Advanced O&P CAD Software for Prosthetic and Orthotic Design
BenX is a O&P design platform that preserves your clinical decision-making and delivers digital precision.


Clinical Control. Digitally Executed.
Clinician in Control
Every decision visible and editable
Precision in Design
Accurate translation from intent to output
Consistent Outcomes
Better fit, comfort and patient satisfaction



What makes BenX different from traditional prosthetic CAD software?
Most prosthetic CAD software systems were built around generic digital modeling workflows. While they introduced digitization into orthotics and prosthetics, many still require clinicians to adapt their process around the software rather than the software adapting to clinical thinking. BenX was developed differently.
BenX is a clinician-focused prosthetic CAD software platform designed specifically for real-world O&P workflows. Instead of functioning like a traditional engineering tool, it is built around how prosthetists and orthotists actually assess, modify, rectify, and fabricate patient-specific devices. The goal is not just digital design. It is better clinical control with a smoother workflow from scan to fabrication.
Unlike many conventional O&P CAD software systems that rely heavily on manual geometry manipulation, BenX introduces a more guided and anatomy-aware workflow. Clinicians can work directly with limb geometry while maintaining complete control over modifications, alignment decisions, trimlines, reliefs, and socket refinement. This creates a workflow that feels structured without becoming restrictive. One of the biggest differences is that BenX was designed specifically for orthotic and prosthetic CAD software applications rather than being adapted from general CAD environments. That distinction matters in daily clinical use. Prosthetic socket design requires far more than surface editing. It involves pressure-sensitive rectification, anatomical understanding, fit optimization, and fabrication readiness. BenX keeps these clinical priorities at the center of the design process.
The platform also simplifies digital workflows that are often fragmented across multiple systems. From 3D scan processing to prosthetic socket CAD software modifications and fabrication preparation, BenX helps consolidate the workflow into a single connected environment. This reduces unnecessary iteration and allows clinics to move faster while maintaining consistency across cases.
Traditional prosthetic design software can sometimes feel overly technical for smaller clinics or growing practices. BenX focuses on making advanced digital workflows more approachable without removing the precision clinicians expect. The interface, workflow logic, and design structure are intended to support both experienced practitioners and teams transitioning into digital O&P systems for the first time.
Another important advantage is flexibility. Every clinician has a different approach to socket design, orthotic correction, and patient management. BenX is not designed to force a single workflow. Instead, it supports clinician-driven decision making while offering tools that improve repeatability, accuracy, and fabrication efficiency. As digital adoption continues to grow across orthotics and prosthetics, clinics are looking for solutions that combine clinical understanding with modern digital capabilities. BenX bridges that gap by functioning not only as prosthetic design software, but as a complete digital O&P workflow platform built around real clinical needs.
For clinics searching for modern prosthetic CAD software that balances precision, usability, and fabrication readiness, BenX offers a workflow designed specifically for the future of orthotics and prosthetics.


Digital tools are advancing. Clinical control is not.
Generic CAD or black-box automation—both create a gap between clinical intent and what actually gets delivered.
Generic CAD
Built for geometry and prosthetics.
The Problem
Automation-Heavy
Decisions hidden from clinicians.
Outcome Gap
Intent doesn’t always translate to output.






A Socket Is not just geometry. It’s Clinical Judgement.
Every socket is shaped by:


Removing control doesn’t simplify the process. It compromises it.
✔ Pressure and relief decisions
✔ Tissue behaviour
✔ Patient-specific needs
The Insight
Meet
A prosthetic socket design platform built specifically for O&P. Not adapted from CAD. Not driven by black-box automation. Designed around how clinicians actually think and work.


The Solution


✔ Clinically-driven tools
✔ Fully editable
✔ Accurate output
A Clear Workflow. Full Control.
Access
Import scan data and define your intent
How BenX works


Rectify
Main targeted, meaningful modifications
Refine
Adjust, smooth and validate every detail
Finalise
Accurate, repeatable and ready to manufacture






What makes BenX different
Control without Complexity
Clinically-Aligned Workflow
Built around assessment, rectification and refinement.
No Black-Box Decisions
Every design input is valid, editable and traceable.
Speed through Structure
Parametric tools that accelerate, not replace decision-making.
Consistency with no Skill Dilution
Scale your work without losing clinical intent.





The Impact
For Clinicians
✔ Full control over every decision
✔ Reduce trial-and error
✔ Deliver consistent outcomes
For Clinics
✔ Faster turnaround
✔ Less manual dependency
✔ Scalable, repeatable workflows
For Patients
✔ Better fit
✔ Improved comfort
✔ More predictable outcomes
Who is it for?
Practicing CPOs
✔ Stay in control of outcomes
✔ Deliver consistent results
✔ Work faster with confidence
Clinics
✔ Scale digital workflows
✔ Reduce iteration cycles
✔ Improve operational efficiency
New Practitioners
✔ Learn with structure
✔ Build skills with visibility
✔ Grow with confidence
Real improvements in your workflow
5X
3X
Faster Iterations
Faster Turnaround
1000+
Outcomes
Designs
Repeatable
BenGait Labs Private Limited
Phone
hello@bengaitlabs.com
+91 9971176444
© 2025. All rights reserved.
Products
Legal
Technology
HO D192, LGF, Sector 27, Noida 201301
Regd. Office : B 273, Sector 26, Noida 201301


