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Electrical power | power cables | wires with copper conductors

  • Electrical power cables and wires

    The right cable is cross-section, length and protection matched to each other.

    Copper and aluminium cables and wires for indoor, outdoor and underground installation, panel wiring and appliance connection. We cut to length and provide project quotes for larger quantities. Below the product list you will find a selection guide with a load table (A and kW), current-carrying capacity and voltage drop charts.

    KibirkštisFazėHow many kW can 2.5 mm² carry and which MCB do you need? The answer is in the load table, or ask us.
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  • How to choose an electrical cable: type, cross-section, length and protection

    A cable is determined by four things: where it will be laid (type), what load (current and cross-section), how long the line is (voltage drop) and what protection (MCB, residual current device). Below are the tables and charts that both installers and buyers use to make the decision.

    Information and selectionSuitable / benefit⚠ Check⚡ Safety and mistakes
    ⚠ The tables and charts are for guidance only and may contain errors or inaccuracies. Before buying and installing, check against the equipment manufacturer's instructions, applicable regulations and the electrical design.
    UAB „Elektrotechnikos sprendimai“ accepts no liability for errors or inaccuracies in the tables and charts or for decisions made on their basis. Cable and protection selection and installation must be carried out by a qualified electrician.

    What do you need? Quick selection

    Situation Solution Where to find
    Lighting and sockets in a flat, house, office (in walls, under plaster) NYM-J 3×1.5 / 3×2.5 or CYKY-L NYM-J · CYKY-L
    Outdoors, underground, to a garage or outbuilding CYKY-L (underground – with protection and warning tape) CYKY-L
    Public buildings, escape routes where halogen-free cables are required NHXMH-J, BZ1Z1-P, H07Z1-K NHXMH-J · BZ1Z1-P · H07Z1-K
    Panel wiring, wires in conduit H07V-K (flexible), H07V-R / H07V-U (rigid) H07V-K · H07V-R · H05V-U / H07V-U
    Control and signalling circuits in a panel H05V-K, H05V-U H05V-K · H05V-U
    Warmer environment in a panel, near heaters (up to +90 °C conductor) H05V2-K, H07V2-K H05V2-K / H07V2-K
    Connecting appliances, extension leads, luminaires H05VV-F, H03VVF (flexible) H05VV-F / H03VVF
    Large service entries, long routes where price matters Aluminium conductor cables Aluminium
    Heat, cold, rubber, control and shielded Special purpose cables Special purpose
    Computer network, communications, video surveillance UTP, FTP, coaxial Computer, communication
    Panel busbars, large current transfer Copper, aluminium, flexible busbars Busbars
    Trunking, trays, boxes, lugs, joints Cable accessories Accessories
    Benefit: a correctly selected cable does not overheat, does not pass excessive voltage drop to the load and is matched to the MCB. This is the cheapest place to save – replacing a plastered-in cable later costs far more than a metre of a larger cross-section.

    Cable and wire types – how they differ

    The letters in the designation describe the construction. According to the harmonised designation (HD 361): H – harmonised type, 03 / 05 / 07 – 300/300 V, 300/500 V, 450/750 V, V – PVC, V2 – PVC up to +90 °C, Z1 – halogen-free insulation, U / R / K / F – solid, stranded rigid, flexible (for installation), flexible (for moving appliances).

    Type Construction Rated voltage Indoor Outdoor Underground Flexible Halogen-free
    CYKY-L cable, 2–5 cores per manufacturer* ✓ ✓ ⚠ with protection ✗ ✗
    NYM-J (KH05VV-U) cable, 2–5 cores 300/500 V ✓ ✗ ✗ ✗ ✗
    NHXMH-J cable 300/500 V ✓ ✗ ✗ ✗ ✓
    H05VV-F / H03VVF flexible cable 300/500 V · 300/300 V ✓ ✗ ✗ ✓ ✗
    H07V-K single-core wire 450/750 V ⚠ in conduit / panel ✗ ✗ ✓ ✗
    H05V-K single-core wire 300/500 V ⚠ in panel ✗ ✗ ✓ ✗
    H07V-R / H07V-U single-core rigid wire 450/750 V ⚠ in conduit / panel ✗ ✗ ✗ ✗
    H05V2-K / H07V2-K single-core wire, +90 °C 300/500 V · 450/750 V ⚠ in panel ✗ ✗ ✓ ✗
    H07Z1-K single-core halogen-free 450/750 V ⚠ in conduit / panel ✗ ✗ ✓ ✓
    ⚠ Check: * The rated voltage of CYKY-L depends on the manufacturer (e.g. AB „Lietkabelis“ CYKY-L – 450/750 V; other manufacturers' CYKY – 0.6/1 kV) – exact data are given on each product page. Single-core wires without a common sheath are laid only in conduits, trunking or panels. For the construction and purpose of BVV series cables, see the product pages in their subgroups.

    Load table: power (kW) → current (A) → cable and protection

    The most common household, farm and business loads. Current calculated: single-phase I = P / 230 V, three-phase I = P / (√3 × 400 V); for the motor cos φ = 0.85 and efficiency 0.87 are assumed. Cable cross-section – for a short route (up to ~20–25 m) under normal installation conditions.

    Load Power Supply Current IB Typical cable (Cu) Protection Note
    LED lighting circuit 0.5 kW 230 V, 1-ph 2.2 A 3×1.5 mm² B10 Room or floor luminaires
    Socket outlet circuit 3.5 kW 230 V, 1-ph 15.2 A 3×2.5 mm² B16 + RCD 30 mA Kitchen, room sockets
    Washing machine / dishwasher 2.2 kW 230 V, 1-ph 9.6 A 3×2.5 mm² B16 + RCD 30 mA Separate circuit for each
    Water heater (boiler) 2 kW 230 V, 1-ph 8.7 A 3×2.5 mm² B16 + RCD 30 mA Storage, 80–150 l
    Oven 3.5 kW 230 V, 1-ph 15.2 A 3×2.5 mm² B16 Separate circuit
    Induction hob – single-phase 7.2 kW 230 V, 1-ph 31.3 A 3×6 mm² B32 Or three-phase connection ↓
    Induction hob – three-phase 7.2 kW 400 V, 3-ph 10.4 A 5×2.5 mm² B16 3P Current shared across 3 phases
    Sauna heater 9 kW 400 V, 3-ph 13 A 5×2.5 mm² B16 3P Heat-resistant cable at the heater
    Electric heater / heat pump backup heater 9 kW 400 V, 3-ph 13 A 5×2.5 mm² B16 3P As per equipment instructions
    EV charger 7.4 kW 7.4 kW 230 V, 1-ph 32 A 3×6 mm² C32 + RCD (A/EV or B) Long route – 3×10
    EV charger 11 kW 11 kW 400 V, 3-ph 15.9 A 5×2.5 / 5×4 mm² C16 3P + RCD (A/EV or B) 5×4 – when route > ~25 m
    EV charger 22 kW 22 kW 400 V, 3-ph 31.8 A 5×6 / 5×10 mm² C32 3P + RCD (A/EV or B) 5×10 – when route > ~30 m
    Three-phase motor, pump 5.5 kW 5.5 kW 400 V, 3-ph 10.7 A 4×2.5 / 5×2.5 mm² Motor protection 10–16 A Starting current 5–7 times higher
    Garage, workshop (three-phase) 22 kW 400 V, 3-ph 31.8 A 5×6 / 5×10 mm² C32 3P Long route – 5×10
    ⚠ The tables and charts are for guidance only and may contain errors or inaccuracies. Before buying and installing, check against the equipment manufacturer's instructions, applicable regulations and the electrical design.
    UAB „Elektrotechnikos sprendimai“ accepts no liability for errors or inaccuracies in the tables and charts or for decisions made on their basis. Cable and protection selection and installation must be carried out by a qualified electrician.
    ⚠ Important: the table is indicative. For EV chargers, saunas, heat pumps and motors always follow the equipment instructions (required MCB, RCD type, cable). For long routes, grouped cables or thermal insulation the cross-section is increased – see the tables below.
    Kibirkštis
    KibirkštisA 7.2 kW hob. Single-phase needs 3×6 and 32 A, but three-phase is fine with 5×2.5 and 16 A?
    Fazė
    FazėYes. 7.2 kW on one phase is about 31 A; split across three phases it is about 10.4 A per phase. That is why a three-phase connection allows a thinner cable and a smaller MCB. Just check how the manufacturer allows the hob to be connected.

    MCB → permissible power → minimum copper cross-section

    How much power can be connected through a given MCB and the minimum cable required. Power calculated at cos φ = 1 (heaters, boilers, cookers). Cross-section selected by the condition In ≤ Iz, method B2 (cable in conduit or trunking), copper, PVC, +30 °C; for circuits from 16 A – at least 2.5 mm².

    MCB In Power 230 V, 1-ph Power 400 V, 3-ph Min. Cu cross-section 1-ph (B2) Min. Cu cross-section 3-ph (B2)
    6 A 1.4 kW 4.2 kW 1.5 mm² 1.5 mm²
    10 A 2.3 kW 6.9 kW 1.5 mm² 1.5 mm²
    13 A 3 kW 9 kW 1.5 mm² 1.5 mm²
    16 A 3.7 kW 11.1 kW 2.5 mm² 2.5 mm²
    20 A 4.6 kW 13.9 kW 2.5 mm² 2.5 mm²
    25 A 5.8 kW 17.3 kW 4 mm² 4 mm²
    32 A 7.4 kW 22.2 kW 6 mm² 6 mm²
    40 A 9.2 kW 27.7 kW 10 mm² 10 mm²
    50 A 11.5 kW 34.6 kW 10 mm² 16 mm²
    63 A 14.5 kW 43.6 kW 16 mm² 25 mm²
    80 A – 55.4 kW – 25 mm²
    100 A – 69.3 kW – 50 mm²
    125 A – 86.6 kW – design
    ⚠ The tables and charts are for guidance only and may contain errors or inaccuracies. Before buying and installing, check against the equipment manufacturer's instructions, applicable regulations and the electrical design.
    UAB „Elektrotechnikos sprendimai“ accepts no liability for errors or inaccuracies in the tables and charts or for decisions made on their basis. Cable and protection selection and installation must be carried out by a qualified electrician.
    The rule every electrician checks: IB ≤ In ≤ Iz – load current ≤ MCB rated current ≤ cable current-carrying capacity. The MCB protects the cable, not the appliance: if the cable is thinner than the MCB allows, it will overheat before the MCB trips.
    For motors cos φ is usually 0.8–0.9, so the real power connected through the same MCB is lower, and the starting current is several times higher.

    Current-carrying capacity by installation method

    Continuous current-carrying capacity Iz, A – copper, PVC, single-phase circuit (2 loaded cores)02040608010012016.519.5221.5 mm²2327292.5 mm²3036374 mm²3846466 mm²52636010 mm²69857816 mm²901129925 mm²In thermal insulation / conduit (B2)Directly on a wall (C)Underground, in duct (D1)

    Chart. Same cross-section – different current-carrying capacity: a cable heats up as much as it cannot dissipate heat (IEC 60364-5-52)

    Full table – copper, PVC insulation, conductor temperature +70 °C, ambient +30 °C (underground +20 °C, soil thermal resistivity 2.5 K·m/W), single circuit. B2 – multi-core cable in conduit on a wall or in trunking, C – cable directly on a wall or ceiling, D1 – cable in a duct underground. 1-ph – 2 loaded cores, 3-ph – 3 loaded cores.

    Cu, mm² B2 · 1-ph B2 · 3-ph C · 1-ph C · 3-ph D1 · 1-ph D1 · 3-ph
    1.5 mm² 16.5 A 15 A 19.5 A 17.5 A 22 A 18 A
    2.5 mm² 23 A 20 A 27 A 24 A 29 A 24 A
    4 mm² 30 A 27 A 36 A 32 A 37 A 30 A
    6 mm² 38 A 34 A 46 A 41 A 46 A 38 A
    10 mm² 52 A 46 A 63 A 57 A 60 A 50 A
    16 mm² 69 A 62 A 85 A 76 A 78 A 64 A
    25 mm² 90 A 80 A 112 A 96 A 99 A 82 A
    35 mm² 111 A 99 A 138 A 119 A 119 A 98 A
    50 mm² 133 A 118 A 168 A 144 A 140 A 116 A
    ⚠ The tables and charts are for guidance only and may contain errors or inaccuracies. Before buying and installing, check against the equipment manufacturer's instructions, applicable regulations and the electrical design.
    UAB „Elektrotechnikos sprendimai“ accepts no liability for errors or inaccuracies in the tables and charts or for decisions made on their basis. Cable and protection selection and installation must be carried out by a qualified electrician.
    ⚠ Correction factors: cables in a bundle or tray heat each other – for three adjacent circuits the current-carrying capacity drops by about 30 %. A cable in thermal insulation (method A) dissipates heat worst. Higher ambient temperature also reduces Iz. In such cases one size larger cross-section is chosen or a design calculation is made.

    Length and voltage drop

    On a long line part of the voltage stays in the cable: motors start harder, luminaires flicker, chargers reduce power. For a final circuit the voltage drop should not exceed 3 % (lighting) – 5 % (other loads).

    Voltage drop ΔU, % – single-phase 230 V line, 16 A load (3.7 kW), copper0 %1 %2 %3 %4 %5 %6 %7 %8 %0 m10 m20 m30 m40 m50 m60 m3 %5 %1.5 mm² → 3 % at ~14 m2.5 mm² → 3 % at ~24 m4 mm² → 3 % at ~38 m6 mm² → 3 % at ~58 mLine length from panel to load, m (ΔU = 2·L·I·ρ / S, ρ = 0.0225 Ω·mm²/m)

    Chart. The longer the line, the larger the cross-section needed, even with the same MCB (1.5 mm² for comparison only: it is not used with a 16 A MCB)

    Indicative maximum line length for ΔU ≤ 3 % with the load equal to the typical MCB current:

    Cu cross-section Load (= typical MCB) 230 V, 1-ph – up to 400 V, 3-ph – up to
    1.5 mm² 10 A ≈ 23 m ≈ 46 m
    2.5 mm² 16 A ≈ 24 m ≈ 48 m
    4 mm² 20 A ≈ 31 m ≈ 62 m
    6 mm² 32 A ≈ 29 m ≈ 58 m
    10 mm² 40 A ≈ 38 m ≈ 77 m
    16 mm² 50 A ≈ 49 m ≈ 99 m
    25 mm² 63 A ≈ 61 m ≈ 122 m
    ⚠ The tables and charts are for guidance only and may contain errors or inaccuracies. Before buying and installing, check against the equipment manufacturer's instructions, applicable regulations and the electrical design.
    UAB „Elektrotechnikos sprendimai“ accepts no liability for errors or inaccuracies in the tables and charts or for decisions made on their basis. Cable and protection selection and installation must be carried out by a qualified electrician.
    Example: socket line 3×2.5 mm², 30 m, 16 A → ΔU = 2 × 30 × 16 × 0.0225 / 2.5 ≈ 8.6 V (≈ 3.8 %) – more than 3 %. With 3×4 mm²: ≈ 5.4 V (≈ 2.3 %). For such a route a larger cross-section is worth choosing.
    Formulas: single-phase ΔU = 2·L·I·ρ / S, three-phase ΔU = √3·L·I·ρ / S; ρ ≈ 0.0225 Ω·mm²/m (copper, +70 °C), aluminium ≈ 0.036 Ω·mm²/m.

    Copper or aluminium?

    Criterion Copper (Cu) Aluminium (Al)
    Resistivity at +20 °C ≈ 0.0175 Ω·mm²/m ≈ 0.0282 Ω·mm²/m (≈ 1.6 times higher)
    Cross-section for the same current baseline ≈ 1 size larger (e.g. Cu 10 → Al 16 mm²)
    Smallest cross-sections from 1.5 mm² for power lines usually from 16 mm²
    Connections standard terminals only terminals marked Al or Cu/Al, contact paste, tightening control
    Typical use indoor installation, final circuits, panels service entries, mains, long underground routes
    Price higher lower for large cross-sections
    ⚡ Safety: aluminium and copper must not be connected directly in one terminal without dedicated connectors – due to galvanic corrosion and thermal expansion the contact weakens, heats up and may cause a fire.

    ⚠ What to check before buying

    Kibirkštis
    KibirkštisBefore buying I always check these things – it saves both money and a second trip to the site.
    What to check Why it matters
    Supply: 230 V or 400 V 1-ph – 3 cores (L, N, PE); 3-ph – 5 cores (L1–L3, N, PE); 4 cores – only without neutral
    Load power and current Determines the cross-section and MCB (see the load table)
    Line length A long route needs a larger cross-section due to voltage drop
    Installation location and method Indoor, outdoor, underground, in conduit, bundled, in thermal insulation – changes the type and Iz
    Building requirements Halogen-free cables may be required in public buildings and escape routes
    Conductor type and terminals Stranded or flexible conductors in screw terminals – use ferrules
    Connection allowance Add 0.5–1 m for each end to the measured length

    ✗ Most common mistakes

    ✗ Mistake Consequence ✓ Correct way
    1.5 mm² for sockets with a 16 A MCB The cable runs at or above its limit for long periods, insulation ages 3×2.5 mm² + B16, or 1.5 mm² + B10
    2.5 mm² for a 50 m route to a garage High ΔU, motors and compressors start with difficulty Calculate ΔU, choose 5×6 – 5×10 mm²
    4-core cable when there will be single-phase loads No neutral – a new cable has to be laid 5-core cable for a three-phase circuit
    NYM-J buried in the ground The sheath is not designed for this – moisture, damage Underground – CYKY-L with protection and warning tape
    Single-core H07V-K without conduit No mechanical protection – risk of damage Only in conduit, trunking or a panel
    ⚡ Cu and Al directly in one terminal Contact overheats – fire risk Cu/Al connectors, Al-rated terminals
    ⚡ 2-core cable for a socket or metal appliance No PE – electric shock hazard 3-core cable with PE and 30 mA RCD

    ⚡ Safe installation – Fazė's advice

    Fazė
    FazėA good cable won't help if it is installed in a hurry. These points protect against faults and electric shock.
    • Before work, disconnect the supply, secure it against accidental reclosing and verify that no voltage is present.
    • Protect socket and wet-room circuits with a 30 mA residual current device (RCD).
    • Lay PVC cables at no lower than −5 °C; do not bend more sharply than the manufacturer allows.
    • Underground – sand bedding, mechanical protection and warning tape; through walls and risers – a protective duct.
    • Before energising a new line, measure the insulation resistance and check the continuity of the PE conductor.
    • Electrical installation work is carried out by an electrician with the appropriate qualification.
    ☝ Elsprendimai.eu recommends
    Plan the cable's surroundings together with it: MCBs and RCDs, cable trunking, lugs and joints, warning tapes, panels and enclosures. For hot locations – heat- and cold-resistant cables.

    FAQ

    Asked by Kibirkštis, answered by Fazė.

    Kibirkštis
    KibirkštisHow many kW can be connected to a 3×2.5 mm² cable?
    Fazė
    FazėWith a 16 A MCB – up to 3.7 kW in a single-phase 230 V circuit. Three-phase 5×2.5 mm² with 16 A – up to 11 kW. On a long line or for a bundled cable the permissible load is lower.
    Kibirkštis
    KibirkštisWhich cable should I choose for a house service entry?
    Fazė
    FazėAccording to the DSO connection conditions and the main breaker. For a three-phase 25 A entry, 5×10 mm² Cu or an equivalent aluminium cable is often used – the final cross-section is determined by length and design.
    Kibirkštis
    KibirkštisCan a cable be laid underground?
    Fazė
    FazėYes, a cable designed for it (e.g. CYKY-L) – no shallower than 0.7 m, on sand, with mechanical protection and warning tape. NYM-J and single-core wires are not used underground.
    Kibirkštis
    KibirkštisWhat is the difference between H07V-K and H07V-U?
    Fazė
    FazėBoth are 450/750 V single-core wires. H07V-K has a flexible stranded conductor (convenient in panels, requires ferrules), H07V-U has a solid rigid conductor (for fixed installation in conduit).
    Kibirkštis
    KibirkštisWhen is a halogen-free cable needed?
    Fazė
    FazėWhen required by the design or fire safety conditions – most often in public buildings, escape routes, hospitals, schools. When burning it does not release corrosive halogen gases and produces less smoke.
    Kibirkštis
    KibirkštisCan the cross-section be chosen by power alone?
    Fazė
    FazėNo. Power gives the current, but you must also consider the installation method (Iz), line length (ΔU) and the MCB (IB ≤ In ≤ Iz).
    Kibirkštis
    KibirkštisDo you sell by the metre?
    Fazė
    FazėYes, we cut cables to the required length. For projects and larger quantities we prepare an individual quote.
    Sources and assumptions (checked 2026-10-08): LST HD 60364-5-52 / IEC 60364-5-52 (current-carrying capacities, methods B2, C, D1, copper, PVC 70 °C); HD 361 (cable designation); HD 308 (core colours). The tables and charts are for guidance only and do not replace an electrical design; UAB „Elektrotechnikos sprendimai“ accepts no liability for their errors or inaccuracies.

    Need cables for a project?

    Send us the loads, lengths and installation conditions – we will select cables, protection and accessories and send a quote. We cut to length.

    ☎ +370 620 72733✉ info@elsprendimai.eu
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