Ultra Thin 0.1mm Stainless Steel Etched Foldable Screen Support Plate with ±0.005mm Precision for Flexible Displays
Price:
50-100USD
MOQ:
10
Delivery Time:
3-15 days
Brand:
XHS/ Customized
Product Description
Ultra Thin 0.1mm Stainless Steel Etched Foldable Screen Support Plate
With advancements in flexible display technology, foldable screens are increasingly integrated into modern devices. Our precision-etched support plates maintain screen flatness and rigidity while enabling seamless bending functionality.
Advanced Bending Zone Technology
Traditional two-piece support plates create gaps in bending areas, leading to screen creases. Our single-piece design features chemically etched bending zones that effectively release stress while reducing overall weight.
Technical Specifications
| Materials | Stainless Steel, Carbon Fiber, Titanium Alloy |
|---|---|
| Thickness | Ultra-thin 0.1mm |
| Tolerance | ±0.01mm |
| Dimensions | Customizable (maximum 600mm × 600mm) |
| Etching Precision | Up to ±0.005mm for intricate patterns |
| Surface Finish | Smooth, burr-free edges with optional coatings |
| Temperature Range | -50°C to 300°C stable performance |
| Applications | Foldable smartphones, wearable technology, flexible OLED/LCD screens, medical devices, aerospace components |
Key Features
- Ultra-Thin Design: 0.1mm thickness ensures minimal weight with structural integrity
- High Precision Etching: Complex geometric patterns and micro-perforations for optimal flexibility
- Exceptional Durability: Superior fatigue resistance for repeated folding cycles
- Lightweight & Flexible: Seamless integration into slim devices without compromising strength
- Corrosion Resistance: Ideal for harsh environments and moisture-sensitive applications
- Fully Customizable: Tailored patterns, thicknesses, and coatings for specific requirements
Chemical Etching Advantages
- Precision Engineering: Achieve intricate designs beyond traditional machining capabilities
- Stress-Free Processing: No mechanical deformation preserves material strength and integrity
- Cost-Effective Production: Ideal for both prototyping and mass manufacturing with minimal tooling costs
- Scalable Quality: Consistent performance across small to large production batches
Xinhaisen Expertise
- 13+ Years Experience: Specialized in precision metal etching and microfabrication
- Advanced Technology: State-of-the-art photochemical etching equipment with ISO-certified processes
- Custom Solutions: Comprehensive support from design optimization through final production
- Quality Assurance: Rigorous testing including tensile strength, dimensional accuracy, and surface inspection
- Global Service: Timely worldwide delivery with responsive customer support
Additional Etching Materials
Beyond stainless steel, we process various metals including copper, titanium, aluminum, brass, nickel alloys, beryllium copper, and phosphor bronze for applications such as EMI shielding, springs, connectors, and MEMS components.
Custom Chemical Etching Applications
- Electronics: Flexible circuits, EMI shields, heat sinks, lead frames
- Medical: Surgical instruments, implants, microfluidic devices
- Automotive: Fuel cell plates, sensors, precision filtration systems
- Aerospace: Lightweight structural components, specialized mesh screens
- Consumer Technology: Decorative panels, wearable devices, smart home components
Custom Manufacturing Process
- Initial Consultation: Share your design specifications via CAD files, sketches, or samples
- Engineering Review: Comprehensive feasibility analysis of materials, tolerances, and process requirements
- Prototype Development: Rapid sample production for comprehensive testing and approval
- Mass Production: Full-scale manufacturing with real-time quality monitoring
- Global Delivery: Worldwide shipping with secure, protective packaging
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Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Shenzhen Xinhaisen Technology Limited
Location
ShaJing, Baoan, Shenzhen City, Guangdong Province, China
Contact Person
Haily Huang