Technical field
[0001] The invention relates to the technical field of shelf systems comprising a power
supply device.
Background of invention
[0002] In the context of energy saving and environmental protection, LED lamps are more
and more used in the fields of home and commercial lighting because of their high
light emission efficiency and good light-gathering performance. Among them, shelf
lighting is a kind of commercial lighting. In the installation of existing shelf lighting,
there are problems of messy and scattered power wiring methods, complicated installation
process, and time-consuming problems, and it takes up more shelf space after installation,
resulting in unnecessary waste of space and the problem of low utilization rate. In
order to solve these problems, it has been proposed to set up power supply rails (tracks)
in shelves or shelf systems, which can be used with the power supply head to avoid
messy and scattered power supply wiring. However, the power supply rails are usually
all exposed, so that they can easily corrode and be damaged. Moreover, the power supply
rails are not waterproof, so it is difficult to apply such shelves or shelf systems
in areas under high moisture conditions and humidity, where watertightness is needed.
[0003] Therefore, it is important to develop a waterproof and easy to install and dismantle
power supply method and setup with important application value for power supply shelves
and shelf systems with at least one power supply.
[0004] US 4 489 995 A discloses a shelf system, which is embodied as a refrigerated display cabinet comprising
a vertical back board and a plurality of shelves mounted to the back board in a stacked
configuration. At the front end of each shelf lighting fixtures are provided. For
electric power supply, a central (fixed) power supply is provided, which is, however,
not mounted to the back board but in a bottom air plenum of the display cabinet.
[0005] Vertical mounting slots are provided in the back board, in which electric outlet
assemblies are slidably mounted, which consist of two parts and are mounted to each
other and resiliently biased against each other.
[0006] The electric outlet assemblies are electrically connected in series by means of electric
lines, each having identical lengths, resulting in different lengths. The electric
lines are not provided with at least one magnetic element to be attracted by the back
board.
[0007] WO 2005/027278 A1 discloses a shelf system with conducting rails integrated into support columns and
carriers.
Summary of Invention
[0008] It is an object of the present invention to provide a shelf system comprising a back
board with stacked configuration of the shelves including a power supply shelf, configured
to reliably provide electric power to at least one shelf of the shelf system with
a low-cost set-up that can be assembled, disassembled and modified in a versatile
manner. According to a further aspect of the present invention there is to be provided
a method for supplying electric power to at least one shelf in such a shelf system
comprising a back board.
[0009] This problem is solved by a shelf system as claimed by claim 1, and by a method for
supplying electric power to at least one shelf in such a shelf system as claimed by
claim 11. Further advantageous embodiments are the subject-matter of the dependent
claims.
[0010] According to a further embodiment, the first fixing member may be a T-shaped bump
or protrusion provided on one side of the fixed power supply unit, configured to be
inserted into a corresponding mounting hole of a back board. More specifically, by
first tilting the fixed power supply unit relative to the plane of the back board,
then inserting one of the two arms of the T-shaped bump or protrusion, then the protrusion
itself and then the second of the two arms of the T-shaped bump or protrusion and
then tilting backward the fixed power supply unit so as to be disposed in parallel
with the plane of the back board, the T-shaped bump or protrusion may be fixed in
a positive-fit manner in the mounting hole of the back board, so as to be disposed
fixed at the location of the mounting hole on the back board. As an alternative, the
two arms of the T-shaped bump or protrusion may be resiliently biased against a shaft
of the T-shaped bump or protrusion, and may be pushed inward towards the shaft so
that the shaft may be inserted into a mounting hole of the back board, and after releasing
the two arms again, they may return back to their biased home position, to thereby
fix the fixed power supply unit in a positive-fit manner in the mounting hole of the
back board.
[0011] According to a further embodiment, the fixed power supply unit may be provided with
a second socket, which may be disposed in particular on a side opposite to that side
of the fixed power supply unit where the first socket is provided. Thus, power may
also be supplied at the rear side of e.g. a back board of the shelf system.
[0012] According to a further embodiment, the fixed power supply unit may further comprise:
a second base, one side of which is provided with the second socket; and a second
top cover connected to the second base with a space or gap formed therebetween, and
having a second insertion hole aligned with the second socket.
[0013] According to a further embodiment, the second base and the second top cover may be
connected to each other through second connecting pieces arranged on both sides of
the second socket.
[0014] According to a further embodiment, the sliding power supply unit may comprise: a
first base, one side of which is provided with the first socket; a first top cover
connected to the first base with a space or gap formed therebetween, and having a
first insertion hole 1 aligned with the first socket.
[0015] According to a further embodiment, the first base and the first top cover may be
connected through first connecting pieces arranged on both sides of the first socket.
[0016] According to a further embodiment, a damping unit may be provided between the first
base and the first top cover.
[0017] According to a further embodiment, the mounting hole may be a square hole.
[0018] According to a further embodiment, the power supply module may be provided with at
least two fixed power supply units for each power supply module, and the fixed power
supply units of each power supply module are electrically connected in sequence.
Technical effect of the present invention
[0019] The shelf system of the present invention have a simple structure, provide a convenient
installation, are easy to disassemble and be modified, provide a good waterproof effect,
are convenient in use, and provide excellent reliability and low manufacturing cost.
Overview on drawings
[0020] Hereinafter, the invention will be described with reference to the accompanying drawings,
wherein:
FIG. 1 is a schematic structural diagram of a power supply device for the shelf system
according to the present invention;
Fig. 2 is a schematic perspective front view of a shelf system of the present invention
including a power supply module;
FIG. 3 is a partial structural schematic diagram of the back of the shelf system in
the embodiment of Fig. 2;
Fig. 4 is a partial structural schematic diagram of the front of the shelf system
in the embodiment of Fig. 2;
Fig. 5 is a partial exploded structure of the front of the shelf system in the embodiment
of Fig. 2;
Fig. 6 is a schematic structural diagram of a power supply module of a shelf system
according to a second embodiment of the present invention;
Fig. 7 is a schematic diagram of a partial structure of a power supply module (front)
of a shelf system according to another embodiment of the present invention; and
Fig. 8 is a schematic diagram of a partial structure of a power supply module (back
side) of a shelf system according to another embodiment of the present invention.
[0021] Throughout the drawings, the like reference numerals designate the same or technically
equivalent members or groups of members.
Detailed Description of Preferred Embodiments
[0022] Specific embodiments of the present invention will be described in further detail
below based on the accompanying drawings. It should be understood that the following
description of the embodiments of the present invention shall not be construed to
delimit the scope of protection of the present invention.
[0023] As shown in Figs. 1 to 5, the power supply device of the claimed shelf system is
generally suitable for supplying electric power to shelves. The power supply device
includes two power supply modules 1000, which are preferably electrically connected
to each other by a common power supply wire or strip, as shown in Fig. 3. The total
number of such power supply modules 1000 may be set e.g. according to the total number
of layers (shelves) of the shelf system. Generally, one power supply module 1000 may
be provided for each layer of the shelf system. Of course, multiple layers or power
supply modules 1000 may also be set for a single layer.
[0024] Each power supply module 1000 includes: a fixed power supply unit 100 intended to
be fixedly positioned, stationary, at a predetermined location of a back board as
outlined hereinafter, a sliding power supply unit 200 that can be moved on a back
board by sliding to a desired position, if required, and a flexible conductive strip
300, which electrically connects the fixed power supply unit 100 and the associated
sliding power supply unit 200. The fixed power supply unit 100 comprises a first fixing
member 101 and is connected to a power supply (not shown in the drawings). The sliding
power supply unit 200 comprises a first socket or plug-in interface 201 (see Fig.
5), and the two ends of the flexible conductive strip 300 are electrically connected
to the fixed power supply unit 100 and the sliding power supply unit 200, respectively.
[0025] After the power supply module 1000 of this embodiment has been installed, e.g. fixedly
mounted on a back board as outlined hereinafter in more detail, the fixed power supply
unit 100 is connected to an external power supply for power supply, whereas the sliding
power supply unit 200 can be moved relative to the fixed power supply unit 100 by
sliding, e.g. along grooves or slots provided in the back board, so as to provide
a power supply function at a specific position as actually required by the geometry
of the shelf system to be supplied with electric power, while the flexible conductive
strip 300 is bent accordingly by bending to supply electric power to the sliding power
supply unit 200. For this purpose, the length of the flexible conductive strip 300
may basically correspond to the length of a longitudinal guiding slot 3002, 2002 provided
in the back board 2000 plus the distance between the mounting position of the fixed
power supply unit 100 at the back board to the associated guiding slot 3002, 2002,
as shown in Fig. 3.
[0026] The fixed power supply units 100 of each power supply module 1000 are electrically
connected sequentially, and in this embodiment, the power supply modules 1000 are
electrically connected through the flexible conductive strip 300, which is convenient
for folding and transportation.
[0027] All the above-mentioned components can be conveniently completed to provide a waterproof
setting, that is, a flexible waterproof layer may be wrapped on the outside of all
the components of a power supply module 1000. In this embodiment, the flexible conductive
strip 300 is a wire with an insulating layer applied directly upon it, and the waterproof
effect can be realized as long as the insulating layer is waterproof. Other parts
or components of the power supply module 1000 are generally waterproofed by encapsulation.
[0028] According to the invention, the flexible conductive strip 300 is provided with at
least one magnetic element 400. The magnetic element 400 can be attracted by the back
board of the shelf system including e.g. a ferro-magnetic layer, so that the flexible
conductive strip 300 can always maintain a general shape and does not project too
far from the rear surface of the associated back board 2000, and is not easily entangled.
[0029] The first fixing member 101 should be easy to assemble and disassemble. In this embodiment,
the first fixing member 101 is embodied as a T-shaped bump arranged on one side of
the fixed power supply unit 100. The T-shaped bump may be fixedly mounted into a mounting
hole of the back board, as outlined above.
[0030] In this embodiment, the sliding power supply unit 200 includes at least the following:
a first base 202 provided with the first socket 201 on one side; a first top cover
203 connected to the first base 202 with a gap for accommodating a back board 2000
or similar holding plate, having a first insertion hole 2031 aligned with the first
socket 201.
[0031] In this embodiment, the first base 202 and the first top cover 203 are connected
through first connecting pieces 204 arranged on both sides of the first socket 201.
In this embodiment, a damping unit is provided between the first base 202 and the
first top cover 203 so as to maintain a positional relationship and gap between the
first base 202 and the first top cover 203, e.g. including resilient members such
as springs to resiliently bias the first base 202 and the first top cover 203 against
each other. The damping unit may be also embodied as a plurality of protrusions, in
particular elastic or resilient protrusions, but it may also be realized in a tight
fit manner, and there are many ways, so that it is not necessary to go into the details.
[0032] The shelf system of this embodiment includes a back board 2000 and multiple shelves
3000 arranged e.g. one above the other as shown in Fig. 2. The corresponding back
board 2000 above each shelf 3000 is provided with a mounting hole 2001 to be connected
to the first fixing member 101 of an associated fixed power supply unit 100. Moreover,
the back board 2000 comprises at least one strip-shaped through-hole or guiding slot
2002 extending in a longitudinal direction (which may be a vertical direction of the
shelf system to be supplied with electric power), so that each sliding power supply
unit 200 can be moved by sliding along the corresponding slot 2002 to a desired position,
e.g. a desired vertical position of a shelf system, for power supply, and hence is
movably installed on the strip-shaped hole or guiding slot 2002.
[0033] In this embodiment, the mounting hole 2001 may be embodied as a square hole, of a
shape corresponding to the shaft of a T-shaped bump or protrusion of an associated
first power supply unit to be fixed on the back board.
[0034] As shown in Fig. 6 to 8, in another embodiment, the fixed power supply unit 100 is
provided with a second socket 102 to enable a power supply in a shelf system, e.g.
on the rear side or also front side of a back board of the shelf system..
[0035] The fixed power supply unit 100 further comprises a second base 103 and a second
top cover 104 connected to each other. One side of the second base 103 is provided
with the second socket 102, and the second top cover 104 is connected to the second
base 103 with a gap between them, with the first socket aligned with the second socket
102 and including two jacks 1041.
[0036] The second base 103 and the second top cover 104 are connected through second connecting
pieces 205 disposed on both sides of the second socket 102. Here, the second connecting
piece 205 serves also as the first fixing member 101, and the second connecting piece
205 can be fixed through the square hole on the back board 2000.
[0037] The connectors in this embodiment may be in the form of buckles, etc., which are
prior art and will not be described in detail.
[0038] As will become apparent to the skilled person, the above describes only preferred
exemplary embodiments of the present invention, and shall not be construed to delimit
the scope of protection of the present invention.
1. A shelf system, comprising a back board (2000), a plurality of shelves (3000) mounted
to the back board (2000) one above the other and supplied with electric power, and
a power supply device for supplying electric power to the plurality of shelves (3000),
wherein the power supply device comprises at least one power supply module (1000),
wherein
the back board (2000) comprises a strip-shaped through-hole or guiding slot (2002)
extending in a longitudinal direction, and
each power supply module (1000) comprises:
a fixed power supply unit (100) having a first fixing member (101) and configured
to be electrically connected to a power supply,
at least one sliding power supply unit (200) having a first socket (201), each sliding
power supply unit (200) being slidably mounted on an associated strip-shaped through-hole
or guiding slot (2002), and
at least one flexible conductive strip (300) the two ends of which are electrically
connected to the fixed power supply unit (100) and the at least one sliding power
supply unit (200), respectively; wherein
a mounting hole (2001) is associated to said strip-shaped through-hole or guiding
slot (2002),
the first fixing member (101) of each fixed power supply unit (100) is mounted to
the associated mounting hole provided at the back board so as to fixedly mount the
fixed power supply unit (100) at a fixed location at the back board (2000), and
wherein each flexible conductive strip (300) is provided with at least one magnetic
element (400) configured to be attracted by the back board (2000).
2. The shelf system according to any of the preceding claims, wherein the first fixing
member (101) is a T-shaped bump provided on one side of the fixed power supply unit
(100).
3. The shelf system according to any of the preceding claims, wherein the fixed power
supply unit (100) of each power supply module (1000) is provided with a second socket
(102).
4. The shelf system according to claim 3, wherein the fixed power supply unit (100) of
each power supply module (1000) further comprises:
a second base (103), one side of which is provided with the second socket (102); and
a second top cover (104) connected to the second base (103) with a space or gap formed
therebetween, and having a second insertion hole (1041) aligned with the second socket
(102).
5. The shelf system according to claim 4, wherein the second base (103) and the second
top cover (104) are connected to each other through second connecting pieces (205)
arranged on both sides of the second socket (102).
6. The shelf system according to any of the preceding claims, wherein each sliding power
supply unit (200) comprises:
a first base (202), one side of which is provided with the first socket (201);
a first top cover (203) connected to the first base (202) with a space or gap formed
therebetween, and having a first insertion hole (2031) aligned with the first socket
(201).
7. The shelf system according to claim 6, wherein the first base (202) and the first
top cover (203) are connected through first connecting pieces (204) arranged on both
sides of the first socket (201).
8. The shelf system according to claim 7, wherein a damping unit is provided between
the first base (202) and the first top cover (203).
9. The shelf system according to claim 7, wherein the mounting hole (2001) is a square
hole.
10. The shelf system according to any of preceding claims 1 to 5, wherein the power supply
module (1000) is provided with at least two fixed power supply units (100) for each
power supply module (1000), and the fixed power supply units (100) of each power supply
module (1000) are electrically connected in sequence.
11. A method for supplying electric power to at least one shelf (3000) in a shelf system
as claimed in any of claims 1 to 10, comprising the steps of:
mounting the first fixing member (101) of each fixed power supply unit (100) to the
associated mounting hole (2001) provided at the back board (2000) so as to fixedly
mount the fixed power supply unit (100) at a fixed location at the back board (2000),
slidably mounting each sliding power supply unit (200) of the at least one sliding
power supply unit (200) of each power supply device to an associated strip-shaped
through-hole or guiding slot (2002) and moving each sliding power supply unit (200)
of the at least one sliding power supply unit (200) along said strip-shaped through-hole
or guiding slot (2002) to a position corresponding to the position of an associated
shelf (3000) of the shelf system, for suppling electric power to said associated shelf
(3000).
1. Regalsystem, mit einer Rückwand (2000), einer Vielzahl von Regalen (3000), die übereinander
an der Rückwand (2000) montiert sind und mit elektrischem Strom versorgt werden, und
einer Stromversorgungsvorrichtung zum Versorgen der Vielzahl von Regalen (3000) mit
elektrischem Strom, wobei die Stromversorgungsvorrichtung mindestens ein Stromversorgungsmodul
(1000) umfasst, wobei
die Rückwand (2000) ein streifenförmiges Durchgangsloch oder einen Führungsschlitz
(2002) umfasst, der sich in einer Längsrichtung erstreckt, und
jedes Stromversorgungsmodul (1000) umfasst:
eine ortsfeste Stromversorgungseinheit (100), die ein erstes Befestigungselement (101)
aufweist und so konfiguriert ist, dass sie elektrisch mit einer Stromversorgung verbunden
werden kann,
mindestens eine verschiebbare Stromversorgungseinheit (200), die eine erste Buchse
(201) aufweist, wobei jede verschiebbare Stromversorgungseinheit (200) verschiebbar
auf einem zugeordneten streifenförmigen Durchgangsloch oder Führungsschlitz (2002)
montiert ist, und
mindestens einen flexiblen leitfähigen Streifen (300), dessen zwei Enden jeweils elektrisch
mit der festen Stromversorgungseinheit (100) bzw. der mindestens einen verschiebbaren
Stromversorgungseinheit (200) verbunden sind; wobei
ein Montageloch (2001) dem streifenförmigen Durchgangsloch oder Führungsschlitz (2002)
zugeordnet ist,
das erste Befestigungselement (101) jeder ortsfesten Stromversorgungseinheit (100)
an dem zugeordneten Montageloch an der Rückwand angebracht ist, um die ortsfeste Stromversorgungseinheit
(100) an einer ortsfesten Stelle an der Rückwand (2000) fest anzubringen, und
jeder flexible leitfähige Streifen (300) mit mindestens einem magnetischen Element
(400) versehen ist, das so konfiguriert ist, dass es von der Rückwand (2000) angezogen
wird.
2. Regalsystem nach einem der vorhergehenden Ansprüche, wobei das erste Befestigungselement
(101) eine T-förmige Erhebung ist, die an einer Seite der ortsfesten Stromversorgungseinheit
(100) vorgesehen ist.
3. Regalsystem nach einem der vorhergehenden Ansprüche, wobei die ortsfeste Stromversorgungseinheit
(100) jedes Stromversorgungsmoduls (1000) mit einer zweiten Buchse (102) versehen
ist.
4. Regalsystem nach Anspruch 3, wobei die ortsfeste Stromversorgungseinheit (100) jedes
Stromversorgungsmoduls (1000) ferner umfasst:
eine zweite Basis (103), deren eine Seite mit der zweiten Buchse (102) versehen ist;
und
eine zweite obere Abdeckung (104), die mit der zweiten Basis (103) verbunden ist,
wobei ein Zwischenraum oder eine Lücke dazwischen gebildet ist, und die ein zweites
Einsteckloch (1041) aufweist, das mit der zweiten Buchse (102) ausgerichtet ist bzw.
fluchtet.
5. Regalsystem nach Anspruch 4, wobei die zweite Basis (103) und die zweite obere Abdeckung
(104) durch zweite Verbindungsstücke (205) miteinander verbunden sind, die auf beiden
Seiten der zweiten Buchse (102) angeordnet sind.
6. Regalsystem nach einem der vorhergehenden Ansprüche, wobei jede verschiebbare Stromversorgungseinheit
(200) umfasst:
eine erste Basis (202), deren eine Seite mit der ersten Buchse (201) versehen ist;
eine erste obere Abdeckung (203), die mit der ersten Basis (202) verbunden ist, wobei
ein Zwischenraum oder eine Lücke dazwischen gebildet ist, und die ein erstes Einsteckloch
(2031) aufweist, das mit der ersten Buchse (201) ausgerichtet ist bzw. fluchtet.
7. Regalsystem nach Anspruch 6, wobei die erste Basis (202) und die erste obere Abdeckung
(203) durch erste Verbindungsstücke (204) miteinander verbunden sind, die auf beiden
Seiten der ersten Buchse (201) angeordnet sind.
8. Regalsystem nach Anspruch 7, wobei zwischen der ersten Basis (202) und der ersten
oberen Abdeckung (203) eine Dämpfungseinheit vorgesehen ist.
9. Regalsystem nach Anspruch 7, wobei das Montageloch (2001) ein quadratisches Loch ist.
10. Regalsystem nach einem der vorhergehenden Ansprüche 1 bis 5, wobei das Stromversorgungsmodul
(1000) mit mindestens zwei ortsfesten Stromversorgungseinheiten (100) für jedes Stromversorgungsmodul
(1000) versehen ist und die ortsfesten Stromversorgungseinheiten (100) jedes Stromversorgungsmoduls
(1000) elektrisch in Reihe geschaltet sind.
11. Verfahren zum Versorgen von mindestens einem Regal (3000) in einem Regalsystem nach
einem der Ansprüche 1 bis 10 mit elektrischem Strom, mit den Schritten:
Befestigen des ersten Befestigungselements (101) jeder ortsfesten Stromversorgungseinheit
(100) an dem zugeordneten Befestigungsloch (2001), das an der Rückwand (2000) vorgesehen
ist, um die feste Stromversorgungseinheit (100) an einer ortsfesten Stelle an der
Rückwand (2000) fest zu befestigen,
Befestigen durch gleitendes Verschieben jeder verschiebbaren Stromversorgungseinheit
(200) der mindestens einen verschiebbaren Stromversorgungseinheit (200) jeder Stromversorgungsvorrichtung
an einem zugeordneten streifenförmigen Durchgangsloch oder Führungsschlitz (2002)
und Bewegen jeder verschiebbaren Stromversorgungseinheit (200) der mindestens einen
verschiebbaren Stromversorgungseinheit (200) entlang des streifenförmigen Durchgangslochs
oder Führungsschlitzes (2002) an eine Position, die der Position eines zugeordneten
Regals (3000) des Regalsystems entspricht, zum Versorgen des zugeordneten Regals (3000
mit elektrischem Strom).
1. Un système d'étagères comprenant un panneau arrière (2000), une pluralité d'étagères
(3000) montées sur le panneau arrière (2000) les unes au-dessus des autres et alimentées
en énergie électrique, et un dispositif d'alimentation électrique pour alimenter en
énergie électrique la pluralité d'étagères (3000), le dispositif d'alimentation électrique
comprenant au moins un module d'alimentation électrique (1000),
le panneau arrière (2000) comprenant un trou traversant ou une fente de guidage en
forme de bande (2002) s'étendant dans une direction longitudinale, et
chaque module d'alimentation électrique (1000) comprend :
une unité d'alimentation électrique fixe (100) ayant un premier élément de fixation
(101) et configurée pour être connectée électriquement à une alimentation électrique,
au moins une unité d'alimentation électrique coulissante (200) ayant une première
prise (201), chaque unité d'alimentation électrique coulissante (200) étant montée
de manière coulissante sur un trou traversant ou une fente de guidage en forme de
bande associée (2002), et
au moins une bande conductrice flexible (300) dont les deux extrémités sont connectées
électriquement à l'unité d'alimentation fixe (100) et à la ou aux unités d'alimentation
coulissantes (200), respectivement ; dans lequel
un trou de montage (2001) est associé audit trou traversant en forme de bande ou à
ladite fente de guidage (2002),
le premier élément de fixation (101) de chaque unité d'alimentation fixe (100) est
monté sur le trou de montage associé prévu sur le panneau arrière de manière à monter
de manière fixe l'unité d'alimentation fixe (100) à un emplacement fixe sur le panneau
arrière (2000), et
chaque bande conductrice flexible (300) est pourvue d'au moins un élément magnétique
(400) configuré pour être attiré par le panneau arrière (2000).
2. Le système d'étagères selon l'une quelconque des revendications précédentes, dans
lequel le premier élément de fixation (101) est une bosse en forme de T prévue sur
un côté de l'unité d'alimentation fixe (100).
3. Le système d'étagères selon l'une quelconque des revendications précédentes, dans
lequel l'unité d'alimentation fixe (100) de chaque module d'alimentation (1000) est
dotée d'une seconde prise (102).
4. Le système d'étagères selon la revendication 3, dans lequel l'unité d'alimentation
fixe (100) de chaque module d'alimentation (1000) comprend en outre :
une seconde base (103), dont un côté est doté de la seconde prise (102) ; et
un second couvercle supérieur (104) relié à la seconde base (103) avec un espace ou
un interstice formé entre eux, et ayant un second trou d'insertion (1041) aligné avec
la seconde prise (102).
5. Le système d'étagères selon la revendication 4, dans lequel la seconde base (103)
et le second couvercle supérieur (104) sont reliés l'un à l'autre par des secondes
pièces de connexion (205) disposées des deux côtés de la seconde prise (102).
6. Le système d'étagères selon l'une quelconque des revendications précédentes, dans
lequel chaque bloc d'alimentation coulissant (200) comprend :
une première base (202), dont un côté est pourvu de la première prise (201) ;
un premier couvercle supérieur (203) relié à la première base (202) avec un espace
ou un interstice formé entre eux, et ayant un premier trou d'insertion (2031) aligné
avec la première prise (201).
7. Le système d'étagères selon la revendication 6, dans lequel la première base (202)
et le premier couvercle supérieur (203) sont reliés par des premières pièces de connexion
(204) disposées des deux côtés de la première prise (201).
8. Le système d'étagères selon la revendication 7, dans lequel une unité d'amortissement
est prévue entre la première base (202) et le premier couvercle supérieur (203).
9. Le système d'étagères selon la revendication 7, dans lequel le trou de montage (2001)
est un trou carré.
10. Le système d'étagères selon l'une quelconque des revendications précédentes 1 à 5,
dans lequel le module d'alimentation électrique (1000) est pourvu d'au moins deux
unités d'alimentation électrique fixes (100) pour chaque module d'alimentation électrique
(1000), et les unités d'alimentation électrique fixes (100) de chaque module d'alimentation
électrique (1000) sont connectées électriquement en séquence.
11. Un procédé d'alimentation en énergie électrique d'au moins une étagère (3000) dans
un système d'étagères selon l'une quelconque des revendications 1 à 10, comprenant
les étapes consistant à :
monter le premier élément de fixation (101) de chaque unité d'alimentation fixe (100)
sur le trou de montage associé (2001) prévu sur le panneau arrière (2000) de manière
à monter de manière fixe l'unité d'alimentation fixe (100) à un emplacement fixe sur
le panneau arrière (2000),
monter de manière coulissante chaque unité d'alimentation coulissante (200) de l'au
moins une unité d'alimentation coulissante (200) de chaque dispositif d'alimentation
sur un trou traversant en forme de bande ou une fente de guidage associée (2002) et
déplacer chaque unité d'alimentation coulissante (200) de l'au moins une unité d'alimentation
coulissante (200) le long dudit trou traversant en forme de bande ou de ladite fente
de guidage (2002) jusqu'à une position correspondant à la position d'une étagère associée
(3000) du système d'étagères, pour alimenter en énergie électrique ladite étagère
associée (3000).