Explore tailored guidance for heat, EMI, and material selection - Qnity (also known as Laird)
Sep 21, 2026
Get practical thermal design guidance for advanced electronics, aligned to your area of focus.
Across advanced electronics, engineers are tasked with balancing rising heat loads, tighter packaging, EMI concerns, long-term reliability, and complex production requirements.
Meeting these demands is becoming increasingly dependent on material decisions that support performance, protection, reliability, and manufacturability within the same design.
To help connect these material decisions to real application needs, we’re sharing focused guidance for AI infrastructure, electrified vehicles, and rugged defense systems.
Each of the resources below addresses a specific set of material challenges. Find the one that aligns with your design pressures and priorities.
AI data centers
The materials science behind every AI breakthrough
As AI/HPC systems push past current thermal and density limits, materials science is becoming the deciding factor for continued performance gains.
Electrification is rewriting the rules for automotive materials
Centralized architectures, electrified powertrains, and denser modules are raising the performance baseline for automotive materials, requiring increased thermal control, signal integrity, and EMI mitigation.
How military vehicle engineering teams can bridge the design wall
When thermal, EMI, structural, and environmental teams make siloed design decisions, one solution can create new problems downstream. Multifunctional design can help teams address potential discrepancies before they become project risks.
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