Mobile Devices

Mobile devices today go far beyond phones and laptops. Wearable technology like smartwatches, smart glasses and AR and VR headsets bring powerful connectivity and immersive experiences straight to users
mobile device 1
Modern mobile devices have transformed into intelligent wearables that stay with us at all times, from health-monitoring smartwatches to AI-assisted AR glasses and sensor-rich earbuds that redefine personal connectivity. These advanced wearables come with unique engineering
challenges: they require reliable performance in extremely compact sizes, must keep UWB, Bluetooth and Wi-Fi connections stable even during constant movement, and need to work flawlessly through everyday use and harsh conditions.

Modern Wearables Demand Compact and Reliable RF Performance

Our compact, lightweight interconnects fit the tight spaces inside smartwatches and fitness bands, providing secure signals for continuous monitoring and smooth connectivity. Amphenol RF supplies 

the micro-scale RF components that make this possible, including ultra-low-power antennas for fitness trackers and interference-resistant millimeter-wave connectors for spatial computing 

headsets. As mobile devices become more wearable and autonomous, we continue to design the compact RF solutions that drive this shift toward body-centric computing.

Related Resources

The document "Passive Intermodulation Distortion in Connectors, Cable and Cable Assemblies" by David Weinstein of Amphenol Corporation discusses the causes, impacts, and measurement of Passive Intermodulation Distortion (PIM) in RF components. It explains how PIM is generated by non-linear mixing in passive devices like connectors and cables, causing unwanted signals that can interfere with communication systems. The paper outlines design guidelines to minimize PIM, including contact design, material choices and cleanliness, and describes testing methods to ensure low PIM performance​​.
White Paper: Passive Intermodulation Distortion
The document "Passive Intermodulation Distortion in Connectors, Cable and Cable Assemblies" by David Weinstein of Amphenol Corporation discusses the causes, impacts, and measurement of Passive Intermodulation Distortion (PIM) in RF components. It explains how PIM is generated by non-linear mixing in passive devices like connectors and cables, causing unwanted signals that can interfere with communication systems. The paper outlines design guidelines to minimize PIM, including contact design, material choices and cleanliness, and describes testing methods to ensure low PIM performance​​.
Read More
The Amphenol RF 5G Wireless Solutions document presents Amphenol’s advanced RF interconnect solutions tailored for next-generation 5G networks. It highlights a comprehensive portfolio of high-performance connectors, adapters, and cable assemblies designed to support the high-frequency, low-latency, and high-data-rate demands of 5G infrastructure. The document emphasizes low PIM performance, robust durability, and compact designs, ensuring reliable connectivity in macro cell sites, small cells, distributed antenna systems (DAS), and massive MIMO applications.
5G Wireless Solutions
The Amphenol RF 5G Wireless Solutions document presents Amphenol’s advanced RF interconnect solutions tailored for next-generation 5G networks. It highlights a comprehensive portfolio of high-performance connectors, adapters, and cable assemblies designed to support the high-frequency, low-latency, and high-data-rate demands of 5G infrastructure. The document emphasizes low PIM performance, robust durability, and compact designs, ensuring reliable connectivity in macro cell sites, small cells, distributed antenna systems (DAS), and massive MIMO applications.
Read More
The Amphenol RF Antenna Solutions Overview provides an in-depth look at a wide range of high-performance antennas designed for wireless applications. It highlights key features, including compact designs, high-frequency capabilities, and compatibility with various RF interconnect solutions for seamless connectivity across industries.
Antenna Solutions for Wireless Applications
The Amphenol RF Antenna Solutions Overview provides an in-depth look at a wide range of high-performance antennas designed for wireless applications. It highlights key features, including compact designs, high-frequency capabilities, and compatibility with various RF interconnect solutions for seamless connectivity across industries.
Read More

Industry Trends

Miniaturization
Miniaturization shrinks complex electronic systems into tighter spaces while boosting performance and efficiency. Miniaturization enables the integration of high-frequency RF into compact, portable devices.
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5G and Beyond
5G is a next-generation wireless network standard that delivers ultra-fast speeds, low latency and massive device connectivity. It forms the backbone of a hyper-connected world, enabling industries to redefine operational efficiencies.
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