Materials and Their Applications

From copper and stainless steel to specialty metals like molybdenum and titanium, our team understands which materials offer the best performance for specific applications. Whether you need components that provide high conductivity, superior strength, or exceptional thermal stability, discover how our material options can meet the most demanding requirements across industries such as aerospace, defense, telecommunications, and electronics.

Photo-etched circular copper component beside F-35 fighter jets

Custom Antenna for Space and Defense: RF and Components for Defense and Space Systems

Stack of rectangular tungsten metal blocks

Top EMI Shielding Materials for Electronics and Defense

EMI Shielding in Medical Devices: Materials, Techniques, and Applications

Photo-etched titanium mesh with repeating oval openings

Photochemical Machining for Medical Implants: Why Precision Matters

Radiologic technologist positioning an X-ray machine for a patient

Medical Fabrication: Common Challenges and Solutions in Metal Equipment

Round precision metal mesh screen

Etched Aerospace Filters & Screens: Why Precision Matters at Altitude

Diffusion-bonded copper component with layered channels and threaded holes

Photochemical Etching & Diffusion Bonding: A Detailed Exploration of Their Applications

Overhead view of an industrial electroforming production facility

Photochemical Etching vs Electroforming: A Comprehensive Comparison

PCE vs Wire EDM: Photochemical Etching vs. Wire Electrical Discharge Machining – A Comprehensive Comparison

tiny metal parts

Photochemical Etching vs. Metal Stamping: A Comprehensive Comparison

Photochemical Etching vs. CNC Machining: A Comprehensive Comparison

cutting board

Photochemical Etching vs. Laser Cutting: Comprehensive Comparison

Laboratory technician loading sample tubes into a centrifuge

Tungsten in Medical Devices: How Precision Parts Improve Patient Outcomes

Close-up of raw tungsten fragments

E-Fab’s Photochemical Etching with Tungsten

Surgical Device Precision Components with Photochemical Etching

Biocompatibility and Precision: Etched Parts in Implantable Devices

In this article, we explore the critical role of biocompatibility in implantable devices, why PCE is the superior process, and E-Fab's expertise in precision medical device manufacturing.
Stack of rectangular tungsten metal blocks

Common use cases for Photochemical Etching of Tungsten

What are the benefits of Tungsten etching in precision manufacturing

Circular molybdenum mesh and filter components

What are the benefits of using Molybdenum in precision manufacturing?

Close-up of raw molybdenum rocks

Common use cases for PCE of Molybdenum

Titanium element on the periodic table

How Military-Grade Titanium Enhances Defense Capabilities

Aerospace Titanium: Etched Components Leading the Future of Flight

Gloved technician holding a semiconductor processor

Exploring Titanium Etching Applications Across Industries

Copper busbar assembly with bolted electrical connections

Copper Bus Bar Applications Across Industries

Working with Beryllium Copper