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How Does a Car Audio Amplifier Work? – The Class D Output Stage

Class D Amplifier

As we continue our look at how at how car audio amplifiers work, we need to discuss what has become the most popular design on the market today: amplifiers that use a Class D output stage. In audiophile realms, Class D designs often carry an unfavorable reputation. Do their drawbacks outweigh their benefits? Let’s have a look!

How Does a Class D Output Stage Work?

Class D AmplifierOnce the input stage has handled any signal processing needs, the audio signal is passed to the output stage so that it increases in voltage and the MOSFETs can provide adequate amounts of current to drive our relatively low impedance speakers. In a modern Class D amp, the MOSFET output devices are fed by a driver IC that handles the conversion of the analog signal into a pulse width modulated signal.

What is a Pulse Width Modulated Signal?

https://www.bestcaraudio.com/everything-youve-wanted-to-know-about-audio-distortion-part-2/Imagine, if you will, an incandescent lightbulb. We hook the bulb up to a power source and insert a computer-controlled switch in series with the circuit. If we leave the switch off, the light stays off. If we turn the switch on, the light illuminates to full brightness. However, if we turn the switch on and off very quickly, and the switch is on for as long as it’s off, the bulb will glow at half of its possible brightness. This variation of on-versus-off time is called duty cycle. When the on-vs.-off time is equal, that’s a 50% duty cycle. Using a square wave signal with different duty cycles is called pulse width modulation (or PWM for short).

The Class D driver analyzes the audio signal at extremely high speeds (some as fast as 800kHz) and creates a relatively low-voltage PWM signal that feeds the output devices. The output devices switch all the way on and all the way off very quickly. Because the devices spend very little time in a partially on state, they present very little resistance and, subsequently, consume very little energy. The best Class D amplifiers on the market offer overall efficiencies that exceed 92% at full power. This excellent efficiency is in contrast to Class AB amplifiers that turn between 35% to 50% of the energy fed into the amp into heat.

Class D AmplifierCompact discs use a version of PWM where the duty cycle of the output pulse is stored in a 16-bit digital word. This gives us 65,536 possible amplitude levels. Unlike modern Class D drivers, our audio is stored at 44,100 samples per second. This is still more than enough to reproduce the entire audio spectrum.

Class D Circuit Arrangement

Class D Amplifier
A theoretical example of how modulating the on-vs.-off time affects the output level. In reality, the better-quality Class D drivers output a square wave pulse 40 times for a 20kHz sine wave.

Lastly, Class D amplifiers typically have their output devices arranged in a Class AB configuration, where one device drives the negative part of the waveform and the other drives the positive. As such, Class D describes how the output devices are used, rather than their electrical orientation in the circuit.

Class D Amplifier
A simplified block diagram of how a Class D amplifier works.

Drawbacks of Class D Amplifier Designs

https://www.bestcaraudio.com/everything-youve-wanted-to-know-about-audio-distortion-part-2/If you have read the BestCarAudio.com articles on distortion, then you know that a square wave AC signal is made up of a large number of high-frequency harmonics. You’ve likely heard this phenomenon in your home if you have a dimmer on some of the lights. The filament in the lights will occasionally ring, depending on the level of the dimmer. Since we only want to pass an audio signal back to the speaker, amplifier designers add a passive filter network to the output of the MOSFETs. This network includes an inductor in series with the load as well as a capacitor and resistor in parallel and acts as a low-pass filter to remove this high-frequency switching noise.

One drawback of a Class D design is that these output filter components interact with the frequency-dependent variations in load impedance to alter the frequency response of the amplifier. While the effect is minute, it can give Class D amps a different overall tonal balance than you’d get from an AB design. Of course, a little manipulation with a digital signal processor (DSP) will get that back in check in a jiffy.

Class D AmplifierAnother issue with all this high-frequency energy is the potential for electrical interference with other systems in the vehicle. Most commonly, AM or FM radio reception can be washed out or dramatically reduced. While the better amplifier manufacturers do everything possible to mitigate radio-frequency interference, problems can still occur — the best plan to keep the amplifier as far away as possible from the radio antenna.

Why Would You Want a Class D Amplifier?

Class D AmplifierThe long and the short of it is that companies have invested in developing Class D amplifiers in an effort to shrink the physical size requirements of amplifiers, supposedly to make it easier for installation technicians to find mounting locations for them. The reality is, heatsinks for amplifiers are one of the more expensive single components in an amplifier. If the size of the heatsink can be reduced, so can the cost of the amplifier. The days of 40- and 50-watts-per-channel stereo amps with a footprint of more than a square foot are long gone, thanks to modern Class D designs. Now, you can get more than 1,000 watts of power from that same physical space.

Class D amplifiers are a good solution for subwoofer systems because they do offer increased efficiency over their Class AB counterparts, and almost all amplifier manufacturers have at least one series of Class D amplifier in their catalog. Your local specialist mobile enhancement retailer can help you choose a solution with the right power level, number of channels and features to make your car stereo sound great.

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: Sony DSX-M80 Marine Bluetooth Receiver

Sony DSX-M80The introduction of the DSX-M80 Bluetooth receiver marks the newest version of Sony’s marine-grade High Power head unit in its current product line. It replaces the MEX-M100BT, which debuted Sony’s proprietary impressive High Power technology at 45-watts by four from its internal amplifier to a marine-grade radio. The fun doesn’t stop there – dual USB ports, dual Bluetooth connectivity, UV-resistant materials used for the face and trim, anti-corrosive coatings on its electronics and a suite of signal processing features make this radio an excellent solution for boats as well as powersports applications.

Sony DSX-M80

Sony High Power Source Unit Amplifier

Unlike typical car radios that use a single integrated circuit powered directly from the vehicle battery voltage, Sony has included a switching power supply and a four-channel Class D amp in the chassis of the DSX-M80. This amp is capable of producing at least 45 watts of power per channel into 4-ohm loads and is 2-ohm stable to bring even more power in that configuration. Sony also includes its Subwoofer Direct Mode, which lets you feed even more power to a single rear output connected to a subwoofer setup to bring your audio system to life without the need for an external amplifier.

Sony DSX-M80 Design and Interface

The display on the DSX-M80 features a high-contrast design with a white panel and black text that works well in bright sunlight. The 14-segment, 12-character display allows song titles and radio station information to be displayed accurately. The display and button backlighting colors can be set to any of more than 34,000 options, or you can use the Sound Sync mode to have the display change to the beat of your music. A key feature for marine applications is the inclusion of non-volatile memory that will maintain system settings, radio station presets and phone pairings when power is cut to the unit for storage or maintenance on the vehicle or watercraft.

Likewise, in keeping with the marine design, the radio’s face is constructed using UV-resistant materials that can handle prolonged exposure to the sun without fading or cracking. Sony has coated the main circuit board with a moisture-resistant conformal coating to help prevent corrosion in high-humidity environments.

Sony DSX-M80
A coating on the circuit board of the DSX-M80 helps prevent electrical connections from corroding in high-humidity environments.

Marine Entertainment Source Options

The DSX-M80 includes dual USB ports so you can connect an Android smartphone or Apple iPod, iPhone or iPad to play music. Android connectivity includes Android Open Accessory (AOA) 2.0 support. The rear USB port supplies 1.5 amps of charging current, and port on the front face supplies 1 amp. You can play up to 10,000 audio files in MP3, WMA, WAV, AAC or FLAC formats at up to 48 kHz sampling rates from a single USB device.

As mentioned, you can pair two Bluetooth devices simultaneously to this radio. The first connection can serve as an entertainment source using Bluetooth A2DP and AVRCP connections, giving you access to communication, navigation and music playback features. Pair a second phone for hands-free call connectivity.

Sony DSX-M80
Classy styling combined with a reverse LCD display and two-color illumination make the DSX-M80 look as great as it sounds.

There is a front-panel 1/8-inch aux input, and the AM/FM tuner features RBDS station information display. The radio tuner channel spacing can be changed to work with European and other countries’ standards. The DSX-M80 is compatible with SiriusXM satellite radio — just ask your retailer to add the optional SXV300 tuner module during the installation.

System Configuration and Tuning Features

Sony has included its EQ10 10-band equalizer along with the Extra Bass function so your system can be fine-tuned to deliver the frequency response you want. Adjustable high- and low-pass crossovers with adjustable slopes let your installer optimize the operating frequency range for each speaker in the system. ClearAudio+ and DSEE (Digital Sound Enhancement Engine) audio processing features help to recover audio information lost during the digital compression process or radio transmission to make your music sound better.

This radio is also compatible with the Sony | Music Center app. The app not only serves as a convenient music player, but it provides full remote control over the radio from your smart device. Your installer can even configure signal delay and level settings using the Advanced Car Audio Setting portion of the app to optimize the system for the given speaker locations in your boat or vehicle.

Sony DSX-M80
Your installer will have no problem upgrading an existing source unit with the DSX-M80, thanks to industry-standard wiring and connections.

Sony DSX-M80 Connectivity Features

The Sony DSX-M80 includes the aforementioned four-channel High Power amplifier and three sets of 5-volt preamp outputs. Connections are provided for the included Bluetooth hands-free microphone as well as an input for an optional steering wheel or helm control input interface. A programmable steering wheel control input feature allows connection to older resistance-based controllers that may already be installed in the boat. Your retailer can help you determine if your existing system will be compatible with this feature.

Sony DSX-M80
If you have an ATV or UTV that needs a high-power source unit, the Sony DSX-M80 is a great choice.

Upgrade Your Playtime with Sony

Whether you’re looking for a source unit for your boat, golf cart or side-by-side, the Sony DSX-M80 is a great option. It has all the source features you could ever want, and the High Power amplifier ensures that you can blast your music loud and clear. For more information, visit the Sony car and marine website or visit their Facebook, Instagram or Twitter social media sites.

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, PRODUCTS, RESOURCE LIBRARY Tagged With: Sony

Is Turning Up the Bass on Your Car Stereo a Good Idea?

More Bass

If there’s one thing that can add emotion and excitement to your music, it’s adding a little more bass. Bass frequencies, especially those below 80 Hz, can be felt as much as heard at a higher volume level. The tingling in your amps and vibration in your back make a night at a club, your favorite concert or a high-end car stereo system some of the most enjoyable musical experiences available. The problem is, adding bass isn’t always easy. Let’s look at how many people do it and offer a few suggestions for enhancing the low-frequency performance of your car stereo.

Making Bass Takes Power

More BassIf you are an avid reader of our articles, then you know that it takes significantly more power to drive a subwoofer to an output level of 90 dB than it does for a set of tweeters. You can find out more about the physics behind that phenomenon here.

Unless the stereo system in your car has a dedicated amplifier with a switching power supply, it’s likely with 6.5- or 6×9-inch speakers as the largest size, it takes a lot of power to move the speaker cone enough to produce the bottom few octaves of our music.

More BassImagine “Thunderstruck,” “Bohemian Rhapsody” or “Yeah!” by Usher comes on Pandora and you can barely hear the bass line. Instinctively, you look for a way to turn up the bass with the tone control or EQ built into your car radio. More often than not, you are rewarded with a garbled mess that sounds less like music and more like the performer is munching on a rubber floor mat.

As much as this isn’t any fun, it’s really no surprise. That tiny little amplifier built into your radio is designed for moderate listening levels with fairly neutral overall tonal balance. That means, not a lot of bass relative to the mids and highs.

Problem defined. How do we fix it?

Does Adding Power Make More Bass?

More BassWhat if we visited our local car stereo shop and asked to have a 75-watts-per-channel amplifier installed between the factory radio and the speakers? Now, any signal that comes out of the radio is amplified and we don’t run out of power when the bass line kicks in, right?

In the simplest of terms, sure, adding an amplifier to your factory speakers helps a lot. With that said, you are still limited by the small size of the speakers. Worse, you are asking those relatively tiny woofers to move really far to produce bass, as well as midrange information. Unless someone has come up with a way to defy the laws of physics, more excursion always results in more distortion.

Adding an amp added a little bass, but made the midrange sound worse.

Will Upgrading Speakers Add Bass?

More BassLet’s say you skipped the amplifier idea and decided that upgrading to high-quality speakers was a better bet. Do better or more expensive speakers produce more bass than less expensive offerings? There’s almost no definitive way to answer that question in a single paragraph. Some speakers produce less midrange relative to the amount of bass they produce. There are also speakers that play lower than factory speakers. In both cases, the new speakers are typically less sensitive (require more power) than what’s already in your car or truck. In short, you may get the perception of more bass, but more often than not, you’ve ended up with less midrange.

The good thing about upgrading your speakers is that they can likely handle the power from an amplifier with fewer complaints and stress. So, if you upgrade your speakers and add an amplifier, your system might sound pretty good.

The Best Way to Add Bass is to Add a Subwoofer System

More BassImagine if there were a way to add an amplifier and speaker to your car or truck that was dedicated to reproducing bass. I know, it sounds far-fetched, right? Sorry, just kidding.

Adding a subwoofer and driving it with a dedicated amplifier, even if the selection is modest, will offer an impressive improvement in the reproduction of bass in your music. A powered 8-inch subwoofer that fits under a pickup truck seat or in the corner of your truck is a perfect starting point. Best of all, you can turn the bass settings on the radio back down and let the small speakers in your car do their job of reproducing midrange and high-frequency information. The result is a car stereo system that plays louder and sounds amazing.

Of course, there are an unlimited number of options for generic, vehicle-specific and custom subwoofer systems to add more bass to your car stereo. Your local specialist mobile enhancement retailer can help you choose a solution that will meet your needs. Drop by today and have a listen to what they have to offer.

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

Tools of the Trade – The Oscilloscope

Oscilloscope Tools

Our series of articles on what tools are important to test and configure a car audio system upgrade moves on to the oscilloscope. Tools like digital voltmeters, real-time audio analyzers and, of course, hand tools such as screwdrivers, side cutters, wire strippers and a socket set each have their place and importance. When it comes to analyzing the amplitude of electrical signals that change with time, only an oscilloscope can provide an installation technician with the information he needs.

What Is an Oscilloscope?

Oscilloscope ToolsAn oscilloscope is a device with a screen that displays the amplitude of a signal relative to time. The screen has several calibrated squares, each representing an adjustable time base or voltage level. Controls on the scope let the user change the time base and voltage ranges for the type of signal that is under inspection.

Why Is It Important for the Shop I Choose to Own an Oscilloscope?

Oscilloscope ToolsIf you are having an audio system installed in your car or truck, especially if an equalizer or digital signal processor is in the audio signal chain, having a scope is a sure-fire way of setting the amplifier sensitivity controls so they can achieve maximum output without significant distortion. Proper configuration ensures the highest possible signal-to-noise ratio, so hiss and background noise are kept to a minimum.

An Oscilloscope is an Important Tool

Oscilloscope ToolsA scope is also useful for testing the wiring in the car for audio and data signals to confirm that each electrical connection will function as intended. Some installers try to use a digital multimeter set to the alternating current (AC) voltage setting to perform these tests. While the meter may show some amount of information, there is no way to know the shape of the waveform to determine if the signal is digital or analog.

Finding a Quality Mobile Enhancement Retailer

As you search for a shop to work on your vehicle, we recommend that part of the process include a tour of their installation facilities. The install bay and fabrication area need not be spotless if they are working on vehicles, but they do need to have the right tools and supplies. Ask them what they use to set the sensitivity controls on the amplifiers you intend to buy. Hopefully, they have invested in the right tools and they own and know how to use an oscilloscope.

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

HID versus LED Headlight Bulb Upgrades – Which Is best?

HID LED

When it comes to safe driving at night, upgrading the headlights in your car or truck with HID or LED bulbs can make a dramatic difference in your ability to see long distances. Dozens of articles and videos on the Internet compare the two technologies. Piecing together information from all of them and wading through the marketing hyperbole can take time. Let’s lay out the features and benefits of LED and HID lights to help you choose the solution that will work best in your vehicle.

The Fundamentals of HID Lighting Systems

HID LEDHigh-intensity discharge (HID) lamps operate by applying 80 to 90 volts across a quartz glass arc tube filled with xenon gas at pressures between 70 and 700 psi, depending on the design and application. The current flowing through the arc tube causes the mercury and metal halides in the bulb to ionize into plasma and produce a bright light.

HID bulbs will not light (ignite) from the standard ~85V supply voltage and require an even higher voltage to begin the ionization process. An initial voltage of 15,000 to 25,000 volts is applied to the arc tube where a small amount of argon gas helps the voltage to travel from one electrode to the other and create heat. The process is similar to the way a coil pack creates a spark across spark plug electrodes to ignite the air and fuel mixture inside your engine. The heat created by the spark begins the mercury ionization process. In most applications, the ignition process takes 10 to 15 seconds. The ignition process can be made faster, but this would decrease the life of the bulb and the control ballast.

How Do LED Bulbs Work?

HID LEDBy comparison, LEDs are simpler from a mechanical perspective but more complicated in terms of chemistry. Using a process called electroluminescence, light-emitting diodes are solid-state devices that emit light when current in the form of electrons passing through the semiconductor recombines with electron holes and releases energy in the form of electrons. If you are having sporadic flashbacks to 9th- or 10th-grade chemistry class, then we’ve done our job.

Unlike HID bulbs, LEDs don’t require anything special to get them started, and contrary to popular belief, both HID and LED lighting systems draw roughly the same amount of power when in operation, at about 3.0 amps per bulb.

Drawbacks of HID Bulb Upgrades

HID LEDWhile HID bulbs are amazingly bright and efficient compared to incandescent bulbs, your installer needs to find a location to mount the starter circuitry and high voltage power supply — a device commonly referred to as a ballast. Finding a solid mounting location is critical to the long-term reliability of these components.

HID bulbs require up to 15 seconds to reach their full light output capability. For this reason, they are not an ideal solution for high-beam applications where you need instant light in a “flash to pass” situation.

HID LEDFinally, it is imperative to the long-term reliability of a HID lighting system that it be provided with adequate voltage and current during the startup process. The creation of the >15,000-volt spark can draw as much as 10 amps of current per bulb. The increasingly smaller factory wiring found in modern vehicles, along with the fact that headlights are usually left on during the engine cranking process, can make delivering the full electrical system voltage at a draw of 10 amps per ballast difficult.

When wiring is undersized, you may find that one bulb doesn’t ignite when you turn on your headlights. For this reason, HID system manufacturers strongly recommend the use of a dedicated, high-quality relay harness with a HID bulb upgrade. Direct connections to the battery for power and ground, relays rated for the high starting current of the system and quality all-copper conductors will help to ensure that your ballasts function efficiently and reliably.

Drawbacks of LED Bulbs

HID LEDThe rage over the last few years has been to use LEDs for bulb upgrades. As we mentioned earlier, LEDs reach their full output almost instantly, making them ideal for high-beam and turn signal applications. The primary problem with LEDs bulbs is managing their heat. If the LED chips on the bulb exceed about 257 degrees Fahrenheit (125 degrees Celsius), they can fail quickly. For this reason, LED bulbs include cooling fins in the form of braided copper strands or aluminum bands to help carry heat away from the LED chips. Some designs use small cooling fans. As long as the bulb is fully enclosed in a dust-proof housing, fan-cooled LED bulbs can work well.

HID LEDLED bulb manufacturers have a wide choice of LED chips to use in their bulb designs. The goal of the bulb design is to place a light source in the exact same position as you’d find in an incandescent bulb. The filament in an incandescent bulb is long and narrow, so the LED array should be similar in order to maintain the proper beam pattern. One problem with LED bulbs is that they don’t produce a 360-degree source of light and may require adjustment and tuning to achieve a satisfactory beam pattern.

Is HID or LED Better?

HID LEDDeciding which bulb upgrade is better for your car is like trying to decide if a red Ferrari is better than an orange McLaren. They are as different as they are similar. We spoke with Chris at HIDCOR Industries, a 20-year veteran of the automotive lighting industry, about lighting upgrade options. He told us that he starts each consultation by asking the client why he or she wants to upgrade their lights. The two most common answers are for looks and for performance. If you want that classy, modern white light, then he suggests LEDs are the way to go. They are easy to install and very reliable. If long-distance vision is the goal, then Chris suggests a 4300K (OEM color) or 6000K (pure white) HID upgrade along with a dedicated wiring harness to deliver every ounce of output possible. The HID upgrade is more involved as the ballasts and harness need to be installed properly, so it might be a little more expensive once the dust settles.

Chris explained his reasoning for HID over LED for long-distance lighting needs, but we’ll save that for another article at another time. In the meantime, if you are interested in improving your ability to see safely at night, drop by your local specialist mobile enhancement retailer and ask about the HID and LED bulbs that are available for 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, Lighting, RESOURCE LIBRARY

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