Prototipos de PCB de forma sencilla

Servicio completo para prototipos de PCB personalizados.

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Medical & Dental

Accelerate the development of the medical and dental industry

Online instant pricing & Free DFM
Rapid prototype as far as 2 days
Tight tolerance control into +/- 0.01mm
Bosch HP tesla foxconn

We provide unrivaled speed and efficiency for prototyping and production for the medical industry.

Powerful Capabilities

Powerful Capabilities

Our powerful manufacturing capabilities are the cornerstone of our success.

Instant Quotation

Instant Quotation

Get accurate and timely quotes with our innovative instant quotation system.

High Precision Parts

High Precision Parts

Our advanced manufacturing techniques and cutting-edge technology allow us to produce intricate.

Fast Cycle Time

Fast Cycle Time

At PCBWay, we pride ourselves on delivering fast cycle times that keep you ahead of the competition.

Prototype
Production Verification Test
Mass production

Prototype

Accelerate early design turnaround with a variety of 3D printing and vacuum casting options.

Rapid Pototype
Medical Parts Application

Medical and Dental Parts Applications

Rapid prototyping
3D printing, CNC machining, to verify the feasibility of new designs.
Supply of production accessories
Volume manufacturing support

Cooperation With the Top Medical and Dental Companies Worldwide

From custom designs to unique color and material options, PCBWay’s innovative manufacturing model gives you an advanced competitive edge.

  • Medical instruments
  • Medical service
  • Pharmaceutical business
  • Chemical and pharmaceutical
  • Biopharmaceutical
  • Medical institutions
  • Medical hygiene
  • Laboratory equipment
  • Dental equipment
  • Medical education
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Medical Companies

Unleashing Our
Company's Strengths

  • Technologies
    52 & 4

    Partner Network & Industrial Base

  • EMS
    1,682,560 +

    Parts & Prototypes Produced

  • Passionate Employees
    100 +

    Materials and Finishings

PCBWay is a one-stop solution platform from prototyping, R&D to mass production. Utilizing our instant quoting platform and comprehensive supplier network, you can quickly obtain design validation and accelerate your product launch.

Production capacity

Industry certifications including ISO 9001, IATF16949

Strict quality control

Provide professional quality inspection report

  • Standard Inspection with Formal Report
  • CMM Inspection with Formal Report
  • Source Material Certification

Instant quote online

The online order page provides different parameters and processes to get a quote quickly

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Recognized by Many Large Enterprises

  • Consumer electronics companies
  • Personal and household products manufacturers
  • Automobile OEMs
  • Automotive Part Companies
  • Aircraft OEMs
  • Commercial aviation companies
  • Healthcare providers
  • Diagnostics equipment manufacturers
  • Industrial robot manufacturers
  • Heavy Machinery Manufacturers

Gallery of Medical & Dental Parts

FAQ's

The surface treatment process of medical machinery and equipment can include the following:

Polishing: Removes surface imperfections and improves finish by mechanical or chemical methods, often used for components such as surgical instruments and implants that require a smooth surface.

Coating: A protective metal or non-metal coating is formed on the surface of parts by electroplating or chemical coating to improve corrosion resistance, wear resistance and biocompatibility.

Oxidation: Expose the metal surface to an oxidant to form an oxide film, which increases the corrosion resistance and hardness of the material. It is commonly used in the surface treatment of titanium alloys and aluminum alloys.

Sand blasting: spray particles at high speed to make tiny dents on the surface, increase surface roughness and adhesion, and are often used to increase coating adhesion and enhance appearance.


The specific application of CNC machining in the medical industry?

Medical Instrument Manufacturing: CNC machining plays a crucial role in the production of various medical instruments. Surgical tools such as forceps, scissors, and needles are often manufactured using CNC machining. These instruments require high precision and reliability to ensure surgical accuracy and safety.


Implant Manufacturing: Implants such as artificial joints, bone plates, and screws can also be produced through CNC machining. CNC machining enables precise cutting and shaping of metal or alloy materials to meet the high precision requirements and individualized designs of implants.


Medical Device Components: CNC machining is used to manufacture various components for medical devices such as pumps, valves, housings, and connectors. These components often require intricate designs and tight tolerances, which CNC machining can achieve with accuracy.


Prototyping and Customization: CNC machining is widely utilized in the medical industry for rapid prototyping and customization of medical devices and equipment. It allows for quick production of functional prototypes and facilitates the customization of designs based on patient-specific needs.


Production of Dental Restorations: CNC machining is extensively employed in the production of dental restorations such as crowns, bridges, and dental implants. It enables the precise milling of materials like ceramics or metals to create highly accurate and customized dental prosthetics.


Microfabrication for Medical Applications: CNC machining techniques, including micro-milling and micro-turning, are utilized for the fabrication of miniature medical devices, microfluidic chips, and micro-scale components used in medical diagnostics and research.

What are the applications of CNC machining and 3D printing in the medical industry?

CNC machining and 3D printing have a wide range of applications in the healthcare industry. In terms of CNC machining, it is used for manufacturing medical instruments and equipment components with high precision, ensuring accuracy and reliability. It is also employed in the production of implants, such as artificial joints, bone plates, and screws, allowing for precise cutting and shaping of metal and alloy materials to meet personalized implant requirements. CNC machining is further utilized for rapid prototyping of medical devices, enabling design validation, functional testing, and iterative improvements. Additionally, it facilitates customized production of medical instruments and devices, including prosthetics and orthopedic appliances, tailored to individual patient needs.


As for 3D printing, it finds applications in the rapid prototyping of medical instruments and devices, accelerating product development and refinement processes. It is particularly suitable for the production of customized implants, where it allows for the creation of personalized implants based on patients' anatomical structures and requirements, such as artificial joints, dental implants, and prosthetics. Furthermore, 3D printing technology is used to manufacture highly realistic medical models, utilized for surgical simulations, medical education, and training, enhancing the skills and knowledge of healthcare professionals. It also enables the production of medical aids like orthotics, supports, and transparent aligners.


Automotive

Automotive

Consumer Electronics

Consumer Electronics

Industrial Machinery

Industrial Machinery

Aerospace  Aviation

Aerospace & Aviation

Robotics

Robotics