TECHNICAL FIELD
[0001] The present invention relates to an electric connector, in particular an electric
connector of the type comprising an insulating casing defining a number of cavities,
each having a longitudinal axis; and a number of electric terminals housed coaxially
in respective cavities and retained inside the cavities by snap-on retaining means.
BACKGROUND ART
[0002] Electric connectors of the above type are also known to comprise a retaining lever,
which is hinged integrally to an outer wall of the casing by a short thin connecting
blade extending crosswise to the retaining lever and the wall, and comprises, on one
end, a first retaining tooth which snaps onto a second retaining tooth carried by
a connecting element, e.g. a complementary electric connector, fittable to the connector.
An example is the connector disclosed by US-A-5 380 217.
[0003] The retaining lever therefore oscillates about the connecting blade, and is activated
manually, at the opposite end to that from which the first tooth extends, to release
the first and second tooth and so disconnect the electric connector and respective
connecting element.
[0004] As a result of repeated connection and release of the electric connector and respective
connecting element, or in the event of severe accidental pressure on the retaining
lever, as when handling the connector during production and assembly, the connecting
blade, given its small size, may be so stressed as to be permanently deformed - thus
resulting in impaired operation of the retaining lever - or even broken.
DISCLOSURE OF INVENTION
[0005] It is an object of the present invention to provide an electric connector designed
to eliminate the aforementioned drawback typically associated with known connectors.
[0006] According to the present invention, there is provided an electric connector comprising
an insulating casing defining at least one cavity for housing a respective electric
terminal; at least one retaining lever carried by said casing and having first retaining
means which snap onto second retaining means carried by a connecting element connectable
to said connector; and connecting means connecting said retaining lever in oscillating
manner to said casing to permit release of said first and second retaining means and
disconnection of said connector and said connecting element; characterized in that
said connecting means comprise a beam element fitted integrally at opposite ends to
said casing, carrying said retaining lever, and extending crosswise to the retaining
lever.
BRIEF DESCRIPTION OF DRAWINGS
[0007] A preferred, non-limiting embodiment of the present invention will be described by
way of example with reference to the accompanying drawings, in which:
Figure 1 shows a longitudinal section of an electric connector in accordance with
the present invention;
Figure 2 shows a larger-scale front view of the Figure 1 electric connector;
Figure 3 shows a side view of an electric connecting unit defined by the Figure 1
electric connector and by an identical complementary electric connector;
Figure 4 shows an exploded view in perspective of the electric connecting unit in
Figure 3.
BEST MODE FOR CARRYING OUT THE INVENTION
[0008] Number 1 in Figures 1 and 2 indicates as a whole a hermaphroditic electric connector
connectable, in a longitudinal mating direction A, to an identical complementary electric
connector 1' (Figures 3 and 4) to form an electric connecting unit 2. More specifically,
when assembling unit 2 (Figure 4), connector 1' is positioned facing and rotated 180°
about direction A with respect to connector 1.
[0009] With reference to the accompanying drawings, connector 1 substantially comprises
an insulating casing 3 defining two superimposed rows of through cavities 6 having
respective longitudinal axes B parallel to direction A; and a number of hermaphroditic
electric terminals 7, which are connected to respective electric cables 8, are housed
coaxially inside respective cavities 6, and are retained one-way inside cavities 6
by known snap-on retaining means described later on.
[0010] More specifically, casing 3 is substantially parallelepiped, and is defined by two
flat parallel base walls 11, 12, and by two lateral walls 13 connected to walls 11,
12 by respective curved lateral edges. Each wall 13 is divided into two flat longitudinal
portions 15, 16 of substantially the same height and defining a step 17. More specifically,
portions 15 adjoining wall 11 project with respect to respective portions 16.
[0011] Wall 11 and portions 15 of walls 13 comprise respective longitudinal end portions
20, 21 projecting frontwards with respect to wall 12 and portions 16 of walls 13,
and defining as a whole a U-shaped flange 23 of casing 3. When connecting connectors
1 and 1', flange 23 of each connector 1, 1' slides over wall 12 and portions 16 of
walls 13 of the other connector 1', 1 (Figure 3).
[0012] Portion 20 of wall 11 comprises a C-shaped cavity 22 extending along a respective
front peripheral edge.
[0013] Casing 3 also comprises an inner transverse wall 25 substantially parallel to walls
11, 12 and extending perpendicularly between mid-portions of walls 13; and a number
of inner intermediate walls 26, which are parallel to walls 13, intersect wall 25,
and define, with one another and with walls 13 and 25, said two superimposed rows
of cavities 6 for housing terminals 7. More specifically, each cavity 6 comes out
through a rear opening 27, from which respective electric cable 8 comes out in use,
and through a front opening 28 opposite opening 27.
[0014] With reference to Figure 1, each terminal 7 comprises, integrally, a substantially
cylindrical intermediate portion 29 of axis B; a connection portion 30 for connection
to respective electric cable 8; and a contact portion 31 which cooperates, in use,
with the contact portion of an identical electric terminal not shown.
[0015] Each terminal 7 is inserted inside respective cavity 6 through respective opening
27 and in an insertion direction parallel to respective axis B, so that respective
contact portion 31 projects axially from cavity 6 through respective opening 28. Each
cavity 6 has a known retaining tooth 32 carried by one of walls 13, 26 laterally defining
cavity 6, and which snaps onto the connection portion 30 of respective terminal 7
to retain the terminal one-way inside cavity 6 and prevent withdrawal of the terminal
though opening 27.
[0016] With reference to the accompanying drawings, connector 1 also comprises a retaining
lever 35 and a tooth 36, which are carried respectively by opposite walls 11, 12 of
casing 3, and respectively snap onto an identical tooth 36 and an identical retaining
lever 35 carried by identical complementary connector 1'.
[0017] More specifically, retaining lever 35 is elongated in direction A, is connected in
oscillating manner to wall 11 of casing 3 by connecting means 34, and comprises an
integral tooth 37 projecting towards wall 11 from a front end of lever 35 and which
snaps onto tooth 36 of identical complementary connector 1'.
[0018] According to the present invention, connecting means 34 comprise a beam element 38,
which is fitted integrally at opposite ends to respective lateral edges, parallel
to direction A, of wall 11, and is fitted integrally with and extends crosswise to
retaining lever 35, which is activated manually to release teeth 36 and 37 and so
release connectors 1 and 1'.
[0019] Retaining lever 35 comprises a retaining portion 39 having tooth 37 and projecting
from one side of beam element 38; and a manually operated portion 40 projecting from
the opposite side of beam element 38.
[0020] Tooth 37 has a substantially right-triangular profile, and is defined, towards beam
element 38, by a surface 41 substantially perpendicular to direction A, and, on the
opposite side, by a surface 42 sloping with respect to direction A. In exactly the
same way, tooth 36 has a substantially right-triangular profile, and is defined, towards
electric cables 8, by a surface 43 substantially perpendicular to direction A, and,
on the opposite side, by a surface 44 sloping with respect to direction A. Tooth 36
also comprises an intermediate longitudinal groove 45.
[0021] As shown in Figure 3, tooth 37 of retaining lever 35 of connector 1 and tooth 36
of connector 1' snap onto each other along respective surfaces 41, 43.
[0022] Beam element 38 has an arc-shaped longitudinal section with the concavity facing
wall 11 of casing 3, and decreases in width from the opposite ends towards a central
portion connected to retaining lever 35.
[0023] The advantages of connector 1 according to the present invention will be clear from
the foregoing description.
[0024] In particular, beam element 38, being highly rigid structurally, is capable of withstanding
permanent deformation, and therefore practically unbreakable, as a result of repeated
connection and release of connector 1, or in the event of severe accidental pressure
on retaining lever 35, as when handling connector 1 during production and assembly.
[0025] Clearly, changes may be made to connector 1 without, however, departing from the
scope of the present invention.
[0026] In particular, connector 1 may be connected to a different type of connecting element
- e.g. a printed circuit board or a terminal board of an electronic device - comprising
a tooth similar to tooth 36 and designed to snap onto retaining lever 35.
1. An electric connector (1) comprising an insulating casing (3) defining at least one
cavity (6) for housing a respective electric terminal (7); at least one retaining
lever (35) carried by said casing (3) and having first retaining means (37) which
snap onto second retaining means (36) carried by a connecting element (1') connectable
to said connector (1); and connecting means (34) connecting said retaining lever (35)
in oscillating manner to said casing (3) to permit release of said first and second
retaining means (37, 36) and disconnection of said connector (1) and said connecting
element (1'); characterized in that said connecting means (34) comprise a beam element (38) fitted integrally at opposite
ends to said casing (3), carrying said retaining lever (35), and extending crosswise
to the retaining lever (35).
2. A connector as claimed in Claim 1, characterized in that said beam element (38) has a curved arc-shaped longitudinal section with the concavity
facing said casing (3).
3. A connector as claimed in Claim 1 or 2, characterized in that said beam element (38) decreases in width from said opposite ends towards a central
portion connected to said retaining lever (35).
4. A connector as claimed in any one of the foregoing Claims, characterized in that said retaining lever (35) is elongated in a direction parallel to a mating direction
(A) of said connector (1) to said connecting element (1'); and in that said opposite ends of said beam element (38) are fitted to respective lateral edges,
parallel to said mating direction (A), of a first outer wall (11) of said casing (3).
5. A connector as claimed in Claim 4, characterized in that said retaining lever (35) comprises a retaining portion (39) having said first retaining
means (37) and projecting from one side of said beam element (38); and a manually
operated portion (40) projecting from an opposite side of the beam element (38).
6. A connector as claimed in Claim 5, characterized in that said first retaining means comprise a substantially triangular tooth (37) projecting
from one end of said retaining portion (39) towards said casing (3), and which snaps
onto another substantially triangular tooth (36) carried by said connecting element
(1').
7. A connector as claimed in Claim 6, characterized by comprising a further substantially triangular tooth (36) projecting from a second
outer wall (12) of said casing (3) opposite said first outer wall (11); said retaining
lever (35) and said further tooth (36) of said connector (1) respectively snapping
onto an identical tooth (36) and an identical retaining lever (35) carried by an identical
complementary electric connector (1') connectable to said connector (1).
1. Elektrischer Steckverbinder (1) mit einem isolierenden Gehäuse (3), das wenigstens
einen Hohlraum (6) definiert, um einen entsprechenden elektrischen Anschluß (7) aufzunehmen,
wenigstens einem Verriegelungshebel (35), der von dem Gehäuse (3) getragen wird und
der eine erste Verriegelungseinrichtung (37) aufweist, die auf eine zweite Verriegelungseinrichtung
(36) schnappt, die von einem Verbindungselement (1') getragen wird, das mit dem Verbinder
(1) verbunden werden kann, und einer Verbindungseinrichtung (34), die den Verriegelungshebel
(35) schwingend mit dem Gehäuse (3) verbindet, um das Lösen der ersten und zweiten
Verriegelungseinrichtung (37, 36) und das Lösen der Verbindung des Verbinders (1)
mit dem Verbindungselements (1') zu ermöglichen, dadurch gekennzeichnet, daß die Verriegelungseinrichtung (34) ein Balkenelement (38) aufweist, das an gegenüberliegenden
Enden an das Gehäuse (3) einstückig angeformt ist, den Verriegelungshebel (35) trägt
und quer zum Verriegelungshebel (35) verläuft.
2. Steckverbinder nach Anspruch 1, dadurch gekennzeichnet, daß das Balkenelement (38) einen bogenförmig gekrümmten Längsabschnitt aufweist, wobei
der konkave Abschnitt dem Gehäuse (3) gegenüberliegt.
3. Steckverbinder nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß die Breite des Balkenelements (38) von den gegenüberliegenden Enden zu einem mittleren
Abschnitt abnimmt, der mit dem Verriegelungshebel (35) verbunden ist.
4. Steckverbinder nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, daß der Verriegelungshebel (35) in eine Richtung parallel zur Verbindungsrichtung (A)
des Steckverbinders (1) mit dem Verbindungselement (1') verlängert ist, und daß die
gegenüberliegenden Enden des Balkenelements (38) jeweils an seitlichen zur Verbindungsrichtung
(A) parallelen Kanten einer ersten äußeren Wand (11) des Gehäuses (3) angebracht sind.
5. Steckverbinder nach Anspruch 4, dadurch gekennzeichnet, daß der Verriegelungshebel (35) einen Verriegelungsabschnitt (39), der die ersten Verriegelungseinrichtung
(37) aufweist und von einer Seite des Balkenelements (38) vorsteht, und einen manuell
betätigbaren Abschnitt (40) aufweist, der an einer gegenüberliegenden Seite des Balkenelements
(38) vorsteht.
6. Steckverbinder nach Anspruch 5, dadurch gekennzeichnet, daß die erste Verriegelungseinrichtung einen im wesentlichen dreieckigen Zahn (37) aufweist,
der von einem Ende des Verriegelungsabschnitts (39) in Richtung des Gehäuses (3) vorsteht
und der auf einen anderen im wesentlichen dreieckigen Zahn (36) schnappt, der von
dem Verbindungselement (1') getragen wird.
7. Steckverbinder nach Anspruch 6, dadurch gekennzeichnet, daß er einen weiteren im wesentlichen dreieckigen Zahn (36) aufweist, der von einer zweiten
äußeren Wand (12) des Gehäuses (3) vorsteht, die der ersten äußeren Wand (11) gegenüberliegt,
wobei der Verriegelungshebel (35) und der weitere Zahn (36) des Steckverbinders (1)
jeweils auf einen identischen Zahn (36) und einen identischen Verriegelungshebel (35)
schnappen, der von einem identischen komplementären elektrischen Steckverbinder (1')
getragen wird, der an den Steckverbinder (1) angeschlossen werden kann.
1. Connecteur électrique (1) comprenant un boîtier d'isolation (3) définissant au moins
une cavité (6) destinée à contenir une borne électrique (7) respective ; au moins
un levier de retenue (35) supporté par ledit boîtier (3) et présentant un premier
élément de retenue (37) qui vient s'encliqueter sur un second élément de retenue (36)
supporté par un élément de jonction (1') pouvant être raccordé audit connecteur (1)
; et un moyen de liaison (34) reliant ledit levier de retenue (35) de manière à pouvoir
osciller audit boîtier (3) afin de permettre la libération desdits premier et second
moyens de retenue (37, 36) et la séparation dudit connecteur (1) et dudit élément
de jonction (1') ; caractérisé en ce que ledit moyen de liaison (34) comprend un élément poutre (38) assemblé intégralement
par les extrémités opposées audit boîtier (3), supportant ledit levier de retenue
(35) et s'étendant transversalement par rapport au levier de retenue (35).
2. Connecteur selon la revendication 1, caractérisé en ce que ledit élément poutre (38) présente une section longitudinale courbe en forme d'arc,
la concavité étant orientée face audit boîtier (3).
3. Connecteur selon la revendication 1 ou 2, caractérisé en ce que la largeur dudit élément poutre (38) diminue à partir desdites extrémités opposées
vers une partie centrale reliée audit levier de retenue (35).
4. Connecteur selon l'une quelconque des revendications précédentes, caractérisé en ce que ledit levier de retenue (35) est allongé dans une direction parallèle à une direction
d'assemblage (A) dudit connecteur (1) sur ledit élément de jonction (1') ; et en ce que lesdites extrémités opposées dudit élément poutre (38) sont assemblées sur des bords
latéraux respectifs, parallèlement à ladite direction d'assemblage (A), d'une première
paroi externe (11) dudit boîtier (3).
5. Connecteur selon la revendication 4, caractérisé en ce que ledit levier de retenue (35) comprend une partie de retenue (39) comportant ledit
moyen de retenue (37) et étant en saillie à partir d'un côté dudit élément poutre
(38) ; et une partie commandée manuellement (40) en saillie à partir d'un côté opposé
de l'élément en poutrelle (38).
6. Connecteur selon la revendication 5, caractérisé en ce que ledit premier moyen de retenue comprend une dent sensiblement triangulaire (37) en
saillie à partir d'une extrémité de ladite partie de retenue (39) vers ledit boîtier
(3), et qui vient s'encliqueter sur une autre dent sensiblement triangulaire (36)
supportée par ledit élément de jonction (1').
7. Connecteur selon la revendication 6, caractérisé par le fait qu'il comprend une autre dent sensiblement triangulaire (36) en saillie à partir d'une
seconde paroi externe (12) dudit boîtier (3) opposée à ladite première paroi externe
(11); ledit levier de retenue (35) et ladite autre dent (36) dudit connecteur (1)
s'encliquetant respectivement sur une dent identique (36) et un levier de retenue
identique (35) supporté par un connecteur électrique (1') identique et complémentaire
pouvant être raccordé audit connecteur (1).