CNC services at the Leverage Humanoid Machining of the high-precision robotic parts and components including the rapid prototyping and full scale production of the parts.
Our products include ±0.0005″ accuracy, versatile manufacturing, and skilled humanoid machining products in the automotive and medical sectors.
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Our Instant Quoting Engine is covered by U.S. Pat. Nos. 11,086,292, 11,347,201, 11,693,388, 11,698,623, 12,099,341, and 12,189,361. Other patents pending.
Humanoid Machining is a company specializing in high precision CNC machining of bespoke parts, but we also provide robotic parts and humanoid machining. Our 5-axis CNC machines can produce precision and efficiency unrivaled by any competitors, regardless of whether the material being machined is metals, plastics, or a complicated composite.
We deliver the best standards of quality, speed, and cost-efficiency of the product, be it rapid prototyping or small-batch production. Our engineering grade QC will ensure all the parts are produced to specifications, and there are tight tolerances.
Trust Humanoid Machining to act on your behalf and bring your robotic and complex parts to life providing on-demand solutions that fit your project specifications and project schedules exactly.





CNC milling is used in the processing of complex robotic components and custom components and offers high accuracy and an extremely fine finish to the surfaces.
CNC Turning is a high precision machining that is considered to make cylindrical shapes and is therefore suitable for robotic parts that have tight tolerances and smooth finishes.
Advanced CNC routing is used on large-format robotic parts and custom designs, a perfect fit both in prototyping and in production stores.
Multi-axis CNC machining is done on robotic parts with detailing and also in humanoid systems to provide excellent accuracy and less time wastage.
We provide expert services in the project support to all levels of humanoid robot parts manufacturing such as rapid prototyping, all the way to large-scale production. We guarantee precision machining of the highest degree of accuracy and performance.
Our team of experts provides the best solution regarding robotics parts manufacturing.
We provide custom finishes of surfaces in CNC machining to suit your parts, both functional and high quality design. Durability, smoothness or texture, we have finishes that suit performance and beauty.
An economical surface finish, which does not need any further polishing, and hence is suitable for functional components.
Increases corrosion resistance as well as hardness and durability, which is optimal with aluminum components.
Provides a high-gloss polished surface that offers reduced friction and is suitable for aesthetic use.
Offers good grip and look, which is obtained by abrasive blasting.
Provides a smooth, bright finish by eliminating surface imperfections and hence extending the life of the part.
Coats metal parts with a tough, resistant to corrosion protective coating in a variety of colors.
Grains and surfaces are abrasively tumbled to a uniform texture.
Produces a high-quality, ultra-smooth and reflective surface using fine abrasive polishing, ideal to the high-quality aesthetics.

You can upload your parts design files related to robotic parts and choose the CNC machining service required with ease.

Our experts check your design in terms of manufacturability, and their comments are personalized to provide the best CNC machining.

After approving the quote, the production starts right away with several materials and finishing options.

Your robotic parts are manufactured and delivered promptly, ensuring timely delivery within your stipulated turnaround times.
All of our Partners are hand and data picked. Our stringent onboarding
and training processes mean we develop and only work with the top
performing suppliers to provide top-notch on-demand manufacturing
services, including reliable rapid manufacturing services that meet
urgent production needs.
We can generate instant machining quotes for 50+ metals and plastics.
Metals
Aluminum
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Stainless steel
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Mild steel
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Brass
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Copper
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Alloy steel
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Tool steel
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Titanium
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Inconel
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Invar 36
Aluminum alloys have good
strength-to-weight ratio, high
thermal and electrical conductivity, low density and natural corrosion resistance. Can be anodized.
Alloys
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 7075-T7351 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6061-T651 |
3.3211 | 65028 |
AlMg1SiCu
Aluminum 7075-T651 |
3.4365 | 76528 |
AlZn5.5MgCu
Aluminum 6082-T651 |
3.2315 | 64430 |
AlSi1MgMn
Plastics
POM (Delrin/Acetal)
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
Nylon
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
PPSU
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
ABS
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
PEEK
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
PTFE (Teflon)
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
Polycarbonate
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
Polyethylene
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
PVC
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
PMMA (Acrylic)
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
PET
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
Polypropylene
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
G-10
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
FR4
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
PEI
POM is an engineering
thermoplastic used in precision
parts requiring high stiffness, low
friction, and excellent dimensional
stability.
Feature
Description
General Tolerances
Metals: Conforming to ISO 2768-m standards;
Plastics: Conforming to ISO 2768-c standards.
Precision Tolerances
ApexRapid can manufacture and inspect parts to your exact specifications, including Geometric Dimensioning and Tolerancing (GD&T) requirements. We are capable of achieving tolerances as tight as +/- 0.001 inches.
Minimum Wall Thickness
0.5mm – enabling intricate designs and lightweight structures without compromising strength.
Minimum End Mill Size
0.5mm – perfect for producing fine details in complex geometries.
Maximum Part Size
CNC Milling: Up to 4000×1500×600 mm;
CNC Turning: Up to 200×500 mm
Minimum Part Size
CNC Milling: As small as 5×5×5 mm;
CNC Turning: Down to 2×2 mm
Production Volume
Prototyping: 1-100 pcs;
Low volume: 101-10,000 pcs;
High volume: Above 10,001 pcs.
Here’s a glimpse of the CNC-Machining prototypes and finished parts we’ve produced.
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Process
Turning + Milling
Material
Aluminum
Surface
As machined
Price (Unit)
$ 350
Use
XYZ
Feature
Description
Internal corner fillets
Design internal corner fillets to be 0.020” - 0.050” greater than a standard drill size for the radii. Follow a drill diameter to depth ratio of 1:6 (1:4 recommended) as a guideline for internal corner radii.
Floor fillets
Design floor fillets smaller than corner fillets to allow the same tool to clear material from the interior.
Undercuts
Always design undercuts to standard sizes and away from corners so they are accessible by the cutting tool.
Tapped/threaded hole depth
Provide tool clearance slightly beyond the tapped hole depth to ensure complete threads.
Complexity
Keep the number of small cuts to a minimum to reduce the CNC machining service cost; only design in the necessary features to balance function with aesthetic.
We use cutting-edge CNC machines to produce high-precision parts quickly and accurately. Our equipment includes 5-axis milling machines, multi-spindle CNC machines, and advanced lathes, allowing us to handle complex parts with multiple geometries.
5-Axis CNC Machines
High-Speed CNC Milling
Multi-Spindle Lathes
Our ISO9001 and ISO13485 certified quality management systems include Virtual and In- house checks ensure reliable quality across our network.
Upload files, get a quote instantly or within 24hrs. Pay by card or on credit terms with one-click and receive your parts in as little as 3 days.
We provide the best of at least 3 quotes to you, meaning you are always getting the best possible pricing. We are very rarely beaten on price.
All of our 350+ global and local partners are highly experienced, thoroughly vetted and 100% Geomiq approved.
We’ve manufactured millions of parts for all sorts of applications, but we’re especially
knowledgeable in these areas.
Aerodynamic parts for aircraft, drones, satellites and rockets with AS 9100 certification.
Create custom medical devices
and diagnostic equipment to get healthcare innovations into
hospitals and homes.
Produce complex robotic
systems, end effectors and
automated machinery for this
innovative industry.
Our customers’ success stories are the heart of what we do. Hear firsthand reviews of how our streamlined custom manufacturing services have helped innovators bring their visions to life. From instant DFM feedback to reliable deadline management, discover why engineers and designers trust Humanoid Robotics to simplify their production processes and deliver exceptional results every time.
With Humanoid Robotics, we deliver animatronics twice as fast as competitors. And we operate with 3 manufacturing shop that can be use
There were a lot of barriers with other manufacturers that I didn’t have with Humanoid Robotics. Humanoid Robotics made the process so easy.
We knew from inception that we intended to field multiple new next generation technologies,Humanoid Robotics scenario would be prohibitive.
Indeed, CNC machining is best at producing complicated designs and complex forms, which makes it particularly appropriate to robotic parts and custom components.
Our materials include metals, plastics, and composites, which are perfect to make stronger and more high-performance robotic components and humanoid parts.
Absolutely. CNC machining will be effective in producing complex geometry and complicated designs needed to produce sophisticated robotic systems and humanoid components.
We have a quick response to prototypes and custom designs with quality parts delivered in case of urgent requirements.
Yes. CNC machining takes advantage of scalable manufacturing, whereby high quality robotic components are produced in large production batches.