[0001] The present invention relates to a front plate for a socket, such as a socket for
receiving a plug of an electrical cable or the like.
[0002] Though the present invention is more widely applicable, it takes its starting point
in electrical outlets comprising sockets. Electrical outlets with sockets come in
many different variations, and the term is here to be construed in the broadest sense,
covering
inter alia electrical mains outlets, outlets for telephones and telecommunications, television,
radio, audio etc. mounted in or on walls, cable conduits and the like as well as part
of switch cabinets.
[0003] Electrical outlets for some applications, and thus the sockets comprised therein
are more prone to malfunction due to contamination with moist and dirt than others.
This is in particular the case when the outlet is for small signal purposes, i.e.
with low voltage and current, such as telecommunication outlets. It is, however, also
the case for mains outlets in humid and moist conditions, e.g. in wet rooms and outdoors.
[0004] In these cases there is a desire to protect the socket against such contamination
when not in use, i.e. when no plug is inserted in the socket. In this respect, it
has been suggested to cover the socket with a front cover comprising a lid.
US-B-7651346 discloses a socket with a front cover comprising a lid. The lid is slideable with
respect to an aperture in the front cover so as to allow access to the socket behind
the front plate, and insertion of a plug therein. The lid is biased towards a position
where it covers the aperture, i.e. automatically returning the lid to the closed position
protecting the socket, when a plug is removed from the socket.
[0006] One problem identified in the prior art front covers with slidable lids is that the
minimum size of the cover is restricted by the fact that sufficient space has to be
allotted to the lid and return mechanism behind the front cover, so as to allow the
lid to occupy both the open and the closed positions.
[0007] Front covers with hinged lids are also known, be it hinged to swing outward or hinged
to swing inward with respect to the front cover. The latter suffer for the drawback
that plenty of space is required in front of the socket to accommodate the swinging
motion, whereas the former suffer from the drawback that they require two hands for
inserting the plug, i.e. one for opening and holding the lid and the other for insertion
of the plug.
[0008] It is the object of the present invention to overcome at least these problems with
the prior art.
[0009] According to the present invention, this object is achieved by a front plate for
a socket, said front plate comprising a front surface having at least one first plane
surface part and at least one aperture through which a plug may be inserted into said
socket, at least one lid adapted to close said aperture when no plug is inserted in
the socket, said lid being adapted to perform a sliding motion between a first position
where said aperture is closed and a second position where said aperture is open so
as to allow insertion of the plug, characterized in that said sliding motion is a
non-linear sliding motion between said first position and said second position, the
lid being, in the second position, located in front of and overlapping said front
surface.
[0010] According to a preferred embodiment, the lid comprises a substantially plane surface,
said substantially plane surface being, in the first position, parallel to, and preferably
flush with, said at least one plane surface part. This allows the lid to occupy a
well protected yet easily accessible first position, which moreover does not take
up much height.
[0011] According to a further preferred embodiment, said aperture is located in the bottom
of a recess in the front surface for accommodating the lid in the first position,
said recess having guide means adapted for guiding the lid through said non-linear
motion. This allows for easy guidance of the lid through the non-linear motion whilst
still keeping the overall height low.
[0012] According to a further preferred embodiment biasing means are provided for the at
least one lid, so as to automatically return the at least one lid to said first position
when no plug is inserted in the socket. This is advantageous in that no attention
need be given to the closing of the lid when removing a plug from the socket. Instead,
the lid automatically closes and protects the socket against dirt humidity and other
pollution.
[0013] According to another preferred embodiment, the front plate further comprises side
walls arranged at an angle with respect to said front surface, where at least one
of said side walls comprises an opening adapted for insertion of said biasing means.
This allows for easy insertion of the biasing means during initial assembly as well
as for replacement purposes.
[0014] According to yet a further preferred embodiment, the biasing means comprise an omega-shaped
spring. The use of an omega-shaped spring is advantageous in that it is flat, extending
in one plane only and thus allows for a low height of the front plate. Moreover it
may readily be held in position by appropriate configuration of the lid and the internal
walls of the front plate.
[0015] According to yet another preferred embodiment, the lid comprises a protrusion extending
from said substantially plane surface. This allows for engagement with the plug to
be inserted, by means of a single-handed movement of the lid into the open second
position using the plug only.
[0016] According to a further preferred embodiment, the protrusion comprises a wall with
a centrally recessed top wall part. Recessing the top wall part is particularly advantageous
because it provides easy access of possible locking means of the plug which may need
to be released before removal of the plug.
[0017] The invention will now be described in greater detail based on non-limiting exemplary
embodiments in conjunction with the appended drawings, on which:
Fig. 1 shows a front perspective view of the front plate according to the invention
with two lids, one lid slightly open and one lid in a open position,
Fig. 2 shows a front perspective view of the front plate of Fig. 1 with one lid removed
and one lid partially open,
Fig. 3 shows a front perspective view of the front plate of Fig. 1 with both lids
closed,
Fig. 4 shows a cross-section of the front plate taken along the line IV-IV of Fig.
2,
Fig. 5 shows a plan view of the rear side of the front plate of Fig. 1,
Fig. 6 shows a perspective front view of the lid, and
Fig. 7 shows a perspective rear view of the lid.
[0018] In Fig. 1 a cover plate 1 according to the invention is shown. The cover plate of
Fig. 1 is adapted for mounting as the closing member of a box comprising the at least
one socket, such as a wall mounted installation box, a cable guide or the like, and
has means 5 for engaging such a box. The cover plate 1 furthermore comprises an optional
window 6 for e.g. presenting information about the connections related to the socket.
The window 6 is optional, and it is evident for the skilled person that the omission
thereof would further reduce the front area of the cover plate 1.
[0019] As can be seen, in Fig. 1, the cover plate 1 comprises a front surface with at least
one first plane surface part 2 but may have further plane surface parts such as a
plane surface part 3 surrounding the first plane surface part 2. In the front surface
two apertures 4 through which a respective plug may be inserted into a matching socket
are provided. Neither the plugs nor the sockets are shown, as the actual type of matching
plugs and sockets are of minor importance for the invention. The outset of the present
invention, however, is data cables with RJ45 plugs and sockets, but the invention
is applicable to numerous other plug and socket connections, such as USB and other
data cables, electrical mains, optical cables, etc.
[0020] As indicated above, the cover plate 1 comprises two slidable lids 7 adapted to cover
a respective aperture 4. In Fig. 1, the lid 7 on the right-hand side has been slid
in front of the front surface so as to uncover the aperture 4, whereas he lid 7 on
the left-hand side is located in an intermediate position in front of an aperture
4 so as to almost cover it. It will be understood that the arrangements of the respective
lids 7 and the apertures 4 of Fig. 1 are essentially identical to each other. It will
thus be appreciated that the lids 7 on both the right-hand side and the left-hand
side are accommodated in respective recesses 8 in the bottom of which the apertures
4 are located. Preferably the lid 7 is accommodated in such a way in the recess 8
that the front surface is flush with or at least parallel with the first plane surface
2, when in the closed position, as illustrated in Fig. 3.
[0021] Each lid 7 is a rigid, preferably integral piece, made by an appropriate manufacturing
method, such as injection molded in one piece from a suitable thermoplastic material,
e.g. ABS. At one end the lids 7 comprise a protrusion 9 for engagement by a plug to
be inserted or by a finger, in order to slide the lid 7 from a first position accommodated
in the recess 8 as depicted in Fig. 3 to a second position corresponding to the position
depicted on the right-hand side of front cover 1 of Fig. 1. Preferably the protrusion
9 is a raised wall part serving as an engagement means for a plug to be inserted.
Preferably, the raised wall part has a centrally arranged cut-out or a recess 10 allowing
for easy access to the locking tab of a plug, such as the locking tab of an RJ45 plug,
when the plug is to be removed from the socket.
[0022] As will be explained in greater detail below, the lids 7 are biased to return automatically
to the first position illustrated in Fig 3, where they are accommodated in the recess
8. Thus, to insert a plug, the plug is brought into proximity of the front surface
2, then slid along the front surface into engagement with the protrusion 9. Then through
a further sliding motion the plug moves the lid 7 from the first position as depicted
in Fig. 3 to the second position depicted on the right-hand side of the front cover
of Fig. 1, thus uncovering the aperture 4 and allowing for insertion of the plug perpendicular
to the front surface 2.
[0023] Turning now to Fig. 5, the biasing means will be explained. Fig. 5 is a rear plan
view of the front cover 1 with both lids 7 in the closed position, i.e. as shown in
Fig. 3. The rear sides of both the lids 7 are partially visible through the apertures
4. Also partially visible is the biasing means 11 for biasing the lids towards the
first position which they both occupy in Fig. 5. As will be explained below, the biasing
means 11 on the right-hand side of Fig. 5, is in the mounted position, whereas the
biasing means 11 on the left-hand side is in a position found only during insertion.
[0024] The biasing means 11 is preferably a flat spring so as to allow the overall height
of the front cover 1 to be kept low. In the preferred embodiment the illustrated biasing
means 11 is a generally omega-shaped steel spring with two legs, adapted to either
engage a groove formed as an undercut protruding wall part 12 on the rear side of
the lids 7, or engaging an upstanding wall part 13 of the rear of the front cover
1, as illustrated on the right-hand side of Fig. 5. Though the use of an omega-shaped
steel spring is currently preferred, the skilled person will realize that other types
of spring or biasing means 11 could be used instead. One reason that the omega-shaped
spring is currently preferred is also that it allows for easy insertion into the front
cover 1 during manufacture or in case it becomes necessary to replace the spring.
In order to easily insert the omega-shaped spring an opening in the form of a slit
14 is provided in appropriate ones of the outer side walls 15. As illustrated on the
left-hand side of Fig. 5, the omega-shaped spring may be inserted through the slit
14, into the position illustrated on the right-hand side of Fig. 5.
[0025] The lid is allowed to move at least partially in front of the front surface of the
front cover 1, thus freeing the lid 7 from internal space constraints of the front
cover 1. For this purpose the recess 8 is provided with guiding surfaces 16, 17, 18,
19, 20 (best seen in Fig. 2), of which at least some are contiguous. In the present
example the guiding surfaces 16 and 17 are not contiguous in the sense that two surfaces
21, 22 which do not perform any function as guiding surfaces are present. These guiding
surfaces cooperate with running surfaces 23 and 24 located on the rear side of the
lid 7, such as a tapered front end surface 23 and inclined end surface 24. Runner-like
side walls 25 are also provided, but do not actually engage the guiding surfaces 16,
17, 18, 19, 20 in illustrated embodiment of the present invention. Furthermore, the
lid 7 comprises a pair of lateral bosses 26 engaging and guided in corresponding lateral
grooves 27 in the recess 8, thereby preventing the lid 7 from separating from the
remainder of the front cover 1 and falling out of the recess 8.
[0026] When engaging the protrusion 9 with a plug or a finger and pressing or pulling the
lid 7 in the downward direction (in the sense of Fig. 1), the tapered front end surface
23 will, guided by the guide surface 16, easily slide over the edge of the recess
8. Upon further motion the inclined end surface 24 will move down the ramp surface
20 and onto the surface 19, forcing the tapered front surface 23 out of engagement
with the guiding surfaces in an outward turning motion of the lid 7 with respect to
the recess 8. Subsequently, the inclined end surface 24 will slide along the surface
19, until it reaches the next ramp surface 18, where the lid 7 will be forced to a
slight inward turning motion with respect to the recess 8. However, in the position
just before or when it reaches the next ramp surface 18, the plug may be inserted.
[0027] If it is desired to remove the plug the inclined surface 24 of the lid 7 may be moved
onto the surface 19 and further onto the surface 17, in a new turning motion of the
lid 7, allowing the lid 7 to be pressed deep down into the recess 8, so as to allow
good access to grasping the plug and disengaging possible locking means of the plug.
[0028] As will be understood the above motions provide a non-linear sliding motion, which
may moreover comprise not only a translator motion but preferably also some rotary
motion. This allows the lid 7 to move in front of the front cover into an open position
where a plug may easily be inserted as well as removed. Moreover the lid 7 will be
well protected in the first position, i.e. located in the recess 8, when no plug is
inserted.
1. A front plate (1) for a socket, said front plate (1) comprising
a front surface having at least one first plane surface part (2) and at least one
aperture (4) through which a plug may be inserted into said socket,
at least one lid (7) adapted to close said aperture (4) when no plug is inserted in
the socket, said lid being adapted to perform a sliding motion between a first position
where said aperture (4) is closed and a second position where said aperture (4) is
open so as to allow insertion of the plug,
said sliding motion is a non-linear sliding motion between said first position and
said second position,
characterized in that
the lid (7) being, in the second position, located in front of and overlapping said
front surface.
2. A front plate (1) according to claim 1, wherein the lid (7) comprises a substantially
plane surface, said substantially plane surface being, in the first position, parallel
to, and preferably flush with, said at least one plane surface part (2).
3. A front plate (1) according to any one of the preceding claims, wherein said aperture
(4) is located in the bottom of a recess (8) in the front surface for accommodating
the lid (7) in the first position, said recess (8) having guide means (16-20; 27)
adapted for guiding the lid (7) through said non-linear motion.
4. A front plate (1) according to any one of the preceding claims, wherein biasing means
(11) are provided for the at least one lid (7), so as to automatically return the
at least one lid (7) to said first position when no plug is inserted in the socket.
5. A front plate (1) according to claim 4, further comprising side walls (15) arranged
at an angle with respect to said front surface, where at least one of said side walls
(15) comprises an opening adapted for insertion of said biasing means (11).
6. A front plate (1) according to any one of claims 4 or 5, wherein the biasing means
(11) comprise an omega-shaped spring.
7. A front plate (1) according to any one of claims 2-6, wherein said lid (7) comprises
a protrusion (9) extending from said substantially plane surface.
8. A front plate (1) according to claim 7, wherein said protrusion (9) comprises a wall
with a centrally recessed top wall part (10).
1. Frontplatte (1) für eine Steckdose, wobei die Frontplatte (1) aufweist:
eine Frontfläche mit mindestens einem ersten planen Oberflächenteil (2) und mindestens
einer Öffnung (4), durch die ein Stecker in die Steckdose eingeführt werden kann,
mindestens einen Deckel (7), der dazu geeignet ist, die Öffnung (4) zu verschließen,
wenn kein Stecker in die Steckdose eingeführt ist, wobei der Deckel dazu geeignet
ist, eine Gleitbewegung zwischen einer ersten Position, in der die Öffnung (4) geschlossen
ist, und einer zweiten Position auszuführen, in der die Öffnung (4) offen ist, um
die Einführung des Steckers zu ermöglichen, wobei die Gleitbewegung eine nichtlineare
Gleitbewegung zwischen der ersten Position und der zweiten Position ist,
dadurch gekennzeichnet, dass
der Deckel (7) in der zweiten Position vor der Frontfläche und diese überdeckend angeordnet
ist.
2. Frontplatte (1) nach Anspruch 1, wobei der Deckel (7) eine im Wesentlichen plane Oberfläche
aufweist, wobei die im Wesentlichen plane Oberfläche in der ersten Position parallel zu und vorzugsweise bündig mit dem
mindestens einen planen Oberflächenteil (2) ist.
3. Frontplatte (1) nach einem der vorhergehenden Ansprüche, wobei sich die Öffnung (4)
in der Unterseite einer Aussparung (8) in der Frontfläche zum Aufnehmen des Deckels
(7) in der ersten Position befindet, wobei die Aussparung (8) Führungsmittel (16 bis
20; 27) aufweist, die zum Führen des Deckels (7) durch die nichtlineare Bewegung geeignet
sind.
4. Frontplatte (1) nach einem der vorhergehenden Ansprüche, wobei Vorspannmittel (11)
für den mindestens einen Deckel (7) vorgesehen sind, um den mindestens einen Deckel
(7) in die erste Position rückzusetzen, wenn kein Stecker in die Steckdose eingeführt
ist.
5. Frontplatte (1) nach Anspruch 4, ferner aufweisend Seitenwände (15), die in einem
Winkel bezüglich der Frontfläche angeordnet sind, wobei mindestens eine der Seitenwände
(15) eine Öffnung aufweist, die zur Einführung des Vorspannmittels (11) geeignet ist.
6. Frontplatte (1) nach einem der Ansprüche 4 oder 5, wobei das Vorspannmittel (11) eine
omegaförmige Feder aufweist.
7. Frontplatte (1) nach einem der Ansprüche 2 bis 6, wobei der Deckel (7) einen Vorsprung
(9) aufweist, der sich von der im Wesentlichen planen Oberfläche aus erstreckt.
8. Frontplatte (1) nach Anspruch 7, wobei der Vorsprung (9) eine Wand mit einem mittig
ausgesparten oberen Wandteil (10) aufweist.
1. Plaque avant (1) pour une prise, ladite plaque avant (1) comprenant
une surface avant ayant au moins une première partie de surface plane (2) et au moins
une ouverture (4) à travers laquelle une fiche peut être insérée dans ladite prise,
au moins un couvercle (7) prévu pour fermer ladite ouverture (4) lorsqu'aucune fiche
n'est insérée dans la prise, ledit couvercle étant prévu pour effectuer un mouvement
de coulissement entre une première position dans laquelle ladite ouverture (4) est
fermée et une deuxième position dans laquelle ladite ouverture (4) est ouverte de
manière à permettre l'insertion de la fiche, ledit mouvement de coulissement est un
mouvement de coulissement non linéaire entre ladite première position et ladite deuxième
position,
caractérisée en ce que
le couvercle (7), dans la deuxième position, est situé devant ladite surface avant
en chevauchant cette dernière.
2. Plaque avant (1) selon la revendication 1, dans laquelle le couvercle (7) comprend
une surface substantiellement plane, ladite surface substantiellement plane, dans
la première position, est en parallèle, et de préférence en affleurement avec ladite
au moins une partie de surface plane (2).
3. Plaque avant (1) selon l'une quelconque des revendications précédentes, dans laquelle
ladite ouverture (4) est située au fond d'un renfoncement (8) dans la surface avant
pour recevoir le couvercle (7) dans la première position, ledit renfoncement (8) ayant
des moyens de guidage (16-20 ; 27) prévus pour guider le couvercle (7) au cours de
son mouvement non linéaire.
4. Plaque avant (1) selon l'une quelconque des revendications précédentes, dans laquelle
des moyens de précontrainte (11) sont prévus pour l'au moins un couvercle (7), de
manière à ramener automatiquement l'au moins un couvercle (7) dans ladite première
position lorsqu'aucune fiche n'est insérée dans la prise.
5. Plaque avant (1) selon la revendication 4, comprenant en outre des parois latérales
(15) agencées suivant un certain angle par rapport à ladite surface avant, au moins
l'une desdites parois latérales (15) comprenant une ouverture prévue pour l'insertion
desdits moyens de précontrainte (11).
6. Plaque avant (1) selon l'une quelconque des revendications 4 ou 5, dans laquelle les
moyens de précontrainte (11) comprennent un ressort en forme d'oméga.
7. Plaque avant (1) selon l'une quelconque des revendications 2 à 6, dans laquelle ledit
couvercle (7) comprend une saillie (9) s'étendant depuis ladite surface substantiellement
plane.
8. Plaque avant (1) selon la revendication 7, dans laquelle ladite saillie (9) comprend
une paroi avec une partie de paroi supérieure en retrait centralement (10).