Auxiliary lights get most of the attention when riders plan a lighting upgrade. Lumens, beam pattern, mounting position. The controller usually comes last.
That order is backwards. The light decides what you can see. The controller decides how you use the light: how you switch it on, how you dim it, and whether it reacts to your high beam, horn or turn signals. On a long night ride, the controller is the part you actually touch.
Today there are two main ways to control a set of motorcycle auxiliary lights. A CAN bus controller plugs into the bike's data network and lets you use the factory switches. A universal handlebar controller wires into the bike's power and adds its own switch. This guide explains how each works, who each suits, and how the two Q5 Pro controllers from RiderNav fit into the picture.
A pair of high-output LED lights is not a plug-in accessory. It draws real current, needs a stable power feed, and needs some way to be switched and dimmed. On most quality lighting systems, the dimming and protection logic lives in a separate controller, not in the light housing.
The Q5 Pro works this way. The light units contain the LEDs and optics. Power, dimming, colour switching and thermal management are handled by one of two controllers: the RLC3 universal controller or the RLC CAN-X BMW controller. Neither the lights nor the controllers work alone.
So the real question is not "do I need a controller?" It is "which type of controller matches my bike and my riding?"

CAN (Controller Area Network) is the data network inside modern vehicles. It was developed by Bosch and is now standardised as ISO 11898. On a motorcycle, the CAN bus carries messages between the ECU, instrument cluster, switchgear and lighting. When you press the high beam switch or roll the thumb wheel on a BMW, that action becomes a message on the bus.
A CAN bus controller listens to those messages. It reads the state of the high beam, turn signals, hazard lights, horn and, on supported bikes, the factory multi-function wheel. It then drives the auxiliary lights to match. Some CAN controllers, such as Denali's CANsmart, are configured through desktop software, with each output circuit assigned a function on a computer. Others ship with fixed, pre-programmed behaviour and need no software.
The practical results are the same in both cases:
The trade-off is scope. A CAN controller only works on bikes whose CAN messages it understands. That is why these controllers are sold by model or model family, and why the adapter cable has to match the connector on your specific bike.
A universal controller takes a different route. It does not read the bike's data network. It connects to the bike's electrical system directly: a power feed from the battery, an ignition-switched (ACC) trigger, and optional signal leads for functions like high beam sync or horn-triggered flash.
Control comes from a dedicated switch mounted on the handlebar, usually a knob or a button cluster. The rider presses to power on, turns to dim, and holds or presses a combination for flash or colour functions.
The strengths of this approach:
The trade-off is installation effort. You need to run wires, find a suitable ACC circuit, and mount the switch. On the RLC3, RiderNav quotes 60 to 120 minutes for riders who are comfortable with basic motorcycle electrical work, or under an hour at a shop with auxiliary lighting experience.
|
|
CAN bus controller |
Universal handlebar controller |
|
How it connects |
Plugs into a factory CAN connector via adapter cable |
Wires to battery, ACC and optional signal leads |
|
How you control it |
Factory switchgear (high beam, wheel, horn, signals) |
Dedicated handlebar knob or switch |
|
Bike compatibility |
Specific supported models only |
Any 12V motorcycle |
|
Installation |
Plug-and-play, no splicing |
Wiring required, switch mounted on bar |
|
Handlebar footprint |
None added |
One switch unit added |
|
Sync functions |
High beam, turn signal, hazard, horn (varies by product) |
High beam and horn, if the signal leads are connected |
|
Dimming style |
Typically stepped, set by the factory control |
Typically stepless, set by the dial |
|
Best suited to |
Riders on a supported bike who want an integrated setup |
Riders on any bike, or who want independent control |
Neither column is simply better. They optimise for different things: integration on one side, universality on the other.
A CAN bus controller makes the most sense if all three of the following apply:
The typical buyer is a rider on a current BMW GS, RT, K 1600 or similar model who does long tours and wants the auxiliary lights to feel like an original option rather than an add-on.
A universal controller is the right call if any of the following is true:
The typical buyer here rides a mid-weight adventure, sport-touring or naked bike, does regular night commuting or weekend trips, and is comfortable with, or willing to pay for, basic wiring work.

The Q5 Pro is sold as a system: the light units plus your choice of controller. RiderNav offers one controller of each type, so the choice above maps directly to a product.
The RLC CAN-X connects to the bike's factory CAN bus through a model-specific adapter cable. It ships pre-programmed with six functions and needs no software configuration:
Everyday control runs through the factory Multi-Controller (the Wonder Wheel). On first activation, the lights are powered on with the turn signal stalk, then a long press of the Wonder Wheel to the right brings the Q5 Pro into the wheel's control loop. From there, brightness is adjusted in four preset levels. Four levels is a deliberate choice: it matches how every other adjustment on the bike behaves, so the spotlights feel like a factory-integrated feature rather than an aftermarket add-on. Three adapter cable variants cover the supported models:
|
Adapter cable |
Compatible models |
|
4-Pin RDC |
R 1200 GS / GS Adventure · R 1250 GS / GS Adventure · R 1200 R · R 1200 RT · R 1250 RT |
|
6-Pin DWA |
R 1300 GS / GS Adventure |
|
8-Pin RDC |
K 1600 · F 750 GS · F 850 GS · F 900 series · R 18 · S 1000 XR · C 400 X · C 400 GT |
Before ordering, confirm the exact model and model year. If your bike is not listed, the RLC3 below is the correct alternative.
The RLC3 is a rotary dimmer controller for any 12V motorcycle. Its handlebar unit combines an encoder dial and a dedicated auxiliary high beam button, and it controls the lights through four inputs: power, ACC, and optional high beam and horn sync leads.
What it does:
The harness is segmented and colour-coded, and the two sync leads can be connected or left off depending on how you want the system to behave.

Both controllers run the same Q5 Pro light units and the same thermal management, so the beam, colour and output are identical whichever you choose. Both include memory of the last state. The differences are the ones that should drive your decision: how the controller connects, what it can read from the bike, and how you adjust brightness.
For mounting options, beam patterns and installation guides, see the RiderNav lighting guides.
RiderNav is not affiliated with BMW Motorrad. BMW is a trademark of BMW AG.