[0001] This invention relates to terminal retention in connectors and particularly primary
terminal retention.
[0002] In connectors, it is common to have a primary terminal retention feature that retains
the individual terminals in their respective terminal passageways. Connectors typically
hold a plurality of terminals, this primary retention feature enables each terminal
to be held in place once loaded into the connector while the other terminals are being
loaded in their respective passageways. In high vibration environments or in applications
where it is likely that there may be additional forces excerpted on the terminal that
tend to dislodge the terminal from the terminal receiving passageway, it is also common
to incorporate a secondary locking member as part of the connector assembly. A common
form of a secondary locking member involves a structure having a shoulder that is
moveable into the passageway in order to provide an obstruction therealong would interfere
with a complementary shoulder on the contact and thereby prevent withdraw.
[0003] An example of an electrical connector of this type is illustrated in EP 0 510 583
where a generally rectangular terminal block has a number of electrical terminal receiving
cavities with primary connection means disposed along the longer sides of the terminal
block and corresponding to each of the respective cavities in order 'to retain the
electrical terminals therein. The primary connecting means are integrally moulded
resilient arms having a latching tab thereupon to engage the contact when it is inserted.
Additionally, a secondary locking structure is provided by a flexible hinged flap
having a plurality of comb-like teeth thereupon which extend through holes in the
terminal block and into the passageway to obstruct the passageways, thereby preventing
the terminal from being removed from the terminal block.
[0004] Another electrical connector with primary retention means, which is considered as
the closest prior art, is known from WO 98/31076 A2. There a connector for receiving
terminals therein is described, that includes a terminal block having outer side walls
and opposing end walls, wherein terminal receiving passageways extend between the
opposing end walls for receiving a terminal, and a primary retention member is disposed
along at least one of the terminal receiving passageways that includes a resilient
retention arm that extends into the passageway to retain the terminal therein. The
primary retention member is made of metal sheet by stamping and bending and is fixed
in the housing by press-fitting into attachment slots.
[0005] In general, there is trend toward reducing the size of connectors. For various reasons,
it may not be possible to reduce the spacing between the terminals positioned within
the connector. Therefore, it is desirable to minimise the outside profile of the terminal
block. This presents a number of problems to connectors such as that disclosed in
the aforementioned reference. First of all, as the outer profile becomes smaller,
the wall in which the primary retention means is disposed becomes thinner. This makes
it difficult to form the integrally moulded latch arm. Additionally, when a primary
retention arm and an opening for secondary locking is provided the structural integrity
of the terminal block is reduced.
[0006] Therefore, it is desirable to improve upon the existing connectors by providing effective
primary terminal retention in terminal blocks having thin walls. It is a problem with
connectors such as that disclosed above to provide primary terminal retention in generally
rectangular connectors where the longitudinally extending walls are close to the terminal
passageways so that it is not easily to form primary connecting means therein. It
is a problem with connectors as disclosed in the aforementioned reference that as
the wall becomes thinner, the amount of material available for the forming of the
resilient arm with the latch thereupon is reduced, these primary retention members
become susceptible to overstress damage and it is desirable to prevent such failure.
[0007] It is important to note however that while the aforementioned reference is directed
to an electrical connector and that is the most common application of connectors,
the problems set out above also apply to fibre optic connectors and the present invention
is applicable to connectors in general. The terminals described herein are meant to
be generic and could be either for the termination of optical or electrical cables.
[0008] At least the first problem set out above is solved by providing a connector for receiving
terminals therein, the connector comprising a terminal block having outer walls and
opposing ends walls, a terminal receiving passageway extending between the opposing
end walls for receiving a terminal therein, and a primary retention member disposed
along the passageway having a resilient retention arm extending into the passageway
to retain their terminal therein, the connector being characterised in that the primary
retention member is formed from a generally flat plate and includes a body set in
the terminal block and the retention arm extends from the body into the passageway.
[0009] At least the second problem set out above is solved by providing a connector for
receiving terminal therein, the connector comprising a terminal block having outer
side walls that intersect to define corners and opposing end walls, a terminal receiving
passageway extending between the opposing end walls for receiving a terminal therein,
and a primary retention member disposed along at least one of the terminal receiving
passageways and having resilient retention arm extending into the passageway to retain
the terminal therein, where the at least one passageway is located in the vicinity
of one of the corners, the connector is characterised in that primary retention member
is disposed between the one of the corners and the one passageway in the vicinity
of the corner.
[0010] At least the third problem set out above is solved by providing a connector for receiving
terminals therein, the connector comprising a terminal block having outer side walls
and opposing end walls with terminal receiving passageways extending therethrough,
primary retention members are disposed along respective passageways and include a
moulded resilient latch arm formed integrally with terminal block that extends into
the passageway to prevent withdraw of the inserted terminal, the connector characterised
in that the terminal block includes a post located behind the resilient latch arm
to prevent overstress.
[0011] It is an advantage of the present invention that an. effective primary retention
of terminals in a terminal block may be achieved even when the walls adjacent the
terminal receiving passageways are relatively close thereto. It is yet another advantage
of the invention that the primary retention member may be stamped and formed from
a thin sheet of metal. It is another advantage of the invention that by providing
a primary retention member in the vicinity of the corner, additional material of the
terminal block is available in order to establish the primary retention. It is another
advantage of the invention that by providing a post behind a resilient latch arm of
the primary retention member to prevent overstress, smaller latch arms may be used.
[0012] The invention will now be described by way of example with reference to the following
drawings wherein:
Figure 1 is an upper perspective view of an electrical connector incorporating the
present invention;
Figure 2 is a partially cutaway side perspective view of the electrical connector
of figure 1;
Figure 3 is a sectional view of the electrical connector of figure 1 taken along line
3-3;
Figure 4 is a sectional view of the connector of figure 1 taken along line 4-4; and
Figure 5 is side perspective view of an alternative embodiment of an electrical connector
according to the present invention.
[0013] With reference now to figure 1, a connector incorporating the present invention is
shown generally at 2. The connector 2 includes a terminal block 4 having outer walls
6, 7, 8, 9, 10 and opposing end walls 12, 14. A pair of terminal receiving passageways
16 extend through the terminal block 4 between the opposing end walls 12, 14. Disposed
in these terminal receiving passageways 16 are terminals 18. As mentioned above, these
terminals 18 are meant to be generic in nature and could represent either fibre optic
or electrical terminals. Respective primary retention members 20, 22 are disposed
along the passageways for retaining the terminals 18 therein. Additionally, a secondary
locking member 24 is received within a slot 26 that extends transversely across the
terminal block 4 relative to the passageways 16. Additionally, it can be seen that
side walls 6 and 10 define a corner 28 and side walls 8 and 9 define a corner 30.
[0014] With reference now to figure 2, the primary retention members 20, 22 will be described
in greater detail. With reference first to primary retention member 20, the primary
retention member 20 is a stamped and formed piece of flat metal having a body portion
32. A locking lance 34 is sheared out of the body 32 in order to retain the retention
member 20 within terminal block 4. Additionally, a resilient retention arm 36 is also
sheared from the body 32 and folded so that a free end 38 extends into passageway
16. The resilient retention arm 36 is constructed such that as the terminal 18 is
inserted into the housing, the retention arm 36 will deflect and a shoulder 40 of
the terminal 18 passes by and then resile therebehind to prevent removal of the terminal
18.
[0015] The primary retention member 20 is disposed within a channel 43 that is moulded into
the terminal block 4. The primary retention member 20 is disposed' between the passageway
16 and the corner 30 defined by side walls 9 and 8. As can be seen, the primary retention
member 20 is relatively thin and takes up a minimum amount of space, thereby making
a particularly useful in connectors having relatively thin side portions between the
terminal passageways 16 and an adjacent side 9. It is also envision that the body
32 and the associated retention arm 36 could be curved to more closely comply with
the shape of the passageway 16 when cylindrical terminal 18 are used. Note, non-cylindrical
passageways may be formed and the primary retention member may be disposed along the
sidewall.
[0016] With further reference 'to figure 2, a further primary retention member 22 will be
described in detail. The primary retention member 22 is a conventionally configured
and integrally moulded member with the terminal block 4. Primary retention member
22 includes a resilient arm 42 suspended in cantilevered fashion and extending generally
from opposing end wall 12 towards a free end 44. A latch 46 is formed at the free
end 44 and extends into the passageway 16. The latch 46 is configured to allow a shoulder
40 of the terminal 18 to pass during insertion and then when the latch arm 42 resiles
back to prevent withdraw of the terminal. This is best seen in figure 4. Furthermore,
at the free end 44 is a notch 48 opposite the latch 46. Also, behind the free end
44 is a post 50 that prevents overstress of the primary retention member 22.
[0017] The retention member 22 is formed between the terminal receiving passageway 16 and
the corner 28 defined by outer side walls 6 and 10. As can bee seen, in the vicinity
of the resilient arm 42, a portion of the terminal block 4 at the corner 28 has been
removed. This enables the post 50 to be easily formed behind the resilient arm 42.
However, a primary retention member 22 such as described above and the overstressed
post 50 may be incorporated anywhere along the housing where it is desired to prevent
damage to the primary retention member 22 by way of overstressing. This is especially
applicable where the side walls are relatively close to the terminal receiving passageway
16.
[0018] With reference now to figures 3 and 4, sectional views are shown that illustrate
how the primary retention members 20, 22 interact with the terminals 18 when they
are received within passageways 16. As can be seen in figure 3, retention arm 36 of
the body 32 extends into the passageway 16 to fit behind the shoulder 40. Locking
lance 34 is further received within a cavity 52 to prevent removal of the retention
member 20. With reference now to figure 4, resilient arm 44 is shown cantilevered
downward from the end wall 12 to a free end 44 which fits behind the shoulder of the
terminal 18. Overstress post 50 is shown behind the free end 44 such that excessive
outward deflection of the resilient arm 42 will be prevented by way of the post 50
which is located behind the free end 44.
[0019] With reference to figures 1-4, it can advantageously be seen by locating the primary
retention members 20, 22 in the corners 28, 30 that are in the vicinity of the passageways
16, more material of the terminal block 12 is available. Furthermore, the secondary
locking member 24 that is inserted into the slot 26 includes a pair of arms 54 defining
a U-shaped structure such that the arms 54 fit on either side of the terminal behind
a second shoulder 56 thereof.
[0020] With reference now to figure 5, a second embodiment of the connector shown in figures
1-4 generally at 200. The second embodiment 200 also includes a terminal block 204
and primary terminal retaining members 220, 222. Basically, the second embodiment
is generally identical to the first embodiment with the exception of a different secondary
locking member 224. In the second embodiment, the secondary locking member 224 is
a key-like member integrally moulded to the terminal block 204 by way of a frangible
portion 260. The secondary locking member 224 is to be received within a cavity 226
that is located between terminal receiving passageways 16 such that shoulders 262
will co-operate with the shoulders 56 (not shown in figure 5). As a result of rotating
the secondary locking member 224 in the direction of arrow A, the secondary locking
member 224 is inserted into the cavity 226 free end 268 first. The act of rotation
in the direction of arrow A brakes the frangible portion 260 and enables the secondary
locking member 224 to be properly seated within the terminal block 204.
[0021] Therefore, advantageously, primary retention has been provided for a connector having
relatively thin sections between terminal receiving passageways and outer side walls
of a terminal block. This is accomplished by either locating the primary terminal
retention members at the corners defined by the side walls that are in the vicinity
of the terminal receiving passageways, or by providing a primary retention member
that is stamped and formed from thin sheets of material and received within the terminal
block or by enhancing the structural integrity of a primary locking member by providing
overstress protection thereto.
1. A connector (2) for receiving terminals (18) therein, the connector comprising: a
terminal block (4) having outer side walls (6-10) that intersect to define corners
(28, 30) and opposing end walls (12, 14), at least one terminal receiving passageway
(16) extending between the opposing end walls for receiving a terminal therein, and
a primary retention member (20, 22) disposed along one terminal receiving passageway
and having a resilient retention arm (36, 42) extending into the passageway to retain
the terminal therein, where the one passageway is located in the vicinity of one of
the corners, the connector being characterised in that the primary retention member is disposed between one of the corners and the passageway
in the vicinity of the corner.
2. The connector of claim 1, wherein the primary retention member (20) is a stamped and
formed metal member.
3. The connector of claim 1, wherein the primary retention member (22) is integrally
moulded with the terminal block.
4. The connector of claim 3, wherein the resilient retention arm (42) extends to a free
end (44) and the terminal block includes a post (50) behind the free end to prevent
overstressing of the arm.
5. The connector of claim 4, wherein the resilient retention arm (42) includes a notch
(48) corresponding to the post.
6. The connector of claim 2, characterised in that the primary retention member (20) is formed from a generally flat plate and includes
a body (32) set in the terminal block and the retention arm extends from the body
into the passageway.
7. The connector of claim 6, characterized in that the primary retention member is received in a channel (43) of the terminal block
located along the passageway.
1. Verbinder (2) für das Aufnehmen von Anschlußklemmen (18) darin, wobei der Verbinder
aufweist: einen Klemmenblock (4) mit äußeren Seitenwänden (6-10), die sich schneiden,
um Ecken (28, 30) zu definieren, und gegenüberliegenden Stirnseitenwänden (12, 14);
mindestens einen Klemmenaufnahmedurchgang (16), der sich zwischen den gegenüberliegenden
Stirnseitenwänden für das Aufnehmen einer Anschlußklemme darin erstreckt; und ein
primäres Arretierelement (20, 22), angeordnet längs eines Klemmenaufnahmedurchganges
und mit einem elastischen Arretierarm (36, 42), der sich in den Durchgang hinein erstreckt,
um die Anschlußklemme darin zu halten, wobei ein Durchgang in der Nähe der einen der
Ecken angeordnet ist, wobei der Verbinder dadurch gekennzeichnet ist, daß das primäre Arretierelement zwischen einer der Ecken und dem Durchgang in der Nähe
der Ecke angeordnet ist.
2. Verbinder nach Anspruch 1, bei dem das primäre Arretierelement (20) ein gestanztes
und geformtes Metallelement ist.
3. Verbinder nach Anspruch 1, bei dem das primäre Arretierelement (22) zusammenhängend
mit dem Klemmenblock geformt ist.
4. Verbinder nach Anspruch 3, bei dem sich der elastische Arretierarm (42) zu einem freien
Ende (44) erstreckt und der Klemmenblock eine Stütze (50) hinter dem freien Ende umfaßt,
um eine Überbeanspruchung des Armes zu verhindern.
5. Verbinder nach Anspruch 4, bei dem der elastische Arretierarm (42) einen Einschnitt
(48) umfaßt, der der Stütze entspricht.
6. Verbinder nach Anspruch 2, dadurch gekennzeichnet, daß das primäre Arretierelement (20) aus einer im allgemeinen flachen Platte gebildet
wird und einen Körper (32) umfaßt, der in den Klemmenblock eingesetzt wird, und daß
sich der Arretierarm vom Körper in den Durchgang erstreckt.
7. Verbinder nach Anspruch 6, dadurch gekennzeichnet, daß das primäre Arretierelement in einem Kanal (43) des Klemmenblockes aufgenommen wird,
der längs des Durchganges angeordnet ist.
1. Un connecteur (2) pour recevoir des bornes (18), le connecteur comprenant: un bloc
de bornes (4) ayant des parois latérales externes (6-10) qui se coupent pour définir
des coins (28, 30) et des parois d'extrémité opposées (12, 14), au moins un passage
(16) recevant une borne s'étendant entre les parois d'extrémité opposées pour y recevoir
une borne, et un élément de retenue primaire (20, 22) disposé le long d'un passage
recevant une borne et ayant un bras de retenue élastique (36, 42) s'étendant dans
le passage pour y retenir la borne, l'un des passages étant situé à proximité d'un
des coins, le connecteur étant caractérisé en ce que l'élément de retenue primaire est situé entre l'un des coins et le passage au voisinage
du coin.
2. Connecteur selon la revendication 1, dans lequel l'élément de retenue primaire (20)
est un élément métallique estampé et formé.
3. Connecteur selon la revendication 1, dans lequel l'élément de retenue primaire (22)
est moulé intégralement avec le bloc de bornes.
4. Connecteur selon la revendication 3, dans lequel le bras de retenue élastique (42)
s'étend jusqu'à une extrémité libre (44) et le bloc de bornes comprend un plot (50)
derrière l'extrémité libre pour empêcher une déformation excessive du bras.
5. Connecteur selon la revendication 4, dans lequel le bras de retenue élastique (42)
inclut une encoche (48) correspondant au plot.
6. Connecteur selon la revendication 2, caractérisé en ce que l'élément de retenue primaire (20) est formé à partir d'une plaque sensiblement plate
et inclut un corps (32) positionné dans le bloc de bornes et en ce que le bras de retenue s'étend du corps dans le passage.
7. Connecteur selon la revendication 6, caractérisé en ce que l'élément de retenue primaire se loge dans un canal (43) du bloc de bornes situé
le long du passage.