Connectors
Through our Hypertac, IDI and Sabritec technology brands, we supply application-specific, high-reliability electrical interconnect solutions from highly integrated assemblies to microminiature connectors and spring probe contacts. The core of our advanced interconnect solutions is our contact technologies: Hyperboloid, Tortac, Spring Probe, High Speed, Edge Card, Fiber Optic, EMI/EMP, High Power and High Temperature.
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Product
Circular Connectors
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Complete range of circular connectors with metal and plastic shells, and crimp and solder terminations for multichannel hybrid electrical/ optical insert arrangements, supporting a wide range of allowable contact voltages and currents, easy environmental sealing and rugged mechanical performance.
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PCB Connectors
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Smiths Interconnect offers a broad range PCB connectors for harsh environments. A wide choice of configurations and terminations of signal, power, high speed, RF contacts and spring probes solutions.
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High Power Connectors
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High power connectors are offered in ruggedized, single and multi-way formats with power up to 1,200 Amps that provide excellent performance in harsh environment conditions.
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Rectangular Connectors
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Smiths Interconnect offer a broad range of modular and rectangular connectors. Our modular solutions allow the user to customize, configure and combine signal, Power, Filter High Speed Data (coax, twinax, triax, quadrax, fiber optic) contacts into a single connector.
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Product
EMI/EMP Connectors
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Filter connector series includes EMI/ EMP/ESD circular, ARINC, D-subminiature and micro-D connector styles. They can be combined with high energy TVS diode technology to achieve lightning and EMP transient protection. Smiths Interconnect's EMI filter connectors use multi-layer ceramic capacitor arrays together with inductive materials to realize robust, high performance low pass filter networks. Where required, transient protection can be combined with EMI /RFI filtering to provide maximum protection. The diodes as well as the EMI filter are packaged separately so the construction of the connector remains modular.
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High Speed Data Connectors
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Comprehensive array of high speed interconnects including quadrax and twinax connectors. We manufacturing to the following protocols: Fibre Channel, Ethernet Firewire, USB, DVI and InfiniBand.
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Unlisted Product
*Loose Contacts Connectors
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Our quadrax, twinax, spring probe, coax, triax and fiber optic contacts can be sold seperately or configured into any of our standard connector shells sizes as well as cable assemblies and harnesses.
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Spring Probes
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Spring probes are designed to optimize performance in high reliability, multicycle applications. Smiths Interconnect's spring probes, featuring IDI contact technology, are compliant which makes them ideal for blind mate applications as they self correct for x, y, z, rotational and angular misalignment of the target. Offered in compressed heights less than 2 mm and utilized on pitches as tight as 0.4 mm, they are well suited for high density, board-to-board, battery contact and high frequency applications.
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Backplane Connectors
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Offering a broad portfolio of backplane connectors that include SOSA aligned optical, COTS plus hard metric, VITA standard and high speed twinax interconnects. Our interconnect solutions address the requirements of mission-critical applications within commercial aerospace, space and defense market segments.
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High Speed Contacts
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Our quadrax, twinax, spring probe, coax, triax and fiber optic contacts can be sold seperately or configured into any of our standard connector shells sizes as well as cable assemblies and harnesses.
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Hyperboloid Contacts
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Hypertac® hyperboloid is the original superior performing contact technology for use in demanding environments where reliability and safety are critical. The shape of the contact sleeve is formed by hyperbolically arranged contact wires, which align themselves elastically as contact lines around the pin, providing a number of linear contact paths. The smallest practical pin diameter is 0.3mm but there is effectively no upper limit.










