Amphenol is a technology leader in the design, manufacture and supply of high-performance interconnect systems, sensors and antennas for a broad range of industrial applications. Our core competencies include application-specific industrial interconnect solutions utilizing integrated assemblies. Our primary end applications for industrial include agriculture equipment, alternative and traditional energy generation, batteries and hybrid drive systems, entertainment, factory automation, heavy equipment, instrumentation, internet of things (IoT), LED lighting, marine, medical equipment, oil and gas, power distribution, public safety, rail mass transit, smart manufacturing (IIoT), and transportation.
Martec presents the Julus Range, a collection of high-performance hermetic connectors designed and manufactured exclusively for demanding applications where integrity is crucial.
Our Julus industrial feedthrough connectors bring reliability and performance to electronic systems throughout the military, aerospace and industrial sectors.
Martec presents the Nimbus range – a series of lightweight high-performance hermetic connectors designed and manufactured exclusively for demanding applications where integrity is crucial.
Our Nimbus aluminium connectors bring reliability and performance to electronic systems throughout the Aerospace, Military, Space and Motorsport industries.
The MCX (Micro Coaxial) series is a 50 Ω series with broadband capability ranging from DC to 6 GHz. In addition, the MCX series features secure, fast and easy snap-on/ snap-off coupling.
The MEG-Array® Mezzanine Connector provides the high density and high-speed benefits of a large array supported by the reliability and low costs of standard surface mount PCB assembly.
1.27x1.27mm array of discrete circuit contacts allows flexible ground distribution to optimize high-speed signal integrity at speeds up to 32Gb/s. MEG-Array® is offered in a variety of PCB mezzanine stack heights
Amphenol produces high-quality parts with over 90% metal density through our metal injection molding (MIM) process. The MIM process provides greater flexibility in design complexity, prevents corrosion, and provides a resistant polish. The MIM process is used on components of various applications including mobile phones, laptops, and industrial and automotive platforms.
FCI Basics Metral® accessories are compatible with Metral® 2mm Board-to-Board and Board-to-Cable connector systems. These are comprised of shrouds, coding keys, and guiding systems. These enhance the usability and flexibility of Metral® connectors that are designed according to Futurebus+ standards.
FCI Basics Metral® product offers the broadest range of backplane connector solutions which includes RA and vertical for both header and receptacle series. The connectors are designed in accordance with IEC 61076-4-104 and Telcordia GR-1217- CORE. Metral® backplane connectors meet Futurebus+ standards to support applications in data, industrial and instrumentation, medical and telecom markets.
Metral® 2mm pitch cable connector meets the Board-to-Cable interface requirements and is part of the Metral® product family offering the widest range of backplane connector solutions. The connector is designed in accordance with IEC 61076-4-104 and Telcordia™ GR-1217-CORE. Metral® cable connector is available in 4 and 5 row versions. They come in single and multi-module configurations.
Metral® High Speed 1000 Series Backplane Connectors
Amphenol’s FCI Basics Metral® 1000 Series is a high-speed 2mm backplane connector system consisting of right-angle receptacles and vertical headers. The 1000 Series features a unique stripline structure in the receptacle and outer ground shields in the header. The stripline structure allows improved signal performance when routed in either a single-ended or a differential pair configuration.
Metral® High Speed 2000 Series Backplane Connectors
Amphenol’s FCI Basics Metral® 2000 Series is a high-speed 2mm backplane connector system of vertical headers. The 2000 Series features a unique stripline structure that allows having improved signal performance when routed in either a single-ended or a differential pair configuration.