EP3662496A1 - Dispositif électromécanique intégré - Google Patents

Dispositif électromécanique intégré

Info

Publication number
EP3662496A1
EP3662496A1 EP18759404.9A EP18759404A EP3662496A1 EP 3662496 A1 EP3662496 A1 EP 3662496A1 EP 18759404 A EP18759404 A EP 18759404A EP 3662496 A1 EP3662496 A1 EP 3662496A1
Authority
EP
European Patent Office
Prior art keywords
variable position
control circuit
contact
position contact
conductive terminal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP18759404.9A
Other languages
German (de)
English (en)
Other versions
EP3662496B1 (fr
Inventor
Riccardo Alberto MATTIOLI
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hike Srl
Original Assignee
Hike Srl
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hike Srl filed Critical Hike Srl
Publication of EP3662496A1 publication Critical patent/EP3662496A1/fr
Application granted granted Critical
Publication of EP3662496B1 publication Critical patent/EP3662496B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H50/00Details of electromagnetic relays
    • H01H50/54Contact arrangements
    • H01H50/546Contact arrangements for contactors having bridging contacts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H50/00Details of electromagnetic relays
    • H01H50/14Terminal arrangements

Definitions

  • the present invention relates to an electromechanical device, particularly for highly integrated electrical appliances.
  • the invention concerns an integrated electromechanical device with back-to-back dual-mounting.
  • the current electromechanical devices are produced with the concept of being assembled on a circuit board; this, unlike the present invention, involves making larger circuit boards and, in the case of multiple, overlapping circuit boards, requires the use of connectors that make electrical connections between at least two circuit boards with an additional increase in space and cost.
  • One purpose of the present invention is to propose an integrated electromechanical device that may be used in all products that have multiple circuit boards, or a single circuit board shaped in such a way as to create an overlapping of two areas, within which the electromechanical device may be interposed.
  • Such structure allows further integration of the products, for example, by reducing the areas of the circuit boards that make up such products, for example by eliminating the internal connection connectors between the various electronic boards and consequently also the installation areas thereof.
  • the aforementioned and other purposes and advantages are achieved, according to an aspect of the invention, via an integrated electromechanical device having the features defined in claim 1.
  • Preferred implementations of the invention are defined in the dependent claims, which are intended as an integral part of the present description.
  • the present invention concerns an integrated electromechanical device comprising a support body including a plurality of sides, a first fixed contact, a first variable position contact, a second variable position contact, a first control circuit provided to control the first variable position contact and a second control circuit provided to control the second variable position contact.
  • the first variable position contact and the second variable position contact in a predetermined conduction condition, are electrically connected to each other via said first fixed contact and, in a predetermined isolation condition, are not electrically connected to each other.
  • the integrated electromechanical device further comprises at least one first conductive terminal and at least one second conductive terminal disposed on, or exiting from, at least one side of the support body.
  • the at least one first conductive terminal and the at least one second conductive terminal each comprise a respective connecting end region, distal with respect to the support body, which are disposed respectively one on a first connection plane and the other on a second connection plane, different and parallel to said first connection plane.
  • At least one among said first conductive terminal and said at least one second conductive terminal is a terminal connected to the first variable position contact or to the second variable position contact. Or, at least one among said at least one first conductive terminal and said at least one second conductive terminal is a terminal of the first control circuit or of the second control circuit.
  • first conductive terminal and the second conductive terminal may be respectively arranged to be connected directly one to a first circuit board and the other to a second circuit board or to a connector or a cable. Or rather, the first conductive terminal and the second conductive terminal may be arranged respectively to be connected one to a first area and the other to a second area of a flexible circuit board.
  • the aforementioned electromechanical device includes at least one variable position contact and a respective control circuit of the variable position contact, it is possible to create electronic products also composed of several circuit boards, even without the aid of dedicated internal connectors, to connect, for example, generic electronic signals or power supplies.
  • figure 1 shows a side view of a first variable position contact Ml and a control circuit 138, which allow for back-to-back mounting of two circuit boards;
  • figure 2 shows an internal view of an embodiment of the integrated electromechanical device
  • figure 3 shows a detailed view of the variable position contacts and fixed contacts of the integrated electromechanical device shown in figure 2;
  • figure 4 is a perspective view by way of example of an electromechanical device integrated according to the invention. Detailed Description
  • the integrated electromechanical device 1 comprises a support body 100 which includes a plurality of sides 301, 306, a first fixed contact 158, a first variable position contact Ml, a second variable position contact M2, a first control circuit 138 arranged to control the first variable position contact Ml and a second control circuit 138' arranged to control the second variable position contact M2.
  • the first variable position contact Ml and the second variable position contact M2 in a predetermined conduction condition, are electrically connected to each other via said first fixed contact 158 and, in a predetermined isolation condition, are not electrically connected to each other.
  • the transition from the conduction condition to the isolation condition, and vice versa, is controlled by said first control circuit 138 and/or said second control circuit 138'.
  • the integrated electromechanical device 1 further comprises at least one first conductive terminal 1 10 and at least one second conductive terminal 1 12 disposed on, or exiting from, at least one side 301, 306 of the support body 100.
  • the at least one conductive first terminal 110 and the at least one conductive second terminal 1 12 may exit from two opposite sides of the support body.
  • the at least one first conductive terminal 110 and the at least one second conductive terminal 1 12 each comprise a respective connecting end region 100A, 1 12A, distal with respect to the support body 100, which are disposed respectively one on a first connection plane xl and the other on a second connection plane x2, different and parallel to said first connection plane xl .
  • At least one among said first conductive terminal 110 and said at least one second conductive terminal 1 12 is a terminal connected to the first variable position contact Ml or to the second variable position contact M2, or at least one among said at least one first conductive terminal 1 10 and said at least one second conductive terminal 1 12 is a terminal of the first control circuit 138 or of the second control circuit 138'.
  • there are two first conductive terminals 110 and each of them may be a conductive terminal of a control circuit 138, or a variable position contact terminal Ml .
  • the at least one first conductive terminal 1 10 and the at least one second conductive terminal 1 12 may be arranged respectively to be connected directly one to a first circuit board 201 and the other to a second circuit board 202 or to a respective connector or cable, or the first conductive terminal 110 and the second conductive terminal 112 may be respectively arranged to be connected one to a first area al of a flexible circuit board 203 and the other to a second area a2 of the same flexible circuit board 203.
  • said connector or cable may be soldered or plugged directly into the conductive terminal 112.
  • the at least one conductive terminal 110 and the at least one second conductive terminal 112 are connected, one to a first circuit board 201 and the other to a second circuit board 202.
  • Flexible circuit boards become very useful in the case of circuit boards with complex geometries that normal circuit boards could not satisfy.
  • Flexible circuit boards may, for example, be made of graphene. It is therefore evident that this device creates a structure with one or more circuit boards having a distance d between them.
  • first conductive terminal 1 10 and the second conductive terminal 1 12 may be connected to circuit boards by soldering.
  • the terminals that exit from the sides of the main body 100 may, by way of example, be pins 1 12 of a substantially linear shape, of which one end thereof fits directly into the main body 100 and the other end, intended for soldering, may be linear or bent substantially by about 90 degrees with respect to the direction of exit from the main body 100 or may be soldered directly to respective connectors or cables of appropriate size.
  • the first conductive terminals 1 10 that have an end intended for soldering that is substantially bent by about 90 degrees, may be connected to.
  • the first connection plane xl may be disposed at a distance dl from the main body 100, according to a first direction vl
  • the second connection plane x2 is disposed at a distance d2 from the main body 100, according to a second direction v2 opposite to said direction vl .
  • the integrated electromechanical device may comprise a plurality of first conductive terminals 110 and/or a plurality of second conductive terminals 1 12.
  • the electromechanical device may comprise a second fixed contact 158', a third variable position contact M3 and a fourth variable position contact M4, a third control circuit 138" provided to control said third variable position contact M3 and a fourth control circuit 138"' provided to control said fourth variable position contact M4.
  • the second fixed contact 158' may be arranged so that the third variable position contact M3 and the fourth variable position contact M4, in a predetermined conduction condition, are electrically connected to each other via said second fixed contact 158' and that, in a predetermined isolation condition, they are not electrically connected to each other.
  • the transition from the conduction condition to the isolation condition, and vice versa, is controlled by the third control circuit 138" and/or the fourth control circuit 138"'.
  • the integrated electromechanical device may comprise a third fixed contact 158" and a fourth fixed contact 158"'.
  • the third fixed contact 158" may be arranged so that the first variable position contact Ml and the third variable position contact M3, in a predetermined conduction condition, are electrically connected to each other via said third fixed contact 158" and, in a predetermined isolation condition, are not electrically connected to each other, the transition from the conduction condition to the isolation condition, and vice versa, being controlled by the first control circuit 138 and/or the third control circuit 138".
  • the fourth fixed contact 158"' may be arranged so that the second variable position contact M2 and the fourth variable position contact M4, in a predetermined conduction condition, are electrically connected to each other via said fourth fixed contact 158"' and, in a predetermined isolation condition, are not electrically connected to each other, the transition from the conduction condition to the isolation condition, and vice versa, being controlled by the second control circuit 138' and/or the fourth control circuit 138"'.
  • the third fixed contact 158" and the fourth fixed contact 158"' may allow the second variable position contact M2 and the third variable position contact M3, in a predetermined conduction condition, to be electrically connected to each other via said third fixed contact 158" and, in a predetermined isolation condition, not to be electrically connected to each other, the transition from the conduction condition to the isolation condition, and vice versa, being controlled by the second control circuit 138' and/or the third control circuit 138".
  • the third fixed contact 158" and the fourth fixed contact 158"' may also allow for the first variable position contact Ml and the fourth variable position contact M4, in a predetermined conduction condition, to be electrically connected to each other via said fourth fixed contact 158'" and that, in a predetermined isolation condition, they are not electrically connected to each other, the transition from the conduction condition to the isolation condition, and vice versa, being controlled by the first control circuit 138 and/or the fourth control circuit 138"'.
  • the second fixed contact 158' and the third fixed contact 158" may essentially form an x-shape.
  • the second fixed contact 158' and the third fixed contact 158" may be substantially parallel.
  • the electromechanical device may comprise the first variable position contact Ml, the second variable position contact M2, the third variable position contact M3, the first fixed contact 158 and the third fixed contact 158", so that it may perform the function of a switch.
  • the support body 100 may also include at least one protrusion 350 intended to be used as a centering element to align said at least one circuit board 201, 202 with said electromechanical device 1 , or to fix a minimum distance d between said support body 100 and at least one circuit board 201, 202, 203.
  • each control circuit may control a single moving contact, independently of the other.
  • a control circuit may, by way of example, include, among other mechanical components, at least one coil. Still by way of example, the transition from the conduction condition to the isolation condition may be made by attracting or repelling the respective moving contact by means of a coil that may be supplied with a reference potential. As shown in detail in figure 4, the support body 100 may have such a shape whereby the terminals 112 may be arranged on, or exit from, a surface 302 or another surface 302' which is parallel to the surface 302 at a distance A.
  • the support body 100 may have a shape such that the terminals 110 may be disposed on, or exit from, a surface 301 or another surface 30 ⁇ parallel to the surface 30 ⁇ at a distance B.
  • the support body 100 may also have C-bevels on one or more corners of the support body.
  • the fixed contacts 158, 158"' may include a plurality of reinforcing contacts Fl , F4 and CI , C4 and the variable position contacts Ml, M4 may also include a plurality of reinforcing contacts Tl, T4 so that the contact area between a variable position contact and the respective fixed contact is such as to ensure a predetermined value of electrical current through such contacts.
  • all fixed contacts 158, 158"' and all the movable contacts Ml, M4 may be arranged in a region of the integrated electromechanical device 1 , which is between two parallel planes x3, x4.

Landscapes

  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Micromachines (AREA)
  • Coupling Device And Connection With Printed Circuit (AREA)

Abstract

L'invention concerne un dispositif électromécanique intégré (1) comprenant : - un corps de support (100), un premier contact fixe (158), un premier et un second contact de position variable (M1, M2), un premier et un second circuit de commande (138, 138'); le premier et le second contact de position variable (M1, M2), dans un état de conduction, sont reliés l'un à l'autre au moyen du premier contact fixe (158) et, dans une condition d'isolation, ne sont pas électroconnectés l'un à l'autre; la transition entre les deux états est commandée par le premier et/ou par le second circuit de commande (138, 138'); - au moins une première et une seconde borne conductrice (110, 112) comprenant chacune une région d'extrémité (100A, 112A) une disposée sur un premier plan (x1) et l'autre sur un second plan (x2) différent et parallèle au premier plan (x1); au moins l'une parmi les première et seconde bornes conductrices (110, 112) est une borne connectée au premier ou second contact de position variable (M1, M2), ou est une borne du premier ou du second circuit de commande (138, 138').
EP18759404.9A 2017-08-01 2018-07-31 Dispositif électromécanique intégré Active EP3662496B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT102017000088417A IT201700088417A1 (it) 2017-08-01 2017-08-01 Dispositivo elettromeccanico integrato.
PCT/IB2018/055702 WO2019025952A1 (fr) 2017-08-01 2018-07-31 Dispositif électromécanique intégré

Publications (2)

Publication Number Publication Date
EP3662496A1 true EP3662496A1 (fr) 2020-06-10
EP3662496B1 EP3662496B1 (fr) 2021-05-26

Family

ID=61005957

Family Applications (1)

Application Number Title Priority Date Filing Date
EP18759404.9A Active EP3662496B1 (fr) 2017-08-01 2018-07-31 Dispositif électromécanique intégré

Country Status (4)

Country Link
EP (1) EP3662496B1 (fr)
CN (1) CN111448636B (fr)
IT (1) IT201700088417A1 (fr)
WO (1) WO2019025952A1 (fr)

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3808566A (en) * 1973-05-24 1974-04-30 Gen Dynamics Corp Switching system
US5216396A (en) * 1991-09-13 1993-06-01 Eaton Corporation Switching relay
JP2562346Y2 (ja) * 1992-11-12 1998-02-10 ホシデン株式会社 コントロールスイッチ
AUPO821697A0 (en) * 1997-07-25 1997-08-14 Alcatel Alsthom Compagnie Generale D'electricite Miniature connector array
GB0414587D0 (en) * 2004-06-30 2004-08-04 Eja Ltd Improvements in or relating to switch contacts
FR2880729B1 (fr) * 2005-01-10 2009-02-27 Schneider Electric Ind Sas Microsysteme a commande electromagnetique
ITMI20080416U1 (it) * 2008-12-16 2010-06-17 Abb Spa Dispositivo di commutazione elettrica per circuiti di bassa tensione
CN201352619Y (zh) * 2009-01-16 2009-11-25 番禺得意精密电子工业有限公司 电连接器
FR2981192B1 (fr) * 2011-10-10 2013-11-15 Schneider Electric Ind Sas Dispositif de transcription d'un position mecanique en un etat electrique
FR3014595B1 (fr) * 2013-12-09 2016-02-05 Schneider Electric Ind Sas Dispositif de commutation electrique
CN206179783U (zh) * 2016-11-24 2017-05-17 上海华欣民福自控设备有限公司 一种多路继电器板

Also Published As

Publication number Publication date
EP3662496B1 (fr) 2021-05-26
CN111448636B (zh) 2022-03-15
IT201700088417A1 (it) 2019-02-01
CN111448636A (zh) 2020-07-24
WO2019025952A1 (fr) 2019-02-07

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