---
title: "JS Solar JS182MHC108-395 395W Solar Panel - Specs & Review | ComparePV"
description: "JS Solar JS182MHC108-395 395W solar panel. Specs: 20.20% efficiency, Monocrystalline cells, dimensions, warranty and temperature coefficient."
source: "https://comparepv.com/panel/js-solar-js182mhc108-395"
updated: 2026-09-11
---

# JS Solar JS182MHC108-395

Middle of its segment, short guarantee

6,361 panels in the 295-495 W band, all technologies


## Identity

- **Manufacturer:** JS Solar
- **Model:** JS182MHC108-395
- **Series:** JS182MHC108
- **Rated power:** 395 W
- **Cell technology:** Monocrystalline


## How it compares

Compared against 295-495 W band, all technologies (6361 panels).


| Measure | This panel | Segment median | Standing | Rank |
| --- | --- | --- | --- | --- |
| Power (Wp) | 395 W | 430 W | Weak - bottom 22% |  |
| Module efficiency | 20.20% | 21.28% | Weak - bottom 23% | 11,956 |
| Power density | 202.0 | 212.5 | Weak - bottom 23% | 11,992 |
| Temperature coefficient | -0.340 | -0.300 | Typical | 8,778 |
| Weight (kg) | 21.5 kg | 22.5 kg | Typical |  |
| Performance warranty | 25 yrs | 30 yrs | Weak - bottom 19% | 9,798 |


### Full peer table


| Measure | This panel | Segment median | Standing | Rank |
| --- | --- | --- | --- | --- |
| Module efficiency | 20.20% | 21.28% | Weak - bottom 23% | 11,956 |
| Power density | 202.0 | 212.5 | Weak - bottom 23% | 11,992 |
| Temperature coefficient | -0.340 | -0.300 | Typical | 8,778 |
| Weight per kWp | 54.4 | 53.2 | Typical | 8,731 |
| Performance warranty | 25 yrs | 30 yrs | Weak - bottom 19% | 9,798 |


### Watch out for

- **25 year performance warranty** - Bottom 19% of the 295-495 W band, against a median of 30 yrs.
- **202.0 watts per square metre** - Bottom 23% of the 295-495 W band, against a median of 212.5.
- **20.20% module efficiency** - Bottom 23% of the 295-495 W band, against a median of 21.28%.

- **Best for:** Residential, shaded-installations and hot-climate.
- **Not ideal for:** Owners who want a long output guarantee, roofs where every square metre has to count and tight roof space.


## Specification


### Electrical

- **Rated power (Pmax):** 395 W
- **Efficiency:** 20.20 %
- **Voltage at Pmax (Vmp):** 30.72 V
- **Current at Pmax (Imp):** 12.86 A
- **Open-circuit voltage (Voc):** 36.84 V
- **Short-circuit current (Isc):** 13.57 A
- **Max system voltage:** 1500 V


### Temperature

- **Temperature coefficient of Pmax:** -0.340 %/degC
- **Temperature coefficient of Voc:** -0.250 %/degC
- **Temperature coefficient of Isc:** 0.040 %/degC
- **NOCT:** 43 degC


### Cell and construction

- **Cell type:** Monocrystalline
- **Cell count:** 108


### Physical

- **Length:** 1724 mm
- **Width:** 1134 mm
- **Thickness:** 30 mm
- **Weight:** 21.5 kg
- **Area:** 1.96 m2
- **Power density:** 202.0 Wp/m2


### Warranty and degradation

- **Performance warranty:** 25 years
- **Output guaranteed at end of warranty:** 84.8 %
- **First-year degradation:** 2.00 %
- **Annual degradation:** 0.55 %
- **Output after 30 years:** 324 W


## Rank in the whole catalogue


| Measure | Position |
| --- | --- |
| Efficiency | 11956 of 14005 |
| Power density | 11992 of 14005 |
| Temperature coefficient | 8778 of 14005 |
| Weight | 8731 of 14005 |
| Warranty | 9798 of 14005 |


## Pros

- **Half-Cut 108-cell technology** - Splitting cells in half reduces internal resistance by ~50% compared to standard cells, cutting resistive losses and improving output under partial shading by 10–15%. The 108-cell layout on a 182 mm wafer keeps module dimensions (1724×1134×35 mm, 21.5 kg) installer-friendly for residential rooftops.
- **Favorable temperature coefficient** - Pmax temperature coefficient is -0.34%/°C, placing this series at the better end of the PERC range (typical PERC: -0.35 to -0.37%/°C). At a cell temperature of 70°C, power loss is ~16.6% instead of ~17.5–18.5% for lower-performing PERC modules, resulting in measurably higher summer energy yield.
- **Certified PID resistance** - The series carries a positive PID test result (IEC 62804), ensuring long-term power stability in high-humidity environments and at system voltages up to 1000 V DC. This eliminates the risk of efficiency degradation of several percentage points common in non-certified modules.
- **25-year linear power warranty with confirmed retention** - The manufacturer guarantees ≥84.8% of rated power after 25 years, matching the level offered by direct peers in this segment (AE Solar AURORA AE MD-108, Aptos Solar DNA 108-Monofacial). The warranty covers both product (10 years) and power output, backed by IEC 61215 and IEC 61730 certification.


## Cons

- **Not BNEF Tier-1 bankable** - JS Solar does not appear on the BNEF Tier-1 list (Q1 2026), unlike suppliers behind some peer-comparable products. For installations financed via bank loans or leasing, this can be a formal barrier — lenders typically require modules from manufacturers with confirmed bankability status.
- **PERC technology in the TOPCon transition era** - The series is built on mono PERC, while the market in 2025–2026 is shifting rapidly to N-type TOPCon (temperature coefficient: -0.29 to -0.30%/°C vs. -0.34%/°C for this series, plus lower LID losses). Choosing this series means selecting proven but technically regressing technology, which may reduce the residual value of the installation after 10+ years.
- **Monofacial-only design** - The JS182MHC108 series is available only in monofacial configuration (is\_bifacial: false), while the direct peer LEDVANCE M395~415P54LM-BF-F3 (415 Wp, 21.25%) offers bifacial technology. On rooftops with a light-colored or membrane substrate, bifacial modules can deliver an additional 5–15% yield from reflected irradiance — an advantage this series structurally cannot provide.


## About this series

The JS Solar JS182MHC108 series redefines efficiency standards in the residential photovoltaic installation segment, focusing on maximum power density while maintaining optimal dimensions. A key distinguishing feature of these modules is the use of **half-cut cells (Half-Cut)**, which drastically reduces losses resulting from internal resistance and partial shading of the roof surface. The use of modern 182 mm wafers in a 108-cell configuration allows for high energy yields even on roofs with complex geometry and limited surface area. Innovative **multi-busbar** technology shortens the electron flow path, leading to lower thermal loads and a longer component lifespan. This solution is primarily dedicated to individual investors seeking a balance between aesthetics and reliability in harsh weather conditions. What sets the JS182MHC108 series apart from the competition is its **high module efficiency** and excellent temperature coefficient, ensuring stable operation on hot days. By choosing this product, the user receives a technologically advanced system **resistant to the PID effect**, which guarantees the maintenance of nominal power for decades of operation without the need for frequent inspections and unplanned service costs. This is an optimal choice for modern single-family housing, where every square meter of roof space counts.


## Notable figures

- Efficiency of 20.2% is 1.6pp below the \*\*database\*\* median (21.8%)
- Power density of 202.0 W/m² is 16.1 W/m² below \*\*database\*\* median (218.1 W/m²) - needs more roof space
- Temperature coefficient of -0.34%/°C is 0.04pp worse than \*\*database\*\* median (-0.30%/°C) - higher losses in summer heat
- 21.5 kg weight - 5.0 kg lighter than \*\*database\*\* median (26.5 kg), reducing installation effort
- In the top 85% for efficiency among all N-type panels


## Questions


### What is the power output of the JS Solar JS182MHC108 panels, and is it enough to power a typical single-family home?

Each module in the JS182MHC108 series delivers a maximum output of 415 Wp. A typical single-family home consuming 4,000–5,000 kWh per year usually requires 8–12 modules, resulting in a 3.3–5 kWp system. The high module efficiency combined with half-cut cell technology means that even a smaller roof area can support an installation that covers a substantial share of household electricity demand.


### What is the half-cut cell technology used in the JS182MHC108 series, and does it actually improve energy yield?

Half-cut technology splits each solar cell in two, reducing internal resistance and minimizing resistive heat losses. In practice, the JS182MHC108 handles partial shading — from a chimney or dormer, for example — more effectively, because a shaded half-cell does not shut down the entire module string. The result is higher annual energy yield and lower sensitivity to the unfavorable roof conditions common in residential installations.


### What warranty does the JS Solar JS182MHC108 carry, and what exactly does it cover?

The manufacturer provides a 25-year linear power warranty, guaranteeing that each panel retains a defined percentage of its rated output over the entire period. A standard product warranty covering material and manufacturing defects also applies. Before purchasing, verify current warranty terms with your local distributor — JS Solar is not Bloomberg NEF Tier 1 certified, which may be relevant when assessing long-term financial and service risk.


### Are the JS182MHC108 panels protected against PID, and how does that affect long-term system performance?

Yes, the JS182MHC108 series is designed to resist PID (Potential Induced Degradation), a gradual power loss caused by stray current leaking through the mounting structure into the cells. PID resistance is especially important in high-humidity climates and high-voltage string configurations. This built-in protection ensures the modules maintain their rated output for decades without requiring additional service interventions or unplanned maintenance costs.


### Will the JS182MHC108 series perform well on a pitched roof with a chimney or dormers where available space is limited?

Yes, the 108-cell, 182 mm wafer configuration delivers high power in a relatively compact module footprint, making the JS182MHC108 a strong fit for roofs with limited usable area. The half-cut cell technology further reduces the impact of partial shading from chimneys, dormers, or satellite dishes — keeping energy losses low even when portions of the array are intermittently shaded throughout the day.


### Is JS Solar a Tier 1 manufacturer, and is investing in their panels worthwhile?

JS Solar is not listed as a Tier 1 manufacturer by Bloomberg NEF, meaning it carries lower recognition in global financial risk assessments. This does not necessarily indicate inferior product quality — the JS182MHC108 series features proven half-cut cells, a multi-busbar architecture, PID protection, and a 25-year power warranty. We recommend comparing the offer against Tier 1 alternatives and confirming local warranty service availability with a distributor before making a purchase decision.


## Datasheet

[Manufacturer datasheet (PDF)](https://comparepv.com/datasheets/7011930f5a40367dc4f72560bd4ba6cd-9018e7619a81.pdf)


## Alternatives


| Panel | Power | How it differs |
| --- | --- | --- |
| [Luxor Solar LX-440M/182-108+GG](https://comparepv.com/panel/luxor-solar-lx-440m-182-108-gg) | 440 W | Cooler, +2.9 pp, +5 yr warranty |
| [Gamko New Energy GKA210M360W](https://comparepv.com/panel/gamko-new-energy-gka210m360w) | 360 W | Lighter, +2.8 pp, +5 yr warranty |
| [Gamko New Energy GKA210M380W (1/4\*4\*38)](https://comparepv.com/panel/gamko-new-energy-gka210m380w-1-4-4-38) | 380 W | Lighter, +2.8 pp, +5 yr warranty |
| [Gamko New Energy GKA210M400W (1/2\*4\*20)](https://comparepv.com/panel/gamko-new-energy-gka210m400w-1-2-4-20) | 400 W | Lighter, +2.8 pp, +5 yr warranty |
| [Gamko New Energy GKA210M400W (1/4\*4\*40)](https://comparepv.com/panel/gamko-new-energy-gka210m400w-1-4-4-40) | 400 W | Lighter, +2.8 pp, +5 yr warranty |
| [Gamko New Energy GKA210M380W (1/2\*4\*19)](https://comparepv.com/panel/gamko-new-energy-gka210m380w-1-2-4-19) | 380 W | Lighter, +2.8 pp, +5 yr warranty |
| [Jetion JT440SYK(B)](https://comparepv.com/panel/jetion-jt440syk-b) | 440 W | Cooler, +2.7 pp, +5 yr warranty |
| [Luxor Solar LX-440M/182-108+](https://comparepv.com/panel/luxor-solar-lx-440m-182-108) | 440 W | +45 W, cooler, +2.7 pp |
| [JS Solar JS182MHC108-390](https://comparepv.com/panel/js-solar-js182mhc108-390) | 390 W | Very close match |
| [JS Solar JS182MHC108-400](https://comparepv.com/panel/js-solar-js182mhc108-400) | 400 W | +0.3 pp |
| [JS Solar JS405M108](https://comparepv.com/panel/js-solar-js405m108) | 405 W | Cooler, lighter, +1.5 pp |
| [JS Solar JS182MHC108-405](https://comparepv.com/panel/js-solar-js182mhc108-405) | 405 W | +10 W, +0.5 pp |
| [JS Solar JS410M108HBC](https://comparepv.com/panel/js-solar-js410m108hbc) | 410 W | +15 W, cooler, +0.8 pp |
| [JS Solar JS182MHC108-410](https://comparepv.com/panel/js-solar-js182mhc108-410) | 410 W | +15 W, +0.8 pp |
| [JS Solar JS415M108HBC](https://comparepv.com/panel/js-solar-js415m108hbc) | 415 W | +20 W, cooler, +1.1 pp |
| [Longi Solar LR7-54HJD-510M](https://comparepv.com/panel/longi-lr7-54hjd-510m) | 510 W | +115 W, cooler, +4.8 pp |


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Source: https://comparepv.com/panel/js-solar-js182mhc108-395

Not in this file, on the page: a thirty-year output simulator and alternatives filtered by how closely they match these dimensions.

