Emerging Technologies-LLC

Emerging Technologies, LLC. was called upon to develop a high voltage isolation interface. The new interface isolates up to 10,000 VAC HiPot tester voltage from remote sense measurement hardware, used during functional test, while the DUT undergoes HiPot testing.

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Emerging Technologies, LLC. was called upon to develop a test system for electrically operated air pressure based products. The new system was to be based on an existing system re-using some of the existing components. New components were used where higher accuracies were required. Additionally, the new system was expected use a smaller enclosure requiring less space in the lab.

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Emerging Technologies, LLC. was called upon to develop and build a pair of functional test systems for a new addition to an existing line of automatic transfer switches including single phase and three phase units. Additionally, the customer required the new systems be backwards compatible with existing products.

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Emerging Technologies, LLC. was called upon to build a manual version of an automated test system control console previously provided by Emerging Technologies. The new system was to be built at a reduced cost by reducing size and automation components. The majority of the functionality would remain through manual operations and the connection of a notebook computer provided by the customer. The power system and DUT fixture were provided by the customer.

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Emerging Technologies, LLC was called upon to modify an existing pressure / flow measurement panel to include automated backpressure control. Additionally, the panel was to be configured for use inside an existing environmental test chamber. Measurements of airflow and pressure, as well as vacuum flow and pressure, were required. Remote pressure control was required to manipulate the pressure without compromising the environmental chamber.

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Emerging Technologies, LLC was called upon to add functionality to a test system design for electrically operated air pressure and flow based products. In addition to the functionality of the existing Engineering Test System, new features included computer-controlled pressure and motor speed and an automated testing sequence that would remove user interaction required for numerous tests. The control for the added functionality was added to the current user interface.

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Emerging Technologies, LLC. was called upon to develop a test system for a motor field control module. The customer requested a stand-alone, non-PC based system. The test requires up to 600Vdc at up to 42 amps into a resistive/reactive load. Special custom signal generation, including configurable PWM, was required. Additionally, a manual test mode was required.

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Emerging Technologies, LLC. was called upon to develop a test system for a line of cover control sub-assemblies. Sensing color, intensity, and blink of LEDs was required.

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Emerging Technologies, LLC. was called upon to develop an embedded functional test system for a multi-speed cooling fan sub-assembly.

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Emerging Technologies, LLC. was called upon to manufacture an end of line functional test system for an air flow and pressure based product.

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Emerging Technologies, LLC was called upon to design and build two identical custom field module test systems based upon the customer’s existing in house test system.

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Emerging Technologies, LLC. was called upon to design and build an Electro-mechanical Sub-assembly Test System capable of testing eight separate units simultaneously and independently.

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Emerging Technologies, LLC. was called upon to design and build a custom Calibration, Programming, and Test System for a PIC16F72 based product.

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Emerging Technologies, LLC. was called upon to develop a test system for electrically operated air pressure and flow based products. Accurate measurement of flow, pressure, vacuum, temperature, and barometric pressure of air with correction to standard flow was required. Additionally the system required control of AC voltage and frequency, DC voltage, as well as, metering of voltage, current, frequency (AC only) and power.

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Emerging Technologies, LLC. was called upon to develop a 320-channel data acquisition system for an accelerated life cycle test system. The specification called for an accurate, noise immune, easy to configure system. Additionally, the system needed to support the future addition of more channels.

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Emerging Technologies, LLC. was called upon to develop a stand alone, portable test system for a pcb-based sub-assembly.

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Emerging Technologies, LLC. was called upon to design and build a custom control console to control a medium voltage test system. The power system and DUT Fixturing was provided by the customer

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Emerging Technologies, LLC was called upon to develop an interface to provide communication between a customer-supplied device and a host computer

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Emerging Technologies was called upon to develop a system to automatically gather a subset of data, mathematically determine the remaining set of data, generate microcontroller source code based on the data, assemble the code, program the microcontroller, and test the programmed device.

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Emerging Technologies, LLC. was called upon to develop a portable tester for a circuit board based control module.

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Emerging Technologies, LLC. was called upon to develop a portable tester for a circuit board based power module.

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Emerging Technologies was called upon to develop an In Circuit Serial Programming (ICSP) system for a new line of products for an existing customer.

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Emerging Technologies was called upon to develop software for a customer designed Life Cycle Test System.

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Emerging Technologies was called upon to develop a Sevo Interface for a new customer in the area.

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Emerging Technologies was called upon to add additional functionality to a previously developed Interface for an existing customer.

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Emerging Technologies was called upon to configure a customer purchased data acquisition system and train the users how to configure and operate the system.

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Emerging Technologies was called upon to develop an interface that could facilitate our four related interfaces to the single customer device.

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