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Rover 2 12V/24V 20A Compact MPPT Charge Controller with Bluetooth

SKU: RCC-M10020-C2-EU
€74,99
Tax included. Shipping Policy.
Pre-order: Charge Controller — Shipped by 15 October.
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Pre-order: Charge Controller — Shipped by 15 October.
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Delivery time: 5–9 business days. (Excludes LTL shipping.) Shipping by weight
Return & refund policy

What is Renogy's Return Policy?

Return within 30 Days

You may return your product(s) to Renogy within 30 days of delivery. The item(s) must be in the original packaging, be unused, undamaged, and unmodified. A refund will be issued after the returned item is inspected by Renogy.

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Renogy will pay for the return shipping label for items that fall within the following categories:

  • Carrier damage/ warehouse mishandling
  • Defective product
  • Incorrect product was delivered
  • Additional product(s) you did not order were delivered

For any other reason not listed, customers are responsible for any return shipping fees. Renogy will NOT accept returns with any modifications to the product as it voids our warranty. Any modified products returned to Renogy will be shipped back to you at your own expense.

Return after 30 Days

Return requests outside of 30 days require special authorization. You can submit a case through our online portal to request a late return.

Submit a Case

FAQs

Can I exchange my Renogy order?

Renogy does not offer exchanges. If you purchase the wrong item by mistake, you will need return the item and place a separate order for the correct one. The return shipping expenses shall be borne by you.

Where is my refund?

Once we have confirmed that the return requirements are met, we will issue a full refund within 2-5 business days. Actual deposit times may vary according to your banking institution. Additionally, an email notification will be sent out when the refund is issued.

What about defective or faulty items?

We stand behind all of our products. If the item(s) you received is defective or flawed in any way, please submit a case  on our online portal and describe the issue you are encountering.

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Description
Specs
Includes
FAQs
Downloads
Reviews

Rover 2

Compact MPPT Charge Controller with Bluetooth

Small in Size. Pro in Control.

Now Significantly Smaller

Rover 2 takes a major step forward with a dramatically smaller design, up to 65% smaller than the previous generation. Choose from 20A to 50A, all in a camera-sized footprint.

Fit Easily into Tight Spaces

The compact design helps free up room for batteries, wiring, and other system components, even in crowded RV, van, and boat electrical compartments.

*The dimensions shown above are based
on the 40A model.

Monitoring Just Got Easier

The Rover 2 series now features built-in Bluetooth, so you can finally ditch the external dongle. Check charging status and history in the Renogy App from up to 49ft (15m) away, or quickly verify on the LCD. Easy monitoring. Real peace of mind.

Monitoring Just Got Easier

The Rover 2 series now features built-in Bluetooth, so you can finally ditch the external dongle. Check charging status and history in the Renogy App from up to 49ft (15m) away, or quickly verify on the LCD. Easy monitoring. Real peace of mind.
Monitoring Just Got Easier
*The controller displays the voltage measured at its own terminals. Slight differences from the battery terminal voltage are normal and within the specified accuracy.
*The controller displays the voltage measured at its own terminals. Slight differences from the battery terminal voltage are normal and within the specified accuracy.

Harvest More Solar, Get More Power

As clouds pass or sunlight shifts, advanced MPPT tracking continuously finds the maximum power point to capture more usable solar energy with less loss. That means more power reaches your battery from the panels you already have.

Full Charging Output, Even in High Heat

Hot weather shouldn't mean less charging power. Rover 2 series maintains full-rated output up to 113°F (45°C)* thanks to its advanced thermal design, helping deliver steady charging performance even when electrical compartments get hot.

*Temperature data is based on Renogy laboratory testing. Actual performance may vary depending on environmental conditions and usage scenarios.

More Than Basic Connections

More Than Basic Connections

More Than Basic Connections

More Than Basic Connections

More Than Basic Connections

When using lead-acid batteries, you can connect the included temperature sensor to monitor
battery temperature for more precise charging control.
Connect your solar panels here. Choose your panel configuration by system voltage and max solar input, then size the fuse to match the panel current
Rover 2 series supports 12V and
24V battery systems, so confirm your battery bank voltage before setup.
This can be useful for small DC devices up to 20A, like lights that automatically turn on when sunlight
fades and turn off when it returns.
Connect multiple Rover 2 controllers with an RJ45 Ethernet cable to expand your charging capacity
as your system grows.
More Than Basic Connections
*Do not use the temperature sensor on a LiFePO4 battery with a built-in battery management system (BMS).
*Do not use the temperature sensor on a LiFePO4 battery with a built-in battery management system (BMS).
*Do not use the temperature sensor on a LiFePO4 battery with a built-in battery management system (BMS).
*Do not use the temperature sensor on a LiFePO4 battery with a built-in battery management system (BMS).
*Do not use the temperature sensor on a LiFePO4 battery with a built-in battery management system (BMS).

From Sun to Power, Wherever You Go

From Sun to Power, Wherever You Go

MotorhomesMotorhomes
Motorhomes
VansVans
Vans
CabinsCabins
Cabins
BoatsBoats
Boats

Worth the Upgrade? See for Youself

What’s in the Box

Rover 2 12V/24V Compact MPPT Charge Controller with Bluetooth

Rover 2 12V/24V Compact MPPT Charge Controller with Bluetooth

x 1
Mounting Screws

Mounting Screws

x 5
Temperature Sensor

Temperature Sensor

x 1
User Manual

User Manual

x 1

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Frequently Asked Questions

Setup & Connections

What Batteries Is Rover 2 Compatible With?

Rover 2 supports 12V/24V deep-cycle GEL, flooded (FLD), sealed lead-acid/AGM (SLD), and LiFePO4 (Li) batteries. It also supports User-defined battery settings. For non-lithium batteries, the system voltage can be detected automatically. For lithium batteries, you need to manually select 12V or 24V.

Which Rover 2 Model Should I Choose?

Choose the model based on your battery system voltage and solar array size:
20A: 300W @ 12V / 600W @ 24V
30A: 450W @ 12V / 900W @ 24V
40A: 600W @ 12V / 1,200W @ 24V
50A: 750W @ 12V / 1,500W @ 24V

The solar input voltage must be within 15–100V Voc, and the PV short-circuit current must not exceed the controller's rated current.
If you're unsure which model fits your system, you need to confirm your battery voltage, total solar power, and panel Voc/Isc before choosing.

What Is the Connection Order for the Battery and Solar Panels?

Always connect the battery to the controller first, then connect the solar panels.
Connecting the solar panels before the battery may damage the controller and void the warranty.

Can I Connect Multiple Rover 2 Controllers to One Battery Bank?

Yes. You can connect multiple Rover 2 controllers in parallel to expand charging capacity.

All controllers must be the same model, each controller must have its own independent solar panels, and the controllers must communicate through RJ45 communication cables (available for purchase from the Renogy Store). The total charging current of all controllers must not exceed the battery's continuous charging current.

How Is the Master Controller Selected in a Parallel System?

The master controller is automatically selected when the parallel system is established. No manual selection is required.

Charging & Troubleshooting

What Does the Exclamation Mark or Fault Icon Mean?

The exclamation mark indicates that a fault has been detected.
Press the Up or Down button on the controller to check the Fault Code. Then refer to the corresponding fault code in the user manual for troubleshooting.
You can also check fault information through the Renogy App.

Why Isn't My Rover 2 Producing the Full Solar Panel Wattage?

The displayed solar power can be lower than the panel's rated power depending on actual operating conditions.

First, check that the panels are receiving sufficient sunlight and are not shaded. Also check the battery's charging status, as charging power may decrease as the battery approaches full charge or enters Float mode.

If the output is still lower than expected, you need to confirm the solar panel specifications, sunlight conditions, battery voltage/charging stage, wiring, and controller temperature before determining whether there is a problem.

Why Does the Charging Current Drop?

This can be normal.

As the battery approaches full charge and the controller enters Float mode, Rover 2 reduces the charging current to a minimum to maintain the battery.

If the current drops unexpectedly, also check for panel shading, insufficient sunlight, high controller temperature, or voltage drop caused by excessively long PV cables.

Why Isn't My Solar Panel Charging the Battery?

First check:

Make sure it is daytime and the panels are receiving sufficient sunlight.
Make sure the panels are not shaded.
Check that the solar panel voltage is higher than the battery voltage.
Check the PV wiring and polarity.
Check the solar panel fuse.
Check the panels for visible damage.

If the controller still does not charge, you need to confirm the PV voltage, battery voltage, panel configuration, wiring, and fuse condition before determining the cause.

What Should I Do If the Battery Isn't Detected or the LCD Doesn't Light Up?

First measure the battery voltage with a multimeter. If the battery voltage is below 8V, Rover 2 cannot detect the battery, so the battery needs to be charged first.

Then check the battery wiring, polarity, and battery fuse.

If the battery voltage is normal but the LCD still does not light up, you need to confirm the battery voltage, wiring, polarity, and fuse condition before determining whether the controller has a problem.