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Vikram Solar SURYAVA VSMDH.66.710.05

SURYAVA VSMDH.66.710.05

710 Wp HJT Bifacial 90%
ComparePV verdict

Middle of its segment, heavy for its output

Rank 881 of 14,005
Compare panels Datasheet PDF
Power (Wp)
710
Typical for its class
Efficiency (%)
22.86
Typical · median 23.02%
Density (Wp/m²)
228.6
Typical · median 230.2
Temp (%/°C)
-0.260
Weak · bottom 18%
Weight (kg)
39.5
Weak · 1.2 kg above median
Warranty (yrs)
30
Typical · median 30 yrs

The Vikram Solar SURYAVA VSMDH.66.AAA.05 series (variants 710-735) are bifacial monocrystalline modules with HJT technology cells, designed for maximum performance under real-world conditions. They are characterized by a wide spectral response, which allows them to better utilize diffuse light and operate more stably under cloudy conditions, as well as in the morning and evening. The use of a bifacial design allows for the recovery of additional energy from reflections off the ground, which significantly improves the profitability of installations on sunny roofs and ground-mounted structures.

The multi-busbar architecture (MBB/20 busbar) reduces losses and the risk of microcracks, and the current matching (binning) reduces mismatch in the string - which is important for large module arrays. The series is designed for investors who need high power density on a limited area - in PV farms, on building roofs, and in projects that require predictable energy production over many years.

Ranking

222 panels in the segment HJT 700-750 W
Metric This panel Median Position in segment Overall rank
Module efficiency 22.86% 23.02% Typical 2,536
Power density 228.6 230.2 Typical 2,474
Temperature coefficient -0.260 -0.240 Weak · bottom 18% 511
Weight per kWp 55.6 53.6 Weak · bottom 6% 10,005
Performance warranty 30 yrs 30 yrs Typical 21
Colour key Strong - top 25% Typical - middle 50% Weak - bottom 25%

Signals from the data

0 positive · 2 caution
Best for

Commercial, utility-scale and hot-climate.

Not ideal for

Weight-limited structures and hot climates.

Watch-outs
55.6 kg per kWp

Bottom 6% of the HJT 700-750 W segment, against a median of 53.6. Ranked 10,005th in the whole database.

-0.260 %/°C temperature coefficient

Bottom 18% of the HJT 700-750 W segment, against a median of -0.240.

Notes from the database
  • At 22.9% efficiency, this panel is on par with typical HJT 700-750W modules
  • At 228.6 W/m² power density, roof space requirements are typical for HJT 700-750W panels
  • Temperature coefficient of -0.26%/°C is 0.02pp worse than HJT 700-750W median (-0.24%/°C) - higher losses in summer heat
  • At 39.5 kg (1.2 kg above HJT 700-750W median of 38.3 kg), requires checking roof load capacity
  • Bifaciality factor of 90% can add 4-14% extra yield with reflective mounting surface

Specifications

Open datasheet PDF
Nominal power (Pmax) 710 Wp Nameplate at 1000 W/m², 25 °C
Module efficiency 22.86 % Typical Segment median 23.02%
Vmpp · Impp 42.43 V · 16.74 A Operating point at max power
Voc · Isc 50.80 V · 17.52 A Sizes the string length
Max system voltage 1500 V Longer strings than 1000 V modules
Dimensions 2384×1303×35 mm · 3.11 m² of roof
Weight 39.5 kg Weak Weak · 1.2 kg above median
Cells 132 · HJT Monocrystalline
Bifaciality 90 % Rear output as a share of front
Coefficient Pmax -0.260 %/°C Weak bottom 18% of its segment
Coefficient Voc · Isc -0.260 · 0.046 %/°C
NOCT 45 °C At 800 W/m², 20 °C ambient
Product warranty 12 years Hardware defects only
Performance warranty 30 years Typical median 30 yrs · median 30 yrs
End-of-warranty output 88.0 % Equals 625 W guaranteed
Degradation 1.00 → 0.38 % First year, then annual

Datasheet charts

Open datasheet PDF

Measured curves published by Vikram Solar in this model's datasheet. A chart carrying a wattage was measured on that variant alone - only the ones that describe 710 Wp appear here. The rest cover the whole series.

Simulations

Live - change any input
Lifetime output & value
30 years at 1200 kWh/kWp/year and €0.50 per kWh
Power in year 30
-
Lifetime energy
-
Energy value
-
With bifacial gain
-

Degradation from this panel's own datasheet figures. No inverter, soiling or shading losses.

Heat losses
-0.260 %/°C against a segment median of -0.240
-
Bifacial gain
Rear gain over light concrete: -
-

Model: bifaciality × albedo × 0.6 view factor. A first-order estimate, not a yield simulation.

Filter these
Size
Panel Power Eff. Temp. Weight Difference
Vikram Solar SURYAVA VSMDH.66.710.05 710 W 22.86% -0.260 39.5 kg You are here
AIKO-A680-MDE72Mw 680 W 25.20% -0.260 29.0 kg -30 W, lighter, +2.3 pp
AIKO-A675-MDE72Mw 675 W 25.00% -0.260 29.0 kg -35 W, lighter, +2.1 pp
AIKO-A700-MAE78Dw 700 W 25.00% -0.260 34.5 kg -10 W, lighter, +2.1 pp
AIKO-A695-MAE78Dw 695 W 24.90% -0.260 34.5 kg -15 W, lighter, +2.0 pp
AIKO-G670-MCH72Mw 670 W 24.80% -0.260 28.2 kg -40 W, lighter, +1.9 pp
LR7-72HVHF-670M 670 W 24.80% -0.260 28.5 kg -40 W, lighter, +1.9 pp
JKM650-670N-66QL6-BDV (670W class) 670 W 24.80% -0.260 32.5 kg -40 W, lighter, +1.9 pp
PARADEA VSMDH.66.AAA.05-655 655 W 21.09% -0.350 39.5 kg -55 W, hotter, -1.8 pp
PARADEA VSMDH.66.AAA.05-660 660 W 21.25% -0.350 39.5 kg -50 W, hotter, -1.6 pp
PARADEA VSMDH.66.AAA.05-665 665 W 21.41% -0.350 39.5 kg -45 W, hotter, -1.4 pp
AIKO-A805-GRH78Dw 805 W 25.10% -0.260 39.8 kg +95 W, +2.2 pp
AIKO-A800-GRH78Dw 800 W 24.90% -0.260 39.8 kg +90 W, +2.0 pp
AIKO-A795-GRH78Dw 795 W 24.80% -0.260 39.8 kg +85 W, +1.9 pp
AIKO-A790-GRH78Dw 790 W 24.60% -0.260 39.8 kg +80 W, +1.7 pp
TSM-NEG21C.20Q-760 760 W 24.50% -0.260 38.3 kg +50 W, lighter, +1.6 pp
AIKO-A785-GRH78Dw 785 W 24.40% -0.260 39.8 kg +75 W, +1.5 pp

Found 1390 panels of the same or similar size to this one, within ±10 mm. See them here Found 1400 panels of the same or similar size to this one, within ±25 mm. See them here Found 1400 panels of the same or similar size to this one, within ±50 mm. See them here Found 1432 panels of the same or similar size to this one, within ±100 mm. See them here

Common questions

6 answered
How does HJT cell technology in the SURYAVA VSMDH.66.AAA.05 panels differ from standard PERC or TOPCon cells?
HJT (Heterojunction) sandwiches a crystalline silicon wafer between thin layers of amorphous silicon, delivering higher efficiency (up to 23.66%) and a broader spectral response than PERC or TOPCon. This lets the panel capture more diffuse light, so it performs more consistently in cloudy conditions and during early morning or late afternoon hours. HJT also has a lower power temperature coefficient, meaning less output loss during hot weather compared to conventional cell technologies.
How much extra energy can the bifacial design of the SURYAVA VSMDH.66 series actually deliver?
The bifacial construction captures additional energy from light reflected off the ground onto the rear side of the module. On highly reflective surfaces (white gravel, roofing membrane, snow), this typically adds a few to over ten percent extra yield compared to a monofacial panel of the same front-side power rating. The gain is largest on ground-mount farms and light-colored industrial roofs, and smaller when the module sits close to a dark surface.
What warranty comes with the Vikram Solar SURYAVA VSMDH.66.AAA.05 panels?
The manufacturer offers a 12-year product warranty and a 30-year linear power warranty, guaranteeing around 87.98% of nominal output at year 30. Vikram Solar is a Tier 1 manufacturer based in India, which adds confidence that the warranty will remain enforceable throughout the system's operating life.
Are the SURYAVA VSMDH.66.AAA.05 panels suitable for a solar farm or industrial rooftop installation?
Yes, the series is built for large-scale projects - power output up to 735 Wp per module delivers high power density on limited surface area, reducing the panel count and cabling needed. Current binning minimizes string mismatch losses, while the bifacial design further boosts yield on light-colored roofs and ground-mount farms.
How do the HJT cells in the SURYAVA series perform under high summer temperatures?
HJT technology has a lower power temperature coefficient than conventional PERC cells, meaning output declines more slowly as panel temperature rises. In practice, this translates into better energy yield on hot, sunny days compared to standard modules, particularly for rooftop mounting where panels tend to run hotter.
What does the 20-busbar (MBB) architecture and current binning mean for a large SURYAVA installation?
MBB architecture with 20 busbars increases the number of current paths between cells, reducing resistive losses and the impact of micro-cracks. Current binning groups cells with matched current output within the same module. In large strings, this limits mismatch losses, so the whole array performs closer to the sum of individual panel outputs instead of being capped by the weakest cell.
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