5G Technology World

  • 5G Technology and Engineering
  • FAQs
  • Apps
  • Devices
  • IoT
  • RF
  • Radar
  • Wireless Design
  • Learn
    • 5G Videos
    • Ebooks
    • EE Training Days
    • FAQs
    • Learning Center
    • Tech Toolboxes
    • Webinars/Digital Events
  • Handbooks
    • 2024
    • 2023
    • 2022
    • 2021
  • Resources
    • Design Guide Library
    • EE World Digital Issues
    • Engineering Diversity & Inclusion
    • Engineering Training Days
    • LEAP Awards
  • Advertise
  • Subscribe

Thin Film Circuit Design Guidelines Provide Keys to Successful Layout of Ion Beam Etched Circuits

By SemiGen, Inc. | December 11, 2018

SemiGen, Inc. an ISO and ITAR registered provider of RF and microwave contract assembly, foundry services, semiconductor devices, and RF supplies has announced the release of their thin film circuit design guidelines. 

Designed to help RF, microwave, and millimeter-wave circuit design engineers with optimizing their layouts for SemiGen’s advanced ion beam milling/etching process, the layout tolerances and approaches include the following key areas of design for creating optimal Lange couplers, stand-offs, filters, terminations, planar and spiral inductors, and other custom thin film circuits:

  • Resistor Length
  • Resistor Width
  • Conductor Overlap
  • Metal Pullback
  • Lines and Spaces
  • Cut Out Radius
  • Laser Cut Features
  • Notched Via Edge Wrap
  • Edge of Via to Edge of Metallization
  • Hole Location
  • Hole Spacing
  • Hole Diameter Aspect Ration for Plated Vias
  • Edge Proximity to Substrate Thickness
  • Front to Back Registration

A table details the expected range of values for tantalum-nitride (TaN) and nickel-chromium (NiCr) resistors, titanium-tungsten (Ti or TiW) adhesion layers, nickel (Ni) sputtered palladium or platinum sputtered barrier layers, and gold (Au) conductors.

The design guidelines also include a review of the most common substrate materials used in producing ion beam etched thin film circuits including:

  • As fired and polished 99.6% Alumina (Al)
  • Polished 99.5% Beryllium Oxide (BeO)
  • Polished Aluminum Nitride (Al)
  • Polished Fused Silica 
  • Polished Titanates 

Optimized circuit layouts and SemiGen’s sputtering and vacuum deposit process expertise utilizing all these materials, provides the best and most repeatable traces and spaces, and excellent eutectic value and bond strength. Other metal schemes are also available by request or as performance attributes dictate. 


Filed Under: RF

 

Next Article

← Previous Article
Next Article →

Related Articles Read More >

Modelithics adds Guerilla RF to its lineup of component models
Fragmentation in wireless standards: an RF specialist’s analysis
Efficient RF amp covers sub-1 GHz
Compact antennas maintain performance on metal surfaces

Featured Contributions

  • Antennas to bits: Modeling real-world behavior in RF and wireless systems
  • Fragmentation in wireless standards: an RF specialist’s analysis
  • Overcome Open RAN test and certification challenges
  • Wireless engineers need AI to build networks
  • Why AI chips need PCIe 7.0 IP interconnects
More Featured Contributions

EE TECH TOOLBOX

“ee
Tech Toolbox: Power Efficiency
Discover proven strategies for power conversion, wide bandgap devices, and motor control — balancing performance, cost, and sustainability across industrial, automotive, and IoT systems.

EE LEARNING CENTER

EE Learning Center
“5g
EXPAND YOUR KNOWLEDGE AND STAY CONNECTED
Get the latest info on technologies, tools and strategies for EE professionals.

Engineering Training Days

engineering
“bills
5G Technology World
  • Enews Signup
  • EE World Online
  • EDABoard Forums
  • Electro-Tech-Online Forums
  • Microcontroller Tips
  • Analogic Tips
  • Connector Tips
  • Engineer’s Garage
  • EV Engineering
  • Power Electronic Tips
  • Sensor Tips
  • Test and Measurement Tips
  • About Us
  • Contact Us
  • Advertise

Copyright © 2025 WTWH Media LLC. All Rights Reserved. The material on this site may not be reproduced, distributed, transmitted, cached or otherwise used, except with the prior written permission of WTWH Media
Privacy Policy

Search 5G Technology World