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Contrôleur de charge solaire MPPT Rover Boost 10A 36V/48V

Contrôleur de charge solaire MPPT Rover Boost 10A 36V/48V

Prix habituel $169.00 CAD
Prix habituel $211.00 CAD Prix promotionnel $169.00 CAD
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Renogy Rover Boost 10A MPPT Régulateur de Charge Solaire 36V/48V

Optimisez votre installation solaire avec un régulateur de charge solaire conçu pour les parcs de batteries à tension plus élevée. Le Renogy Rover Boost 10A MPPT est conçu pour augmenter la tension des panneaux solaires 12V ou 24V.

Il charge ensuite efficacement les systèmes de batteries 36V ou 48V. Cela en fait un excellent choix pour les camping-cars autonomes, les bateaux et autres installations à haute tension.

La technologie MPPT avancée permet de capter plus d'énergie de vos panneaux. Elle offre une efficacité allant jusqu'à 99% pour une charge quotidienne fiable.

La charge est gérée par un profil intelligent à 4 étapes. Il comprend le bulk, le boost, le float et l'égalisation.

Il prend en charge les batteries scellées, gel, inondées et au lithium. La détection automatique de la tension permet de s'adapter correctement à votre parc.

Besoin d'un contrôle plus précis ? Les paramètres peuvent être personnalisés via le port RS232 pour les configurations prises en charge.

Un écran LCD rétroéclairé affiche les données clés en un coup d'œil. Vérifiez la tension, le courant et l'état de la batterie sans outils supplémentaires.

Les protections intégrées ajoutent de la confiance sur la route ou sur l'eau. Elles aident à prévenir la surcharge, l'inversion de polarité et les courts-circuits.

Ce régulateur supporte une entrée solaire allant jusqu'à 260W sur une installation de panneaux 12V. Il supporte jusqu'à 520W sur une installation de panneaux 24V.

Cette flexibilité est utile lorsque la tension de votre panneau et la tension de votre batterie ne correspondent pas. C'est une solution pratique pour les besoins de charge élévatrice.

L'unité est compacte et facile à placer dans les installations exiguës. Elle pèse 1,2 kg (2,65 lbs).

Les dimensions sont de 8,8 x 7,6 x 2,9 pouces pour un montage simple. Il est également certifié CE pour des performances fiables.

Pour de meilleurs résultats, confirmez la puissance de votre panneau et la tension de votre parc de batteries avant le câblage. Suivez les pratiques d'installation sûres et vérifiez la polarité.

Une fois installé, surveillez l'écran LCD pendant le premier cycle de charge. Cela permet de vérifier l'entrée stable et les étapes de charge appropriées.

Expédition

Les commandes sont traitées dans un délai de 1 à 3 jours ouvrables. La livraison prend généralement 7 à 14 jours ouvrables pour les commandes nationales et 10 à 20 jours pour les expéditions internationales. Les informations de suivi vous seront communiquées une fois votre commande expédiée.

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Ships from: CAN

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Frequently Asked Questions

You need a 5-to-1 solar panel parallel adapter cable when you want to connect multiple solar panels to one charge controller or portable power station input without building a custom wiring harness. A parallel combiner is most useful when your panels are intended to stay at the same system voltage while increasing total current output. This type of cable combines up to five panel input pairs into one MC4 output pair, which helps reduce cable clutter and makes installation cleaner in RV, cabin, marine, and small off-grid setups. The 8-foot length also gives more routing flexibility than short branch connectors, which can help when panels are spaced across a roof or rack. It is best for users expanding an existing array with compatible panels that share similar voltage characteristics. The main tradeoff is that parallel wiring increases current, so your charge controller, input connectors, and overall system must be rated to handle the combined amperage. This cable is rated for up to 30A and 600V DC, but actual safe performance depends on the full system design.
A parallel MC4 combiner cable is better when you want to keep panel voltage the same and increase current, especially for systems that must stay within the input voltage limits of a charge controller or portable power station. In parallel, each panel contributes amperage, so it is often a practical choice for RV roofs, portable arrays, and battery-based systems using lower-voltage panel configurations. A 5-to-1 combiner cable simplifies that setup by merging five panel connections into one output pair using standard MC4 connectors. This can make expansion easier and reduce loose wiring. It is especially useful when working with matching panels in an organized off-grid installation. Series wiring can be better when you need higher voltage and lower current over longer cable runs, but it may be less suitable if your controller or power station has a strict voltage ceiling. The key tradeoff is that parallel systems require heavier attention to current capacity. A 14AWG tinned copper cable like this supports efficient power transfer, but your total array current, controller rating, and connector limits still need to be checked before installation.
Yes, this cable will work with most solar panels and charge controllers that use standard MC4 connections, as long as the electrical ratings match your system. It is a universal-style 5-to-1 MC4 parallel adapter, so the main compatibility checks are connector type, panel voltage similarity, and total current within system limits. The cable uses professionally crimped MC4 male and female connectors, 14AWG tinned stranded copper conductors, and an 8-foot length for flexible installation. It is designed to combine five solar panel inputs into one output pair, which can then feed a charge controller or compatible portable power station solar input. The insulation is UV-resistant and weatherproof, making it suitable for outdoor RV, marine, cabin, and off-grid use. The most important limitation is not physical fit, but electrical fit. In a parallel setup, currents add together, so you need to confirm that the combined array output stays within the cable's 30A maximum and within the charge controller's solar input rating. For best performance, use panels with similar operating voltage.

Frequently Asked Questions

You need a 5-to-1 solar panel parallel adapter cable when you want to connect multiple solar panels to one charge controller or portable power station input without building a custom wiring harness. A parallel combiner is most useful when your panels are intended to stay at the same system voltage while increasing total current output. This type of cable combines up to five panel input pairs into one MC4 output pair, which helps reduce cable clutter and makes installation cleaner in RV, cabin, marine, and small off-grid setups. The 8-foot length also gives more routing flexibility than short branch connectors, which can help when panels are spaced across a roof or rack. It is best for users expanding an existing array with compatible panels that share similar voltage characteristics. The main tradeoff is that parallel wiring increases current, so your charge controller, input connectors, and overall system must be rated to handle the combined amperage. This cable is rated for up to 30A and 600V DC, but actual safe performance depends on the full system design.
A parallel MC4 combiner cable is better when you want to keep panel voltage the same and increase current, especially for systems that must stay within the input voltage limits of a charge controller or portable power station. In parallel, each panel contributes amperage, so it is often a practical choice for RV roofs, portable arrays, and battery-based systems using lower-voltage panel configurations. A 5-to-1 combiner cable simplifies that setup by merging five panel connections into one output pair using standard MC4 connectors. This can make expansion easier and reduce loose wiring. It is especially useful when working with matching panels in an organized off-grid installation. Series wiring can be better when you need higher voltage and lower current over longer cable runs, but it may be less suitable if your controller or power station has a strict voltage ceiling. The key tradeoff is that parallel systems require heavier attention to current capacity. A 14AWG tinned copper cable like this supports efficient power transfer, but your total array current, controller rating, and connector limits still need to be checked before installation.
Yes, this cable will work with most solar panels and charge controllers that use standard MC4 connections, as long as the electrical ratings match your system. It is a universal-style 5-to-1 MC4 parallel adapter, so the main compatibility checks are connector type, panel voltage similarity, and total current within system limits. The cable uses professionally crimped MC4 male and female connectors, 14AWG tinned stranded copper conductors, and an 8-foot length for flexible installation. It is designed to combine five solar panel inputs into one output pair, which can then feed a charge controller or compatible portable power station solar input. The insulation is UV-resistant and weatherproof, making it suitable for outdoor RV, marine, cabin, and off-grid use. The most important limitation is not physical fit, but electrical fit. In a parallel setup, currents add together, so you need to confirm that the combined array output stays within the cable's 30A maximum and within the charge controller's solar input rating. For best performance, use panels with similar operating voltage.