Technical field
[0001] The present invention concerns the technical field relative to industrial electric
connectors.
[0002] In particular, the invention refers to an industrial electric connector provided
with an innovative retention/unhooking system that allows to connect it in a removable
way to its complementary connector.
Background art
[0003] Industrial electric connectors have long been known and serve to feed electrically
various devices, such as, in the case in question, outdoor and indoor pumps/circulators
to various apparatus, like solar thermal systems, boilers, floor heating systems,
etc.
[0004] These types of connectors, through an electric wire, are connected on one side to
a current source, generally coming from an electric panel on the equipment, while
on the opposite side they are connected in a removable way to a complementary connector
installed on the device to feed.
[0005] The connectors, as per figure 1 of the prior art, foresees an electrical plug contained
in a casing forming the body of the connector itself. The electrical plug is fed electrically
through a wire that terminates in the body of the connector and, in turn, the plug
transmits the current to the external device when it is connected to it through its
complementary connector, which is inserted in the electrical plug.
[0006] Figure 1 shows an external casing 101 which is hollow internally in such a way as
to form a lodging seat 102 inside which the electrical plug 103 is placed.
[0007] As it is well known, the electrical plug 103 serves to hold the male (complementary
connector). To that aim, the electrical plug is provided with holes 103' in which
the metallic terminals of the male are inserted. The electrical plug contains inside
it the electrical contacts and is fed through a wire that penetrates in the body of
the connector through its back part 104.
[0008] The connection with the male has to be fastened in such a way as to impede accidental
unhookings and for this reason fast attachment systems are foreseen that connect the
male to the female.
[0009] In the background art, always with reference to figure 1, these fast attachment systems
have the shape of a shank 105 which is fixed by one of its ends 105' to the external
casing 101 that forms the body of the connector. The opposite end, instead, terminates
with a tooth 105" which, through an appropriate opening, has access in part to the
seat 102, penetrating in the thickness of the casing. The male foresees an appropriate
receiving seat or a complementary tooth that comes into contact with the end of the
tooth 105", realizing the block at the moment of the insertion. In particular, the
tooth that is present in the complementary connector, during its insertion in the
seat 102, climbs over the tooth 105", constraining themselves one against the other.
[0010] To operate the removal of the male electric connector (complementary) it is therefore
necessary to manually operate the lifting of the shank 105 in such a way that the
tooth disengages, allowing its removal. When the male connector has exited, the shank
is released and goes back elastically to the initial position. To make an insertion
it is therefore enough to insert again the male inside the seat until the tooth snaps,
i.e. it engages in a pre-established point of the male connector, blocking it in position.
[0011] It is clear that this solution presents various technical inconveniences.
[0012] For example, the removal of the male connector is not easy because it is not easy
to operate the lifting of the shank. It is required to act with the tip of the fingers
and this operation can produce abrasions.
[0013] Moreover, if the shank is excessively forced, it can be broken, rendering the entire
connector not usable. It is therefore clear that this solution lends itself well to
accidental breakings.
Disclosure of invention
[0014] It is therefore the aim of the present invention to provide an innovative electric
connector that solves at least in part said technical inconveniences.
[0015] In particular, it is the aim of the present invention to provide an industrial electric
connector wherein the retain/unhooking device of the internal plug satisfy to regulation
requirements that impose a traction resistance superior to the 100 N, in such a way
as to result applicable in many different sectors.
[0016] It is also the aim of the present invention to provide an industrial connector wherein
the retain/unhooking device is such as to allow an unhooking that is fast, simple
and does not imply risks of abrasions for the user.
[0017] Last, it is the aim of the present invention to provide an industrial connector provided
with a retain/unhooking device that results long-lasting.
[0018] These aims are reached with the present electric connector 1 according to the invention.
[0019] The electric connector (1) is suitable for coupling in a releasable way to a complementary
electric connector (100).
[0020] The electric connector (1) comprises:
- An external casing (2);
- An electrical plug (4) arranged in the external casing (2) so that it can be connected
with the complementary electric connector (100);
- Fast hooking means (10) that allow to fasten in a releasable way the electric connector
(4) to its complementary connector (100), in turn provided with hooking means (42),
when the two connectors are connected between them.
[0021] In accordance with the invention, the fast hooking means (10) comprise:
- A slab (11) arranged slidingly and provided with an engaging element (41);
- Elastic means (16, 216) arranged in such a way as to push an end (11') of the slab
(11) outside the casing (2) through an opening (50) found in the casing (2) and;
- and wherein said engaging element (41) is arranged in the slab in such a way that
it can engage in contrast against a complementary engaging element (42) belonging.to
the complementary electric connector (100) when the complementary electric connector
(100) is inserted in the electrical plug (4), and it can disengage from said complementary
engaging element (42) when the slab (11) is made to slide through a crushing exerted
on the end (11') exiting from the casing (2).
[0022] This solution easily solves said technical problems.
[0023] It is not necessary anymore to operate a difficult lifting of the shank to disengage
the tooth from the complementary connector, with the risk of injuries or breakings.
The solution proposed allows the unhooking by simply acting using pressure on a button,
i.e. by pressing the button. Not only does this solution cause abrasions but, above
all, is much more solid and long-lasting than the preceding one. The engaging element
(41), in the shape of a tooth, for example, is integral to the slab, therefore a sliding
of the slab causes a disengagement of this tooth with the complementary engaging element.
The action of crushing between the engaging elements (41, 42) in the unhooking phase
is certainly safer against breakings with respect to an operation of lifting of the
shank.
[0024] The present solution, further, does not require modifications of the complementary
electric connector, which continue productively to maintain their original configuration.
This solution, therefore, adapts itself well to the block of complementary electric
connectors already in commerce without requiring their adapting structural modification.
[0025] Further advantages can be deduced from the dependent claims.
Brief description of drawings
[0026] Further characteristics and advantages of the present industrial electric connector,
according to the invention, will result clearer with the description that follows
of some embodiments, made to illustrate but not to limit, with reference to the annexed
drawings, wherein:
- Figure 1 represents an axonometric view of a connector in accordance with the background
art;
- Figure 2 represents an axonometric view of the industrial electric connector in accordance
with the invention;
- Figure 3 shows an exploded view of the connector of figure 2;
- Figure 4 and figure 5 show a technical detail, in axonometry, of the fast hooking/unhooking
device in accordance with the invention;
- Figure 6 shows the same solution in a top view;
- Figures from 7 to 11 show possible forms of electric connector that couples to a complementary
electric connector 100;
- Figure 12 and figure 13 show in an axonometric view the teeth (41, 42) to connect
the complementary connector 100 to the plug 4;
- Figure 12A highlights the gap between the U-shaped guide, where the slab 11 is placed
slidingly, and the body of the plug 4 in such a way as to allow the insertion of the
tooth 42 of the complementary connector that engages with the tooth 41;
- Figure 14 shows a variant wherein the spring is integrated directly in the body of
the slab, in particular it is a bent appendix of the slab.
Description of some preferred embodiments
[0027] With reference to figure 2, an industrial connector is highlighted in accordance
with the present invention.
[0028] The industrial connector 1 foresees an external casing 2, for example generally L-shaped.
It forms an internal seat 3 suitable for holding, in a permanent way, an electrical
plug 4.
[0029] The external casing 2 is, preferably but not necessarily, realized in PVC so as to
be easily moulded with well-known mould processes as per the background art.
[0030] Figure 3 shows in an exploded view the essential components. The electrical plug
4 is therefore highlighted, removed from the seat 3 just for descriptive clarity purposes.
Always in figure 3 the electric wire 20 is highlighted that feeds the current to the
plug 4. Figure 2 highlights the wire 20 that enters in the casing 2 of the connector
through its back part 5.
[0031] Always figure 3 highlights, according to the background art, the three or more electrical
contacts 7 that are connected from one of their parts to the wire 20. To that aim,
the wire 20 foresees three or more corresponding branches 20' that engage in the appropriate
connections 7' found at the end of the contacts 7.
[0032] The electric contacts 7 result inserted in the body of the plug 4 and the branches
20' engage in the hooks 7', penetrating through the holes 8 of the plug 4 (see dotted
lines that join the branches 20' to the holes 8).
[0033] Figure 2, like figure 3 as well, shows the hooking/unhooking device 10 that is the
subject of the invention.
[0034] This device foresees a slab 11, for example made of plastic, of such a length that
when applied, as described right below, one of its exceeding parts 11' exits from
the casing forming a button. The casing 2 foresees an opening 50 through which the
end 11' of the slab 11 can exit. The slab is slidingly assembled inside a guide 12
and brings integral to it a tooth 41. The guide is found integral to the body of the
plug but it could also be separate and then connected in the production phase.
[0035] As shown in figure 5, for example, the guide is preferably constituted by a U-shaped
element open from one side and that forms the two sides 13 and 14 into which the slab
results slidingly interposed.
[0036] As it is then highlighted in figure 12A, the U-shaped guide is connected or integral
to the plug 4 in such a way as to result distanced from it of a pre-determined quantity.
In this way, as better clarified below, the tooth 41 of figure 12 belonging to the
slab exits from the guide, facing the plug 4.
[0037] The casing itself 2 forms a constraint against a shoulder 40 of the slab 11 to impede
the exit of the slab from the opening 50 and, therefore, limiting the exit of the
single end 11' that has the function of unhooking button. Alternatively, a stop could
be foreseen, directly found on a side (13, 14) of the U-shaped seat.
[0038] The U-shaped element therefore terminates with a support base 15. Both figure 4 and
figure 5 highlight an elastic spring 16 (for example, of compression) which is arranged
inside the U-shaped element in such a way as to result comprised between the support
base 15 and the slab 11 assembled slidingly inside the U-shaped element itself.
[0039] In particular, as highlighted in figure 5, the spring is fixed on one side to the
support base 15 and on the opposite side to a point of the slab.
[0040] In this particular solution of figure 5, the fixing of the spring 16 to the slab
11 is obtained by conforming in a particular way the slab itself, as described right
below.
[0041] The slab foresees a cut 21 that generates a lower side 21' and a passage channel
that goes from the side 21' to the side 22 and in which to insert the end of the spring.
The passage channel of the spring therefore starts from the base 22 of the slab 11
and terminates on the lower side 21'. The path of the channel is inclined in such
a way as to follow the profile of the terminal section of spring that is inserted
in it. The exceeding part of spring that exits from the opening 21' is bent in such
a way as to constrain the spring to the slab. This solution has the advantage of realizing
a simple connection and guarantees an optimal coaxiality between spring and button
and therefore a precise functioning.
[0042] Obviously, other connection systems could anyway be realized without for this moving
apart from the present inventive concept.
[0043] For example, in a variant it would be possible to avoid the realization of the channel
that joins the side 22 to the side 21' and glue or weld the end of the spring directly
to the side 22.
[0044] As shown in figure 6, therefore, the slab exits from the casing 2 through an appropriate
opening 50 found in said casing. The exceeding part 11' of slab that exits from the
cut therefore forms a fast unhooking button.
[0045] In a further variant, shown in figure 14, the spring is substituted by an appendix
216 elastically flexible and found directly in the slab 11. On the basis of the thickness
of the appendix, it will result adjustable in flexibility, acting exactly as a spring
integrated to the slab.
[0046] Going back to figure 5 or figure 3, these show the shoulder 40, for instance, found
in the slab and that goes in contrast against the casing in such a way that the slab
is not expelled by the push action of the spring.
[0047] In the realization phase, the entire plug 4 is assembled together with the contacts
7 and the electric wires 20', and the casing 2 is moulded around these elements.
[0048] Figures from 7 to 11 show many different types of electric connectors 1 connectable
to a complementary connector 100. For example, figure 11 shows the seats 101 where
the contacts 102 are placed, which hold the contacts 7 of the connector 1.
[0049] As shown in figure 12, the slab (obviously in all the embodiments described) also
foresees integrated in it a block element 41, in the shape of a tooth 41, for example,
which is configured to engage against an equivalent block element 42, such as a tooth
42, belonging to the male connector 100 and highlighted both in figure 7 and in figure
13.
[0050] Figure 13 shows the cut 21 to allow, as better clarified right below, an enhanced
extraction of the male connector 100 with respect to the electrical plug 1.
[0051] In use, therefore, as shown in figure 12, the spring maintains the slab all extended
in such a way that the exceeding part 11' of slab that exits from the casing 2 forms
the release button for the user. The slab, thanks to its shoulder 40, stops against
the casing and is not expelled.
[0052] In this position, the tooth 42 of the male 100, at the moment of the insertion, results
in line (therefore in the insertion trajectory) with the tooth 41 of the slab. The
tooth 41 exits from the guide and faces the plug through the gap described with reference
to figure 12A. In this way, during the insertion of the complementary plug 100, the
teeth intercept themselves and the climbing over of the tooth 42 on the tooth 41 takes
place. Once the climbing over has taken place, the flat face 42' is found in contrast
against the flat face 41', realizing the block. In this position, the male connector
100 is impeded from exiting also if a high traction force is applied, since the tooth
42 is in contrast against the tooth 41.
[0053] To operate the release, it is necessary to push the button 11, i.e. the exceeding
part 11' of slab that exits from the casing. So during the crushing of the slab, the
flat face 41' of the tooth 41 slides on the flat face 42' of the tooth 42, realizing
a disengagement of the teeth and thus bringing the tooth 42 in line with the seat
21. In this position, not being the teeth in contrast one against the other anymore,
the tooth 42 is free to slide into the seat 21, appropriately wide, allowing the unhooking
that allows to extract the male 100 from the plug 4.
[0054] From what has been described about the functioning, it is now clear that, in a further
variant of the invention, the U-shaped guide found integral to the plug could be instead
found directly in the casing and, as usual, open from one side in such a way that
the tooth 41 belonging to the slab faces the plug 4, appropriately distanced to allow
the insertion of the tooth 42 belonging to the complementary connector 100.
[0055] In order to favour the climbing over of the tooth 42 it is clear that the teeth 41
and 42 can be appropriately configured. For instance, in figure 13 a tooth 42 is shown
that presents an inclined face 42" complementary tb the inclined face 41" of the tooth
41. The inclined faces realize inclined surfaces that facilitate the snap and therefore
the reciprocal climbing over for the block.
[0056] It is clear that equivalent realization solutions are possible.
[0057] For instance, always with reference to figure 12 or 13, it can be foreseen that the
sliding U-shaped seat of the slab is of such a height as to allow a minimal vertical
play of the slab 11. In this way, the insertion would be enhanced by lifting a little
the slab during the insertion of the complementary connector 100 that would favour
the climbing over of the tooth 42 on the tooth 41.
[0058] Alternatively, a system of tighter tolerances can be realized, resorting to precise
dimensions of the teeth (42, 41) and to the yielding of the materials, so as to obtain
a safer block.
[0059] The seat 21, by the way, is not essential for the unblock since, once the pushing
of the button 11' has taken place, the two teeth are not in contrast anymore. It is
clear that a seat 21 eliminates completely the eventual rubbing friction that would
be created between the crest of the tooth 42 and the surface of the slab itself during
the removal phase, thus facilitating the extraction significantly.
[0060] Preferably, but not necessarily, the electrical plug 4 is made of Nylon plastic of
the PA66 type with a three or six-pole connector.
1. An electric connector (1) suitable for coupling in a releasable manner to a complementary
electric connector (100), the electric connector (1) comprising:
- An external casing (2);
- An electrical plug (4) arranged inside the external casing (2) in such a way that
it can be connected with the complementary electric connector (100);
- Fast hooking means (10) suitable for engaging in a releasable manner with relative
hooking means (42) belonging to the complementary electric connector (100) when the
complementary electric connector couples to the electric connector (1) and;
characterized in that said fast hooking means (10) comprise:
- A slab (11) arranged slidingly and provided with an engaging element (41);
- Elastic means (16, 216) arranged in such a way as to push an end (11') of the slab
(11) outside the casing (2) through an opening (50) found in the casing (2) and;
- and wherein said engaging element (41) is arranged in the slab so that it can engage
in contrast against a complementary engaging element (42) belonging to the complementary
electric connector (100) when the complementary electric connector (100) is inserted
in the electrical plug (4) and it can disengage from said complementary engaging element
(42) when the slab (11) is made to slide through a crushing exerted on the end (11')
exiting from the casing (2).
2. An electric connector (1), according to claim 1, wherein the slab is assembled slidingly
with respect to the electrical plug (4).
3. An electric connector (1), according to claim 1 or 2, wherein the slab (11) is arranged
inside a sliding guide (12) integral to the electrical plug (4).
4. An electric connector (1), according to claim 1, wherein the slab is slidingly assembled
inside a seat found in the external casing (2).
5. An electric connector (1), according to one or more of the preceding claims, wherein
the sliding guide (12) is such that the slab results distanced from the electrical
plug (4) in such a way that the engaging element (41) faces the electrical plug (4).
6. An electric connector (1), according to one or more of the preceding claims, wherein
said engaging element (41) has the shape of a tooth (41).
7. An electric connector (1), according to claim 6, wherein said tooth (41) is configured
in such a way that a complementary tooth (42) belonging to the complementary electric
connector (100), climbs over it, bringing in contrast one against the other when the
complementary connector (100) is inserted in the electrical plug (4), realizing the
block and, when the crushing on the end (11') is operated, the tooth (41) slides with
respect to the other tooth (42), operating the unblock.
8. An electric connector (1), according to claim 6 or 7, wherein said tooth (41) presents
a flat face (41') destined to go in contrast against the block tooth (42) of the complementary
electric connector (100) and an inclined face (41") to enhance the climbing over.
9. An electric connector (1), according to one or more of the preceding claims, wherein
the slab (11) presents a cut (21) of a pre-determined width and arranged in such a
way as to intercept the tooth (42) of the complementary connector (100) when said
end (11') of the slab (11) is crushed.
10. An electric connector (1), according to one or more of the preceding claims, wherein
the slab (11) presents a shoulder (40).
11. An electric connector (1), according to one or more of the preceding claims, wherein
said elastic means have the shape of a spring (16).
12. An electric connector (1), according to claim 11, wherein said spring (16) is interposed
between the slab (11) and the base (15) of the sliding guide (12).
13. An electric connector (1), according to claim 11 or 12, wherein said spring (16) is
inserted by one of its ends in a channel found along at least a part of the length
of the slab (11).
14. An electric connector (1), according to claim 13, wherein said channel runs from the
surface (22) of the slab to the surface (21') generated by the cut (21) in the slab
(11).
15. An electric connector (1), according to one or more of the preceding claims, wherein
said elastic means have the shape of a flexible appendix (216) found in the slab,
so as to go in contrast against the base (15) of the U-shaped seat.