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Car Audio Speaker Installation Location Matters

Speaker Installation Location

A while back we published an article that discussed why aiming speakers in a properly designed car audio system was futile. As usual, we received a good deal of feedback about the piece. The comments ranged from the typical “that’s not how it works” to more scientific discussions about how even minor changes in placement had significant effects on imaging and soundstage position. So let’s dive deeper into this discussion to flesh out some of the finer details in speaker positioning.

Proper Audio System Design

The first thing we need to discuss is proper audio system design and component selection. To deliver the most realistic listening experience possible, you need to choose high-quality speakers. Speakers that add significant distortion will lack clarity and detail and render all other efforts futile. Forget the hype about anti-resonant baskets and fancy cones – the technologies that dramatically reduce distortion are motor upgrades like shorting rings and copper inductance-reducing caps.

Speaker Installation Location
ARC Audio, Hertz and Audison offer a variety of high-performance midrange drivers that are easily integrated into custom installations.

Next, the speaker system needs to be designed and integrated into the vehicle in a way that ensures the even distribution of sound through the listening environment. This typically involves using a subwoofer, a set of woofers or midbass drivers, midrange speakers and tweeters. As our article on directivity explained, below a frequency where the effective circumference of the cone is equal to the sound wavelength, the sound is emitted evenly in all directions — as such, tilting a speaker up or down won’t change its perceived frequency. Keep this in mind, as we’ll circle back to it shortly.

Lastly, the speakers need to be chosen so that the high-frequency driver operating in the adjacent frequency range can play low enough to ensure that directivity doesn’t become an issue. Unfortunately, this statement confirms that using a two-way front stage with a 6.5-inch woofer is difficult, as most tweeters bundled in component sets can’t play low enough.

Speaker Placement Matters

When we talk about speaker placement for the front stage of our vehicles, the options are typically a stock location in the lower part of the front door, a location in the middle or upper portion of the door, the dash or in a custom pod on the A-pillar. It should come as no surprise that every location has a benefit and an equal number of drawbacks.

For midbass drivers used in a three-way front stage, the door location often works well. Some will go further with the installation and have custom mounting solutions created in the kick panels. If this driver is going to play up to 400 or 500 Hz, this “farther away” position can help with the perceived depth of the soundstage.

The same concept applies to midrange drivers. If they are installed in the doors, as would be found in many Porsches and BMWs, the soundstage can appear to span the car, but comes from a position that’s in line with the steering wheel. Mounting the speakers in pods on the A-pillars can move that soundstage deeper into the dash. Finally, speaker positions in the corners of the dash, right at the base of the windshield, are about as far away from the listening position as is possible and help to create a soundstage that seems to come from the rear edge of the hood. Some listeners don’t concern themselves with the sound source, while others weigh it heavily in their system design considerations.

Speaker Installation Location
Extreme Audio in Midlothian, Virginia, upgraded this 2017 BMW 530i with a set of 4-inch Audiofrog midrange drivers in the stock door locations.

The angle at which tweeters are aimed matters. Suppose you want to have any chance of hearing the highest of frequencies. In that case, tweeters need to be aimed toward the listening position or pointed up into the windshield so their output can reflect off the glass and “spray” into the vehicle interior. Tweeters mounted in sail panels can help to increase the perceived width of a soundstage – another consideration in where the music seems to come from.

Speaker Installation Location
Rockford Fosgate offers their 4-inch T3-BMW2 speakers as a drop-in upgrade for 1-, 3-, 5-, 6- and 7-Series Sedans and the X1 SUV.

What About Fine-Tuning Mounting Angles?

Much of the feedback on our article about speaker directivity was targeted at the fact that car audio system performance changed based on the angle at which the speakers were mounted. We don’t dispute this for one second. How a speaker performs in terms of directivity is a constant. How sounds reflect off of nearby surfaces plays a huge role in what we hear, even after setting signal delays and calibrating the system with an equalizer.

Let’s say you have a speaker mounted in an A-pillar, and it’s aimed directly across the vehicle. There will be immediate reflections off the windshield and, a moment later, off the side windows. Given their proximity to the speaker, these reflections may be almost as loud as the sound coming directly from the speaker cone. Another moment later, there may be a reflection off the roof and the dash. Vehicles are very complex and behave differently than a listening room or recording studio.

If we tilt the speaker in or out, up or down, we can change the path lengths from the edge of the speaker to the surfaces off of which the sound will reflect. Even a fraction of an inch will change how the sound these speakers produce interacts with these surfaces.

Speaker Installation Location
Autosound competition vehicles like Brian Mitchell’s Cadillac ELR often go through many A-pillar designs until one that balances every aspect of their performance is achieved.

Let’s Look at An Example

Let’s say you have a Porsche 911 or Boxster with a midrange speaker location in the middle of the door. A number of 2.5- and 3-inch midrange drivers will perform excellently in that location. On the inside of the car, there is almost nothing near the speaker that will cause a significant reflection, other than the smooth surface of the door panel itself. In terms of delivering a predictable performance that won’t require significant equalization, this is as close to an ideal mounting location as is possible in a car or truck.

Is this the perfect location, though? What if you like the sound to appear to come from the windshield or dash of the vehicle, or even out on the hood? Will this speaker location offer that? It isn’t very likely. The soundstage is apt to seem very shallow. Tonally, the system may sound excellent, and the lack of nearby reflections should offer impressive clarity.

Speaker Installation Location
This 2014 Porsche Cayman was upgraded with new speakers by Westminster Speed and Sound in Maryland.

If we put those same speakers in small enclosures up on the dash, just as we described above, the sound will reflect off of every surface imaginable. We can make the system sound good with an equalizer, but the interaction of multiple reflections won’t deliver the same amount of clarity.

Balance the Benefits and Drawbacks

The goal of any speaker system design (i.e., the placement and configuration of the drivers in a listening application) requires balancing the benefits and drawbacks of each location. The specialty mobile enhancement retailer you are working with can help explain each location’s benefits and disadvantages. Together, you can choose a solution that will deliver the sonic performance and aesthetics you want from your upgrade.

This article is written and produced by the team at www.BestCarAudio.com. Reproduction or use of any kind is prohibited without the express written permission of 1sixty8 media.

Filed Under: ARTICLES, Car Audio, RESOURCE LIBRARY

Understanding Light Color and Illumination

Headlight Color

We took our first look at measuring light sources a while back as our first step toward understanding the differences in automotive headlight options. In this article, we’ll provide a practical demonstration of why it’s crucial for the lighting on your car, truck, motorcycle, ATV or side-by-side to emit light that covers the entire color spectrum evenly.

Light Sources and the Human Body

Light waves work similarly to sound waves in that both our eyes and ears are sensitive to a specific range of frequencies. For sound, most adults can hear from 20 Hz to around 15 kHz and see light in the range of 400 to 790 THz (terahertz). Sounds above 15 or 20 kHz are imperceivable as our ears don’t detect those signals and send the information to our brain. Likewise, energy below 400 THz (which is infrared) isn’t seen by our eyes but can be felt as heat on our skin. Frequencies above 790 THz, which is ultraviolet light, are also invisible to our eyes but can cause skin damage in the form of sunburn. Butterflies, some birds, reindeer and sockeye salmon can see ultraviolet light. At the other end of the spectrum, some snakes, fish and frogs can see infrared light.

How Our Eyes Perceive Objects

If you shine a white light at an object, that object reflects specific colors to our eyes. Those reflected colors match the color of the object. So, if you shine white light on a blue car, then blue light wavelengths are reflected to your eyes. The same goes for the yellow lane markings on the road and green grass on the boulevard or median.

Headlight Color
We see objects as being a specific color because only specific light rays from a source are reflected to our eyes.

Let’s put this concept into a set of simple rules. First, we’ll consider the sun on a cloudless day as a near-perfect light source. The sun emits light energy that’s very evenly distributed through the color spectrum.

Headlight Color
Light from the sun on a clear day contains relatively even energy across the color spectrum.

If you look at the spectrographic analysis of the light from the sun shown above, you can see that from light blue through to light red, the spectral density is fairly similar.

What if Color Is Missing from a Light Source?

We’ll set up a demonstration to show what happens when a specific color of light is missing from a light source and how that affects the way we perceive objects. We have a set of RGB LED strip lights set 18 inches away from a selection of Hot Wheels cars for this demonstration. We can use the smartphone app to choose which of the LEDs are on. First, we’ll take pictures of the cars with the camera flash, then with just the red, then the green, then the blue LEDs on so you can see which cars light up and which don’t.

Headlight Color
Our collection of Hot Wheels is illuminated by the white camera flash.
Headlight Color
Our collection of Hot Wheels is illuminated by only red LEDs.
Headlight Color
Our collection of Hot Wheels is illuminated by only green LEDs.
Headlight Color
Our collection of Hot Wheels is illuminated by only blue LEDs.

If you compare the photo of the cars illuminated with the flash to those with only single colors of lights, we can see that some vehicles are quite dark. In the image with the red LEDs, the green and blue cars remain dark. In the image with the green lighting, the red and blue cars are dark. It should now come as no surprise that the red and green cars look dark in the image with the blue lighting.

Going back to our rules concept, if our light source doesn’t offer light energy that matches the color of an object, we won’t perceive that object as being illuminated.

Just for references, we’ll include spectrographic analysis of the red, green and blue LEDs so you can see how narrowly focussed their light output is.

Headlight Color
Spectrographic analysis of our red LEDs.
Headlight Color
Spectrographic analysis of our green LEDs.
Headlight Color
Spectrographic analysis of our blue LEDs.

We are getting close to a point where we have enough information and understanding of how light works to analyze and understand the color content of different headlight bulb options. So please don’t fret; we’ll get to that information soon! In the meantime, if your headlights aren’t bright enough, drop by your local specialty mobile enhancement retailer and ask them about options to upgrade the lighting system on your car or truck.

This article is written and produced by the team at www.BestCarAudio.com. Reproduction or use of any kind is prohibited without the express written permission of 1sixty8 media.

Filed Under: ARTICLES, Lighting, RESOURCE LIBRARY

Single Amplifier Distortion Specs Make No Sense

Distortion Specifications

Have you ever looked at something and thought you were only getting part of the story? Many previous articles have discussed amplifier distortion at length but haven’t delved into how power output levels and frequency affect distortion measurements. If you’re looking for the best amplifier for your car audio system, especially for midrange drivers and tweeters, this information should be crucial to your purchasing decision.

Amplifier Distortion Specifications

If you’re browsing a car audio amplifier manufacturer’s website, you’ll see a single specification that’s intended to quantify the amount of distortion an amplifier adds to the audio signal. The CTA-2006-C standard requires that the total harmonic distortion and noise added to the audio signal be specified at an output level that is 50% of the maximum rated output for the amplifier. Of course, that power rating needs to comply with the CTA-2006-C standard as well.

Measuring Amplifier Distortion

When an amplifier is being tested for distortion, the technician or engineer will typically look at the harmonic information and noise added to a single test tone.

Distortion Specifications
This amplifier has a THD+N specification of 0.07527% when powering a 4-ohm load with 1 watt of power.

In the measurement above, you can see the test signal at 1 kHz at a level of 2.0 volts. The second harmonic (labelled with the pink 3) is at a level of -77.10 dBV, or 83.15 dB below the 6.03 dBV (2.00V) test signal. The third-order harmonic (labelled with the pink 1) is louder at an absolute level of -68.18 dBV and a relative level of -74.23 dB. You can see the pattern of even and odd harmonics continue well past 20 kHz. It’s worth noting that this is a good Class AB amplifier and not a poorly designed, inexpensive unit.

Sadly, this single specification is quite incomplete in terms of telling the whole story. Audio measurement and analyzer devices like those from Audio Precision and QuantAsylum can generate distortion graphs across a range of power output levels and frequencies. So let’s characterize this amplifier in terms of the amount of distortion it adds to an audio signal based on the amount of power it produces.

Distortion Specifications
A graph of amplifier output power (in dBV) versus total harmonic distortion and noise for our test amplifier.

Before we dive into analyzing the data, we should explain that the horizontal X-axis scale is in decibel volts, known as dBV. This way of looking at voltage represents the amplifier output level using a decibel scale with 1 volt as 0 dB. Thus, the equation to convert dBV to a voltage is 10 ^ (dBV/20).

The output level of 6.03 dBV, where we measured %THD+N in the first chart, would be 2.00 volts. At the low level, distortion is at 0.075%. At an output level of 22.6 dBV, you can see that the distortion increased. This level is the point where the amplifier started to run into clipping. Maximum power output measurements are specified at the output level that corresponds to a THD+N of 1%. For this amplifier, that would be about 24 dBV, or 63 watts into a 4-ohm load.

At the other end of the scale, you can see that distortion increases as output power decreases. This performance is very typical for a Class-AB amplifier. At very low levels, the harmonic distortion content is buried in the noise created by the amp, which for this unit is at about -105 dBV. Crossover distortion at very low volume levels plays a significant role in adding unwanted information to the audio signal. As the output level increases, the audio signal passes through the transition between the positive and negative output devices at a steeper slope, reducing the time the signal spends in this transition region. As such, distortion decreases relative to the output level.

The CTA-2006 THD+N specification for this amplifier would be 0.02% at the output level of 21 dBV (-3 dB from the maximum power output level). This information doesn’t do a good job of describing how well the amp performs in a real-world application since most of the time, we’re only using a fraction of the power available to drive a speaker. For example, if we have a midrange speaker or a tweeter in a three-way system, we may only need 1/10 to 1/20 of the power a midbass speaker would need, or even less than a subwoofer. Played at high volume levels, a tweeter rarely needs more than a few watts.

So far, in all the TestDriveReview product evaluations we’ve published, the distortion has been specified at the same level as the signal-to-noise ratio. This would be at an output level of 1 watt in a 4-ohm load or 2.00 volts. From now on, we’ll include the Power versus THD+N graphs as shown above so readers can see the entire picture of how the amplifier behaves.

Distortion Specifications
Rockford Fosgate keeps their distortion specifications simple; they rate their amplifiers like this T1000-4ad to produce less than 1% THD+N.
Distortion Specifications
The XM-GS4 four-channel amplifier from Sony has a THD+N specification of 0.05% or less at 1 kHz when connected for a 4-ohm load.
Distortion Specifications
Hertz’s ML Power 4 four-channel amplifier has a distortion specification of 0.08% at 100 Hz when connected to a 4-ohm load.
Distortion Specifications
The AV due from Audison’s Voce series has a distortion spec of 0.04% at 1 kHz into 4 ohms.

Distortion Versus Frequency Response

Another characteristic often overlooked is the amount of distortion an amplifier adds relative to different frequencies. We ran another test on this amplifier to characterize this. We used an output level of 1.95 volts (very close to our 2.00-volt number) and measured distortion at frequencies from 20 Hz to 20 kHz.

Distortion Specifications
Distortion versus frequency for our Class-AB car audio amplifier.

While the numbers don’t vary as much compared to output level changes, you can see that there’s more distortion added at higher frequencies compared to midrange levels.

In an upcoming article, we’ll start all over with a new set of measurements with the three amplifiers we used in the What Do Better Amplifiers Sound Like article a few years ago. We’ll throw in a Class-D amp or two to round out the mix, so you’ll have a benchmark from which to compare solutions.

In the meantime, if you’re interested in purchasing an amplifier for your car or truck, drop by your local specialty mobile enhancement retailer today and ask them about a high-performance solution that will make your music sound amazing!

This article is written and produced by the team at www.BestCarAudio.com. Reproduction or use of any kind is prohibited without the express written permission of 1sixty8 media.

Filed Under: ARTICLES, Car Audio, RESOURCE LIBRARY

Product Spotlight: Drone XC-LTE Dash Cam

Drone XC-LTE

If you’re a regular visitor to BestCarAudio.com, you should be familiar with dash cams and smartphone-based remote vehicle control solutions like Drone. Imagine combining the features of both units into one product and then adding live video streaming capabilities! The new Drone XC-LTE 2K QHD dash cam with LTE, GPS and Wi-Fi does precisely that. Let’s check it out!

What Is the Drone XC-LTE Dash Cam?

There are a lot of features and design elements to unpack with the Drone XC-LTE. The unit has a footprint of 4.2 by 2.8 inches with a thickness of 1.5 inches. A vertical mounting orientation on the windshield minimizes obstruction.

Drone XC-LTE
The XC-LTE mounts vertically on the windshield to stay out of your line of sight.

The XC-LTE uses a Sony STARVIS image sensor for excellent contrast and low-light performance. The sensor is mated to a wide 154-degree lens to allow recording well off to the sides of the vehicle. The camera records at a 2K Quad HD resolution of 2560 by 1440 pixels at 30 frames per second. A built-in Wi-Fi transceiver lets you download stored videos to your smartphone.

Firstech includes a high-quality 64 GB microSD memory card to ensure reliable recording. Upgrading to a 128 or 256 GB memory card allows the system to store more data. The system also accepts a secondary camera input signal. Your installer can add the XC-RC100 rear-facing or the XC-IR100 infrared interior cameras. The interior camera is very popular with taxi, Uber and Lyft operators. The parking mode feature allows it to monitor the visible area continuously and then record when something or someone enters its field of vision.

Drone XC-LTE
The optional XC-RC100 rear-facing camera allows the Drone XC-LTE to capture video of what happens behind your vehicle.

What makes this dash cam unique is the ability to view live video on the DroneMobile app on your smartphone using an LTE cellular data connection. You can see exactly what the camera sees on your phone. The system uses an LTE data connection to transmit video. As long as your phone can access the cellular data network, it doesn’t matter where it’s parked or driving. Remote live-viewing capability is a feature people have been requesting for years.

Drone XC-LTE
The DroneMobile app provides access to a live video feed from your Drone XC-LTE dash cam.

Regarding live-feed details, the video stream has a resolution of 960 by 540 pixels. Depending on your chosen service package, you get 1 or 2 GB of cloud storage for important videos you tag via the DroneMobile app.

Drone Vehicle Control

While the excitement of the remote video viewing is the highlight of the Drone XC-LTE, it’s crucial to remember that this is still a Drone vehicle control interface. When paired with a compatible control module from Compustar, Arctic Start, FTX or NuStart, you can use the DroneMobile app on your phone to lock and unlock your vehicle or start the engine. You can even pop the trunk or open a sliding door or motorized hatch in many applications.

Drone XC-LTE
The updated DroneMobile app retains lock, unlock, remote start and auxiliary control features.

The Drone XC-LTE acts like the DAS-II sensor to detect impact, tilt, motion and glass breakage. Any of these triggers will instantly send a notification to your smartphone. You can use the LTE streaming feature of the dash cam to look around your vehicle to find out what’s going on. The DroneMobile app also allows you to trigger the Panic feature to scare away would-be thieves or the neighbor’s cat.

Drone XC-LTE
The Drone system pushes security alerts to your smartphone so you’ll know immediately when someone is tampering with your vehicle.

The system also functions as a vehicle-locating or -tracking solution with one of the GPS-enabled Drone service plans. You can configure speed-based warnings to monitor vehicle operation. Location-based notifications, often called geofencing, are also available. These warnings tell you when the vehicle enters or exits a specific area or location.

Drone XC-LTE
The Drone’s GPS receiver provides location and speed-based warnings on your smartphone.

See Why Your Car Alarm Triggered

Most of us are familiar with hearing car alarm sirens, getting a security alert from a two-way remote key fob or perhaps seeing an alarm notification on our smartphones. We all want to know what is happening in and around the vehicle. With the new XC-LTE, you can open the DroneMobile app and see what the cameras see in real time. There’s no need to leave the house or your office. You could be on vacation in the Caribbean and check on your car or truck from the pool while sipping a mojito or enjoying a beer.

The XC-LTE is ideal for commercial equipment left on a job site or in a company-owned service or delivery vehicle. The XC-LTE is a perfect solution if you rent your car or truck on Turo or Getaround and want to see where and how the renter uses your vehicle.

The Best Vehicle Monitoring and Control Solution

The Drone XC-LTE is the first aftermarket dash cam solution with live view capabilities that can integrate with a car alarm or remote start system to provide vehicle control and monitoring. You can also use the system as a stand-alone dash cam with remote live viewing. Your local Compustar retailer can explain the remote control and live-view service plans and the features they offer. To find an authorized Drone retailer near you, use the locator tool on their website. For more information about Drone solutions, visit their YouTube channel, Facebook page or Instagram. Check back frequently, as a full Test Drive Review of the Drone XC-LTE is coming soon.

This article is written and produced by the team at www.BestCarAudio.com. Reproduction or use of any kind is prohibited without the express written permission of 1sixty8 media.

Filed Under: ARTICLES, Driver Safety, PRODUCTS, RESOURCE LIBRARY, Vehicle Security Tagged With: Arctic Start, Compustar, DAS-II Sensor, Dash Cameras, DroneMobile, Firstech LLC, FTX, Getaround, LTE, Lyft, NuStart, Sony, Turo, Uber

Product Spotlight: Rockford Fosgate Polaris Ranger Roof Audio Systems

Polaris Ranger Audio

Polaris Rangers are among the most popular side-by-sides for work applications. Rockford Fosgate, a leader in motorsports audio systems, has just introduced three stunning roof-mount audio solutions that will transform these vehicles into a concert on wheels. All three options include speakers and amplification in custom enclosures. Let’s check them out!

Rockford Fosgate Polaris Ranger Audio Systems

Let’s start by looking at the Rockford Fosgate RNGR18-ROOF2M2. This audio system upgrade includes a replacement roof panel for 2018 and newer XP1000 full-size (three-seat) models. The new roof panel works with the tip-out windshield and Northstar Edition versions with power windows.

Polaris Ranger Audio
The RNGR18-ROOF2M2 includes a 1,500-watt amplifier, four speakers and a PMX-3 multimedia receiver.

The new roof panel features four M2-8B 8-inch speakers, an M5-1500X5 1,500-watt five-channel amplifier, and the brand new 2.7-inch PMX-3 multimedia receiver. All the equipment comes pre-installed and wired, so your installer need only mount the roof using the provided hardware and run the included power wiring to the battery.

The roof also includes six rocker switches. These switches control the sound system, activate a backup camera or even provide power to an optional 30- to 40-inch LED light bar. There’s a plug outside the roof for the light bar.

Polaris Ranger Audio
Six integrated switches flank the new PMX-3 multimedia receiver to control various functions and options.
Polaris Ranger Audio
You can upgrade your Roof Audio system with a 30- to 40-inch light bar, and all the wiring is ready.

Because the kit includes one of the fantastic M5-1500X5 five-channel amplifiers, it’s ready for upgrades. You can add the RNGR18-FWE under-seat enclosure and an M2D2-10IB subwoofer. The roof also features an integrated LED dome light and connections for power windows.

Polaris Ranger Audio
The RNGRG18-FWE subwoofer enclosure and M2D2-10IB subwoofer can be powered by the M5-1500X5 amp in the RNGR18-ROOF2M2.

If you want to take the party everywhere, add the optional RNGR18-CAPM2 rear audio speaker cap. This external speaker pod replaces the blank pod that came with the RNGR18-ROOF2M2 kit and adds four M2-8HB horn-load M2-series 8-inch speakers and an M5-800X4 four-channel amplifier. All the power and audio connections plug into the RNGR18-ROOF2M2.

Polaris Ranger Audio
The RNGR18-CAPM2 upgrades your roof speaker panel to ensure that everyone on the trail or at the campsite can enjoy great sound.

The RNGR18-CAPM2 has a few other tricks up its sleeve. The switch in the RNGR18-ROOF2M2 controls two LED work lights. The rear cap also has a backup camera called the MX-CAM. One of the rocker switches activates the camera, so the image appears on the PMX-3.

Polaris Ranger Audio
The new Rockford Fosgate MX-CAM comes pre-installed and pre-wired with the RNGR18-CAPM2 speaker cap.

Four-door Polaris Ranger Subwoofer Upgrade

If you have a four-door, six-seat Ranger, the RNGR18-ROOF4M2 roof speaker system was designed just for you. This kit starts with the RNGR-ROOFM2 and adds a rear roof panel with four additional 8-inch M2-series M2-8H coaxial drivers and two 10-inch M2D2-10IB M2-Series subwoofers in a ported enclosure. There are power provisions for rear doors with power windows and an additional integrated LED rear dome light. You can upgrade the RNGR18-ROOF4M2 with the optional RNGRG18-CAPM2 if you want more sound. The under-seat subwoofer upgrade is also compatible with the four-door system.

√ Image: Rockford Fosgate RNGR18-ROOF4M2 Front.png

Image Caption: The RNGR18-ROOF4M2 adds a second panel with four more speakers and two subwoofers to the RNGR18-ROOF2M2 front roof upgrade.

Killer Sound and Amazing Looks

The new PMX-3 multimedia receiver can play all your favorite tunes from your smartphone or tune into your favorite genre-specific entertainment with an optional SiriusXM satellite radio tuner. When the MX-CAM is connected, you can see everything behind your side-by-side with the flick of a switch.

The M2 speakers and subwoofers in the Ranger Roof Audio systems all have integrated Color Optix LED lighting. The PMX-RGB Bluetooth lighting controller is built into the RNGR18-ROOF2M2 enclosure. Just download the RF Connect app on your Android or Apple smartphone, pair it, and you have complete control over the color of your new Rockford Fosgate speakers.

Rockford Fosgate knows you bought your Ranger to work and play, so all the new Roof Audio systems, the speakers and the electronics, feature their Element Ready products that are water-, dust-, dirt- and UV-resistant. Rip, jump or bash it – your Rockford Fosgate Ranger Audio system upgrades can take the abuse!

Upgrade Your Polaris Ranger XP1000 with Rockford Fosgate Today!

Rockford Fosgate knows you love your music, and the new Roof Audio systems for the Polaris Ranger will make sure every note and word is crystal clear, even with the throttle mashed to the floor. Visit a local authorized Rockford Fosgate retailer today to order a system for your Ranger side-by-side. You can find a shop using the dealer locator on the website. To learn more about the new Roof Audio systems, check out the Rockford Fosgate YouTube Channel (https://www.youtube.com/user/rockfordfosgate), their Facebook page or Instagram feed.

This article is written and produced by the team at www.BestCarAudio.com. Reproduction or use of any kind is prohibited without the express written permission of 1sixty8 media.

Filed Under: ARTICLES, Lighting, Marine Audio, PRODUCTS, RESOURCE LIBRARY Tagged With: Amplifiers, LED Lighting, Polaris, Powered Subwoofers, Radios, Ranger, Rockford Fosgate, Roof Audio, Speakers, Subwoofers

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