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HDI PCB Applications

A wearable, radar module and edge-computing board can all use HDI for different reasons. These application guides identify the package, interface, thermal and reliability questions that influence a defensible stackup.

Start with the product constraint.

Application names do not define a manufacturing specification. Each project needs an explicit environment, lifetime, signal architecture, mechanical envelope and acceptance plan. Follow the related technical guide for the underlying design choice.

Explore applications

18 resources
01 / Applications

HDI PCB Design for Smartphones

Plan smartphone HDI routing around processor escape, cameras, RF zones, battery space and assembly access before selecting any-layer construction.

02 / Applications

HDI PCB Planning for Wearable Electronics

Balance wearable PCB size, battery life, sensing, antenna space and mechanical constraints with a practical HDI design review.

03 / Applications

HDI PCB Design for Camera Modules

Review camera module sensor placement, image interface routing, power noise, optical alignment and connector escape before PCB release.

04 / Applications

HDI PCB Considerations for Medical Electronics

Organize medical electronics PCB requirements around sensing, isolation, traceability, inspection and documented design verification.

05 / Applications

HDI PCB Design for Hearing Devices

Coordinate miniature hearing device PCB layout with microphones, acoustic paths, battery space, charging contacts and assembly verification.

06 / Applications

HDI PCB Design for Industrial IoT Nodes

Plan compact industrial IoT boards around sensors, radio placement, external wiring, service access and operating environment.

07 / Applications

HDI PCB Planning for Automotive ADAS Electronics

Review ADAS PCB density together with sensor interfaces, processor power, thermal integration, diagnostics and change traceability.

08 / Applications

HDI PCB Considerations for Automotive Radar

Coordinate radar PCB antenna geometry, RF transitions, digital escape, material selection and mechanical verification.

09 / Applications

HDI PCB Design for 5G Modules

Plan 5G module boards around radio architecture, power bursts, thermal paths, host interfaces and controlled RF geometry.

10 / Applications

HDI PCB Design for RF Modules

Evaluate compact RF PCB stackups, grounding, matching networks, shielding and prototype measurements without assuming density guarantees performance.

11 / Applications

HDI PCB Planning for AI Accelerator Boards

Review AI accelerator PCB escape, power delivery, memory, high speed links and cooling as one integrated architecture.

12 / Applications

HDI PCB Design for Edge Computing Systems

Choose edge computer board architecture with module interfaces, peripheral routing, power sequencing, cooling and recovery access in view.

13 / Applications

HDI PCB Planning for Network Switches

Allocate switch PCB channel loss, connector escape, power distribution and thermal space before selecting HDI materials and via structures.

14 / Applications

HDI PCB Design for Optical Transceivers

Coordinate optical transceiver PCB electrical channels, optical alignment, cage mechanics, heat flow and manufacturing evidence.

15 / Applications

HDI PCB Design for Robotics Electronics

Plan robotics PCB density with motor current paths, sensing, computation, cables, maintenance and mechanical mounting in view.

16 / Applications

HDI PCB Planning for Drone Electronics

Balance drone controller density with motion sensing, radio placement, motor electronics, mounting and prototype test access.

17 / Applications

HDI PCB Design for Miniature Sensors

Design small sensor PCBs with mechanical strain, thermal gradients, reference routing, calibration and assembly handling in mind.

18 / Applications

HDI PCB Design for USB-C Devices

Plan USB-C connector escape, data lanes, power paths, protection and mechanical attachment using explicit interface requirements.