+1-888-321-6765 info@truesteadsupply.com
+1-888-321-6765
info@truesteadsupply.com
Four high-efficiency 16BB N-Type panels, each 8% lighter and 11% smaller than comparable p-PERC 100W panels — serious output in a surprisingly manageable footprint.
The Renogy 4-Piece 100 Watt 16BB N-Type Monocrystalline Solar Panel set (SKU: RSP100DCx4-US) delivers a full 400W solar array built on Renogy's latest N-Type TOPCon cell technology. Each rigid panel achieves up to 25% N-Type cell efficiency and 20% module efficiency, housed in a corrosion-resistant anodized aluminum alloy frame rated for year-round outdoor exposure. With a sub-25V open-circuit voltage, these panels are compatible with 99% of MPPT and PWM charge controllers — making this 4-pack a straightforward upgrade or foundation for RV rooftops, van conversions, off-grid cabins, tiny homes, and boat installations where roof space is limited and output matters.
N-Type cells, a 16-busbar design, and a reinforced aluminum frame combine to make each panel a reliable, long-term performer — four of them together give you a capable 400W array ready to charge a battery bank, power an RV, or anchor a cabin system.
Four 100W N-Type panels give you a 400W array — enough to charge a 100Ah LiFePO4 battery bank from near-empty in favorable sun conditions and to keep refrigeration, lighting, fans, and device charging running in a well-designed off-grid setup.
N-Type monocrystalline cells achieve up to 25% cell efficiency, delivering up to 20W more than a comparably sized p-PERC 100W panel. That means your 400W array draws on the same roof footprint a lesser panel technology would need for roughly 320W.
Sixteen busbars reduce internal electrical resistance and distribute mechanical stress across the cell surface, increasing power density and reducing the risk of microcracks from years of vibration, thermal cycling, and road travel.
A temperature coefficient of −0.29%/°C means these panels shed significantly less power on hot summer days than standard p-PERC panels — an important advantage for desert RVers, Southwest off-gridders, and any rooftop install with limited airflow underneath.
At just 13 lbs (5.9 kg) per panel, the full 4-pack adds only about 52 lbs (23.6 kg) to your roof — 8% lighter per panel than a comparable p-PERC 100W panel, making these easier to handle solo during installation and gentler on your RV or van roof structure.
An IP65-rated junction box and IP67-rated solar connectors keep moisture out in rain, humidity, and wash-downs. The aluminum alloy frame — over 1.1 mm thick — handles snow loads up to 5,400 Pa and wind loads up to 2,400 Pa, suitable for rooftop use across most North American climates.
Each panel is constructed with low-iron tempered glass, a POE (polyolefin elastomer) encapsulant film, a TPT backsheet, and an anodized aluminum alloy frame over 1.1 mm thick — a noticeably heavier-gauge frame than many competing panels in this wattage class. The pre-drilled mounting holes on the back accept Renogy Z-brackets, corner mounts, and tilt mounts (all sold separately), making rooftop and ground-mount installations straightforward whether you're wiring all four panels together or staging them in pairs.
With four panels and a sub-25V open-circuit voltage per panel, you have flexible wiring options. Wiring all four in parallel keeps the array at roughly 22.79V Voc and combines current for a 12V battery system. Wiring in pairs of series strings (2S2P) doubles the voltage to around 45.58V while combining current — a common configuration for 24V systems and MPPT controllers with higher input voltage ranges. Always confirm your charge controller's maximum input voltage and current specifications before finalizing your wiring layout.
Specifications are per individual panel (RSP100DC). This 4-pack (RSP100DCx4-US) includes four identical panels for a combined 400W array.
| Maximum Power (Pmax) | 100W per panel / 400W total (4-pack) |
|---|---|
| Module Efficiency | 20% (N-Type cell efficiency up to 25%) |
| Open-Circuit Voltage (Voc) | 22.79V per panel |
| Short-Circuit Current (Isc) | 5.31A per panel |
| Optimum Operating Voltage (Vmp) | 19.97V per panel |
| Optimum Operating Current (Imp) | 5.01A per panel |
| Maximum System Voltage | 600V DC |
| Maximum Series Fuse Rating | 15A |
| Temperature Coefficient (Pmax) | −0.29%/°C |
| Operating Temperature | −40°F to 194°F (−40°C to 90°C) |
| Solar Cell Type | N-Type Monocrystalline (16BB) |
|---|---|
| Frame Material | Anodized aluminum alloy (>1.1 mm thick) |
| Front Glass | Low-iron tempered glass |
| Encapsulant | POE (polyolefin elastomer) film |
| Backsheet | TPT (Tedlar-Polyester-Tedlar) |
| Junction Box Rating | IP65 |
| Connector Rating | IP67 (solar connectors) |
| Snow Load | 5,400 Pa |
| Wind Load | 2,400 Pa |
| Length | 34.1 in (865 mm) |
|---|---|
| Width | 22.8 in (578 mm) |
| Depth (frame) | 1.2 in (30 mm) |
| Weight (per panel) | 13 lbs (5.9 kg) |
| Total weight (4-pack) | 52 lbs (23.6 kg) |
N-Type silicon has fewer impurities than p-type PERC silicon, which results in higher cell efficiency, a lower temperature coefficient (less output lost on hot days), better low-light performance, and a longer useful lifespan due to reduced light-induced degradation (LID). In practical terms, each panel in this 4-pack delivers more usable energy per square foot over its lifetime compared to a comparable p-PERC panel.
Both are accurate and describe different things. The 25% figure is the N-Type cell efficiency — how efficiently the solar cells themselves convert sunlight. The 20% figure is the module efficiency — output relative to the total panel area including the frame, which produces no power. Module efficiency is always lower than cell efficiency. Both numbers are verified from manufacturer and authorized dealer sources.
For a 12V battery system, wire all four panels in parallel. This keeps the array voltage at roughly 22.79V Voc and combines current to about 21.2A Isc — you'll want an MPPT charge controller rated for at least 30A to have comfortable headroom. For a 24V system, wire in two parallel strings of two series panels each (2S2P). This doubles the voltage to roughly 45.58V Voc while keeping combined current at about 10.6A Isc — a 20A MPPT controller with at least a 50V input rating handles this configuration well. Always confirm your controller's maximum input voltage and current before finalizing your wiring.
For four panels wired in parallel into a 12V system, the combined short-circuit current is approximately 21.2A. A 30A MPPT charge controller provides the recommended 25% headroom. For a 2S2P configuration into a 24V system, combined Isc drops to roughly 10.6A — a 15A MPPT controller is sufficient, though a 20A controller gives more headroom. MPPT is strongly recommended over PWM for a 400W array to maximize harvest efficiency.
Most likely yes — with an open-circuit voltage of 22.79V per panel, these panels are compatible with 99% of MPPT and PWM charge controllers. Before connecting, verify your controller's maximum PV input voltage exceeds your planned array Voc (22.79V for parallel, 45.58V for 2S2P) and that its maximum current rating covers your array's Isc plus the recommended 25% safety margin.
Real-world daily output depends on your location, season, panel tilt, shading, and system efficiency. As a general estimate, in an area with 4–5 peak sun hours per day, a 400W array can produce roughly 1,200–1,600 Wh (1.2–1.6 kWh) of usable energy per day after accounting for typical system losses. High-sun regions with optimal tilt will produce more; northern or overcast climates will produce less.
Mounting hardware is not included. The panels have pre-drilled holes on the back compatible with Renogy Z-brackets, corner mounts, and tilt mounts, all sold separately. For a flat RV or van roof, Z-brackets are the most common choice and the simplest to install. Tilt mounts can improve output on fixed ground or rooftop installations by angling the panels toward the sun.
Yes. If you wire any panels in parallel, you'll need solar branch (Y) connectors — typically sold as pairs — to combine the positive and negative leads before running a single cable to your charge controller. These are sold separately. If you wire all four panels in series (not a typical configuration for a 12V or 24V system given the resulting high voltage), you simply daisy-chain the positive of one panel to the negative of the next with no branch connectors needed.
Yes. The IP65-rated junction box and IP67-rated connectors seal out moisture in rain and wash-downs. The anodized aluminum alloy frame — over 1.1 mm thick — is rated for snow loads up to 5,400 Pa and wind loads up to 2,400 Pa, making these panels suitable for rooftop use across most North American climates, including areas with heavy snowfall.
The panels use industry-standard IP67-rated solar (MC4-compatible) connectors. Extension cables and adapter kits are not included and are sold separately. When purchasing cables, ensure they are rated for outdoor solar use and sized appropriately for your run length to minimize voltage drop.
Better than most p-PERC alternatives. With a temperature coefficient of −0.29%/°C, these N-Type panels lose less output as rooftop temperatures rise. For comparison, many standard p-PERC panels carry a coefficient of −0.35%/°C or worse, meaning the N-Type panels maintain a meaningful performance advantage on hot sunny days — exactly the conditions when you most want your array producing well.
Yes. The RSP100DC panels are part of Renogy's N-Type solar panel line and can be connected in series or parallel with additional RSP100DC panels or other compatible panels. Before adding more panels, verify that your charge controller's input voltage, current, and power ratings support the expanded array size.
Renogy provides a 10-year material and workmanship warranty and a 25-year output warranty on each panel. Because TrueStead Supply is an authorized Renogy dealer, the full manufacturer warranty applies to panels purchased here.
According to Renogy, the N-Type RSP100DC delivers up to 20W more than a comparably sized p-PERC 100W panel, is approximately 8% lighter, and occupies about 11% less footprint per panel — meaning your 4-panel array fits in the space a p-PERC 4-pack would need while delivering meaningfully more output. The lower temperature coefficient also means less power loss on hot days. The trade-off is a higher upfront cost per panel relative to older p-PERC options.