Field of the Invention
[0001] This invention generally relates to the art of electrical connectors and, particularly,
to a latching system or means for holding terminals in passageways of a connector
housing.
Background of the Invention
[0002] A wide variety of mating electrical connectors employ pairs of interengaging pin
and socket terminals for interconnecting a plurality of circuits or wires through
the mated connectors. The pin and socket terminals often are called male and female
terminals, respectively.
[0003] The terminals are mounted in a plurality of terminal-receiving passageways in a dielectric
housing of the electrical connector. The terminals generally are elongated and are
inserted into the passageways along the longitudinal axes of the terminals. Some form
of latch means normally are provided to hold the terminals in the passageways against
withdrawal therefrom.
[0004] Various types of terminal latch means have consistently presented various problems.
For instance, the terminals often are provided with outwardly projecting, cantilevered
flexible latch arms which snap behind shoulders within the terminal-receiving passageways
of the connector housing. The cantilevered latch arms have a tendency to bend, break
and/or snag on other parts. For instance, the latch arms may be bent or collapsed
on a reel of interconnected terminals during shipping, prior to fabricating the connector.
In addition, in order to have any significant latching capabilities, the latch arms
must be of a sufficient width which often limits current-carrying capacity of the
terminals and, in turn, may cause overheating.
[0005] US 3764960 discloses a cluster assembly which comprises the features of the preamble
of claims 1 and 5.
[0006] US 3957337 discloses an electrical connector having an insulated housing with a passageway
for receiving a contact therein. The contact is provided with a cylindrical portion
on which leaf springs are formed, which snap outwardly beyond a portion of the passageway
if fully inserted. However the housing does not comprise a groove communicating with
the passageway in order to guide the leaf springs
[0007] US 2925577 discloses a terminal socket having a generally cylindric mating portion
with an open seam. However, the central portion of the socket is cut and bent to form
a pair of locking tabs whereas the latch flange of the present invention projects
transversely from the mating portion on each upper side of the seam.
[0008] US 3753193 discloses a socket terminal for releasably receiving a pin and comprising
a channel-shaped contact portion for receiving the pin through an aperture. The channel-shaped
contact portion has a substantially rectangular cross section and does not project
beyond the mating face of a housing.
[0009] In order to avoid those problems wherein the latch means are provided by flexible
latch arms on the terminals, latch arms have been provided on the connector housing
itself. The housing normally is molded of plastic material, and the latch arms are
molded integrally therewith and extend inwardly into the terminal receiving passageways
from interior housing walls. These latch arms on the housing have limited strength
and durability. They also present problems during manufacture, because the molded
plastic material must flow down the entire length of the arms. The arms also take
up "real estate" within the connector housing and make it difficult to provide adequate
insulation between adjacent terminals.
[0010] This invention is directed to solving the above myriad of problems by providing a
simple and reliable latching system for terminals in an electrical connector of the
character described.
Summary of the Invention
[0011] An object, therefore, of the invention is to provide a new and improved latching
system or means for holding terminals in passageways of an electrical connector housing.
[0012] In the exemplary embodiment of the invention, an electrical connector includes a
stamped and formed sheet metal terminal having a generally cylindrical mating portion
with an open seam extending longitudinally therealong. A latch flange projects transversely
from the mating portion on each opposite side of the seam. A dielectric housing has
generally rigid walls defining an elongated terminal receiving passageway for receiving
the mating portion of the terminal. An elongated groove in the wall communicates with
the passageway for receiving the latch flanges projecting from the mating portion.
The groove has side walls converging from a wide mouth end of the groove to a narrow
latch end thereof. The side walls are adapted to resiliently compress the mating portion
of the terminal as the side walls guide the latch flanges during insertion of the
terminal into the housing. The latch end of the groove has an abruptly enlarged latch
section into which the latch flanges snappingly interengage to lock the terminal in
the passageway.
[0013] As disclosed herein, the enlarged latch section of the groove includes a latch shoulder
on each opposite side of the groove for engagement by the latch flanges on opposite
sides of the seam in the mating portion of the terminal. The latch flanges project
from an outside face of the housing to provide access to the latch flanges, as by
an appropriate tool, for unlatching the terminal.
[0014] Other objects, features and advantages of the invention will be apparent from the
following detailed description taken in connection with the accompanying drawings.
Detailed Description of the Preferred Embodiment
[0015] Referring to the drawings in greater detail, and first to Figure 1, the invention
is embodied in an electrical connector, generally designated 10, which includes a
dielectric housing 12 defining a plurality of elongated terminal receiving passageways
14. only two terminal receiving passageways 14 are shown in the portion of housing
12 in Figure 1, but it should be understood that any number of such passageways can
be formed in the dielectric housing in substantially any array thereof. Each passageway
includes an entry end 14a opening through a rear terminating face 12a of housing 12,
and a latch end 14b opening through a mating face 12b of the housing.
[0016] An elongated groove 16 communicates with each passageway 14 along the length thereof.
The groove converges gradually from a wide mouth end 16a adjacent entry end 14a of
the respective passageway, to a narrow latch end 16b adjacent latch end 14b of the
respective passageway. Latch end 16b of each groove 16 has an abruptly enlarged latch
section 18 which defines a latch shoulder 20 on each opposite side of the groove at
narrow latch end 16b of the groove.
[0017] A plurality of terminals, generally designated 22, are insertable into passageways
14 in the direction of arrow "All" (Fig. 1). The terminals can be crimped to wires
or mounted directly to a printed circuit board (not shown). In the exemplary embodiment
shown in the Figures. the terminals are crimped onto insulated wires. Each crimp terminal
22 includes two pairs of crimp arms 24 and 26 for terminating an electrical cable
or wire 28. The pair of crimp arms 24 are adapted for crimping onto the outer cladding
or covering of the cable to provide strain relief therefore. The pair of crimp arms
26 are adapted for crimping onto the conductive core 30 of the cable to establish
conductivity between the terminal and the core.
[0018] Each terminal 22 is stamped and formed from sheet metal material and includes a generally
cylindrical female mating portion 32 with an open seam 34 longitudinally thereof.
The seam is established during the forming of the terminal. A latch flange 36 projects
transversely or radially outwardly from mating portion 32 on each opposite side of
the seam. The latch flanges are flexible due to their location on opposite sides of
the seam, in that the cylindrical mating portion can compress and expand due to the
open seam.
[0019] In assembly and as stated above, each terminal 32, along with its crimped cable 28,
is inserted into its respective passageway 14 in housing 12 in the direction of arrow
"All"(Fig. 1) . As the terminal is inserted into the passageway, radially outwardly
projecting latch flanges 36 project into and move longitudinally of converging groove
16. As the terminal moves toward its fully inserted position, latch flanges 36 are
guided by the opposite side walls of groove 16 causing the latch flanges to move toward
each other, compressing mating portion 32, as the converging groove gets narrower
toward latch end 16b of the groove. When latch flanges 36 clear latch shoulders 20
at the latch end of the groove the latch flanges will "snap" out into engagement behind
the latch shoulders and thereby prevent removal of the terminal opposite the direction
of arrow "A".
[0020] Figure 2 shows two terminals in their fully inserted positions, and it can be seen
clearly how the latch flanges 36 of the left hand terminal are locked behind latch
shoulders 20. It also can be seen in Figure 2 that mating portions 32 and latch flanges
36 project beyond mating face 12b of housing 12.Therefore, a tool, such as a pliers,
can be used to grasp latch flanges 32 and squeeze the latch flanges together so that
the latch flanges again can clear latch shoulders 20. When the latch flanges are clear
of the latch shoulders, the respective terminal can be pulled out of its respective
passageway 14 opposite the direction of insertion thereof (i.e. opposite the direction
of arrow "A" in Figure 1).
[0021] Figure 1 shows four terminals 22, 22a, 22b, and 22c in different sequential positions
of insertion into their respective terminal receiving passageways 14. The right-hand
terminal 22 is shown prior to insertion in the direction of arrow "All into its respective
passageway 14 at the right hand end of housing 12. As the terminal enters the passageway,
latch flanges 36 can easily enter groove 16 because the groove, at its mouth end 16a,
is wider than the spacing of latch flanges 36.
[0022] Terminal 22a in Figure 3 has been inserted partially into its passageway 14 to a
point whereat latch flanges 36 of the terminal are first engaging the side walls of
converging groove 16. However, the latch flanges have not as yet started to compress
the mating portion of the terminal.
[0023] Terminal 22b in Figure 3 has been inserted to an extent prior to entry of the latch
flanges 36 into the abruptly enlarged latch section 18 at the latch end of converging
groove 16. In essence, the side walls of the groove have biased the latch flanges
toward each other which results in compression of the cylindrical mating portion of
the terminal thus building up spring energy therein and tending to bias the latch
flanges outwardly to their static condition.
[0024] Terminal 22c in Figure 3 is shown in its fully inserted position within its respective
passageway 14. It can be seen the latch flanges 36 have snapped back outwardly into
enlarged latch section 18, with the latch flanges positioned behind latch shoulders
20. In this fully inserted position, the terminal cannot be removed from its passageway
(i. e. opposite the direction of arrow "A") due to the interengagement between latch
flanges 36 and latch shoulders 20.
[0025] Lastly, Figure 3 shows how fully inserted terminal 22c projects beyond mating face
12b of housing 12. This affords access to latch flanges 36 by an appropriate tool,
such as a pliers. If desired, the latch flanges can be squeezed toward each other
in the direction of arrows "B" until the latch flanges are close enough to each other
to clear latch shoulders 20. Once clear of the shoulders, the terminal can be pulled
back out of its passageway in a direction opposite the described insertion procedure.
[0026] It will be understood that the invention may be embodied in other specific forms
without departing from the characteristics thereof as defined by the set of appended
claims. The present examples and embodiments, therefore, are to be considered in all
respects as illustrative and not restrictive, and the invention is not to be limited
to the details given herein.
1. An electrical connector (10), comprising:
at least one stamped and formed sheet metal terminal (22); having a mating portion
(32) and a pair of flexible latch flanges (36) projecting from the mating portion,
and
a dielectric housing (12) having generally rigid wall means defining at least one
elongated terminal-receiving passageway (14) for receiving the mating portion (32)
of a respective terminal (22), and at least one elongated groove (16) in the wall
means communicating with the respective passageway for receiving the latch flanges
(36), the groove (16) having side walls converging from a wide mouth end (16a) of
the groove to a narrow latch end (16b) thereof and adapted to engage the latch flanges
and resiliently compress the mating portion of the terminal, the latch end (16b) of
the groove having an abruptly enlarged latch section (18) into which the latch flanges
(36) snappingly interengage to lock the terminal (22) in the passageway,
characterised in that
each terminal (22) has a generally cylindrical mating portion (32) with an open seam
(34) longitudinally thereof, wherein one of said flexible latch flange (36) projects
radially outwardly from the mating portion on each opposite side of the seam.
2. The electrical connector of claim 1 wherein said enlarged latch section (18) of the
groove (16) includes a latch shoulder (20) on each opposite side of the groove for
engagement by the latch flanges (36) on opposite sides of said seam.
3. The electrical connector of claim 1 wherein said latch flanges (36) project from an
outside face (12b) of the housing (12) to provide access to the latch flanges for
unlatching the terminal.
4. The electrical connector of claim 3 wherein said wide mouth end (16a) of the groove
(16) opens at a terminating face (12a) of the housing (12) and the narrow latch end
(16b) of the groove opens at an outside face (12b) of the housing, and said latch
flanges (36) project beyond the outside face for access thereto to allow for biasing
the latch flanges together and unlatching the terminal (22).
1. Elektrischer Steckverbinder (10), welcher umfaßt:
ein aus einem Metallblech gestanztes und geformtes Anschlußelement (22) mit einem
Zusammenfügungsbereich (32) und einem Paar aus dem Zusammenfügungsbereich hervorstehender
flexibler Verriegelungsflansche (36)
und
ein dielektrisches Gehäuse (12) mit im wesentlichen starren Wandmitteln, welche wenigstens
einen länglichen Anschlußelement-Aufnahme-Durchgang (14) zur Aufnahme des Zusammenfügungsbereiches
(32) des betreffenden Anschlußelements (22) definieren,
und
wenigstens eine längliche Nut (16) in den Wandmitteln, die mit dem Durchgang zur Aufnahme
der Verriegelungsflansche (36) in Verbindung steht, wobei die Nut Seitenwände aufweist,
die sich von einem weiten Eingangsende (16a) der Nut zu einem engen Verriegelungsende
(16b) derselben verengen und dazu geeignet sind, die Verriegelungsflansche zu ergreifen
und den Zusammenfügungsbereich des Anschlußelements federnd zusammenzudrücken, wobei
das Verriegelungsende (16b) der Nut einen abrupt vergrößerten Verriegelungsbereich
(18) aufweist, in den die Verriegelungsflansche (26) einschnappen, um das Anschlußelement
(22) in der Durchgangsöffnung zu verriegeln,
dadurch gekennzeichnet, daß
jedes Anschlußelement (22) einen im wesentlichen zylindrischen Zusammenfügungsbereich
(32) mit einer in Längsrichtung desselben offenen Fuge (34) aufweist, wobei einer
der flexiblen Verriegelungsflansche (36) radial aus dem Zusammenfügungsbereich an
jeder der Fuge gegenüberliegenden Seite heraussteht.
2. Elektrischer Steckverbinder nach Anspruch 1, wobei der vergrößerte Verriegelungsbereich
(18) der Nut (16) eine Rastschulter (20) an jeder entgegengesetzten Seite der Nut
zur Verbindung mit den Verriegelungsflanschen (36) an einander gegenüberliegenden
Seiten der Fuge aufweist.
3. Elektrischer Steckverbinder nach Anspruch 1, wobei die Verriegelungsflansche (36)
aus einer Außenseite (12b) des Gehäuses (12) herausstehen, um einen Zugang auf die
Verriegelungsflansche zum Entriegeln des Anschlußelements zur Verfügung zu stellen.
4. Elektrischer Steckverbinder nach Anspruch 3, wobei sich das weite Eingangsende (16a)
der Nut (16) an einer Abschlußseite (12a) des Gehäuses (12) öffnet und
sich das enge Verriegelungsende (16b) der Nut an einer Außenseite (12b) des Gehäuses
öffnet,
und wobei
sich die Verriegelungsflansche (36) für einen Zugang zu ihnen über die Außenseite
hinaus erstrecken, um ein Zusammendrücken der Verriegelungsflansche und ein Entriegeln
des Anschlußelements (22) zu erlauben.
1. Connecteur électrique (10), comportant :
au moins une borne (22) en métal en feuille découpée et formée, ayant une partie d'accouplement
(32) et une paire de taquets flexibles de blocage (36) faisant saillie de la partie
d'accouplement, et
un boîtier diélectrique (12) ayant un moyen à paroi globalement rigide définissant
au moins un passage allongé (14) de réception de borne destiné à recevoir la partie
d'accouplement (32) d'une borne respective (22), et au moins une gorge allongée (16)
dans le moyen à paroi communiquant avec le passage respectif pour recevoir les taquets
de blocage (36), la gorge (16) ayant des parois latérales convergeant depuis une extrémité
large à embouchure (16a) de la gorge vers une extrémité étroite (16b) de blocage de
celle-ci et conçue pour engager les taquets de blocage et comprimer élastiquement
la partie d'accouplement de la borne, l'extrémité de blocage (16b) de la gorge ayant
une section de blocage (18) brusquement élargie dans laquelle les taquets de blocage
(36) s'enclenchent par encliquetage pour verrouiller la borne (22) dans le passage,
caractérisé en ce que
chaque borne (22) comporte une partie d'accouplement généralement cylindrique (32)
ayant un joint ouvert longitudinale (34), l'un desdits taquets flexibles (36) de blocage
faisant saillie radialement vers l'extérieur de la partie d'accouplement sur chaque
côté opposé du joint.
2. Connecteur électrique selon la revendication 1, dans lequel ladite section élargie
(18) de blocage de la gorge (16) comprend un épaulement de blocage (20) sur chacun
des côtés opposés de la gorge pour être engagé par les taquets de blocage (36) sur
les côtés opposés dudit joint.
3. Connecteur électrique selon la revendication 1, dans lequel lesdits taquets (36) de
blocage font saillie d'une face extérieure (12b) du boîtier (12) pour permettre d'accéder
aux taquets de blocage pour débloquer la borne.
4. Connecteur électrique selon la revendication 3, dans lequel ladite extrémité large
d'embouchure (16a) de la gorge (16) s'ouvre à une face de terminaison (12a) du boîtier
(12) et l'extrémité étroite (16b) de blocage de la gorge s'ouvre à une face extérieure
(12b) du boîtier, et lesdits taquets de blocage (36) font saillie au-delà de la face
extérieure pour qu'ils soient accessibles afin de permettre de rapprocher les taquets
de blocage l'un de l'autre et de débloquer la borne (22).