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Why Might My Car Audio System Need an Amplifier?

Audio Amplifier

Unlike a home audio system, you can listen to your car audio system as loudly as you want while driving to work or school. Sure, the folks beside you at a stoplight might laugh as bit as you’re rocking out to “Bohemian Rhapsody,” but that’s their problem, not yours! If you want your music to sound good at high volumes, you’ll likely need to upgrade your car stereo system with an amplifier. Let’s look at three reasons music enthusiasts need an amplifier added to their car stereo system.

Laying the Foundation

To be clear, even the most basic car radio, installed by the factory or at a mobile enhancement retailer, has an amplifier built in. In most cases, these amplifiers are a single integrated circuit that can deliver between 15 and 20 watts of continuous power to four speakers. Sony High Power radios are the exception to this. These High Power radios use an amplifier that can deliver an actual continuous 45 watts of power to each of the four speakers.

Audio Amplifier
If you want an impressive performance upgrade for your car audio system, check out the High Power radios from Sony.

When we talk about adding an amplifier to an audio system, we’re talking about a stand-alone solution that would mount under a seat or in a vehicle’s trunk or storage area.

One last note before we dive into the reasons to upgrade your car’s audio system with an amplifier. When looking at amplifier ratings, we only discuss continuous ratings and never peak or dynamic power. If you want to understand how amplifier power (and other specifications) should be measured, please refer to the BestCarAudio.com article about the recently-updated ANSI/CTA-2006-D Testing and Measurement Methods for In-Vehicle Audio Amplifiers standard.

Amp Upgrade Reason 1: More Output

Let’s assume that you have a basic factory-installed radio in your vehicle that can provide about 20 watts of power to each speaker. Assuming the speakers are about 89 dB (1-W/1-M) efficient like the Honda speaker we tested, we can surmise that 20 watts of power would let each speaker produce about 102 SPL dB of output. With four playing in the car, 112 dB SPL is theoretically possible before the amplifier hits its power limit and starts clipping and adding distortion. Clipping will make the music sound very garbled and muddy.

If we upgrade the system to an amplifier that provides 75 watts of power to each speaker, the maximum output would be almost 108 dB SPL per speaker. The four could theoretically produce 120 dB of output. Unfortunately, the speakers that came with your car likely can’t handle this much power or play that loudly. Nevertheless, your stereo system will play louder and clearer with an amplifier than just running off the little IC amp built into the radio.

Audio Amplifier
Audison’s SR5.600 five-channel amplifier is a great way to upgrade your car audio system with a subwoofer.
Audio Amplifier
The Prime-Series R2-750X5 from Rockford Fosgate can produce up to 750 watts of power to bring your music to life.

Amp Upgrade Reason 2: More Bass

You likely know that it takes a lot more power for speakers to reproduce bass frequencies than it does to produce midrange and high-frequency information. In fact, for a constant output level, speakers need twice as much power for every octave lower you want the system to play. By way of an example, if a speaker required 10 watts of power to play 200 hertz at 100 dB SPL, it would require 20 watts of power to play 100 hertz at the same volume level. If we extend this further, we need 40 watts to play 50 Hz and 80 watts to play 25 Hz. It’s easy to see that we run out of power quickly as the audio information we want to play loudly contains more bass information.

One of the most significant benefits of having a more powerful amplifier is the ability of the audio system to reproduce the low-frequency information in the music you’ve chosen without distorting it. Think about what adding a dedicated subwoofer and amplifier does. The small speakers in your car can focus on playing audio information above 80 Hz, and the subwoofer and its amplifier can handle the heavy lifting for frequencies below that. Even if you use a radio to power the smaller speakers, they can play louder because they don’t need to try playing bass frequencies. This is why adding a subwoofer to your car audio system is one of the best upgrades you can make.

Audio Amplifier
Sony’s Mobile ES XM-5ES five-channel amplifier can provide up to 750 watts to a subwoofer while powering the smaller speakers in the vehicle.

Amp Upgrade Reason 3: Improved Performance

Another great reason to upgrade your car’s audio system with an amplifier is to improve performance. The little IC amplifiers are impressive in their capabilities, but they can’t hold a candle to a premium amplifier in terms of distortion characteristics. These IC amps’ distortion versus output power characteristics are reasonable around 1 kHz but fall short of what would be considered good at frequencies outside that range. Conversely, a well-designed amplifier adds several orders of magnitude less distortion. Likewise, the channel separation will improve, and the system will add less noise. Of course, the accuracy of this statement depends wholly on the amplifier you choose. If you pick one of those internet brands, you’ll likely be relegated to the system just playing louder and not being any clearer.

Audio Amplifier
The X2 1200.6 is a premium six-channel amplifier from ARC Audio that can provide 600 watts to a subwoofer and 150 watts to the front and rear speakers.

Improve Your Car Audio System with an Amplifier Upgrade

If you want your car audio system to play louder, produce more bass and sound more precise, visit a local specialty mobile enhancement retailer today and ask about adding an amplifier. They can help you choose a model that will sound great, have enough channels to drive the speakers you want and include features that will improve the system’s performance. Best of all, they can install and configure the amp to provide the best possible performance.

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

Is Your New Car or Truck Missing Features or Technologies?

Missing Features

It should come as no surprise that supply chain issues have wreaked havoc on the automotive industry. From the need to shut down production facilities to shipping vehicles with missing features or components, automakers’ inability to get the parts they need has changed the new vehicle buying experience. While the aftermarket can’t supply a body control module or ABS module, we can help with many components the OEM suppliers can’t deliver.

Missing Ford Bronco Features

The mighty Bronco is Ford’s answer to the Jeep Wrangler. But, sadly, its popularity has been hampered by suppliers’ inability to deliver vehicle components. One of the better-known issues is the missing subwoofer and amplifier. While a cursory inspection makes it look like a speaker and an amp are attached to the plastic enclosure, more research reveals that those components are nothing more than window dressing. For example, if you removed the subwoofer from the enclosure, you’d find it had no voice coil, tinsel leads or motor assembly.

Missing Features
Even if it looks like a subwoofer from the front, the incomplete Bronco subwoofer is missing a motor assembly and voice coil.

Disassembling the amplifier shows that the circuit board isn’t populated with anything other than the input and output connectors. The large red X on the amplifier theoretically identifies it as a non-functioning unit.

Missing Features
If the “amplifier” in your Ford Bronco has a big red X, it’s likely nothing more than a circuit board, heat sink and connectors.

According to many sources, Ford offers a discount to owners to compensate for that lack of functionality in the subwoofer system. A few dollars in your pocket might be nice, but it doesn’t make up for not having good bass in your audio system. Fortunately, the aftermarket can deliver where the manufacturer has fallen short. Drop by a local mobile enhancement retailer and talk with them about a subwoofer that will fit into the factory enclosure and a compact amplifier than can drive that sub. This might be an excellent opportunity to upgrade to a subwoofer solution that will make you smile. Ask about an upgrade to a subwoofer that can deliver much better low-frequency extension and excellent output.

Missing Features
Extreme Audio near Richmond, Virginia, created a custom upgrade for a Ford Bronco with a JL Audio 10TW3 subwoofer and a bespoke enclosure.

We’ve heard that Porsche dealers are suggesting to clients that they forego buying premium audio systems because the amplifiers are in short supply. But, of course, the aftermarket can easily provide a high-quality amplifier with integrated digital signal processing to power all the speakers. In addition, you can upgrade the speakers to units with better clarity, improved low-frequency performance and enhanced output capabilities. Moreover, almost any specialty mobile enhancement retailer can make the audio system in a Porsche sound amazing.

Missing Features
The ARC Audio Blackbird eight-channel DSP-equipped amplifier offers stunning clarity and all the features required to make a Porsche upgrade sound fantastic.
Missing Features
The Forza series amplifiers from Audison feature onboard digital signal processing to create an exceptional listening experience in a Porsche.

Missing Heated Seats

According to many reports, Ford F-150s and Broncos and Chevrolet Silverados are being delivered without heated seats. While this is less of a problem if you live in Florida or Texas, for those of us in the North or Canada, getting into a vehicle in the winter brings an expectation of this luxury heating solution for our posteriors. Once again, an expert mobile enhancement retailer can install seat heaters in almost any vehicle that doesn’t have the leather or fabric glued to the foam. Most aftermarket heating solutions include a simple mechanical high or low switch that can be left on so that the seats start warming up as soon as the vehicle starts. Adding a remote car starter is an excellent investment to get the heat into the seat before you get to the vehicle.

Missing Features
Aftermarket seat heater kits include customizable upper and lower heating pads to fit your vehicle.

Lighting Upgrades

Jeep supposedly has trouble delivering their LED headlight assemblies on the newer Wranglers. If you end up without LED lights, a reputable mobile enhancement retailer can help get you the lighting performance you want with a high-quality LED bulb upgrade. Make sure the upgraded bulbs are designed specifically for the light assemblies in the vehicle (projector or reflector) and that the hot spot is centered on the road well out in front of the vehicle. You don’t want the headlights to light up the area directly in front of the vehicle brightly. Also, ensure that the cut-off is appropriate and won’t blind oncoming drivers.

Missing Features
Ensure that any replacement LED headlight bulbs you choose are specifically for your vehicle’s headlight assembly design.

Ford Bronco Hard Tops

Tangential to those supply issues, there is another concern on the Ford Bronco: The optional hard tops from the factory supposedly have serious quality issues, including the fiberglass delaminating and cracking. But, once again, aftermarket options can fulfill your needs and help avoid the frustration of dealer claims that cracks in a component are somehow normal.

Companies like Rally Top, Anderson Composites and Advanced Fiberglass Concepts, to name a few, make aftermarket hard tops that don’t suffer from the same failures as the Webasto units that Ford offers.

Missing Features
Companies like Advanced Fiberglass Concepts offer one-piece and modular hard tops for the Ford Bronco.

Cordless Phone Chargers

There’s also talk that the 2022 Silverado was missing its cordless smartphone charging base. However, several aftermarket companies make wireless charging pads and even phone brackets. A local mobile enhancement retailer can mount one in your vehicle and wire it to activate when the engine starts. These are an excellent investment, especially if your vehicle has Apple CarPlay or Android Auto that uses a wireless data connection.

Missing Features
Universal wireless charging pads like the Beüler line from Accele Electronics can be integrated into the center console of most vehicles.

If you don’t have room for a dedicated charging pad, having a high-current USB charging port is another option. You can choose from USB-A or USB-C designs that include quick-charging capabilities to top off a modern phone or tablet quickly and efficiently.

Missing Features
Charge your portable devices quickly and efficiently with an aftermarket upgrade USB charging port.

Mobile Enhancement Retailers Can Install Missing Components

If your new car is missing a feature that should have been installed on the assembly line, or you want to upgrade your vehicle with a backup camera, parking sensors or a blind spot monitoring system, drop by a specialty mobile enhancement retailer today and talk with one of their product specialists. They won’t have a solution for every challenge, but they can likely resolve most issues so you can fully enjoy your vehicle.

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

How Many Amplifier Channels Does My Car Audio System Need?

Amplifier Channels

If you’ve been paying attention to the car audio industry over the last decade, you know that the number of discrete channels available from quality amplifiers has increased steadily. Some better brands now have solutions with as many as 12 channels. So let’s consider why you might want more amplifier channels in your car audio system.

Car Audio Systems Using Amplifiers in Radios

The most straightforward car audio system would include a radio and a pair of speakers. This sound system would be adequate for letting you listen to the news or play your favorite music. Most radios include a small four-channel amplifier integrated circuit that can produce between 15 and 20 watts of power. With reasonably efficient speakers, that’s enough for many people. So, as a minimum, your car stereo system needs two channels to allow the system to reproduce a stereo audio signal and send independent information to the left and right speakers.

Amplifier Channels
The most straightforward car audio system would include a radio and a pair of speakers. The system has two channels of amplification built into the radio.

If you want the audio system to play a little louder, have a specialty car audio retailer add a second set of speakers to the rear amplifier channels built into the radio. Now, each speaker will receive 15 to 20 watts of power, and assuming the speakers are of the same efficiency, the system can play at least 6 dB louder.

Amplifier Channels
The second-most straightforward car audio system would include a radio and two pair of speakers. In this example, we show the four-channel amplifier in the radio driving the front and rear, left and right speakers.

When four channels of amplification are available, you can use the fader control to adjust the relative output levels of the front and rear speakers.

If you want a dramatic improvement in performance and output capability from a deck-powered audio system, we strongly suggest adding a subwoofer. Even a modest amplified subwoofer can make a significant difference to the perceived quality of your audio system. In addition, the dedicated subwoofer can reproduce low-frequency audio information at higher volumes.

Amplifier Channels
Adding a subwoofer to an audio system dramatically improves clarity and perceived performance.

Audio Systems with External Amplifiers

Let’s look at systems with external amplifiers. We’ll start with a basic two-channel amplifier. Most car audio amplifiers are capable of driving a 2-ohm load. The ability of an amplifier to drive lower impedances means your installer could wire two 4-ohm speakers in parallel to each channel without upsetting the amplifier. As such, you could use a two-channel amplifier to power four speakers with the two left speakers on one channel and the two right speakers on the other. Back in the ’80s and early ’90s, some car audio manufacturers suggested using 4-ohm speakers for the front and 8-ohm speakers for the rear with a two-channel amplifier. The goal was to reduce the power sent to the rear speakers to help improve the perception of the sound coming from the front of the vehicle. Remember, if you’re after the best sound quality, most amplifiers add distortion when driving lower impedances.

Amplifier Channels
A two-channel amplifier can drive one or two pairs of speakers to increase the maximum output of a car audio system.

If you want to control the relative level of the front and rear speakers in your car stereo system, you’ll need a four-channel amplifier. Assuming the radio has front and rear RCA preamp outputs, the fader control on the radio will adjust the relative volume of the front and rear speakers.

Amplifier Channels
A four-channel amplifier allows you to use the fader control to adjust the relative level of the front and rear speakers.

One popular audio system configuration uses a four-channel amplifier with two sets of speakers and a subwoofer. The front and rear speakers would be connected to one pair of channels, and the second pair of amplifier channels would be wired in a bridged configuration to provide more power to the subwoofer.

Amplifier Channels
This system uses a four-channel amplifier to drive the front and rear speakers from one pair of channels, with the second pair bridged to power a subwoofer.

If you want more system flexibility, try a five- or six-channel amplifier. The extra stereo channels will add the ability to adjust the relative volume level of the front and rear speakers while using a dedicated pair of channels in a bridged configuration or a high-power mono for a subwoofer.

Amplifier Channels
Using a five- or six-channel amplifier gives you complete control over the volume of each speaker in the system.

Actively Filtered Car Audio Systems

If you want the most control over each speaker in your car audio system, dedicating an amplifier channel to each one is the best way. The challenge here is that the amplifiers must have crossovers that will allow each speaker to receive only the range of frequencies for which it is designed. Some higher-end radios include three-way crossover modes with high-pass filters for coaxial drivers or tweeters on the dash, bandpass crossovers for midrange or midbass drivers in the doors and a low-pass filter for the subwoofer. Many five- and six-channel amplifiers also include crossovers with adjustable range crossovers that can handle bandpass filtering on a midrange driver and a high-pass crossover for a tweeter.

Amplifier Channels
Many amplifiers include flexible crossovers that allow a pair of channels to power tweeters and apply bandpass crossovers to midrange drivers.

The next step from the above system is to include a digital signal processor to handle the filtering, delays and channel-by-channel equalization. While radios like the Sony XAV-9500ES have all these features, very few (if any) radios on the market include channel-specific crossovers. In this case, you must include an external digital signal processor to handle the filtering, delays and equalization. If you want to use a mid and tweeter in the front and a subwoofer in the back, you will need a DSP with six outputs (three for the left and three for the right) and a five- or six-channel amplifier.

Amplifier Channels
Having a digital signal processor in an actively filtered car audio system allows your installer to fine-tune the output of each speaker in the system for fantastic realism.

If you don’t already have an amplifier, you might want to consider purchasing one with a built-in digital signal processor. These all-in-one processing and amplification solutions simplify the installation and reduce the interconnect cables required to feed signals around the system.

Amplifier Channels
Amplifiers with built-in digital signal processing are a great way to optimize the performance of every speaker in your car’s audio system.

The next step up takes two routes. First, if you have passengers in the rear of your vehicle or prefer to have the sound from your stereo wrap around you as you’d hear at a club or when listening to headphones, you might want to add rear speakers. You’ll need another pair of amplifier channels for the rear speakers. No name-brand car audio amplifier manufacturer (that we know of) offers a seven-channel amplifier. You’ll need to go with an eight-channel amp and use a pair of channels bridged to power a subwoofer.

Amplifier Channels
With eight channels of amplification, you can have a two-way front stage, rear speakers and a subwoofer, all from a single amp.

The alternative is to move up from the three-way system to a four-way design with tweeters, midrange drivers, midbass drivers and a subwoofer. The benefit of a four-way system is that the midrange drivers can be placed higher in the vehicle – in the dash, at the top of the doors or in custom pods on the A-pillars or sail panels. These higher midrange mounting locations can improve the perception of stage height. A three-way front stage also allows each speaker to operate in a frequency range where directivity becomes less of an issue so that the audio system will sound better from both front seats.

Amplifier Channels
An eight-channel DSP-equipped amplifier is perfect for a three-way front stage and subwoofer.

Many eight-channel amplifiers include RCA preamp outputs that can be used to power additional amplifiers. A popular option for those who enjoy listening to music at higher volume levels is to bridge two pairs of the eight channels to provide more power to the midbass drivers, then use an external high-power amplifier to drive the subwoofer.

If you wanted to add rear speakers to the above configuration, you’d need two more channels for 10.

We aren’t going to delve into the world of re-amplifying premium factory-installed audio systems like Bose Centerpoint and Harman Quantum Logic Immersion. Those can quickly require 12 or more channels of amplification to cover mid-level systems. For example, some of the Harman audio systems included in vehicles from Lexus have 23 speakers and 16 channels of amplification. Dealing with these systems involves complex elements that include active noise cancellation and volume-based response changes, as well as signal delays and all-pass filters.

One last thought: You don’t have to choose a single amplifier with the number of channels you want. For example, you could use a two-channel amp for a pair of front speakers and a monoblock amp for a subwoofer for three channels. A popular system configuration is a four-channel amp for front and rear speakers and a monoblock amp for a sub. Some elaborate systems use two four-channel amplifiers for the front speakers. One amp would run the left tweeter, the left midrange and the left midbass from a pair of bridged channels. The other four-channel amp would power the three right speakers. This configuration can improve stereo separation a bit but is complex and expensive.

There are many other ways to configure car audio systems, and each has different amplifier channel requirements and benefits. This article covers some of the most common to help you understand what the product specialist you’re working with might suggest. Before shopping, think about how you like to listen to your music and how loudly. Provide that information to the team at the specialty mobile enhancement retailer you’re working with, and they can quickly narrow down the number of amplifier channels you’ll need.

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

Don’t Suffer with Slow Smartphone Vehicle Control Solutions

Smartphone Vehicle Control

If you’ve been in the market for a new car, truck or SUV recently, you’ve likely encountered the convenience of smartphone control options. These features allow you to perform tasks like locking the doors or starting the vehicle remotely from your smartphone. However, the reality is that many of these factory-installed systems can be frustratingly slow – a common pain point for many of us. You’re not alone in this: A member of our team has two brand-new vehicles in their driveway, both with comparatively sluggish smartphone control systems. Let’s delve into how these systems function, why they’re slow and, most importantly, what solutions can alleviate this frustration.

What Is a Smartphone Control System?

It should come as no surprise that computers control modern cars and trucks. Decades ago, a fuel-injected vehicle might have had a computer to control the spark plugs and fuel injectors. Today, everything from the headlights and infotainment system to the suspension, collision-avoidance systems and engine is controlled by computers. These computers are typically linked through a network data bus. In the not-so-distant future, vehicles will be able to communicate with each other, opening up a world of possibilities. The intention is to reduce accidents and traffic congestion using machine-learning software and your vehicle’s real-time location. These are called vehicle-to-vehicle systems, or V2V for short.

The benefit of linking all the features and systems in a car or truck is that one can respond to another. For example, some luxury vehicles will lower the air conditioning or heater fan speed to make using Bluetooth hands-free calling easier. Some advanced collision-avoidance systems produce warning sounds through different speakers in the vehicle, depending on where an object is. A turn-signal activation might trigger the infotainment system to display the image from a camera on the side of the car. A parking sensor on the vehicle’s rear might apply the brakes to prevent a collision.

We love the simplicity and ease of troubleshooting electrical systems that use mechanical switches and relays. However, the benefits of computer control can’t be denied.

Smartphone Vehicle Control
The ability of the multitude of computers in a vehicle to communicate with each other improves convenience and safety.

Smartphone Control Integration

So, how can an app on a smartphone communicate with the computers in your car or truck? It uses cell phone towers and cellular radios or modems. Unlike an old cell phone optimized exclusively to transmit and receive voice information, modern cellular radio modules are just as good at sending massive amounts of data. Those of us who like to watch YouTube on our phones understand this. Essentially, the phone acts like a modem connected to our home’s cable or phone service provider. However, rather than a wired connection, the information is broadcast over the air to a nearby cell phone tower. From there, it’s on the internet, and you can reach whatever server and website you want.

Most new cars and trucks include a cellular data radio to communicate with a centralized server to provide vehicle information. This connectivity allows commands from the app on your smartphone to be relayed to the vehicle and vice versa.

Say you want to use your smartphone to make sure your truck’s doors are locked before you go to bed. You launch the app on your phone, then press the lock button. The app will send a message, along with your username and password, to a server operated by the vehicle manufacturer or a third-party company contracted to provide the telematics service. The message is already on the internet if connected to your home Wi-Fi. If you aren’t home and are using a cellular data connection, the message is sent to the cell phone tower, which then passes it along to the cell phone provider’s connection to the internet.

After the server has authenticated the message, a new message with the command is sent to your vehicle. This message travels through the internet to the cell phone service provider tied to your car. From there, the message goes to a cell tower near your vehicle. The message is broadcast digitally to the cellular radio in your car. That radio will recognize the command and send a digital message to the body control module to lock the doors.

Once locked, the process reverses. The vehicle confirms that the door lock request has been executed and returns that confirmation to the smartphone app along the same path.

These messages might travel the entire length of a state or province or even across the country to authenticate and execute commands. It is truly fascinating that any of this can happen in a reasonable amount of time.

Smartphone Vehicle Control
Commands from your smartphone app use the cellular data network to communicate with your vehicle.

Benefits of Smartphone Vehicle Control

Having smartphone control of some of your vehicle’s features is extremely convenient. For example, being able to check to make sure the vehicle is locked from your home or office is excellent. With that said, this isn’t a time-sensitive process from the perspective of waiting for the information. However, if you’re walking out of a store or your home and you want to pop the trunk or open the hatch, it would be nice if that were done by the time you got to the car. The same goes for unlocking the vehicle. Sure, most vehicles with smartphone apps also have keyless entry systems. Nevertheless, the app should work fast enough that you are never waiting.

In reality, the choice of cellular data providers and the companies that host the authentication services plays a considerable role in determining the time it takes for your vehicle to respond to commands. If Mazda wanted to reduce operational costs on the MyMazda service, they could select a less expensive, lower-priority service from the cellular data provider. We’ve seen smartphone control systems that take more than a minute and others under two seconds. That’s a significant difference.

Testing Smartphone Apps on Modern Vehicles

We’ll examine smartphone app responsiveness with the MyNissan app and a 2023 Nissan Rogue. After the vehicle had been sitting idle for a few hours, we sent an unlock command from the smartphone. It took 10.8 seconds for the vehicle to respond. We followed this by sending a lock command. That took 3.7 seconds.

Next, we have the MyMazda app and a 2025 Mazda CX-70 PHEV. The test criteria are the same. The vehicle has been sitting idle for several hours. The delay between sending the unlock command and the vehicle responding was 16.6 seconds. The delay to relock the vehicle was 4.7 seconds.

As you can see, sending a second command is much faster. We hypothesize that some of the account authentication processes on the server have already been completed, and your information is now in the cache rather than buried on a storage device.

One MyMazda function regularly used on the Mazda is checking the battery charge status. Oddly, this process takes an abnormally long time – we measured 31 seconds. It’s faster than walking to the vehicle, but not much.

To put these wait times into perspective, the average adult walks about 17 meters or almost 56 feet in 17 seconds. If you are leaving a store and want to remote-start the vehicle, you might be halfway across the parking lot before it gets the start command.

Drone Response Time

Let’s compare this response time to an aftermarket vehicle control solution like Drone from Firstech. You should be familiar with Firstech, which manufactures Compustar remote car starters and Momento dashcams. Sending an unlock command to a vehicle requires less than two seconds. The lock command was executed in under two seconds. We’ve seen a few instances where, just like the OE systems, the first request takes a bit longer than the subsequent, but they are always a fraction of what the OE systems we’ve tested provide.

When the Drone updates, it also provides battery voltage and the temperature inside the vehicle. All of that takes only 2 seconds.

Smartphone Vehicle Control
Smartphone vehicle control solutions like Drone from Firstech provide nearly instant responses to commands.

What about Bluetooth Control?

Some OE and aftermarket smartphone control solutions can communicate with your vehicle using a Bluetooth data connection. Tesla uses this technology in many of its vehicles. Once in range, your smartphone will connect to the vehicle using Bluetooth, and pressing a button in the app will result in a near-instantaneous response from the vehicle. The drawback here is range. Bluetooth might work up to 100 feet under absolutely ideal conditions. This will work as an entry authentication solution but not for something like a remote starter when you are far away.

Shopping for Smartphone Control Solutions

If you want to be able to control and monitor your car, truck or SUV from anywhere in the world where you can access the internet, visit a specialty mobile enhancement retailer and ask them about the solutions they offer.

Before committing to purchasing anything, ask for a real-life demonstration. How long does it take for the vehicle to respond to commands from the phone? Is it a second or two, or slow? Next, ask what functions the system can control in your vehicle. We would expect that door locks are a minimum and that you will likely add this control system to a remote car starter. Beyond that, you may have the option of automatic rear window defroster, heated seat and heated steering wheel activation if your vehicle has those features. Hatch or trunk release is another popular feature, along with sliding door control on minivans.

These days, we need to do everything in our power to keep our vehicles safe. Ask if the control system has geofencing options and if it will provide towing alerts. Find out if you can upgrade the system with a security sensor to monitor for impacts, motion, tilting or glass breakage. Advanced security features are never offered on factory-installed smartphone control systems.

Smartphone Vehicle Control
Ensure that the solution you choose can provide security alerts to help keep your vehicle safe.

Once you have a clear image of the options available, you can choose those that meet your needs. Of course, features and pricing aren’t all that matter when selecting a shop to upgrade your vehicle. Do your research to make sure that the technicians working on your car or truck are appropriately trained, use reliable connection methods and pay attention to the details when integrating the system into your vehicle. Look to see if the shop uses seat, steering wheel and fender covers while working on the vehicle. Find out if they put the vehicle battery on a charger to keep it topped up while they have the doors open. All these small items seem simple, but they are signs that the shop you are researching cares about their work and 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, PRODUCTS, RESOURCE LIBRARY

Marine Radio Remote Control Options

Radio Remote

One of the most gratifying features of modern marine radios is the ability to upgrade them with various remote control options. Many conventional car radios are compatible with steering wheel audio button interfaces or an infrared remote. Marine radios take this to an entirely different level with options for remotes that include color displays and even integration with chart plotters and multifunction displays. Let’s look at some specific options for marine radio remotes.

Marine Remote Requirements

If you’re buying a new radio or want to add a remote to an existing system, the first thing you’ll want to check is that the remote is designed specifically for marine applications. They should be completely water-resistant, with at least an IPX5 water-intrusion rating.

Radio Remote
Marine radio remotes should be at least IPX5-rated to ensure that they will be watertight. Image Credit: EMC Technologies Group

The remotes should be constructed with UV-resistant materials so the plastics don’t fade, chalk, crack or discolor after prolonged exposure to the elements. In addition, testing standards such as ASTM D4329, ASTM G154 and ASTM G155 confirm that the manufacturer has tested their products under extreme UV conditions to ensure that they will function reliably and continue to look great.

Radio Remote
Companies offering marine remotes will use test chambers to measure the consistency of products under harsh UVA-340 and UVB-313 exposure. Image Credit: Xi’an LIB Environmental Simulation Industry

Finally, if you use your boat on the ocean, a saltwater lake or a river, the remote should resist damage from these conditions. Again, look for ASTM D5894, ASTM B117, ASTM G85, ISO 9227 or JIS Z 2371 testing to ensure that nothing will corrode prematurely.

Radio Remote
Remotes should pass salt spray/fog testing to withstand high-saline conditions. Image Credit: Materials Technology Ltd.

One of the most overlooked requirements for marine electronics is that the devices meet the American Boat and Yacht Council (ABYC) C-1500 or SAE-J1171 Ignition Protection standard for marine products. In short, this testing confirms that, under regular operation, the device in question will not ignite an air/fuel mixture and cause an explosion. This testing is more specifically intended for fuses, fuse blocks, circuit breakers, motors and switches used in engine compartments in the presence of fuel storage. But radios, remotes, lighting controllers and amplifiers should also be ignition-protected devices. The last thing you want is for your boat to explode when you try to turn on your radio.

Radio Remote
Ignition-protection testing ensures that electrical and electronic devices won’t cause a flammable air/fuel mixture to explode when operated. Image credit: YIS Marine

Basic Marine Radio Wired Remotes

Since their inception almost a quarter-century ago, most marine radios have included options for often elaborate wired remote controls. For example, if you had a boat with the radio mounted near the helm or at a navigation station, your installer could add a secondary control on the swim platform, in the cabin or up on a flybridge. In addition, most marine radios use wired connections to these remotes for consistency and reliability. While this can increase the time required to add these remotes to an existing audio system, it helps ensure reliability and seamless integration.

The most basic wired remotes have dedicated buttons for volume adjustment, track and preset selection, source selection and the ability to turn the radio on and off.

Radio Remote
The Sony RM-X11M remote mounts in a 2-inch opening and works with source units like the DSX-M80 and MEX-M72.
Radio Remote
The HMC-U1 from Hertz is a compact remote that works with the HMR 20, HMR 10 D and HMR 10 source units and mounts in a 1.77-inch opening.

Marine Remotes with Displays

As an upgrade, many marine radio remotes include an LCD screen that displays station, track or volume information. Some solutions go as far as including color displays that mimic the information on the radio with album art display from digital media files. In addition, these remotes are often compatible with hide-away radio options with no built-in controls or displays.

Radio Remote
Rockford Fosgate’s PMX-1R wired remote is compatible with their full line of PMX-Series marine source units.
Radio Remote
The HMC D1 from Hertz is a display remote that’s designed as an option for the HMR 50 marine radio.

NMEA 2000 CAN BUS Remote Options

Another important remote option for marine radios is the ability to connect to a multifunction display or chartplotter in the helm or a nav station. Companies like Garmin, Simrad and Raymarine include options on these displays to control a hide-away radio system or interface with a more conventional marine radio. Access to source selection, volume control, track and station selection are available. Before installing a solution, it’s crucial to check that both the radio interface and the multifunction display (MFD) are compatible. Not all radio brands are compatible with all MFD manufacturers, and some have proprietary protocols outside the NMEA 2000 data structure.

Radio Remote
The PMX-CAN interface from Rockford Fosgate allows entertainment system integration with many Garmin and Raymarine multifunction displays.

Remote Upgrade Considerations

Here are a few things you’ll need to keep in mind as you and the product specialist you’re working with design the entertainment system for your boat. First, for most brands, there’s a limit to the number of remotes that can be connected to a radio. Typically, they can’t support more than three, but it’s worth checking the documentation of the model of radio you have in mind.

If you use more than one remote with a radio, you’ll likely need a Y-cable for each additional remote. In most cases, remote cables are designed specifically for each radio manufacturer, so your installer isn’t likely going to be able to mix and match parts. The same goes for remotes – you can’t use a Rockford Fosgate remote with a Hertz Marine source unit.

Additionally, remotes often have maximum cable length limits, with most being limited to 100 feet. If you’re planning multiple remotes with long cables, suggest that your installer mock up the system on a test bench before they start cutting holes and running cables.

Radio Remote
If you want your installer to add multiple remotes to a radio, you’ll have to purchase a Y-cable.

Upgrade Your Marine Audio System with a Remote Control

Being able to control the stereo system in your boat from the swim platform, the helm or the cabin will ensure that you can always listen to your favorite music while on the water. Drop by a local specialty mobile enhancement retailer today to inquire about the remote control options available for your boat.

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, Marine Audio, RESOURCE LIBRARY

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