Image 1: Impulse response reverbs like Audio Ease’s Altiverb excel at cloning real acoustic spaces.
The entire world of ’verb—from traditional to extreme—really does lie at your fingertips. Here’s how to access it.
This article is for recording guitarists eager to make the most of reverb plug-ins. We’ll explore the various reverb types, decode the controls you’re likely to encounter, and conclude with some suggestions for cool and creative reverb effects.
This is not a buyer’s guide, though you’ll hear many different products. Our focus is common reverb plug-in parameters and how to use them. Nearly all modern DAWs come with good-sounding reverbs. You can also add superb third-party plug-ins. But there are also plenty of free and budget-priced reverbs—just google “free reverb plug-in.”
Reverb = delay. Reverb is merely a delay effect. Sounds traveling through air eventually encounter surfaces. Some sound bounces off these surfaces, producing a complex network of echoes, made even more complex when the initial reflections bounce off secondary surfaces.
The controls on reverb plug-ins define how the software mimics this process. Function names can be confusing, but remember, everything relates to acoustic phenomena that you already understand intuitively. For example:
- The space’s size. (The further a sound travels before hitting a surface, the slower the echoes arrive.)
- The hardness of the reflective surfaces. (The harder the material, the louder, brighter, and more plentiful the echoes.
- The relative angles of the reflective surfaces. (A square room sounds different than a round one, which sounds different than a trapezoidal one.)
- The presence of other objects. (Soft surfaces like carpets, cushions, and acoustic foam diminish the reverb, usually affecting some frequencies more than others.)
- The listener’s location. (The further an ear or microphone from the sound source, the more reverberation is perceived.)
Understanding Reverb Types
By definition, all reverb plug-ins are digital. Most are either algorithmic or convolution-based. Algorithmic reverbs employ delay, feedback, and filters to mimic sounds bouncing around in space. Convolution reverb (also called impulse response or IR reverb) creates “snapshots” of actual sonic spaces and audio devices. In convolution, developers amplify a test tone in the targeted space (or through a target piece of audio gear) and record the results. The software compares the new recording to the dry test tone, and then it applies corresponding adjustments to any audio, making it sound as if it was recorded in the modeled space or through the modeled gear. (That’s how the speaker simulations work in most amp modelers.) Algorithmic and convolution reverbs often perform the same tasks, just via different methods.
But when we make musical choices, we rarely think, “This should be algorithmic and that should be convolution.” We’re usually trying to evoke a particular sound: a place, an old analog device, a freaky sound not found in nature. So, let’s take a whirlwind tour of reverb history, with thoughts about obtaining those sounds via plug-ins.
A Haul-Ass Reverb History
Real spaces. Before the 20th century the only reverbs were actual acoustic environments: caves, castles, temples, tombs. It wasn’t till the 18th century that people began constructing spaces specifically for their sonic properties—the roots of the modern concert hall.
Convolution reverbs excel at conjuring specific places. Most IR reverbs include libraries of such sounds. Some evoke iconic spaces and famed studios. IRs can also mimic small spaces, like a closet or compact car.
Clip 1 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
In Clip 1, you hear the same acoustic guitar snippet through IRs captured inside the Great Pyramid of Giza, the isolation block at Alcatraz prison, Chartres cathedral, and the interior of a VW Beetle, all using Audio Ease’s Altiverb library. (For demo purposes, reverb is applied rather heavily in all audio examples.)
Echo chambers were the earliest form of artificial reverb, though they aren’t all that artificial. The chamber is usually a room with hard, reflective surfaces. A loudspeaker in the chamber amplifies dry recordings, and a distant microphone records the results. It’s still “real reverb,” only it can be added and controlled independently from the original recording. This process evolved during the 1930s and ’40s. The first popular recording to use the effect was 1947’s “Peg o’ My Heart” by the Harmonicats, produced by audio genius Bill Putnam.
PEG O' MY HEART ~ The Harmonicats (1947)
During a recent recording session at Hollywood’s Sunset Sound, I shot Video 1 in the famed Studio A echo chamber, thanks to house engineer George Janho. You’ve heard this very room countless times. The Doors and Van Halen made most of their records here. You also hear this reverb on “Whole Lotta Love,” the vocal tracks on the Stones’ “Gimme Shelter,” Prince’s 1999 and Purple Rain, and countless other famous recordings.
Sunset Sound Chamber
Echo chambers are well represented in most IR reverb libraries. Most algorithmic reverbs do chambers as well, replicating the general effect without modeling a particular space. You can even find plug-ins dedicated to a specific chamber, like Universal Audio’s Capitol Chambers, which models the Hollywood chamber famously used by Frank Sinatra.
Spring reverbs. These were the first truly artificial reverbs. They initially appeared in pre-WWII Hammond organs, and by 1960 or so they had migrated to guitar amps. Fender wasn’t the first company to make reverb-equipped amps, but their early-’60s reverb units still define the effect for many guitarists.
The reverb effect is produced by routing the dry signal through actual springs, with a microphone capturing the clangorous results and blending them with the original tone. Springs generally sound splashy, trashy, and lo-fi, often in glorious ways. It’s an anarchic sound, best captured in a plug-in via IRs. Most of the spring reverb sounds in guitar modelers are IR-based. Meanwhile, reverb stompboxes—usually algorithmic—mimic the sound with varying degrees of success.
Plate reverb appeared in the late 1950s, initially in the Elektromesstechnik EMT-140, which remains a sonic gold standard. Plate reverb works similarly to spring reverb, but a massive metal sheet replaces the springs. It’s generally a smooth, sensuous sound relative to a spring.
Clip 2 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
In Clip 2, you hear the same acoustic guitar snippet through impulse responses of a Fender spring reverb unit and a vintage EMT-140 plate.
There are countless plate clones among today’s reverb plug-ins. Some are convolutions based on analog gear. But algorithmic reverbs also excel at faux-plate sounds. In fact, one of the initial goals of early digital reverb was to replace cumbersome mechanical plates. Speaking of which.…
Digital reverb (the algorithmic kind) arrived in 1976 via the EMT-250, also from Elektromesstechnik. Lexicon and AMS produced popular rivals. They focused largely on mimicking rooms, chambers, and plates. Sound quality has improved over the decades thanks to increased processing power and clever programming.
Today you can get far “better” algorithmic reverb from plug-ins. But ironically, those primitive digital ’verbs are trendy again in pop production. You can find precise clones of retro-digital hardware in plug-in form.
Convolution reverb debuted at the end of the century, popularized by Sony’s DRE S777 unit. Convolution reverbs often have fewer controls than their algorithmic cousins because most of the process is baked into the impulse response.
Most convolution reverbs have similar sound quality. The free ones can sound as good as the pricy ones. Higher prices are often based on the size and quality of the included IR libraries. Google free reverb impulse responses for gratis goodies.
Recent wrinkles. There are always interesting new reverb developments. For example, Things — Texture from AudioThings and Silo from Unfiltered Audio are anarchic granular reverbs that loop and manipulate tiny slices of the reverb signal to create otherworldly effects ranging from the brutal to the beautiful.
Clip 3 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
Clip 3 includes several granular reverb examples.
Image 2: Zynaptiq’s innovative Adaptiverb generates reverb via pitch-tracking oscillators rather than delays and feedback loops.
Some newer reverbs employ artificial intelligence to modify the effect in real time based on the audio input. iZotope’s Neoverb automatically filters out frequencies that can muddy your mix or add unwanted artifacts. And Zynaptiq’s Adaptiverb generates reverb in a novel way: Instead of echoing the dry signal, it employs pitch-tracking oscillators that generate reverb tails based on the dry signal. It, too, excels at radical reverbs suitable for sound design.
Clip 4 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
Clip 4 demonstrates a few of its possibilities.
Common Reverb Plug-in Controls
The knob names on a reverb plug-in can get confusing, but remember that they control variables that you already understand intuitively. Also, not all controls are equally important. The most essential ones are the wet/dry balance and the reverb decay time (how long it continues to sound). By all means learn the subtler functions, but don’t be surprised if you use them only rarely.
Video 2 walks you through most of the controls you’re likely to encounter on an algorithmic reverb plug-in. I used ChromaVerb from Apple’s Logic Pro DAW for the demo, but you’ll encounter similar parameters on most algorithmic reverb plug-ins.
Digital Reverb Walkthrough
Creative Reverb Ideas
Spring things. The single reverb knob on vintage amps is simply a wet/dry blend control. Some spring reverbs add a dwell control to set the amount of reverb input. Higher settings mean louder, longer reverberation.
But in the digital realm, you can deploy old-fashioned spring reverb in newfangled ways. For example:
- Pan the dry signal and spring sound apart for a broad stereo effect. (Traditional spring reverb is strictly mono.)
- Add predelay, inserting space between the dry and wet signals. (If the plug-in has no predelay control, just add the effect to an effect bus with a 100 percent wet, no-feedback delay upstream.)
- Route a guitar signal to two different spring reverb sounds, panned apart.
- Assign the reverb to an effect send, add a compressor to the effect channel, and then sidechain the compressor to the dry guitar sound. That way, the reverb is ducked when the guitar is loud, but swells to full volume during quiet passages.
- Apply digital modulation to the wet signal for detuned or pulsating effects.
Clip 5 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
Clip 5 starts with a straightforward spring sound before demonstrating the above options in order.
Fender-style reverb is so ubiquitous that simply using less familiar spring sounds can be startling.
Clip 6 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
Clip 6 is a smorgasbord of relatively obscure spring sounds from AudioThing’s Springs and Amp Designer, Logic Pro’s amp modeler.
Finally, it can be exciting to use springs on tracks that don’t usually get processed that way. For example, spring reverb is often considered too quirky and lo-fi to use on acoustic guitar or vocals.
Clip 7 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
But Clip 7 shows how attractive springs can sound on voice and acoustic. (You hear the dry sounds first.)
Unclean plates. In contrast to a spring’s lo-fi clank, simulated plate reverb is smooth and warm. Even if your track already has spring reverb, you might apply some plate ’verb to integrate it into a mix.
One creative avenue is deploying smooth plate reverb in relatively lo-fi ways. For example:
- Try placing the reverb before an amp modeler on a track to mimic a reverb stompbox. That way, the reverb is colored by both amp and speaker.
- Imagine a guitar amp with a huge metal plate inside instead of springs. If your amp modeler lets you use pure amp sounds without speaker modeling and vice-versa, try sandwiching a plate sound between two instances of amp modeler on the same track. Turn off the speaker sound on the first amp sim and use only the speaker sound on the second one. This way, only the speaker colors the reverb.
- Plate reverb also sounds great panned separately from the dry sound.
Clip 8 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
Clip 8 starts with a conventional plate sound before demoing the above ideas.
Liquid reverb. Reverb plug-ins have one big advantage over hardware: Everything can be automated within your DAW.
Automated Reverb
In Video 3 I’ve written automation for both the decay time and reverb damping for an evolving effect that would have been difficult on hardware.
Oh, the places you’ll go. Convolution reverbs usually have fewer controls than their algorithmic cousins. You might do no more than adjust the wet/dry or fine-tune the decay time. But IR reverbs don’t have to be “plug and play”—especially if you create your own reverbs. It’s a surprisingly simple process. (Some IR reverbs, like Altiverb and Logic Pro’s Space Designer, come with an app to generate the needed signals and process the recordings for use.)
Image 3: You can get cool, if unpredictable, results by dropping random audio files into an impulse response reverb like Logic Pro’s Space Designer.
Theoretically, you need a hi-fi PA system to amplify the needed tones in the target space, and good microphones to capture the results. But not always! I’ve captured cool IRs in my travels with nothing more than an iPhone and a spring-loaded clipboard in lieu of the traditional starter pistol. I’ve even obtained decent results by clacking a couple of stones together.
Clip 9 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
Clip 9 includes quick and dirty IRs that I captured in a Neolithic cave painting site in France, a thousand-year-old ancient Anasazi ball court in Arizona, an ancient Greek stone quarry, a 19th-century limestone kiln in Death Valley, and the inside of an acoustic guitar.
You can also get interesting, if unpredictable, results loading random audio files into the IR reverb.
Clip 10 — A Guitarist’s Guide to Reverb Plug-ins by premierguitar
Clip 10 features a dry guitar snippet, followed by bizarre reverb effects generated by drum loops, synth tones, and noises.
New sounds, new spaces. Using reverb plug-ins can be incredibly simple. Often it’s just a matter of scrolling through factory presets, or making basic balance and decay time adjustments. You can also use them in endlessly creative ways. Whatever your goals, I hope this article helps you find exactly the sounds you seek.
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Leveraging 3D printing technology, the new Floyd Rose Original locking nuts are designed to deliver unmatched precision and consistency, replacing the traditional “lost wax” casting method that dominated for decades.
The shift to 3D printing allows for intricate detailing and tighter tolerances, ensuring each nut meets exact specifications.
The process begins with powdered metal, which is precisely 3D printed into the desired shape using advanced metal printing technology. After printing, the parts are depowdered and cleaned before undergoing a sintering process—an advanced heat treatment—during which the parts achieve full density and hardness. Lastly, the nuts are CNC “kiss-cut” to exacting specifications for consistency and control of the fit before receiving a premium electroplating finish.
“Floyd Rose has always been synonymous with innovation, and by embracing this incredible new technology we are able to continue that legacy,” said Andrew Papiccio, president of AP International Music Supply of which Floyd Rose is a division. “The accuracy and flexibility of the new 3D printing method will allow us to make a more consistent piece while also giving us full control of the manufacturing right here in the USA.”
Initially, the 3D-printed locking nuts will be available in ten classic sizes with a 10” radius, with plans to expand the range to accommodate various fretboard radii in Spring 2025. This augmentation will offer players more options for customizing their setups to match a wide variety of fretboard curvatures.
To get a sneak peek at the new Floyd Rose USA Series, come visit us at NAMM in booth 5734 in Hall D.
With flexible voltage adjustments, precise control, customizable protection, compact design, and affordable pricing at $299, the Brownie is the ultimate solution for optimizing tone and safeguarding your gear.
AmpRx, the trusted name behind the industry-renowned BrownBox, has unveiled its newest innovation: The Brownie, a voltage-optimizing power supply for modern amps and the first of its kind.
Designed by AmpRx co-owner and CEO Cassandra Sotos (2024 NAMM Female Entrepreneur of the Year), the Brownie provides unparalleled control, flexibility, and protection specifically for modern tube amplifiers by allowing the player to both increase and decrease voltage with volt-by-volt precision.
Priced at $299, the Brownie offers an affordable and essential solution for protecting your investment in your high-quality tube amp. It allows you to optimize your tone and safeguard your gear from variations in voltage by givingthe ultimate advantage: knowing exactly what you’re feeding your amp.
Known as the secret weapon of touring professionals, AmpRx products have been spotted on stage with bands like the Red Hot Chili Peppers, Lynyrd Skynyrd, Zac Brown Band, Iron Maiden, and many more. AmpRx is now bringing its game-changing technology to an even broader audience with this compact, affordable, and versatile product. Try the Brownie for yourself and discover exactly why artists, amp designers, and technicians rely on AmpRx to provide consistent sound, performance, and extend the life of their gear.
The Brownie will be available January 20th, 2025, presented at NAMM Global Media Day and on display at Booth #5630.
WHAT MAKES THE BROWNIE SPECIAL? Building on the success of the flagship BrownBox, the Brownie offers key innovations tailored for modern amplifiers:
- Flexible Voltage Adjustments: The Brownie is the first in the AmpRx line to both decrease and increase voltage, providing optimal performance for modern tube amps (often at 117-120V).
- Precise Control: Adjust voltage in ultra-precise -1V increments when decreasing, and by +3V or +5Vwhen increasing, allowing musicians to fine-tune their tone with precision.
- Customizable Protection: The Brownie ensures safe operation, putting control directly in the player's hands, and includes two fuse options: 2A for smaller setups and 4A for larger setups, ensuring compatibility with diverse gear.
- Compact and Portable Design: Smaller and lighter than the original BrownBox, the Brownie is perfect for musicians seeking portability, durability, and streamlined functionality. It can even fit on a pedalboard or in a backpack.
- Wide Accessibility: At just $299, the Brownie offers professional-grade voltage control at a price point that’s accessible to musicians everywhere.
Email sales@brownbox.rocks to order and stop by NAMM Booth #5630 to see the Brownie in action, talk with the owners, team and artists, and see exactly why so many people insist onAmpRx products when they make music.
For more information, please visit brownbox.rocks.
The latest multi-effect from Wampler is a dreamy if sometimes difficult-to-master delay/reverb combo.
Great, instantly useable reverb and delay tones. Impressive breadth of sounds in one box. Solid construction. Good value.
Controls and operation can feel confusing.
$299
Wampler Catacombs
wamplerpedals.com
“Modeling versus tube” might be the gear world title fight of the 2020s, but “LED menu versus none on multieffects” is a pretty riveting undercard. I have sympathies in both corners. The ocean-deep onscreen interface of theMeris Mercury X, for instance, was a bear to navigate, but it also yielded some of the most exciting and tweakable reverb I’ve ever heard. At the same time, I’ll always be partial to having every control I need at my fingertips, and every parameter a knob twirl away from just-right.In theory, the digitalWampler Catacombs fits into the second category, the one I prefer. It’s a super-loaded reverb and delay combo pedal, with seven delay algorithms and five reverb options that sound great. Though in practice, Catacombs sometimes turned out to be a bit more complicated to navigate than I expected.
Lost in the Catacombs
The Catacombs is one of those pedals that begs a dedicated read of the manual before you dive in. Wampler says that the interface enables users to “navigate effortlessly” without the use of onboard screens and menus. I was excited by this: Like I said, I don’t love getting lost down tiny LED display rabbit holes and would much rather have all I need at hand. The Catacombs technically satisfies that desire, but it also demonstrates tradeoffs involved with that design ethic. I’m alright with certain controls pulling double-duty, but when every single knob shares two functions, things can get hairy, and doing your preparation up front pays big dividends.
You have to press and hold the left footswitch for a second to access the alt controls (labeled in blue), including reverb selection on the main rotary knob. Though this doesn’t complicate matters too much when using a reverb or delay exclusively, it can be tricky when using a reverb and delay simultaneously. A few times, I scrambled to switch control modes to tame a super-loud runaway reverb or a self-oscillating delay, and the feeling of frantically spinning knobs with no impact because you’re not in the right control mode isn’t a good one. Additionally, you might not know where a given parameter is set because each knob is shared between the delay and reverb effect. The eight onboard preset slots take some of this guesswork away. And Catacombs would be a cinch in the studio once the control navigation becomes second-nature, but I got nervous thinking of trying to navigate any of these quirks during a set.
Entombed in Ambience
Catacombs’ operational challenges don’t take too much away from the whole experience because it sounds so great. Each of the six delay programs, and each of the five reverbs, were instantly useable and familiar. Side by side with my Walrus Fathom and EarthQuaker Avalanche Run, the plate, hall, and spring reverb modes held their own, and something about the pedal’s wet/dry mix made my playing feel especially alive, present, and cinematic at most settings. I was especially fond of the spring reverb with the decay maxed out—it was juicy and metallic in all the right ways.
The delay modules were just as satisfying. They include three algorithms for tape-style delays, two analog-style delays, and a single digital echo, and each mode offers a distinct texture and experience. The ability to quickly switch the effects from series to parallel offers fun and useful experimentation, letting you apply the reverb algorithm to just your dry signal, or to the repeats, too. I especially enjoyed sticking the plate reverb on my dry signal and leaving it off the delay, creating warped senses of space and continuity.
The Verdict
Though it sounds excellent, immersive, and inviting, I was flustered more than once while trying to bend Catacombs to my will. In some respects, I was reminded of a menu where you’re given three desirable options and have to pick just two. In this case, the options are affordability, sound quality, and user-friendliness. Catacombs is certainly reasonably priced and sounds excellent. But because it navigates a difficult middle path between skipping a cost-bumping digital menu and being more complex than more-straightforward, what-you-see-is-what-you-get units, you should make sure you’re comfortable with that compromise.
Celestion introduces a low-sensitivity, dual voice coil, attenuating speaker.
The Peacekeeper offers guitarists and other amplified musicians a simple and effective way to dial in the coveted "sweet spot" on their amplifiers while still performing at modest volume levels. The Peacekeeper will be on display, alongside a range of Celestion’s key guitar and PA products at the company’s NAMM 2025 booth (Hall C, #6602).
The Peacekeeper is designed to work seamlessly with almost any amplifier, like a conventional guitar speaker, but it’s in-built attenuating technology will significantly reduce output sensitivity. This enables musicians to drive their amplifiers harder while maintaining manageable volume levels.
Key features of the Peacekeeper include:
- Attenuation Technology: The Peacekeeper’s innovative design effectively attenuates the amplifier’s output, compared with conventional speakers, allowing players to achieve their desired sound at lower volumes.
- Uncompromising Tone: Attenuation is achieved “organically” through the natural operation of the loudspeaker, enabling the Peacekeeper to preserve the Celestion tone that musicians love: the attenuation process adds no colouration or compromise.
- Seamless Integration: With its 12” diameter, the Peacekeeper seamlessly integrates with any standard cabinet, offering a hassle-free solution for volume control.
- Widely Compatible: Offering 8Ω impedance and a maximum power rating of 50W, the Peacekeeper is suitable for pairing with a wide range of amplifiers.
- Precision Built in the UK: Peacekeeper drivers are assembled at Celestion’s UK-based loudspeaker research and manufacturing facility, and rigorously tested to meet exacting performance criteria.
For more information on the Peacekeeper, visit: https://celestion.com/product/peacekeeper/
Visit Celestion at The NAMM Show, January 23-25,2025 in Hall C, Booth #6602.