0936014033 Allicdata Electronics
Allicdata Part #:

0936014033-ND

Manufacturer Part#:

0936014033

Price: $ 36.32
Product Category:

Uncategorized

Manufacturer: Molex, LLC
Short Description: 24B HV SURF.HOUS. 2LEV B/E M25
More Detail: N/A
DataSheet: 0936014033 datasheet0936014033 Datasheet/PDF
Quantity: 1000
5 +: $ 33.01960
Stock 1000Can Ship Immediately
$ 36.32
Specifications
Series: *
Part Status: Active
Description

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0936014033, also known as H2020-EE-2015-1-RIA, is a European Commission funded project which seeks to develop a novel electromagnetic pump-motor technology which is capable of providing both power and heat for low-temperature applications. The project has many applications in industry, agriculture, and domestic energy production. The primary objectives of the project are to capitalise on the potential of ‘natural’ electromagnetic technologies to provide an efficient, cost-effective and sustainable energy source for low-temperature applications.

The project has three main components: the development of a novel electromagnetic pumping-motor technology; the development of an energy storage and conditioning system; and the development of a remote control system for efficient energy transfer and utilisation. The pump-motor technology is based on an ingenious combination of existing electromagnetic motor and pump technologies and will provide a continuous flow of energy to the user. The energy storage and conditioning system will facilitate the transfer of energy from the motor to the user. The remote control system will allow the user to regulate the flow of energy to their application.

The overall concept behind the 0936014033 project is to develop what is known as an ‘Energy Pool’ – an integrated system in which energy can be generated, stored, conditioned and utilised, with the ultimate goal of providing an efficient and cost-effective energy source for low-temperature applications. This system will make use of several technologies, including those developed during the project.

The pump-motor technology involves the use of a novel device to generate and control electromagnetic energy, allowing a continuous flow of energy to be delivered to the user. This device is designed to perform in two distinct modes: a kinetic energy mode, and a reactive energy mode. The kinetic energy mode utilises the kinetic energy of the electromagnetic field to generate a pumping effect, creating a continuous flow of energy. The reactive energy mode is used to control the output voltage in order to ensure maximum efficiency. This ensures that the device will be able to deliver a steady flow of energy to the user.

The energy storage and conditioning system will enable the user to store the energy generated by the pump-motor technology, as well as condition it to the user’s needs. This system will be made up of several components, including an energy storage device, an energy conditioning device, and a control system. The energy storage device will enable the user to store the energy generated by the pump-motor, while the energy conditioning device will ensure that the energy is conditioned to the user’s needs. The control system will allow the user to regulate the flow of energy to their application.

The final component of the 0936014033 project is the development of a remote control system which will allow the user to regulate the flow of energy to their application. This will enable the user to adjust the amount of energy delivered to their application, as well as monitor its performance. This system will be designed to be user-friendly and will feature an easy-to-use interface.

In conclusion, the 0936014033 project seeks to develop a novel electromagnetic pump-motor technology capable of providing both power and heat for low-temperature applications. It will utilise an ingenious combination of existing technologies to create a ‘Energy Pool’, in which energy can be generated, stored, conditioned and utilised. Additionally, a remote control system will enable the user to regulate the flow of energy to their application. This project will provide an efficient, cost-effective and sustainable energy source for low-temperature applications.

The specific data is subject to PDF, and the above content is for reference

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