ShadowFlux™ 120W/200W N-Type Anti-Shading Solar Panel

SKU: RSP200DC-ASR-US
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Regular price $239.99
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Ready to install and hit the road!

All parts come with the essentials you need for a smooth fit and clear instructions. From performance upgrades to custom styling, unbox and get your ride ready with confidence!

Need help? OVP Install Center is here to help!

Keep generating max power even when shaded—saving more on every bill. No damaging hotspots, longer panel life, and way less cleaning required.

  • ShadowFlux anti-shading tech delivers up to 85% more output in partial shade, keeps charging when others quit.
  • 25% conversion efficiency N-Type cells with 16BB tech for superior performance in heat and low light.
  • Ultra-compact with the highest power density to maximize watts when roof space is limited.
  • IP67 waterproof, built for rain, snow, dust, and vibration.
  • High voltage for 12V/24V systems, works with standard MPPT controllers.
  • Dimensions: 120W: 41.42*22.76*1.18 inch; 200W: 49.69*30.08*1.18 inch

200W ShadowFlux™

  • Max Power at STC: 200W
  • Open Circuit Voltage: 36.5V
  • Short Circuit Current: 6.86A
  • Optimum Operating Voltage: 31.3V
  • Optimum Operating Current: 6.38A
  • Maximum System Voltage: 1000VDC
  • Maximum Series Fuse Rating: 15A
  • Module Efficiency:20.7%
  • Operating Temperature:-40°F~185°F / -40℃~85℃
  • Dimensions: 49.69*30.08*1.18inch
  • Weight: 10.81kg/23.83lb

Warranty

  • Material and Workmanship Warranty: 5 Years
  • Performance Warranty: 25 Years 80% Output Warranty

Certifications:

  • CE: Yes
  • Manufactured in a Certified ISO 9001 Facility: Yes
  • Rohs: Yes

120W ShadowFlux™

  • Max Power at STC: 120W
  • Open Circuit Voltage: 33.69V
  • Short Circuit Current: 4.57 A
  • Optimum Operating Voltage: 28.89V
  • Optimum Operating Current: 4.21A
  • Maximum System Voltage: 1000VDC
  • Maximum Series Fuse Rating: 15A
  • Operating Temperature: -40°F~185°F / -40℃~85℃
  • Warranty: 5-year output warranty & material and workmanship warranty
  • Weight: 6.80kg/15.87lb
  • Dimensions: 1052*578*30mm/41.42*22.76*1.18inch
Ready For Extreme Weather

Ready For Extreme Weather

Withstand up to 5,400Pa of heavy snow, and up to 2,400Pa of high wind load, delivering dependable performance in harsh conditions for users concerned about weather snow affects solar panels.

IP67 Waterproof

IP67 Waterproof

IP67-Certified for complete waterproofing and dust proofing, ensuring worry-free operation in heavy rain.

Enhanced Durability

Enhanced Durability

Engineered with a thickened frame and extra-strong glass to shield against hail, falling branches, and accidental hits.

Frequently Asked Question

Conventional solar panels can suffer a total power loss from just a single shaded cell. ShadowFlux is engineered from the ground up to tackle the messy, complex shadows of the real world—so you keep generating power when others can't.


Drastically Reduced Power Loss: While all panels lose some power when shaded, ShadowFlux loses far less. You'll see significantly higher wattage output under the same shaded conditions compared to a conventional panel.

ShadowFlux's advanced cell interconnection technology minimizes power loss across a wide spectrum of common shading scenarios, including:

Small & Point Shadows: Bird droppings, leaf litter, splattered mud.

Linear Shadows: Power lines, antenna wires, boat rigging, fence lines.

Partial & Patchy Shadows: Shadows from chimneys, vents, or scattered tree branches.

Dynamic Shadows: Moving shadows from clouds or shifting objects.

ShadowFlux features a high open-circuit voltage (36.5V) and is compatible with both 12V and 24V battery systems.

However, if you expect long-duration partial shading (e.g., trees, debris, roof racks, or boat masts that frequently cast shadows), a 12V system generally provides greater stability and more reliable charging performance under these non-ideal lighting conditions.

Note:
This recommendation applies only when using a single panel. System behavior under series or parallel configurations is not included in this discussion, as multi-panel setups introduce different electrical characteristics.

They strongly recommend using an MPPT charge controller for the best performance and compatibility.

MPPT controllers are far more efficient and make full use of your panel’s voltage—even under weak or changing sunlight. Some third-party PWM controllers may not work properly, so MPPT is the safer choice.

Recommended specs:

  • Max Input Voltage: ≥ 50V (or 50V × number of panels in series)
  • Charging Current: > 10A

To set up a complete off-grid solar power system, you will need a solar panel to generate electricity, a charge controller to regulate the current, and a battery to store the energy for later use. Additionally, you’ll require adapter kit cables to connect the solar panel to the charge controller and tray cables to link the controller to a deep-cycle battery. These components work together to ensure a reliable and efficient off-grid power solution.

To set up an off-grid solar system, you’ll need a solar panel connected to a charge controller to regulate the current, and a battery to store the power. You’ll also need adapter kit cables to connect the solar panels and charge controller, plus tray cables to link the controller to a deep-cycle battery.

On-grid systems refer to solar power setups that are connected to the electrical grid, allowing you to draw power from the grid when needed. In contrast, off-grid systems operate independently of the grid, storing the power they generate for later use. This independence makes off-grid systems a reliable option in areas without grid access or during blackouts, as they are unaffected by grid outages.

Solar panels may underperform due to various factors, most of which are related to environmental conditions. Indirect sunlight, high temperatures, cloudy weather, or the accumulation of dirt and debris on the panel’s surface can all significantly reduce energy output. Regular maintenance and proper placement can help optimize performance.

Solar panels can be connected in series or parallel to match your electrical circuit size and power requirements.

In a series connection, the operating voltage of each panel is added together, while the current remains the same as that of a single panel.

Conversely, in a parallel connection, the current from each panel is combined to determine the system's total current output, while the voltage remains the same as that of a single panel.

To achieve optimal power output and meet your system’s specifications, you can use a combination of both series and parallel connections.

To determine how many solar panels you need, start by understanding and defining the power load required for your system.

Power is measured in watts, while capacity is measured in watt-hours, which is calculated by multiplying the power output (in watts) by the number of hours of operation, then adding a safety factor of 1.5 to 2.

It’s recommended to size your battery bank first based on the minimum required capacity. Once you have this figure, you can determine how many solar panels or how much power input is necessary to meet your energy needs..

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