All products
SV-580M N-type Bifacial

panel

SV-580M N-type Bifacial

580 W · 1500V max system

The SV-580M is the premium module in the range: 144 N-type TOPCon half-cut cells delivering 580 W at 22.45% efficiency, with rear-side bifacial gain of up to 80% on reflective surfaces — among the highest in the industry.

N-type chemistry means a gentler temperature coefficient (−0.29%/°C) that holds output in Gulf summer heat, near-zero light-induced degradation, and PID resistance proven at 85 °C/85% humidity over 192 hours. TÜV SÜD tested the design at two to three times IEC requirements.

Pricing on request — reply usually within the hour, Dubai time.

Specifications

Imp
13.18A
Isc
13.95A
Vmp
44.02V
Voc
52.52V
Cells
144 N-type TOPCon half-cut (6×12×2)
Dimensions
2278 × 1134 × 30 mm · 30.3kg
Efficiency
22.45% (STC)
PID resistance
85°C / 85% humidity, 192h tested
Rear-side gain
Up to 80 ±5%
Max system voltage
DC1500V (IEC)
Rated power (Pmax)
580W STC · 440W NOCT
Temp. coefficient Pmax
−0.29%/°C

Fitted right, first time

Professional installation

Request installation support

Site preparation

  • Survey the roof or ground area for shading between 9 am and 3 pm — even partial shade on one module drags down the whole string.
  • Use a mounting structure rated for local wind loads, with rails spanning the module's clamping zones only (never clamp outside the marked zones).
  • Plan string wiring before lifting panels: with a Voc of 52.5 V per module, strings of up to 9 in series suit the EDGE/PRO 500 VDC MPPT limit; the module itself is rated to DC 1500 V for utility-scale stringing.
  • Bifacial gain of up to 80% needs a reflective surface and clearance behind the array — elevate at least 0.5 m and keep the rear face free of rails and cables.

Safety first

  • Modules generate voltage whenever light hits them — treat every connector as live during daylight.
  • Work with fall protection on any roof; never carry a module in wind above 30 km/h.
  • Do not step on modules or drop tools on the glass — invisible micro-cracks permanently reduce output.
  • Earth the mounting structure and module frames per local code.

Commissioning checklist

  • Compare string Voc and operating current against the datasheet at similar irradiance.
  • Photograph the array and record string layout for the maintenance file.
  • Re-torque clamps and check cable dressing after the first month.

Installation sequence

  1. 1

    Install the mounting structure

    Fix rails to the roof structure or ground foundation, level and square. On tin roofs seal every penetration; on flat roofs use ballasted or anchored tilt frames at 10–25°.

  2. 2

    Lift and clamp the modules

    Each module weighs 30.3 kg — lift with two people. Clamp within the marked zones, torque clamps evenly, and leave a 10–20 mm gap between modules for thermal expansion.

  3. 3

    String the connectors

    Connect MC4 plugs in series along each row, dressing cables under the modules with UV-resistant clips — no cable should rest on the roof surface.

  4. 4

    Run home cables

    Route string cables through conduit to the PV isolator at the inverter. Keep positive and negative of the same string together to minimise induction loops.

  5. 5

    Test each string

    Measure open-circuit voltage per string (≈52.5 V per module) and confirm polarity before connecting to the inverter.

This guide is a professional summary, not a substitute for the installation manual. Sole Verde supports certified installers across the region — ask us to connect you with one in your market.

Engineered together

Pairs with