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HY-DH108N8B-435

435 Wp N-type Bifacial 80%
ComparePV verdict

Space saver, heavy for its output

Rank 9,745 of 14,005
Compare panels Datasheet PDF
Power (Wp)
435
Typical for its class
Efficiency (%)
22.30
Strong · top 18%
Density (Wp/m²)
222.8
Strong · top 17%
Temp (%/°C)
-0.290
Typical · median -0.290
Weight (kg)
24.2
Weak · 2.2 kg above median
Warranty (yrs)
30
Typical · median 30 yrs

The HY-DH108N8B series from Runergy is a dual-glass, N-type photovoltaic module built on TOPCon technology, engineered to capture as much sunlight as possible on both the front and rear sides of the panel. The use of half-cut cells arranged in a multi-busbar layout reduces resistive losses and delivers a more even current distribution, resulting in more stable performance even under partial shading. A key advantage of the series is its bifacial design with dual glass construction, which allows the module to capture additional reflected energy from bright surfaces, rooftops, or snow, lowering the effective levelized cost of energy (LCOE) over the system's lifetime. The panel also stands out for its high mechanical durability against snow and wind loads, making it suitable both for pitched roofs on single-family homes and for larger commercial and industrial installations. The N-type technology reduces LID/LeTID degradation and improves module behavior under low-light and high-temperature conditions, which matters for investors expecting predictable energy production over decades. The HY-DH108N8B is built for installers and investors looking for efficiency, durability, and lower BoS costs in a single module.

Ranking

321 panels in the segment N-type 400-450 W
Metric This panel Median Position in segment Overall rank
Module efficiency 22.30% 21.91% Strong · top 18% 5,100
Power density 222.8 218.3 Strong · top 17% 5,150
Temperature coefficient -0.290 -0.290 Typical 2,165
Weight per kWp 55.6 51.2 Weak · bottom 22% 10,001
Performance warranty 30 yrs 30 yrs Typical 21
Colour key Strong - top 25% Typical - middle 50% Weak - bottom 25%

Signals from the data

2 positive · 1 caution
Best for

Residential, commercial and shaded-installations.

Not ideal for

Weight-limited structures.

Strengths
222.8 watts per square metre

Top 17% of the N-type 400-450 W segment, against a median of 218.3.

22.30% module efficiency

Top 18% of the N-type 400-450 W segment, against a median of 21.91%.

Watch-outs
55.6 kg per kWp

Bottom 22% of the N-type 400-450 W segment, against a median of 51.2.

Notes from the database
  • At 22.3% efficiency, this panel is on par with typical N-type 400-450W modules
  • At 222.8 W/m² power density, this panel generates 4.5 W/m² more per unit area than N-type 400-450W median (218.3 W/m²)
  • Temperature coefficient of -0.29%/°C matches the N-type 400-450W median
  • At 24.2 kg, this panel is 2.2 kg heavier than the N-type 400-450W median (22.0 kg) - more demanding for installation crews
  • 80% bifaciality enables rear-side power generation, boosting yield by 4-12% on reflective surfaces

Specifications

Open datasheet PDF
Nominal power (Pmax) 435 Wp Nameplate at 1000 W/m², 25 °C
Module efficiency 22.30 % Strong Segment median 21.91%
Vmpp · Impp 33.03 V · 13.17 A Operating point at max power
Voc · Isc 38.97 V · 13.80 A Sizes the string length
Max system voltage 1500 V Longer strings than 1000 V modules
Dimensions 1722×1134×30 mm · 1.95 m² of roof
Weight 24.2 kg Weak Weak · 2.2 kg above median
Cells 108 · N-type Monocrystalline
Bifaciality 80 % Rear output as a share of front
Coefficient Pmax -0.290 %/°C Typical median -0.290 of its segment
Coefficient Voc · Isc -0.250 · 0.045 %/°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 87.4 % Equals 380 W guaranteed
Degradation 1.00 → 0.40 % First year, then annual

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
-0.290 %/°C against a segment median of -0.290
-
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
Runergy HY-DH108N8B-435 435 W 22.30% -0.290 24.2 kg You are here
JAT54S40-485/LR 485 W 24.30% -0.260 19.3 kg +50 W, lighter, +2.0 pp
AIKO-A485-MCE54Mw 485 W 24.30% -0.260 21.0 kg +50 W, lighter, +2.0 pp
AIKO-A485-MAH54Mw 485 W 24.30% -0.260 21.5 kg +50 W, cooler, +2.0 pp
GK-5-54HG-485M 485 W 24.30% -0.260 21.0 kg +50 W, lighter, +2.0 pp
ZEUS 3.0+ 108 485WP 485 W 24.30% -0.260 24.2 kg +50 W, cooler, +2.0 pp
HY-DH108N8-425 425 W 21.80% -0.290 24.2 kg -10 W, -0.5 pp
HY-DH108N8B-430 430 W 22.00% -0.290 24.2 kg -0.3 pp
HY-DH108N8B-440 440 W 22.50% -0.290 24.2 kg Very close match
HY-DH108N8B-445 445 W 22.80% -0.290 24.2 kg +10 W, +0.5 pp
LR7-54HJD-510M 510 W 25.00% -0.240 23.5 kg +75 W, cooler, +2.7 pp
AIKO-A495-MCE54Mw 495 W 24.80% -0.260 21.0 kg +60 W, lighter, +2.5 pp
LR7-54HJD-505M 505 W 24.70% -0.240 23.5 kg +70 W, cooler, +2.4 pp
AIKO-A490-MCE54Mw 490 W 24.50% -0.260 21.0 kg +55 W, lighter, +2.2 pp
LR7-54HJD-500M 500 W 24.50% -0.240 23.5 kg +65 W, cooler, +2.2 pp
CIPRO-TN9C54M-500W 500 W 24.50% -0.260 21.4 kg +65 W, cooler, +2.2 pp

Found 1783 panels of the same or similar size to this one, within ±10 mm. See them here Found 1914 panels of the same or similar size to this one, within ±25 mm. See them here Found 3392 panels of the same or similar size to this one, within ±50 mm. See them here Found 3970 panels of the same or similar size to this one, within ±100 mm. See them here

Common questions

6 answered
Is the Runergy HY-DH108N8B panel suitable for a pitched residential roof?
Yes, the HY-DH108N8B series works well on both pitched roofs and commercial installations. The half-cut cell design in a multi-busbar configuration improves resistance to partial shading, while high mechanical strength against snow and wind loads means the panel holds up well under typical conditions found on sloped roofs.
What does the bifacial design of the HY-DH108N8B offer, and is it worth the extra cost?
The double-glass bifacial construction allows the module to capture additional light reflected off bright surfaces, roofing, or snow, generating extra energy from the rear side of the panel. In practice, this means higher real-world energy yield over the system's lifetime and a lower LCOE, especially when installed above bright surfaces or in ground-mounted arrays.
What warranty comes with Runergy HY-DH108N8B panels?
The HY-DH108N8B panels come with a 12-year product warranty and a 30-year linear power output warranty. This means the manufacturer guarantees a gradually declining but predictable performance level over three decades, which is important when calculating the long-term profitability of a PV installation.
How does the N-type TOPCon technology in the HY-DH108N8B differ from standard PERC panels?
The N-type TOPCon cells used in this series show lower LID and LeTID degradation compared to conventional P-type PERC cells. As a result, the panel maintains better efficiency under low-light conditions and high temperatures, leading to more stable and predictable energy output throughout the system's operating life.
What is the maximum power output of the HY-DH108N8B, and what installations is it suited for?
Modules in the HY-DH108N8B series reach a maximum power output of up to 450 Wp. This makes the panel a good fit for both residential prosumer installations and larger commercial or industrial projects, where high power density per available roof or ground area is a key factor.
Is Runergy a reliable manufacturer, and where are HY-DH108N8B modules produced?
Runergy is a Tier 1 manufacturer headquartered in China, a classification confirmed by industry rankings of financial stability and production scale. This status gives investors greater confidence in warranty backing and manufacturing quality over the module's long-term operating life.
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