Emerging Technologies-LLC

Emerging Technologies, LLC. was called upon to provide a replacement CT ratio test system. An existing test system was in place and failing due to age.

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Emerging Technologies, LLC. was called upon to provide a replacement multi-conductor cable test system. An existing test system was in place and failing due to age.

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Emerging Technologies, LLC. was called upon to design and build an End Of Line test system with laser marking. The DUT was to be configured, tested, and marked.

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Emerging Technologies, LLC. was called upon to build an automated switch force sub-assembly test system from a customer provided design. The DUT switch contacts were to be verified for force, position, and electrical state while being automatically actuated by the test system.

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Emerging Technologies, LLC. was called upon to design and build an automated sub-assembly test system. The DUT was to be configured, calibrated, and functionally tested.

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Emerging Technologies, LLC. was called upon to layout and build a custom control panel from customer provided components and electrical design.

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Emerging Technologies, LLC. was called upon to design and build an automated control circuit sub-assembly functional test system for DUT’s in panelized form.

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Emerging Technologies, LLC. was called upon to design and build an automated sub-assembly functional test system for DUT’s in panelized form.

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Emerging Technologies, LLC. was called upon to provide a test system to verify continuity for specific paths and no continuity for remaining paths for an electrical subassembly. Additionally, the paths with continuity need to have the measured resistance values stored.

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Emerging Technologies, LLC. was called upon to provide a replacement RIV/Hipot test system for electrical bushings. The existing Faraday cage, product test tanks, and high voltage switches were to be re-used. Up to 100KV was required for Hipot testing and 30KV for RIV (Radio Influence Voltage) testing.

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Emerging Technologies, LLC. was called upon to design and build an automated recloser control test system. The new system required functionality to replace an existing system and new functionality to support testing of another product model.

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Emerging Technologies, LLC. has been called upon to provide functional test fixture fabrication for different products based on customer-provided designs and/or specifications. The customer provided the electrical design and test systems programming.

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Emerging Technologies, LLC. was called upon to design and build an automated test system based on a combination of previous designs.

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Emerging Technologies, LLC. was called upon to provide nine additional Automated Assembly Carts, duplicate to the prototype previously developed by Emerging Technologies.

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Emerging Technologies, LLC. was called upon to design and build an automated recloser test system based on an existing system. The new system required new functionality to support testing of a new product model.

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Emerging Technologies, LLC. was called upon to develop and build a custom APU Distribution Panel Tester. A basic manual design with DUT matched interface connectors for simple manual interconnection was required. The operator will connect the product to the tester and operate the product functions while watching for correct feedback on the tester.

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Emerging Technologies, LLC. was called upon to retrofit an existing engineering style test system into a production floor style system.

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Emerging Technologies, LLC. was called upon to design and build a functional test system with a tilting fixture. Cost was to be kept down by designing a manually operated system with the capability to be automated in the future.

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Emerging Technologies, LLC. was called upon to design and build an automated assembly cart. The cart design was to include the ability to rotate clockwise and counter clockwise, as well as raise and lower to accommodate different product models and operator height and working preferences.

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Emerging Technologies, LLC. was called upon to design and build custom burn-in chassis for circuit board based products. The chassis were to be designed to fit in a 19” rack mounted inside an environmental chamber. Concept to deployment schedule was expected to be short.

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Emerging Technologies, LLC. was called upon to repair and refurbish a pair of existing embedded testers. The existing testers had fallen into disrepair and the original manufacturer of the systems was no longer doing business.

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Emerging Technologies, LLC. was called upon to develop a calibration system based on an existing customer prototype. The system was to calibrate Hall Effect sensors with ranges from 37A to 420A.

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Emerging Technologies, LLC was called upon to develop a test system for a printed circuit board that would be installed in a docking station assembly. The product required automated testing.

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Emerging Technologies, LLC. was called upon to develop a functional test system for a medium voltage contactor. The system incorporated a customer-supplied fixture and other hardware. The system test requirements included pickup tests and HiPot test. The provided fixture incorporates two DUT test locations to run pick-up and HiPot tests simultaneously (pick-up test in one location and HiPot test in the other).

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Emerging Technologies, LLC. was called upon to develop a circuit board that would interface TTL level control outputs with 24VDC field hardware. Additionally, field inputs and discrete communication points were to be routed through the interface.

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Emerging Technologies, LLC. was called upon to build a duplicate system to one previously provided by Emerging Technologies. Additionally, the system required the integration of a three-phase AC power source for testing three-phase product. The new three-phase panel is mobile for use with the automated test system (via GPIB interface) or elsewhere under manual control.

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Emerging Technologies, LLC. was called upon to generate a functional specification for and develop a high speed data acquisition and control system for a high current test lab. The specifications required the system utilize off-the-shelf technology where possible. The system was required to measure and control events drawing up to 80k amps at up to 800VAC.

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