About me

Justin

// The Person Behind the Iron

Builder.
Engineer.
Player.

My name is Justin — husband, father, musician, and the sole builder behind every pedal that ships from Analog-Forge.

I’m an old-school trained electro-mechanical technician with 30+ years of hands-on engineering experience. I’ve designed, built, and managed carrier-class telecom and enterprise networks across the central U.S. Today I serve as a Senior Cybersecurity Analyst for a Tier 1 research university system — responsible for the security and integrity of infrastructure serving over 300,000 users across 11 universities, 9 state agencies, K–12 systems, and municipalities.

That background isn’t a detour from pedal building. It’s exactly why I build the way I do. Systems that protect 300,000 users cannot fail. Gear that goes on stage shouldn’t either.

Justin — Builder, Analog-Forge

// Justin · Analog-Forge · Handwired in the USA

30+

Years electro-mechanical & network engineering

300K+

Users secured · Tier 1 university system

0

PCBs — fully point-to-point, every joint by hand

// What Shaped the Sound

The People Who
Built the Vocabulary

01   Engineering & Design Influences

The Architects of Tone

The engineers who proved that a circuit’s character is inseparable from its physical construction — and that ingenuity at the component level changes everything downstream. Their work isn’t history; it’s the foundation every Analog-Forge build is built on.

Les Paul Leo Fender Jim Marshall Roger Mayer Gary Hurst Mike Matthews Howard Dumble 60s–80s Boutique Designers Today’s Builders

02   Guitar Influences

The Players Who Set the Bar

Touch, dynamics, and tone vocabulary — everything that makes a player identifiable in three notes. These are the ones who proved that feel matters more than technique, and that the right gear in the right hands is an irreplaceable thing.

B.B. King Freddie King Albert King Marcus King Clapton (Early) Peter Green Jimmy Page Tony Iommi Slash JJN Jerry Cantrell Joe Bonamassa
// Tone Philosophy

The Analog Argument

Guitars are analog. The original amplifiers were analog. Speakers are analog. And most importantly — your ears are analog.

My tone philosophy is grounded in that reality. I am a tube, transistor, and transformer audio aficionado — not out of nostalgia, but out of physics. The way an analog circuit breathes with your playing isn’t a feature you can model. It’s a consequence of real components reacting to real current.

I use DAWs, plugins, and amp sims. Digital is a necessary part of the modern workflow and I’m honest about that.

But no matter how sophisticated those tools become, they will never be the same as real gear in a real room. The air moving from a real cabinet. The touch-response of a real tube stage. The sag of a real output transformer when you dig in.

Digital dominates because “close enough” works for people who’ve never felt the difference. Analog-Forge exists for the ones who have.

Chasing a tone on a record isn’t the same as being in the room. By the time a signal hits tape — through what feels like endless circuitry — it is no longer a Les Paul plugged straight into a Marshall Bluesbreaker. My goal is to close that gap, one handwired circuit at a time.

// Why the Engineering Background Matters

Precision Is a
Professional Habit

Boutique pedal building is, at its core, an engineering discipline. Signal integrity. Component tolerances. Noise floor. Ground loop elimination. Thermal stability over time. These aren’t audiophile talking points — they’re the same problems I solve every day at enterprise and university scale.

When you engineer systems that cannot go down — carrier-class telecom infrastructure, security architecture protecting hundreds of thousands of users — you develop a zero-tolerance relationship with “close enough.” A cold solder joint on a network switch and a cold solder joint on your overdrive pedal fail for exactly the same reason: someone accepted less than correct.

I don’t accept less than correct. Every build is inspected joint by joint, tested under real signal conditions, and verified before it ships. Not because it’s good marketing — because that is what 30 years of engineering teaches you to do.

Foundation

Electro-Mechanical Tech

Old-school trained. Physical systems, wiring, and real-world fault diagnosis from day one.

Engineering Career

Carrier-Class Telecom

Designed and managed enterprise and carrier-class network infrastructure across the central U.S.

Current Role

Senior Cybersecurity Analyst

Tier 1 research university system — 11 universities, 9 state agencies, K–12, and municipalities. 300,000+ users.

The Connection

Signal Integrity Is Signal Integrity

The discipline behind fault-tolerant networks is exactly what goes into a pedal that will not fail at the gig.

// Build Philosophy

How I Think
About Every Build

Principle 01

Discrete or Nothing

No integrated op-amps. Every stage of the circuit is built from individual components — selected by hand for how they sound and how they behave under real playing conditions.

Principle 02

Point-to-Point Wiring

No PCBs. Components are wired directly to each other the way boutique builders have always done it. The result is more resolving, more alive, and built to last decades of hard use.

Principle 03

“Close Enough” Isn’t

Cheaper components exist. Faster methods exist. Neither one ships from this shop. If something sounds or performs better, it goes in. That’s not idealism — it’s professional habit.

Principle 04

Every Joint Is Inspected

Every solder joint is visually inspected and signal-tested before a build leaves the shop. Cold joints cause more failures than bad design. They don’t leave here.

// Materials & Tools

What Goes Into
Every Build

Enclosures

Hammond Aluminum

Powder-coated or raw aluminum. Heavy, quiet, and shielded. The kind that dents a stage floor, not the kind that breaks on it.

Passive Components

Metal Film & Carbon Comp

Selected for character and application. Metal film for precision, carbon comp where harmonic coloration matters. NOS and vintage components where available.

Semiconductors

Discrete Transistors

NPN, PNP, germanium, silicon — selected and matched by hand. No chip shortcuts. Just devices doing what physics intends.

Solder

60/40 Tin-Lead

Kester 44. Flows right, joints look right, stands the test of decades of hard gigging.

Hardware

Switchcraft & CTS

Jacks, pots, and switches that feel the way quality should feel. Nothing rattles. Nothing fails on the third gig.

Wiring

Cut to Length, Routed with Intent

Signal paths kept short. Ground loops hunted down before they can breathe. Shielded where the job calls for it.

Ready to talk about
your next build?