logo
Shenzhen Xinhaisen Technology Limited
english
français
Deutsch
Italiano
Русский
Español
português
Nederlandse
ελληνικά
日本語
한국
العربية
हिन्दी
Türkçe
bahasa indonesia
tiếng Việt
ไทย
বাংলা
فارسی
polski

products details

Created with Pixso. Home Created with Pixso. Products Created with Pixso.
Micro Perforated Mesh
Created with Pixso.

Chemical Etching Metal Mesh For High Sensitivity Smoke Detector Systems

Chemical Etching Metal Mesh For High Sensitivity Smoke Detector Systems

Brand Name: XHS/ Customized
Model Number: XHS/ Customized
MOQ: 10
Price: 80-100USD
Payment Terms: T/T,Western Union
Supply Ability: 10000-100000PCS / week
Detail Information
Place of Origin:
China
Certification:
ISO9001 ISO14001
Durability:
High
Complexity:
High
Tolerance:
±0.005mm
Thickness:
0.02mm-1.5mm
Lead Time:
2-3 Weeks
Size:
Customized
Precision:
High
Cost:
Low
Packaging Details:
PE bag, Carton
Supply Ability:
10000-100000PCS / week
Highlight:

Chemical etching metal mesh

,

High Precision etching metal mesh

,

1.5mm chemical etching mesh

Product Description

Chemical Etching Mesh for High-Sensitivity Smoke Detector Systems

 

Brief Introduction of Etching Mesh for Smoke Detector:

Our Chemical Etching Mesh is specially designed for high-sensitivity smoke detector systems, offering unmatched precision, durability, and reliability. Using advanced photochemical etching technology, these fine metal meshes ensure fast and accurate smoke detection—ideal for modern fire safety devices.

 

Specifications of Photo Etching Smoke Detector Mesh:

Material: Stainless Steel (SUS 304/316), Nickel, or Custom Alloys

Thickness Range

0.05 mm – 0.5 mm (customizable)

Dimensions:

As per customer design or standard sizes

Hole Size

As small as 25 microns

Pattern Tolerance

±0.01 mm
Mesh Types:

Round, square, or custom-designed openings

Surface Finish

Clean, burr-free, optional passivation

 

Features of Photo Etching Smoke Detector Mesh:

  • No Burrs or Deformation: Etched without mechanical stress, ensuring flat, clean mesh surfaces.
  • High Precision Apertures: Achieve uniform openings down to microns for consistent smoke flow and fast detection.
  • Corrosion & Heat Resistance: Made from stainless steel or nickel alloy for long-lasting performance in harsh environments.
  • Customizable Shapes & Patterns: Design flexibility to meet specific detector housing and airflow requirements.
  • Lightweight & Strong: Thin profile with robust strength, perfect for compact device integration.

Chemical Etching Metal Mesh For High Sensitivity Smoke Detector Systems 0

 

Applications of Etching Mesh for Smoke Detector:

  • Photoelectric and ionization smoke detectors
  • Industrial gas detection systems
  • Environmental monitoring sensors
  • Smart home fire alarm systems
  • Automotive smoke or gas detection components

 

How Is Smoke Detector Mesh Etched?

The chemical etching process begins with coating a metal sheet with a photoresist layer. A custom-designed pattern is exposed using UV light, then developed and etched using acid or alkaline solutions. This removes unprotected areas, forming micro-perforations with ultra-high precision and clean edges, ideal for sensitive detection applications.

 

The Benefits of Chemical Etching:

  • Stress-Free Process: No mechanical deformation or thermal distortion
  • Tooling Cost Savings: No expensive molds or dies required
  • Rapid Prototyping: Faster turnaround from design to product
  • Design Flexibility: Easily modify hole size, shape, or layout
  • Batch Consistency: Ideal for mass production with tight tolerances

 

How to Custom Smoke Detector Mesh from Us?

  1. Send Your Design: Upload your drawing or share specifications (material, thickness, aperture, size).
  2. Confirm Prototype: We provide a sample for review.
  3. Production & QC: High-precision chemical etching and strict quality control.
  4. Fast Delivery: Global shipping with flexible packaging options.

 

Contact us today to get a free quote or consult with our engineers for tailored mesh solutions that elevate your smoke detector systems' performance.