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On-Demand CNC Platform

CNC Machining for
Implantable
Components

We machine titanium implant bodies, PEEK spinal cages, cobalt-chrome femoral heads, and zirconia abutments from implant-grade alloys. FDA-ready documentation and full material traceability on every order. Ships anywhere in the US.

Securely upload your 3D CAD file for immediate pricing and DFM feedback.

$72B+
US orthopedic & implant
market size
Fortune Business Insights 2024
Ti-6Al-4V
Primary titanium alloy
for implants
ASTM F136
±0.0005"
Tolerances on critical
bearing surfaces
RivCut capability
5-Day
Implant prototype
turnaround available
Simple geometries

Precision CNC Machining for Implant Engineering Teams

Implantable components must be biocompatible, dimensionally precise, and fully traceable. A femoral head that is out of sphericity by 0.001 inches will cause accelerated wear and premature failure. We machine Ti-6Al-4V ELI (ASTM F136), CoCrMo (ASTM F1537), 316LVM (ASTM F138), PEEK-OPTIMA, and zirconia to tolerances as tight as ±0.0005 inches. Every order ships with CMM inspection reports, material certs with heat lot traceability, and documentation your quality team needs for DHF and 510(k) submissions.

1

Implant-Grade Materials

We source and machine Ti-6Al-4V ELI, CoCrMo, 316LVM, PEEK-OPTIMA, and zirconia with full mill certs, heat lot traceability, and biocompatibility documentation per ASTM and ISO standards.

2

Critical Surface Finishes

We achieve surface finishes down to 8 Ra microinches on bearing surfaces, taper interfaces, and articulating geometries. Polishing, passivation, and electropolish available as needed.

3

FDA-Ready Documentation

Dimensional inspection reports, material certs, first article reports, and process documentation — everything your regulatory team needs for FDA 21 CFR 820 compliance and ISO 13485 records.

Parts for Implant Device Companies

Titanium bodies, PEEK cages, femoral heads, abutments, and more.

Titanium Implant Bodies

Load-bearing implant bodies machined from Ti-6Al-4V ELI per ASTM F136. Precise thread forms, taper geometries, and mating interfaces for hip stems, bone anchors, and trauma fixation devices.

Ti-6Al-4V ELI / ASTM F136

PEEK Spinal Cages

Interbody fusion cages and spinal implants machined from PEEK-OPTIMA. Precise lordotic angles, tooth profiles, graft windows, and insertion features. Radiolucent and biocompatible for spinal fusion procedures.

PEEK-OPTIMA

Cobalt-Chrome Femoral Heads

Femoral heads and bearing surfaces machined from CoCrMo per ASTM F1537. Tight sphericity tolerances, mirror-polish finish on articulating surfaces, and precise Morse taper bores for reliable fit.

CoCrMo / ASTM F1537

Zirconia Abutments

Dental implant abutments and components machined from zirconia ceramic. Excellent biocompatibility, natural tooth-like aesthetics, and precise connection geometries for major implant platforms.

Zirconia ceramic

Acetabular Shell Components

Hip implant acetabular shells and liners machined from Ti-6Al-4V ELI and CoCrMo. Precise hemispherical surfaces, locking ring features, and screw hole patterns for press-fit or cemented fixation.

±0.0005" sphericity

Pedicle Screw Bodies

Spinal pedicle screws and polyaxial head assemblies machined from Ti-6Al-4V ELI. Precise thread forms, tulip head geometries, and break-off torque features for spinal fixation systems.

CMM inspected

Serving the US Implant Device Industry

The US orthopedic and implantable device market exceeds $72 billion, driven by an aging population, rising joint replacement volumes, and advancing spinal fusion and dental implant technologies.

From titanium hip stems to PEEK spinal cages to zirconia dental abutments, every implantable component depends on tight-tolerance machining from certified biocompatible materials with complete traceability from bar stock to finished part.

Whether your team is developing next-generation spinal implants or iterating on proven orthopedic designs, we want to be your machining partner. We ship anywhere in the US and give you instant AI pricing the moment you upload your file.

Stryker

Global leader in orthopedic implants, joint replacements, and spinal devices. Their product lines require precision-machined titanium and cobalt-chrome implant components at scale.

Zimmer Biomet

Major manufacturer of knee, hip, and extremity implants. Extensive use of Ti-6Al-4V ELI, CoCrMo, and PEEK across their portfolio of load-bearing implantable devices.

DePuy Synthes (J&J)

Johnson & Johnson's orthopedic division produces hip, knee, trauma, and spinal implants. One of the largest implant portfolios in the world requiring precision CNC-machined components.

Medtronic Spine

Leading manufacturer of spinal implants, interbody cages, and pedicle screw systems. Their spinal portfolio demands precision-machined titanium and PEEK components with full traceability.

Straumann

Global leader in dental implants and prosthetics. Their implant systems require precision-machined titanium bodies, zirconia abutments, and custom prosthetic frameworks.

Built for Implant Engineering Teams

Parts that go inside the human body need a shop that treats traceability as seriously as tolerances.

Complete Material Traceability

Every implant-grade order ships with mill certs, heat lot numbers, and biocompatibility documentation traceable from raw bar stock through finished part. Your DHF and DMR records start clean.

Implant-Grade Materials Only

We source Ti-6Al-4V ELI (ASTM F136), CoCrMo (ASTM F1537), 316LVM (ASTM F138), PEEK-OPTIMA, and zirconia from certified suppliers. No substitutions. No shortcuts.

CMM Inspection on Every Part

We verify every critical dimension, taper angle, and surface finish before shipping. CMM reports with GD&T callouts go with every implantable component order.

Fast V&V Build Support

Your design verification timeline does not wait. Implant prototypes in 5 to 7 days. V&V builds with full lot control and first article inspection reports to keep your program on track.

Certifications & Standards
In Progress
ISO 13485
Medical device quality management. We are building our QMS to this standard. Our documentation follows the structure now.
Active
NIST-Traceable Gauges
All measuring equipment is calibrated to NIST standards on regular cycles. CMM, micrometers, and gauges.
Active
Material Certifications
Every order ships with mill certs and heat lot traceability. Biocompatible material documentation for ASTM F136, F1537, F138.
Planned
FDA Registration
FDA establishment registration is on our roadmap. We currently support customers with FDA-ready documentation packages.

Questions about our current quality setup? Email us — we'll send our documentation package.

From File to Implant Part in 3 Steps

Simple, clear, and designed for fast-moving implant engineering teams.

Step 1

Upload & Quote

Send your STEP or IGES file. Pick your implant-grade material, quantity, and surface finish. Our AI gives you a real price right away. We also run a free DFM check and flag anything that could add cost or risk.

Step 2

We Machine & Inspect

Your parts run on our CNC mills and lathes with dedicated implant-grade tooling. Every order gets CMM inspection. We check every critical feature — tapers, threads, bearing surfaces — against your drawing before shipping.

Step 3

Ship with Full Docs

Parts ship with your dimensional inspection report, material certs with heat lot traceability, passivation/finish records, and all FDA-ready paperwork. Everything your quality team needs for DHF documentation, 510(k) support, and design verification.

Questions from Implant Engineering Teams

We machine implantable components from Ti-6Al-4V ELI (ASTM F136), CoCrMo (ASTM F1537), 316LVM stainless (ASTM F138), PEEK-OPTIMA, and zirconia. All materials come with full mill certs, heat lot traceability, and biocompatibility documentation for your Design History File.
Yes. We CNC machine titanium implant bodies, spinal fusion cages, and interbody devices from Ti-6Al-4V ELI per ASTM F136. We hold tight tolerances on mating surfaces, thread forms, and lattice-adjacent features. Every part ships with CMM inspection and full material traceability.
We provide dimensional inspection reports, material certifications with heat lot traceability, process records, and first article inspection reports on every implantable component order. Our documentation supports FDA 21 CFR 820 Design History File requirements and ISO 13485 quality system records.
We hold ±0.001 inches on general features and ±0.0005 inches on critical bearing surfaces, taper interfaces, thread forms, and mating geometries. Implant-grade surface finishes down to 8 Ra microinches are available.
Yes. We machine CoCrMo femoral heads and bearing surfaces per ASTM F1537. Cobalt-chrome requires specialized tooling and feeds due to its hardness and work-hardening behavior. We achieve the tight sphericity and surface finish tolerances these components demand.
Yes. We machine PEEK-OPTIMA spinal cages, interbody fusion devices, and cranial implant components. PEEK is radiolucent and biocompatible, making it ideal for spinal and cranial applications. We hold tight tolerances on tooth profiles, lordotic angles, and insertion features.
Most implantable component prototypes ship in 5 to 7 business days. Complex multi-axis parts or exotic materials may take 7 to 10 days. Rush options are available on simpler geometries. Tell us your deadline when you upload and we will confirm what is achievable.
Yes. We support V&V builds with full lot traceability, first article inspection reports, Cpk data on critical features, and documentation packages aligned with FDA 21 CFR 820 and ISO 13485 requirements. Email us your protocol and we will confirm our support.

Implantable Component CNC Machining by City

We serve implant device teams in cities across the US.

Upload Your Implant Component CAD File

Titanium implant bodies, PEEK spinal cages, cobalt-chrome femoral heads, zirconia abutments — we machine them all. Get instant AI pricing now. Prototypes ship in as few as 5 days.

No minimums · 100% Made in USA · Never brokered · Ships anywhere in the US

AI price estimates are usually within ±20% of final price. Complex parts may get a human review within one business day before pricing is confirmed.

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