IRP MEDICAL
Capabilities · Engineering & Manufacturing

Any supplier can quote your print. We tell you what's wrong with it — before it costs you a tool.

You either have a part that's hard to make, or a supplier who only has one answer for it. This page is the difference: a technical review before tooling is cut, a process chosen around your part, and a scope that keeps shrinking your team's vendor list.

Request a Quote → Talk to an Engineer →
Send your print — an engineer responds.
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Engineering & Manufacturing Hero Visual
Real-floor engineering review: engineers over a print or CAD screen with a molded part on the table. No stock handshake imagery.
ISO 13485:2016 Certified FDA Registered ISO Class 8 Cleanroom Environment Molding US Manufacturing — San Clemente, CA Since 1980
The Process

How an engagement actually runs.

Not a sales funnel with engineering bolted on at the end — engineering at the front, where it can still change the outcome. Eight steps, in the order they happen.

01

Technical review

It starts engineering-to-engineering, not with a sales call. Your engineers and ours, on the print, the application, and the constraints — a deep dive into the project before anyone talks price.

Engineers on the print — technical review session
02

Design for manufacturability

Whether the part as drawn can be manufactured well — and what to change if it can't. Specific recommendations, each with the reason attached. Detailed in its own section below.

DFM markup on a customer print
03

Material selection support

Most programs arrive with a material already selected. We pressure-test that selection against the process, the application, and the device's life, and support qualification of the final choice. The work here is selection and validation support — matching a material to the part and proving the choice — with custom compound development when the right material doesn't exist off the shelf.

Material selection — compound options
04

Tooling strategy

The tool is designed for the program's life, not its first purchase order: requirements, cavitation strategy, mold design, mold-vendor selection and management, validation, and transfer. You get the right tool without ever managing a toolmaker.

Mold design — tooling CAD
05

Process selection

The process is chosen around the part — not the other way around. Liquid injection molding, gum silicone molding, compression rubber molding, transfer molding, overmolding / insert molding — with silicone extrusion and silicone tubing when the part calls for a continuous profile. Because they run side by side under one roof, the part is never forced into whichever process a supplier happens to own.

Molding floor — process selection
06

Validation and qualification

IQ/OQ/PQ process validation and first-article inspection — evidence your quality team can defend for years, not just at launch.

Validation — IQ/OQ/PQ documentation
07

Production

Cleanroom environment molding on a press-based floor, automated where volume demands it, running 24/7 when programs do — from first articles through full commercial volume, under one ISO 13485:2016 quality system.

Cleanroom environment molding cell — 24/7 production
08

Secondary operations, sterilization, packaging — as required

Precision secondary operations, sub-assembly, and packaging in-house; sterilization coordinated through a qualified partner. Detailed under Scope Reduction below.

Secondary operations & packaging
The Differentiator

Design for manufacturability.

A customer comes to us and says: make this. It's rarely that simple — and pretending it is, then quoting anyway, is how programs end up paying for the same tool twice. So we deep-dive into the project and the design first, and come back with solutions: manufacturability.

What we review

The print as a manufacturing problem: geometry, tolerances, material callout, and how the part will be molded, demolded, inspected, and handled at production volume — not just whether it can be quoted.

What we recommend

Specific changes, each with the reason attached — what it does to tooling, cost, and quality over the program's life. The recommendations are ours; every decision stays yours.

What we catch

The issues that are cheap to fix on a print and expensive to fix in steel. Found in a technical review, they cost you a conversation. Found after tooling is cut, they cost you a tool — and a timeline.

The Boundary — Stated Plainly
We do not design your part.

You own the component design — we make it manufacturable. What IRP brings is design for manufacturability and mold design: manufacturability review, recommendations, and the tooling and process engineering to produce the part you designed. The device, the component design, and the regulatory submission are yours.

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DFM in Practice — Program Example
A concrete before/after manufacturability example from a real program — drawing detail or part photography. Content pending IRP engineering input.
Scope Reduction

What your team doesn't have to manage.

Every step IRP absorbs is a step your team doesn't have to source, qualify, manage, and audit. The more we take on, the shorter your vendor list gets — and the less of your program lives in handoffs between suppliers.

Scope IRP absorbsHow it's deliveredWhat comes off your team's plate
Tooling programMold design and engineering by IRP; fabrication through IRP-managed mold vendorsSourcing, qualifying, and managing a toolmaker
Secondary operationsIn-houseA converting vendor, another PO, another quality handoff
Sub-assemblyIn-house, cleanroomOne more supplier inside your audit scope
PackagingIn-houseSourcing and qualifying a packaging supplier
SterilizationQualified third party, selected and coordinated by IRPSourcing, qualifying, and scheduling a sterilization provider
Outside resources & specialty processesQualified partners, coordinated by IRPFinding and auditing the vendors each extra step would otherwise add

Where a step is partner-delivered, we say so. The sterilizer is a qualified third party and stays visible as one on the paperwork — what changes is who has to find, qualify, and manage them.

We can't do everything ourselves — no honest supplier can. But we can help you get to everything, and every step we take on is one less for your team to carry.

The manufacturing floor.

One press-based floor in San Clemente, California — different processes, materials, and programs running side by side, under one ISO 13485:2016 quality system.

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Press Floor — Establishing Shot
Wide shot of the press-based floor: different presses and materials running side by side.
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ISO Class 8 Cleanroom Environment Molding
Molding cell inside the cleanroom — gowned operator or automated cell at work.
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Automated Work Cell & QA
Robot demolding or vision metrology in use — inspection inside the cleanroom, not down the hall.

Liquid injection molding, gum silicone molding, compression rubber molding, transfer molding, and overmolding / insert molding run side by side, with inspection and functional testing inside the cleanroom rather than down the hall. Automated work cells where volume demands them; 24/7 operations when programs do.

The point of the floor isn't an equipment list. It's that the process gets chosen around your part — because every option is in the building.

FAQ

Questions engineers actually ask.

Does IRP design parts?

No — and we're direct about it. You own the component design; we make it manufacturable.

What IRP provides is design for manufacturability and mold design: a technical review of your print, specific recommendations on what to change and why, and the mold design and process engineering to produce the part you designed. The device, the component design, and the regulatory submission stay yours.

What is DFM and when does it happen?

Design for manufacturability is a structured review of whether the part as drawn can be manufactured well — geometry, tolerances, material callout, and how the part will be molded, demolded, and inspected at volume.

It happens at the front of the engagement, engineering-to-engineering, before tooling is cut. An issue found on the print costs a conversation; the same issue found in steel costs a tool.

Can IRP manage sterilization?

Yes. Sterilization is delivered through a qualified partner and coordinated by IRP, alongside packaging and any outside resources the program needs.

Your team doesn't have to source, qualify, and schedule a sterilization provider, and the partner remains visible on the paperwork.

Is IRP a contract manufacturer?

No. A contract manufacturer builds your finished device. IRP is a component supplier: we manufacture the custom silicone and rubber components inside the device — molded, finished, sub-assembled, and packaged as required — while you own the device, the design, and the regulatory submission.

The roles are complementary: contract manufacturers are often the ones installing our components.

What does IRP need to quote a part?

The print is the starting point — geometry and tolerances, the material callout if one has been selected, expected annual volumes, and any sterilization, packaging, or secondary-operation requirements.

If some of that isn't settled yet, send the print anyway: the first step is a technical review, not a form, and unresolved questions are exactly what it's for.

Put an engineer on it before you put a tool on it.

New program or supplier transfer — the first step is a technical review of your print, engineering-to-engineering. Bring the part that's hard to make.

Request a Quote → Talk to an Engineer →
Send your print — an engineer responds.