HARNESS FOR ELECTRICAL CONNECTION BETWEEN A PLURALITY OF DEVICES
20170229210 · 2017-08-10
Inventors
Cpc classification
H01B9/02
ELECTRICITY
H01B11/14
ELECTRICITY
International classification
H01B7/00
ELECTRICITY
H01B11/14
ELECTRICITY
Abstract
A harness for electrical connection between a plurality of devices, the harness including a bundle formed by one or more electric cables surrounded by a protective sheath. The harness includes a plurality of electromagnetic attenuator rods or cords extending along the bundle inside the protective sheath, each electromagnetic attenuator rod or cord being made at least in part out of a magnetic material, the rods or cords separating the electric cables of the bundle or being interposed between the bundle and the protective sheath.
Claims
1. A harness for electrical connection between a plurality of devices, said harness comprising: a bundle made up of one or more electric cables surrounded by a protective sheath, and at least one or more electromagnetic attenuator rods or cords extending along the bundle inside the protective sheath, each electromagnetic attenuator rod or cord being made at least in part out of a magnetic material, wherein the rods or cords separate the electric cables of the bundle or are interposed between the bundle and the protective sheath.
2. A harness according to claim 1, wherein the bundle comprises twisted electric cables, and wherein the rods or cores are twisted at a pitch similar to a twist pitch of the electric cables.
3. A harness according to claim 1, wherein each electromagnetic attenuator rod or cord is made out of a composite material comprising a flexible matrix material filled with particles of at least one magnetic material.
4. An aircraft including at least one harness according to claims 1, said at least one harness being for transferring power between a source of electricity and a load.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Other characteristics and advantages of the invention appear from the following description of particular embodiments of the invention given as non-limiting examples and with reference to the accompanying drawings, in which:
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF AN EMBODIMENT
[0026] The present invention proposes a harness suitable for use particularly, but not exclusively, for transmitting energy and/or information (measurement, control, etc. signals) between electrical or electronic devices on board aircraft. The harness of the invention is particularly suitable for transferring power between a source of electricity and a load (e.g. an actuator). As explained below in detail, the structure of the harness of the invention is remarkable in that it serves to increase the mutual induction of the bundle of the harness in common mode or in differential mode by the presence of one or more electromagnetic attenuator elements.
[0027] A harness 100 in compliance with an embodiment of the invention is shown in
[0028] In accordance with the invention, the harness 100 also includes electromagnetic attenuator elements 130 that are constituted in this example by three rods or cords 131 made up at least in part out of a magnetic material and interposed between the central bundle 110 and the shielding sheath 120. When the electric cables of the bundle are not twisted, as in
[0029]
[0030]
[0031] In the harnesses 100, 200, and 300, the electromagnetic attenuator element(s) is/are arranged around the cables of the central bundle constituting the live wires and they serve mainly to limit common mode disturbances. Since the electromagnetic attenuator elements are made at least in part out of magnetic material, they are suitable for filtering all disturbances generated in common mode in the central bundle by increasing the mutual induction thereof. Nevertheless, when electromagnetic attenuator elements are used that are in the form of cords presenting a section that is significantly smaller than the sections of the electric cables of the bundle, then filtering takes place more probably on disturbances conducted in differential mode.
[0032]
[0033] In this embodiment, the harness also has electromagnetic attenuator elements 430 constituted by four rods or cords 431 made at least in part out of a magnetic material and separating the electric cables 411 of the central bundle 410. When the electric cables of the bundle are twisted, as shown in
[0034] When the electric cables of the central bundle are not twisted, as shown in
[0035] In a variant embodiment, the cables of the central bundle may also be separated with a one-piece core as shown in
[0036] In harnesses 400, 500, and 600 the electromagnetic attenuator element(s) is/are arranged around the cables of the central bundle constituting the live wires and they serve mainly to limit disturbances in differential mode. Since the electromagnetic attenuator elements are made at least in part out of magnetic material, they are suitable for filtering all of the disturbances generated in differential mode in the central bundle by increasing its mutual induction.
[0037] In accordance with the invention, the above-described electromagnetic attenuator elements, i.e. the cords 131, 231, 431, and 531, the tube 331, and the one-piece core 631 are made from a material that is magnetic or partially magnetic. Among suitable magnetic materials, mention may be made in particular of iron, cobalt, nickel, manganese, and ferrites. Nevertheless, in order to conserve the initial flexibility of the harness, the electromagnetic attenuator elements are preferably made out of a composite material comprising a matrix made of flexible and/or pliable material filled with particles of one or more magnetic materials. By way of example, the above-described electromagnetic attenuator elements may be made using a polymer matrix of poly-tetrafluoroethylene (PTFE or Teflon™) type, of ethylene-tetrafluoroethylene (ETFE or Tefzel™) type, of perfluoroalkoxy (PFA or tetrafluoroethylene) type, or of fluorinated ethylene propylene copolymer (FEP or tetrafluoroethylene or perfluoropropylene) type filled with a powder of particles of one or more magnetic materials selected in particular from iron, cobalt, nickel, manganese, and ferrites. Such a composite material having 85% by weight of magnetic material filler makes it possible to reach performance of about 50% for the function of filtering disturbances in the harness. Such materials have been developed in particular by the supplier L.E.A.D. under the name “MUSORB”. Nevertheless, the proportion of magnetic filler in the composite material is defined as a function of the application and of the desired filtering performance. The composite material constituting the electromagnetic attenuator elements may also be made using a foam, such as a polyurethane or Styrofoam™ foam filled with particles of magnetic material(s). Various technologies can be used for shaping electromagnetic attenuator elements. When using cords or rods or tubes, it is possible for example to form these elements by die extrusion. The tubes may also be shaped by winding a tape of filled polymer or from a sheath. When a one-piece core is used, like the above-described core 430 it may be made by molding.
[0038] Any of the embodiments shown in