better transmission of electricity due to their high-quality materials and construction, which ultimately increases the efficiency and lifespan of a given solar power system.

Q: Can H1Z2Z2-K solar cables be found in different sizes and colors?

A: Yes, H1Z2Z2-K cables come in different sizes and colors to fit the specific needs of various photovoltaic installations. The size of the cable varies depending on the cross-sectional area, which ranges from small to large to match the different current capacities required by the system. Typically, the most common colors are black and red, which indicate positive and negative connections in a solar power system, respectively. Hence, these variations provide room for customizable and efficient installation settings that cater to the unique requirements of every photovoltaic project.

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