Advanced One-stop Production Service

Front-End DFM to Unified QC, We Manage Every Stage of Your Precision Parts Production.

ISO 14001:2015       ISO 9001:2015        IATF 16949:2016


Innovative Companies We Support
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One-stop Production Service

Our One-stop Production Service Model: Integrated Precision, Simplified Supply Chain We have built a powerful ecosystem of trusted, highly specialized manufacturing partners in key processes:

 

Plastic Injection Molding Parts

Plastic Injection Molding Parts Learn More

Forging Parts

Forging Parts Learn More

MIM Parts

MIM Parts Learn More

Sheet Metal Parts

Sheet Metal Parts Learn More



Advanced One-stop Production Solution

We do not simply outsource; we integrate, manage, and take full ownership.

The core of our service: Deep Engineering & Proactive Management and follow up.

Our value lies in active, expert oversight and participate at every stage, transforming a multi-vendor ordeal into a single, streamlined workflow.

  • Front-End Engineering & DFM Excellence
  • Prototype & Sample Validation
  • In-House Precision Secondary Machining
  • Seamless Production & Unified Quality Control

We transform the traditional client-vendor dynamic into a true technical partnership. By offering a genuine one-stop manufacturing service, we empower you to focus on your core business—innovation, design, and market growth—while we handle the complexities of bringing your physical products to life with precision, reliability, and efficiency.

About Plastic Injection Molding

About Plastic Injection Molding

Plastic injection molding is a high-volume, high-efficiency manufacturing process for producing identical plastic parts with complex geometries and excellent dimensional accuracy. Following injection molding available for us.

  • Insert Molding
  • Over molding /Two-Shot Molding
  • Gas-Assist Injection Molding (GAIM)
  • Micro-Injection Molding

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About Casting

Die Casting – Speed & Precision at Scale

  • Short cycle times with high-velocity injection into reusable steel dies, ideal for high-volume production.
  • Net-shape parts with excellent surface finish and tight dimensional stability, reducing secondary operations.
  • Optimized for non-ferrous alloys (aluminum, zinc, magnesium), enabling high strength-to-weight ratios and thin walls.
  • High repeatability ensures consistent quality across millions of cycles.
Investment Casting – Complexity Without Compromise
  • Capable of producing intricate shapes, internal cavities, and fine details.
  • Compatible with a broad range of ferrous, non-ferrous, and high-temperature alloys.
  • Near-net shape accuracy minimizes machining and post-processing.
  • Suitable for both low-volume, high-complexity prototypes and scalable production runs.

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About Casting

About Forging

Forging is more than just shaping metal—it is the process of engineering strength from within. By applying localized compressive forces, it refines the metal’s internal grain structure and aligns flow lines to match the exact contours of a part, resulting in components that outperform cast or machined alternatives.

  • Superior Mechanical Properties – Forgings deliver exceptional strength, impact toughness, and fatigue resistance, making them the standard for critical applications such as aerospace, automotive, and heavy machinery.
  • Process Versatility – From hot forging for complex shapes to cold forging for high dimensional accuracy, the temperature can be tailored to balance formability with surface finish.
  • Flexible Production Methods – Open-die forging offers maximum flexibility for large or custom components, while closed-die forging ensures high-volume precision with tight tolerances.
  • Cost-Efficient Precision – Precision (near-net-shape) forging minimizes material waste and reduces or eliminates secondary machining, accelerating time to market and lowering overall production costs.

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About Forging
About MIM

About MIM

Metal Injection Molding is an advanced powder metallurgy manufacturing process that combines the design flexibility of plastic injection molding with the material performance of metal. It enables the high-volume production of complex, high-precision metal parts with near-net shape characteristics.

The MIM process consists of four key stages:

  • Step 1: Feedstock Preparation
  • Step 2: Injection Molding
  • Step 3: Debinding
  • Step 4: Sintering

MIM is ideal for small, intricate, high-performance components across demanding industries:

  • Consumer Electronics
  • Medical & Dental 
  • Automotive
  • Aerospace & Defense

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FAQs About One-stop Production Service

What is your typical order volume? Can you handle both prototyping and mass production?

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A:Yes, we support the entire product lifecycle.

· Prototyping & Low Volume: We offer rapid prototyping for all processes (e.g., 3D printed molds for plastics, quick-turn sheet metal, MIM prototyping with sacrificial tooling).

· Mass Production: Our facilities are optimized for medium to high-volume production runs, ensuring cost-effectiveness and consistent quality.

Do you provide design support or DFM (Design for Manufacturing) analysis?

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A: Absolutely . We strongly recommend and provide free initial DFM analysis. Our engineering team will review your drawings/CAD files for each manufacturing process and suggest optimizations to improve manufacturability, reduce cost, and enhance quality before tooling begins.

Can you handle the final assembly of parts made from different processes?

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A: Yes, this is a key part of our value proposition. We offer sub-assembly and full assembly services. We can assemble the injection molded housings, sheet metal frames, and precision MIM gears/parts into a complete, tested, and functional unit ready for your distribution.