Manufacturing as a Service for Metal Parts

[ The Platform ]

On-demand, metal manufacturing without owning equipment, tooling, or facilities.

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On-Demand Metal Manufacturing, Without Infrastructure

OVERVIEW

Hyperscale is a Manufacturing as a Service (MaaS) platform that gives teams access to industrial-grade metal manufacturing capacity through a single digital interface.

Instead of building factories or managing suppliers, customers upload a design and receive metal parts. Manufactured on demand, at scale, and delivered when needed.

WHAT IS IT

Manufacturing-as-a-Service

MaaS replaces fixed manufacturing infrastructure with on-demand access to production capacity. Rather than investing in machines, tooling, and long-term contracts, teams use a platform to manufacture parts as needed. Capacity scales up or down based on demand, without requiring ownership or upfront capital.

Text on a white background explaining elastic capacity, including key points about scaling manufacturing up or down based on demand, and maintaining production capacity without being limited by fixed equipment, factory size, or long-term commitments.
Text on a white background explaining a usage-based model for manufacturing expenses, with a cloud icon with an orange arrow pointing up in the top right corner.
Text on a white background explains predictable production with reliable timelines, avoiding delays from tooling, minimum orders, or supplier constraints, ensuring production is planned, repeatable, and consistent.

A Simple, Scalable Manufacturing Workflow

HOW IT WORKS

A laptop screen shows a webpage with a pink and white color scheme, featuring a 3D-printed robot design with pink highlights. The page invites users to upload their custom design.

The same workflow supports prototypes, short runs, and scaled production.


Step 1

Upload Design

Send your CAD file. Any standard format. Secure portal.


Step 2

Proprietary wire-DED technology. Materials others can't touch. Full digital traceability built in.

We Manufacture


Step 3

Receive Parts

Days, not months. Complete digital birth certificate. Every parameter recorded.


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Manufacturing Without Traditional Constraints

Why it matters

Traditional manufacturing introduces delays and complexity at every stage: tooling lead times, minimum order quantities, supplier bottlenecks, and fixed capacity.

Predictable turnaround times

Manufacturing schedules are planned and repeatable, without delays from tooling or supplier availability.

No tooling or molds

Hyperscale starts digital. Traditional forging requires $50K–$5M in tooling per part.

No minimum order quantities

Produce exactly what you need, when you need it. From one part to ongoing scaled production.

No capital equipment

Avoid investing in machines, facilities, or long-term manufacturing assets.

Pay only for what you produce

Costs scale with output, not infrastructure ownership or idle capacity.

CAPABLE OF PRINTING
REFRACTORY METALS

Materials that powder AM physically cannot process. Materials that traditional forging takes 12-18 months to deliver. We build them in days.

Text on a white background with a large pink letter W at the top right. Below, in bold text, it says 'TUNGSTEN.' Under that, smaller text reads 'Rocket engine nozzles and heat shields.'
Information about the element Niobium, including its symbol, atomic number, and a brief description of its use in maintaining structural integrity in rocket and jet engines at high temperatures.
Chemical formula MHC for Molybdenum-Hafnium-Carbide, with description of its use in nuclear reactors and rocket nozzles.
Text about molybdenum with a large pink 'Mo' symbol and the word 'MOLYBDENUM' underneath, describing it as a metal used in missile and aircraft parts exposed to intense heat.
Text about Rhenium with a pink and white logo at the top, describing its uses in jet and rocket engine superalloys.
Information card featuring the label 'C103' in large pink font, with the title 'Niobium Alloy' and description 'Used in aerospace/space applications, such as rocket thruster nozzles'.
Close-up of Tantalum element label with pink and black text on white background.
Text about tungsten-rhenium wire, ideal for thermocouple wires and high-temperature applications.
Product label with large pink text 'H230' and smaller black text 'HAYNES 230'; description states it is used for combustion cans, transition ducts, flame holders, and thermocouple sheaths.

[ APPLICATIONS ]

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DUAL-USE CAPABILITIES

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Page from a manual or catalog titled 'MUNITIONS' with a subtitle 'Munitions parts and casings', featuring an illustration of a modern missile or aircraft in a top-down view.
Medical metal 3D-printed parts for high-reliability systems, shown in metallic lattice structure.
Cover page of industrial document featuring a black submarine with tower and fins, titled 'Industrial: Sustainment and replacement parts for critical infrastructure'.
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Diagram of a low-cost, mass-produced unmanned aerial vehicle (UAV) with a streamlined design and fixed wing.
Cover of a book or brochure featuring a fighter jet aircraft and titled 'AERO: Flight-critical components for aircraft and advanced air systems'.
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[ why we exist ]
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We empower YOU
to manufacture
what matters. At scale.

Let’s Build What Others Can’t

Tell us about your program, part, or challenge.
We’ll show you what’s possible.

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