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Trey.

Runs the tray.

Every data center runs miles of cable overhead. Trey is our two-robot system for filling the tray. A Puller drives inside the tray drawing bundles along the run; a Clamper follows and straps them down. Named for the tray it runs in.

The two machines coordinate on the fastening pass — the Puller holds light tension so the bundle stays dressed as the Clamper works along it. It collapses three manual lift-traverses into one coordinated pass, and captures an install record and tray survey as it goes. In build now.

Coming soon

CLAMPERPULLER

Pulled · Strapped · Documented

The spec sheet

What's real today,

and what isn't yet.

Trey is in the build phase — individual subsystems are at working-prototype level; the integrated two-robot system isn't built or field-tested. Here's exactly where it stands. No number here is measured; when they are, they'll ship.

Performance

Stage

In build · no measured figures yet

Hardware

Trade

Cable tray · structured cabling

Mission

Pull, strap & document cable in overhead ladder tray

Architecture

Two robots · Puller + Clamper

Brain

Shared model · with Tyler & Wattson

▸ Why now · the data-center buildout

Every AI dollar becomes a cable someone has to pull.

The AI boom is an electrical-construction boom — and the skilled labor to wire it doesn't exist. Trey fills the tray those cables run in — the overhead structured cabling every data center needs miles of.

$347B

US electrical construction / yr

Simpro US Electrical Industry, 2026

~$15B

Cable-pulling labor

Bottom-up estimate

Trillion $

Multi-decade AI buildout

The demand behind every data center

Be first to see Trey.

Drop your email and we'll send build milestones, the first integrated-system footage, and the spec sheet the moment they're real.

The fleet

Tyler ships. Wattson pilots. Trey is next.

Three purpose-built robots, one shared brain. Trey extends the data-center push Wattson started — from pulling wire to filling the cable tray overhead.