Precision CNC Machined Medical Device Components with Exceptional Tolerance

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Product Description

Basic Specification

Model NO.DHMD0125255
ApplicationMachinery Accessory
StandardGB, En, JIS, ASME
Surface TreatmentElectroplating
Production TypeMass Production
Machining MethodCNC Machining
MaterialNylon, Steel, Plastic, Brass, Aluminum, Iron
Tolerance RangesTightest +/0.003mm
Lead Time7 Day for Sample; 20 Days for Batch
EquipmentMatsuura, Mazak, DMG, Fanuc
Precision Component 1
Precision Component 2
Medical Device Components

Product Application

Our commitment goes beyond mere duty; it is powered by a zeal for the art and exact science of precision manufacturing, delivering unparalleled excellence. We serve a wide array of industries, including:

  • Medical and Biotech: Delivering impeccably engineered high-precision components and solutions for cutting-edge medical devices.
  • Semiconductors: Providing essential core components vital for chip production and related equipment.
  • New Energy: Participating in the progression of innovative energy equipment and eco-friendly technology.
  • Automotive: Supplying crucial components that drive innovation toward smart and electric vehicles.
Industrial Application

Core Advantages

A Fleet of Excellence: Our operations showcase an extraordinary assortment of over 300 renowned machines, allowing us to meet complex machining requirements with unmatched precision.
Extensive Experience: Drawing upon a legacy of two decades, we harness robust technical and process expertise to ensure exceptional quality and trailblazing innovation.
Core Capabilities

Quality Assurance

Incoming Material Examination

Exemplary Incoming Material Examination

Upon arrival at our warehouse, each raw material is subject to an exhaustive and meticulous examination process. Our analyses cover the chemical composition and physical properties to ensure only premium materials are chosen.

In-Process Quality Assurance

Intensive In-Process Quality Assurance

Every component undergoes meticulous scrutiny to ensure dimensions and tolerances surpass our stringent specifications. This prevents non-conforming parts from advancing to subsequent stages.

First Article Inspection

Strategic First Article Inspection (FAI)

Our FAI process is foundational for identifying and resolving potential production challenges at the outset. This proactive methodology prevents issues from escalating into mass production.

Final Inspection

Meticulous Comprehensive Final Inspection

Before departure, products undergo a final inspection evaluating dimensions, visual appearance, and performance. We ensure every part dispatched meets our exacting standards.

Production & Facilities

Our state-of-the-art facilities are equipped to handle the most intricate and demanding machining tasks.

Production Equipment
Workshop 1
Workshop 2
Workshop 3
Certifications

Frequently Asked Questions

1. What materials can be used in your CNC machining service?
We handle a variety of materials including metals (aluminum, steel, titanium, brass, copper) and plastics (ABS, POM, nylon, acrylic), as well as ceramics and composite materials.
2. What is the typical lead time for production?
Normally, it takes 7 days for prototyping and 20 days for mass production shipments, depending on the complexity and volume of the order.
3. What is the accuracy and tolerance of your CNC machining?
We offer high precision with tolerances typically ranging from ±0.01mm to ±0.1mm. Our tightest machining can reach up to +/-0.003mm depending on the part.
4. How do you ensure the quality of the components?
We implement a multi-stage quality control process including Incoming Material Examination, First Article Inspection (FAI), In-process inspections, and a Comprehensive Final Inspection using CMM equipment.
5. Do you support non-standard customized components?
Yes, we focus on non-standard customized components, serving the medical, automation, semiconductor, and automotive industries with unmatched precision.
6. What types of finishes can be applied to parts?
Common finishes include anodizing, powder coating, polishing, bead blasting, and electroplating to meet specific functional or aesthetic requirements.

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