WO2003103351A1 - Fixing means - Google Patents

Fixing means Download PDF

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Publication number
WO2003103351A1
WO2003103351A1 PCT/FR2003/001581 FR0301581W WO03103351A1 WO 2003103351 A1 WO2003103351 A1 WO 2003103351A1 FR 0301581 W FR0301581 W FR 0301581W WO 03103351 A1 WO03103351 A1 WO 03103351A1
Authority
WO
WIPO (PCT)
Prior art keywords
fixing means
means according
passage
shock absorber
traditional
Prior art date
Application number
PCT/FR2003/001581
Other languages
French (fr)
Other versions
WO2003103351B1 (en
Inventor
Bruno Coissac
Original Assignee
Bruno Coissac
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
Priority claimed from FR0206646A external-priority patent/FR2840410B1/en
Priority claimed from FR0209853A external-priority patent/FR2843270A1/en
Priority claimed from FR0213080A external-priority patent/FR2843271A1/en
Application filed by Bruno Coissac filed Critical Bruno Coissac
Priority to AU2003255603A priority Critical patent/AU2003255603A1/en
Priority to AU2003255655A priority patent/AU2003255655A1/en
Priority to EP03787836A priority patent/EP1532853A1/en
Priority to CA2490498A priority patent/CA2490498C/en
Priority to US10/519,566 priority patent/US20060011799A1/en
Priority to PCT/FR2003/001731 priority patent/WO2004017694A1/en
Publication of WO2003103351A1 publication Critical patent/WO2003103351A1/en
Publication of WO2003103351B1 publication Critical patent/WO2003103351B1/en

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Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R1/00Details of instruments or arrangements of the types included in groups G01R5/00 - G01R13/00 and G01R31/00
    • G01R1/02General constructional details
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/50Testing of electric apparatus, lines, cables or components for short-circuits, continuity, leakage current or incorrect line connections
    • G01R31/58Testing of lines, cables or conductors
    • G01R31/60Identification of wires in a multicore cable
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1417Mounting supporting structure in casing or on frame or rack having securing means for mounting boards, plates or wiring boards
    • H05K7/142Spacers not being card guides

Definitions

  • the present invention relates to a damper fixing means for components and support boards for printed circuit boards and components.
  • the printed circuit and component support cards are generally secured to the housing or to the system which receives them by rigid fixing means.
  • the damping attachment means or damping complement for fixing means makes it possible to reduce the risks of breakdown for fixed, mobile or likely to be displaced systems which may be exposed to vibrations, shocks, deformations and / or thermal variations.
  • the damping fastening means according to the present invention comprises a flexible part between its ends, the latter possibly being each provided with an orifice and / or with a fixing means, whether traditional, such as for example an internal thread or exterior, or non-traditional. This orifice allows the passage and installation of a traditional or non-traditional fixing means as well as the passage of a handling and tightening tool.
  • one or more housings can be made to accommodate and hold one or more traditional fixing means such as, for example, nuts and bolts, or non-traditional.
  • the walls of this housing can be provided to separate from each other or from each other when a fixing means is installed in the housing.
  • the orifices, fixing means and housings placed at the ends can be made oriented with respect to each other at an angle or in parallel to allow fixing at an angle or in parallel.
  • An internal passage passing through the flexible part, or the flexible part and at least one of the ends, can be made to allow the passage of a manipulation and tightening tool such as for example a screwdriver.
  • This passage may be hollow and / or have walls which deviate from one another or from each other when a handling and tightening tool is introduced.
  • the openings, housings and interior passages can be made communicating to facilitate their use.
  • a simple embodiment may use a tongue made of flexible material, usefully perforated twice. These two useful holes or orifices can be crossed by one or more traditional or non-fixing means such as for example a screw, a bolt.
  • a more elaborate embodiment uses a flexible material such as, for example, non-limiting molded polyurethane of shore 70 hardness. Whatever the material used, care will be taken to combine the factors of impact strength, hardness, dimensions and density for - depending on the weight of components and / or support card - achieving an appropriate balance between firm hold and total flexibility.
  • the flexible part located between the ends can be made of an electrically conductive material, which allows for example the ground connections.
  • FIG. 1 represents the fixing means according to the present invention made of a flexible material such as for example molded polyurethane of shore hardness 70, comprising a flexible part (PS) between its ends (EX). Two of its ends (EX) each have an orifice (O).
  • PS flexible part
  • EX flexible part
  • O orifice
  • the open cylinder shape allows the passage and installation of additional fixing means whether traditional or non-traditional, as well as the passage of a handling and tightening tool.
  • Figure 2 shows in a transparent view the fixing means according to the present invention made of a flexible material which may be PU 70.
  • a flexible part located between its ends (EX). At each of two ends (EX) there is an orifice (O) and a housing (L) which are oriented in parallel with each other.
  • the flexible part (PS) is crossed by an interior passage (PI).
  • the openings (O), the housings (L) and the interior passage (PI) are communicating.
  • FIG. 3 shows in a side view the fixing means according to the present invention made of a flexible material which may be PU 70. It comprises a flexible part (PS) between its ends (EX).
  • the ends (EX) are provided with a housing (L) and / or an orifice (O).
  • the housings (L) each have walls (PL) which separate from one another when a fixing means is installed in these housings (L). To do this, the dimensions of these housings (L) are smaller than those of the fixing means intended to be installed there.
  • An interior passage (PI) crosses the flexible part (PS).
  • the openings (O), the housings (L) and the interior passage (PI) are communicating.
  • the orifices (O) are oriented relative to each other either at an angle or in parallel, the two housings (L) are oriented at an angle relative to each other.
  • Figure 4 shows in a transparent view the fixing means according to the present invention made molded in a flexible material, which may be polyurethane in which are inserted during molding two threads one inside (FI) the other outside (FE ).
  • a flexible material which may be polyurethane in which are inserted during molding two threads one inside (FI) the other outside (FE ).
  • Each of the two threads (FI, FE) is located at one end (EX), the flexible part (PS) is located between the ends (EX).
  • Two orifices (O) are oriented in parallel relative to the other and each placed at one end (EX).
  • An internal passage (PI) crosses the flexible part (PS).
  • the walls (PP) of the internal passage (PI) also being made of flexible material deviate from one of the other to the introduction of a tool of larger dimensions than those of the interior passage (PI).
  • the orifices (O), the housing (L) and the interior passage (PI) are communicating.
  • Figure 5 shows in a transparent view the fixing means according to the present invention made of a flexible material which can be molded polyurethane. It has a flexible part (PS) between its ends (EX), four of its ends (EX) each have an orifice (O), three of its ends (EX) each have a housing (L). Two interior passages (PI) cross the flexible part (PS). The openings (O), the housings (L) and the interior passages (PI) are communicating. The orifices (O) and the housings (L) are oriented relative to each other, some at an angle and others in parallel.
  • the damping attachment means for components and support boards of printed circuit and components according to the present invention is particularly intended to reduce the risks of breakdown for electrical and electronic systems.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Structure Of Printed Boards (AREA)
  • Laminated Bodies (AREA)
  • Mounting Of Printed Circuit Boards And The Like (AREA)
  • Shielding Devices Or Components To Electric Or Magnetic Fields (AREA)

Abstract

The invention relates to a damping fixing means for support cards and components for printed circuit boards and components characterised in comprising a flexible piece (PS) between the ends (EX) thereof and arrangements to promote the use thereof. The above is particularly suitable for reducing the risk of breakdown in electrical and electronic systems. The above may be used as a replacement or in addition to traditional or non-traditional fixing means.

Description

MOYEN DE FIXATION FIXING MEANS
La présente invention concerne un moyen de fixation amortisseur pour composants et cartes support de circuit imprimé et de composants.The present invention relates to a damper fixing means for components and support boards for printed circuit boards and components.
Il peut être, selon son mode de réalisation, utilisé en complément ou en remplacement de moyens de fixation traditionnels ou non traditionnels. Les cartes support de circuit imprimé et de composants sont généralement solidarisées au boîtier ou au système qui les accueille par des moyens de fixation rigides.It can be, depending on its embodiment, used in addition to or in replacement of traditional or non-traditional fixing means. The printed circuit and component support cards are generally secured to the housing or to the system which receives them by rigid fixing means.
Ces cartes sont ainsi soumises aux chocs et déformations pouvant être appliqués à ces boîtiers ou systèmes. Des micro coupures peuvent se produire sur les pistes de circuit imprimé du fait que l'énergie d'un choc ou d'une vibration leur est transmise en grande partie, voire entièrement, de même lorsque des variations thermiques provoquent dilatations et contractions du boîtier ou système accueillant la carte support. Si l'on dispose entre la carte support de circuit imprimé et le boîtier ou système un ou des moyens de fixation comportant une partie souple entre leurs extrémités, les chocs et déformations appliqués au boîtier ou système sont amortis et absorbés en grande partie avant d'être transmis à la carte support de circuit imprimé et de composants. Le moyen de fixation amortisseur ou complément amortisseur pour moyen de fixation selon la présente invention permet de réduire les risques de panne pour des systèmes fixes, mobiles ou susceptibles d'être déplacés pouvant être exposés à des vibrations, chocs, déformations et/ou variations thermiques. Le moyen de fixation amortisseur selon la présente invention comporte une partie souple entre ses extrémités, celles-ci pouvant être chacune munie d'un orifice et/ou d'un moyen de fixation qu'il soit traditionnel, comme par exemple un filetage intérieur ou extérieur , ou non traditionnel. Cet orifice permet le passage et l'installation d'un moyen de fixation traditionnel ou non traditionnel ainsi que le passage d'un outil de manipulation et de serrage.These cards are thus subjected to shocks and deformations which can be applied to these boxes or systems. Micro cuts can occur on the printed circuit tracks because the energy of an impact or a vibration is transmitted to them largely, even entirely, also when thermal variations cause dilations and contractions of the case or system accommodating the support card. If there is between the printed circuit support card and the housing or system one or more fixing means comprising a flexible part between their ends, the shocks and deformations applied to the housing or system are largely absorbed and absorbed before be transmitted to the circuit board and component support card. The damping attachment means or damping complement for fixing means according to the present invention makes it possible to reduce the risks of breakdown for fixed, mobile or likely to be displaced systems which may be exposed to vibrations, shocks, deformations and / or thermal variations. . The damping fastening means according to the present invention comprises a flexible part between its ends, the latter possibly being each provided with an orifice and / or with a fixing means, whether traditional, such as for example an internal thread or exterior, or non-traditional. This orifice allows the passage and installation of a traditional or non-traditional fixing means as well as the passage of a handling and tightening tool.
A chacune des extrémités du moyen de fixation selon la présente invention peuvent être pratiqués un ou des logements pour accueillir et maintenir un ou des moyens de fixation traditionnels comme par exemple écrous et boulons, ou non traditionnels.At each end of the fixing means according to the present invention, one or more housings can be made to accommodate and hold one or more traditional fixing means such as, for example, nuts and bolts, or non-traditional.
Les parois de ce logement peuvent être prévues pour s'écarter l'une de l'autre ou les unes des autres lorsqu'un moyen de fixation est installé dans le logement.The walls of this housing can be provided to separate from each other or from each other when a fixing means is installed in the housing.
Les orifices, moyens de fixation et logements placés aux extrémités peuvent être réalisés orientés les uns par rapport aux autres en angle ou en parallèle pour permettre la fixation en angle ou en parallèle. Un passage intérieur traversant la partie souple, ou la partie souple et au moins une des extrémités, peut être pratiqué pour permettre le passage d'un outil de manipulation et de serrage comme par exemple un tournevis. Ce passage peut être creux et/ou comporter des parois qui s'écartent l'une de l'autre ou les unes des autres à l'introduction d'un outil de manipulation et de serrage.The orifices, fixing means and housings placed at the ends can be made oriented with respect to each other at an angle or in parallel to allow fixing at an angle or in parallel. An internal passage passing through the flexible part, or the flexible part and at least one of the ends, can be made to allow the passage of a manipulation and tightening tool such as for example a screwdriver. This passage may be hollow and / or have walls which deviate from one another or from each other when a handling and tightening tool is introduced.
Les orifices, logements et passages intérieurs peuvent être réalisés communicants pour en faciliter l'utilisation.The openings, housings and interior passages can be made communicating to facilitate their use.
Un mode de réalisation simple peut faire appel à une languette en matière souple utilement trouée deux fois. Ces deux trous utiles ou orifices peuvent être traversés par un ou des moyens de fixation traditionnels ou non comme par exemple une vis, un boulon.A simple embodiment may use a tongue made of flexible material, usefully perforated twice. These two useful holes or orifices can be crossed by one or more traditional or non-fixing means such as for example a screw, a bolt.
Un mode de réalisation plus élaboré utilise une matière souple comme par exemple non limitatif du polyuréthane moulé de dureté shore 70. Quelle que soit la matière utilisée, on prendra soin de combiner les facteurs de résilience, dureté, dimensions et densité pour - en fonction du poids des composants et/ou de la carte support - obtenir un équilibre approprié entre maintien ferme et souplesse totale.A more elaborate embodiment uses a flexible material such as, for example, non-limiting molded polyurethane of shore 70 hardness. Whatever the material used, care will be taken to combine the factors of impact strength, hardness, dimensions and density for - depending on the weight of components and / or support card - achieving an appropriate balance between firm hold and total flexibility.
La partie souple située entre les extrémités peut être réalisée dans une matière conductrice électriquement, ce qui permet par exemple les liaisons de masse.The flexible part located between the ends can be made of an electrically conductive material, which allows for example the ground connections.
Lorsque la partie souple est réalisée dans une matière non conductrice électriquement il peut être utile de joindre une partie souple conductrice électriquement comme par exemple un câble souple reliant deux extrémités du moyen de fixation amortisseur selon la présente invention. Les dessins annexés illustrent l'invention La figure 1 représente le moyen de fixation selon la présente invention réalisé dans une matière souple comme par exemple du polyuréthane moulé de dureté shore 70, comportant une partie souple (PS) entre ses extrémités (EX). Deux de ses extrémités (EX) comportent chacune un orifice (O). La forme en cylindre ouvert permet le passage et l'installation de moyens De fixation additionnels qu'ils soient traditionnels ou non traditionnels, ainsi Que le passage d'un outil de manipulation et de serrage. La figure 2 représente par une vue en transparence le moyen de fixation selon la présente invention réalisé dans une matière souple pouvant être du PU 70. Il comporte une partie souple (PS) située entre ses extrémités (EX). A chacune de deux extrémités (EX) se trouvent un orifice (O) et un logement (L) qui sont orientés en parallèle les uns par rapport aux autres. La partie souple (PS) est traversée par un passage intérieur (PI). Les orifices (O), les logements (L) et le passage intérieur (PI) sont communicants.When the flexible part is made of an electrically non-conductive material it may be useful to join a flexible electrically conductive part such as for example a flexible cable connecting two ends of the damping fixing means according to the present invention. The accompanying drawings illustrate the invention. FIG. 1 represents the fixing means according to the present invention made of a flexible material such as for example molded polyurethane of shore hardness 70, comprising a flexible part (PS) between its ends (EX). Two of its ends (EX) each have an orifice (O). The open cylinder shape allows the passage and installation of additional fixing means whether traditional or non-traditional, as well as the passage of a handling and tightening tool. Figure 2 shows in a transparent view the fixing means according to the present invention made of a flexible material which may be PU 70. It comprises a flexible part (PS) located between its ends (EX). At each of two ends (EX) there is an orifice (O) and a housing (L) which are oriented in parallel with each other. The flexible part (PS) is crossed by an interior passage (PI). The openings (O), the housings (L) and the interior passage (PI) are communicating.
La figure 3 représente par une vue de profil le moyen de fixation selon la présente invention réalisé dans une matière souple pouvant être du PU 70. Il comporte une partie souple (PS) entre ses extrémités (EX). Les extrémités (EX) sont pourvues d'un logement (L) et/ou d'un orifice (O). Les logements (L) comportent chacun des parois (PL) qui s'écartent les unes des autres lorsqu'un moyen de fixation est installé dans ces logements (L). Pour ce faire les dimensions de ces logements (L) sont plus petites que celles des moyens de fixation destinés à y être installé. Un passage intérieur (PI) traverse la partie souple (PS). Les orifices (O), les logements (L) et le passage intérieur (PI) sont communicants. Les orifices (O) sont orientés les uns par rapport aux autres soit en angle soit en parallèle, les deux logements (L) sont orientés en angle l'un par rapport à l'autre.Figure 3 shows in a side view the fixing means according to the present invention made of a flexible material which may be PU 70. It comprises a flexible part (PS) between its ends (EX). The ends (EX) are provided with a housing (L) and / or an orifice (O). The housings (L) each have walls (PL) which separate from one another when a fixing means is installed in these housings (L). To do this, the dimensions of these housings (L) are smaller than those of the fixing means intended to be installed there. An interior passage (PI) crosses the flexible part (PS). The openings (O), the housings (L) and the interior passage (PI) are communicating. The orifices (O) are oriented relative to each other either at an angle or in parallel, the two housings (L) are oriented at an angle relative to each other.
La figure 4 représente par une vue en transparence le moyen de fixation selon la présente invention réalisé moulé dans une matière souple, pouvant être du polyuréthane dans lequel sont insérés lors du moulage deux filetages l'un intérieur (FI) l'autre extérieur (FE). Chacun des deux filetages (FI ,FE) est situé a une extrémité (EX), la partie souple (PS) est située entre les extrémités (EX).Deux orifices (O) sont orientés en parallèle l'un par rapport à l'autre et placés chacun à une extrémité (EX).Un passage intérieur (PI) traverse la partie souple (PS).Les parois (PP) du passage intérieur (PI) étant également en matière souple s'écartent l'une de l'autre à l'introduction d'un outil de dimensions plus importantes que celles du passage intérieur (PI).Les orifices (O), le logement (L) et le passage intérieur (PI) sont communicants.Figure 4 shows in a transparent view the fixing means according to the present invention made molded in a flexible material, which may be polyurethane in which are inserted during molding two threads one inside (FI) the other outside (FE ). Each of the two threads (FI, FE) is located at one end (EX), the flexible part (PS) is located between the ends (EX). Two orifices (O) are oriented in parallel relative to the other and each placed at one end (EX). An internal passage (PI) crosses the flexible part (PS). The walls (PP) of the internal passage (PI) also being made of flexible material deviate from one of the other to the introduction of a tool of larger dimensions than those of the interior passage (PI). The orifices (O), the housing (L) and the interior passage (PI) are communicating.
La figure 5 représente par une vue en transparence le moyen de fixation selon la présente invention réalisé dans une matière souple pouvant être du polyuréthane moulé. Il comporte une partie souple (PS) entre ses extrémités (EX), quatre de ses extrémités (EX) comportent chacune un orifice (O), trois de ses extrémités (EX) comportent chacune un logement (L). Deux passages intérieurs (PI) traversent la partie souple (PS). Les orifices (O), les logements (L) et les passages intérieurs (PI) sont communicants. Les orifices (O) et les logements (L) sont orientés les uns par rapport aux autres pour certains en angle et pour d'autres en parallèle.Figure 5 shows in a transparent view the fixing means according to the present invention made of a flexible material which can be molded polyurethane. It has a flexible part (PS) between its ends (EX), four of its ends (EX) each have an orifice (O), three of its ends (EX) each have a housing (L). Two interior passages (PI) cross the flexible part (PS). The openings (O), the housings (L) and the interior passages (PI) are communicating. The orifices (O) and the housings (L) are oriented relative to each other, some at an angle and others in parallel.
Le moyen de fixation amortisseur pour composants et cartes support de circuit imprimé et de composants selon la présente invention est particulièrement destiné à réduire les risques de panne pour les systèmes électriques et électroniques. The damping attachment means for components and support boards of printed circuit and components according to the present invention is particularly intended to reduce the risks of breakdown for electrical and electronic systems.

Claims

REVENDICATIONS
1) Moyen de fixation amortisseur pour composants et carte support de circuit imprimé et de composants caractérisé en ce qu'il comporte une partie souple (PS) entre ses extrémités (EX).1) Damper fixing means for components and support card for printed circuit and components characterized in that it comprises a flexible part (PS) between its ends (EX).
2) Moyen de fixation amortisseur selon la revendication 1 caractérisé en ce qu'il comporte à au moins une de ses extrémités (EX) un orifice (O) permettant le passage et l'installation d'un moyen de fixation traditionnel ou non traditionnel ainsi que le passage d'un outil de manipulation et de serrage.2) shock absorber fixing means according to claim 1 characterized in that it comprises at least one of its ends (EX) an orifice (O) allowing the passage and installation of a traditional or non-traditional fixing means as well than the passage of a handling and tightening tool.
3) Moyen de fixation amortisseur selon l'une quelconque des revendications précédentes caractérisé en ce qu'il comporte à au moins une de ses extrémités (EX) un filetage intérieur (FI) ou extérieur (FE).3) shock absorber fixing means according to any one of the preceding claims, characterized in that it comprises at least one of its ends (EX) an internal (FI) or external (FE) thread.
4) Moyen de fixation amortisseur selon l'une quelconque des revendications précédentes caractérisé en ce qu'il comporte à au moins une de ses extrémités (EX) un logement (L) pour accueillir et maintenir un ou des moyens de fixation traditionnels comme par exemple écrous et boulons, ou non traditionnels.4) shock absorber fixing means according to any one of the preceding claims, characterized in that it comprises at least one of its ends (EX) a housing (L) to receive and maintain one or more traditional fixing means such as for example nuts and bolts, or non-traditional.
5) Moyen de fixation amortisseur selon l'une quelconque des revendications précédentes caractérisé en ce qu'il comporte un passage intérieur (PI) traversant la partie souple (PS).Ce passage intérieur (PI) permet le passage d'un outil de manipulation et de serrage.5) shock absorber fixing means according to any one of the preceding claims, characterized in that it comprises an interior passage (PI) passing through the flexible part (PS). This interior passage (PI) allows the passage of a handling tool and tightening.
6) Moyen de fixation amortisseur selon la revendication 4 caractérisé en ce que le logement (L) comporte des parois (PL) qui s'écartent l'une de l'autre ou les unes des autres lorsqu'un moyen de fixation est installé dans le logement (L). 7) Moyen de fixation amortisseur selon la revendication 5 caractérisé en ce que le passage intérieur (PI) comporte des parois (PP) qui s'écartent l'une de l'autre ou les unes des autres lorsqu'un outil de manipulation et de serrage est introduit dans le passage (PI).6) damping fixing means according to claim 4 characterized in that the housing (L) has walls (PL) which deviate from one another or from each other when a fixing means is installed in the housing (L). 7) shock absorber fixing means according to claim 5 characterized in that the interior passage (PI) has walls (PP) which deviate from one another or from each other when a tool for handling and tightening is introduced into the passage (PI).
8) Moyen de fixation amortisseur selon les revendications 2, 3 et 4 caractérisé en ce que les orifices (O), filetages (FI, FE) et logements (L) situés aux extrémités (EX) sont orientés en angle les uns par rapport aux autres pour permettre la fixation en angle.8) shock absorber fixing means according to claims 2, 3 and 4 characterized in that the orifices (O), threads (FI, FE) and housings (L) located at the ends (EX) are oriented at an angle relative to the others to allow angle fixing.
9) Moyen de fixation amortisseur selon les revendications 2, 3 et 4 caractérisé en ce que les orifices (O), filetages (FI,FE) et logements (L) situés aux extrémités (EX) sont orientés en parallèle les uns par rapport aux autres pour permettre la fixation en parallèle.9) shock absorber fixing means according to claims 2, 3 and 4 characterized in that the orifices (O), threads (FI, FE) and housings (L) located at the ends (EX) are oriented in parallel with each other others to allow fixing in parallel.
10) Moyen de fixation amortisseur selon l'une quelconque des revendications précédentes caractérisé en ce que la partie souple (PS) située entre les extrémités (EX) est conductrice électriquement. 11) Moyen de fixation amortisseur selon la revendication 2,4,5,6,7, 8 ou 9 caractérisé en ce qu'un orifice (0),un logement (L) et un passage intérieurs (PI) soient communicants. 10) shock absorber fixing means according to any one of the preceding claims, characterized in that the flexible part (PS) located between the ends (EX) is electrically conductive. 11) Damper fixing means according to claim 2,4,5,6,7, 8 or 9 characterized in that an orifice (0), a housing (L) and an interior passage (PI) are communicating.
PCT/FR2003/001581 2002-05-03 2003-05-26 Fixing means WO2003103351A1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
AU2003255603A AU2003255603A1 (en) 2002-05-30 2003-05-26 Fixing means
AU2003255655A AU2003255655A1 (en) 2002-08-02 2003-06-11 Fixing means for cards and components
EP03787836A EP1532853A1 (en) 2002-08-02 2003-06-11 Fixing means for cards and components
CA2490498A CA2490498C (en) 2002-08-02 2003-06-11 Attachment means for cards and components
US10/519,566 US20060011799A1 (en) 2002-08-02 2003-06-11 Fixing means for cards and components
PCT/FR2003/001731 WO2004017694A1 (en) 2002-08-02 2003-06-11 Fixing means for cards and components

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
FR0206646A FR2840410B1 (en) 2002-05-30 2002-05-30 DEVICE FOR QUICKLY TESTING AND ANALYZING CABLES EQUIPPED WITH CONNECTORS UNDER DIFFERENT LIGHT ENVIRONMENTS
FR02/06646 2002-05-30
FR0209853A FR2843270A1 (en) 2002-08-02 2002-08-02 Printed circuit component deadening/fixing mechanism having flexible section clamp between two end sections reducing risk printed circuit track microscopic breakage.
FR02/09853 2002-08-02
FR0213080A FR2843271A1 (en) 2002-08-02 2002-10-21 Printed circuit card component support deadened fixing mechanism having flexible piece between ends providing support card/component fixing/reducing breakdown risk.
FR02/13080 2002-10-21

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WO2003103351A1 true WO2003103351A1 (en) 2003-12-11
WO2003103351B1 WO2003103351B1 (en) 2004-05-27

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PCT/FR2003/001581 WO2003103351A1 (en) 2002-05-03 2003-05-26 Fixing means
PCT/FR2003/001592 WO2003102612A2 (en) 2002-05-30 2003-05-27 Fixing means for components and cards

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PCT/FR2003/001592 WO2003102612A2 (en) 2002-05-30 2003-05-27 Fixing means for components and cards

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4309856A (en) * 1980-05-22 1982-01-12 General Motors Corporation Panel mounting device and assembly
DE8604098U1 (en) * 1986-02-15 1986-04-03 ANT Nachrichtentechnik GmbH, 7150 Backnang PCB package
US4760495A (en) * 1987-04-16 1988-07-26 Prime Computer Inc. Stand-off device
US4875140A (en) * 1987-05-06 1989-10-17 U.S. Philips Corporation Support for printed circuit boards
US6274374B1 (en) * 1998-09-19 2001-08-14 Thomas W. Astle Combination stacker/incubator system for bioassay trays
US6399888B1 (en) * 2000-10-26 2002-06-04 Lite-On Electronics, Inc. Buffering and supporting device for a circuit board

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4309856A (en) * 1980-05-22 1982-01-12 General Motors Corporation Panel mounting device and assembly
DE8604098U1 (en) * 1986-02-15 1986-04-03 ANT Nachrichtentechnik GmbH, 7150 Backnang PCB package
US4760495A (en) * 1987-04-16 1988-07-26 Prime Computer Inc. Stand-off device
US4875140A (en) * 1987-05-06 1989-10-17 U.S. Philips Corporation Support for printed circuit boards
US6274374B1 (en) * 1998-09-19 2001-08-14 Thomas W. Astle Combination stacker/incubator system for bioassay trays
US6399888B1 (en) * 2000-10-26 2002-06-04 Lite-On Electronics, Inc. Buffering and supporting device for a circuit board

Also Published As

Publication number Publication date
AU2003249421A8 (en) 2003-12-19
AU2003249421A1 (en) 2003-12-19
WO2003102612A3 (en) 2004-04-15
WO2003103351B1 (en) 2004-05-27
WO2003102612A2 (en) 2003-12-11
AU2003255603A1 (en) 2003-12-19

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