Precision engineering studio

Munich, Germany

Est. 2014

140+

Machines in the field

Mechanics → Electronics → Firmware

Engineered as one system

We design, build and prove hardware for teams who can’t afford for the thing to fail. Mechanics, electronics, firmware and controls, tested hard before anything reaches your line.

CROX
Intelligence

Studio / Munich

System status

Repeatability

±0.008 mm

Field recalls

0

Disciplines

4

First reply

2 days

Mechanical design / Robotics & controls / Electronics & firmware / Prototyping & test / Industrial automation / Humanoid robotics / Power electronics /

humanoid robotics

humanoid robotics

industrial automation

industrial automation

power electronics

power electronics

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REAL HARDWARE

REAL HARDWARE

trusted by:

trusted by:

We engineer hardware other people rely on.

CROX is a precision engineering studio. We design and build hardware for teams who can’t afford for the thing to fail. Mechanics, electronics, and control are engineered together, tested hard, and proven before anything reaches your line.

  • Logoipsum University logo
    Logoipsum University logo
  • Logoipsum company logo
    Logoipsum company logo
  • Logoipsum brand logo
    Logoipsum brand logo
  • Logoipsum company logo
    Logoipsum company logo
  • Logoipsum company logo
    Logoipsum company logo
  • Logoipsum company logo
    Logoipsum company logo

Core disciplines

>>>>>>>>><<<<<<<<<<

Services

Four disciplines, one team. We design the mechanics, electronics, and control together, so nothing gets handed off blind between them.

Structures

Mechanical Design

Enclosures

Actuation

Robotics & Controls

Control systems

PCB

Electronics & Firmware

Sensors

Rapid builds

Prototyping & Test

Validation

Hardware

Mechanical Design

Structures

Frames, mounts, and load paths engineered to the tolerance the part actually needs, not more.

Enclosures

Housings that protect what’s inside and survive what’s outside, from vibration to dust.

Core disciplines

>>>>>>>>><<<<<<<<<<

Services

Four disciplines, one team. We design the mechanics, electronics, and control together, so nothing gets handed off blind between them.

Mechanical Design

Enclosures

Robotics & Controls

Control systems

Electronics & Firmware

Sensors

Prototyping & Test

Validation

Hardware

Mechanical Design

Structures

Frames, mounts, and load paths engineered to the tolerance the part actually needs, not more.

Enclosures

Housings that protect what’s inside and survive what’s outside, from vibration to dust.

Selected work

Machines we’ve designed, built and proven for teams who can’t afford for them to fail.

A prototype that works once is easy. We design for year two: the service call, the worn bearing, the firmware update pushed to forty machines at once.

Built for the second year

Designed for service

Wear parts sit behind one panel and swap with standard tools. Your technicians get a service manual written by the engineers who drew the parts.

Built to be updated

Firmware ships with a secure bootloader and a rollback path, so a fix reaches every machine in the field without a site visit.

In-house infrastructure

Metrology room

A coordinate measuring machine and a laser tracker check critical parts to ±0.008 mm before they reach assembly.

Electronics bench

EMC pre-compliance scans, a reflow oven for prototype boards and hardware-in-the-loop rigs for every firmware release.

Prototype workshop

5-axis milling, SLS printing and a sheet-metal cell under one roof, so a revised part is back on the rig within days.

Environmental testing

A thermal chamber from −40 to +85 °C and a vibration table run qualification cycles day and night.

Close-up of a turbine fan with machined metal blades
  • Scope

  • ◉

  • Requirements

  • ◉

  • Feasibility

  • ◉

Assess

We pressure-test the requirement before we touch CAD. What it must do, where it will fail, and what success looks like on the floor.

Brief

Constraints

Targets

Feasibility

Close-up of a turbine fan with machined metal blades
  • Scope

  • ◉

  • Requirements

  • ◉

  • Feasibility

  • ◉

Assess

We pressure-test the requirement before we touch CAD. What it must do, where it will fail, and what success looks like on the floor.

Brief

Constraints

Targets

Feasibility

Close-up of a turbine fan with machined metal blades
  • Scope

  • ◉

  • Requirements

  • ◉

  • Feasibility

  • ◉

Assess

We pressure-test the requirement before we touch CAD. What it must do, where it will fail, and what success looks like on the floor.

Brief

Constraints

Targets

Feasibility

Notes from the lab

How we design, test, and ship hardware — written by the engineers who build it.

How we design, test, and ship hardware — written by the engineers who build it.

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