| (19) |
 |
|
(11) |
EP 1 738 335 B1 |
| (12) |
EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
|
05.12.2007 Bulletin 2007/49 |
| (22) |
Date of filing: 13.04.2004 |
|
| (51) |
International Patent Classification (IPC):
|
| (86) |
International application number: |
|
PCT/IT2004/000207 |
| (87) |
International publication number: |
|
WO 2005/101340 (27.10.2005 Gazette 2005/43) |
|
| (54) |
INTRUSION PREVENTING APPARATUS FOR FENCES OR THE LIKE
EINDRINGVERHINDERUNGSVORRICHTUNG FÜR ZÄUNE ODER DERGLEICHEN
DISPOSITIF ANTI-INTRUSION POUR BARRIERES OU ARTICLES SIMILAIRES
|
| (84) |
Designated Contracting States: |
|
AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IT LI LU MC NL PL PT RO SE SI SK TR
|
| (43) |
Date of publication of application: |
|
03.01.2007 Bulletin 2007/01 |
| (73) |
Proprietors: |
|
- Ciordinik, Federico
41042 Fiorano Modenese (IT)
- Doni, Roberto
41042 Fiorano Modenese (IT)
|
|
| (72) |
Inventor: |
|
- CIORDINIK, Federico
I-41042 Fiorano Modenese (IT)
|
| (74) |
Representative: Karaghiosoff, Giorgio Alessandro |
|
Studio Karaghiosoff e Frizzi s.r.l.
Via Pecorile 25 17015 Celle Ligure (SV) 17015 Celle Ligure (SV) (IT) |
| (56) |
References cited: :
EP-A- 0 308 737 US-A- 5 434 557
|
GB-A- 2 062 321
|
|
| |
|
|
|
|
| |
|
| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The invention addresses an intrusion preventing apparatus for fences or the like,
comprising at least one, preferably two or more cables, each composed of at least
one or a bundle of optical fibers and an outer protective sheath, which fiber optic
cables subtend substantially longitudinally a length or a perimeter to be protected
and are held or supported, each at a different height, at a plurality of spaced support
locations and wherein, at least at some of said support locations, first deforming
and/or pinching means are provided for each fiber optic cable, which first deforming/pinching
means may be moved from an idle position in which they do not interfere with the fiber
optic cable to an operating fiber optic cable deforming and/or pinching position,
in which an optical signal transmitted through the cable is attenuated below a predetermined
threshold value or anyway modified, and which first deforming and/or pinching means
are automatically operated upon increase of the fiber optic cable tension, for example
caused by a pulling/bending action on said fiber optic cable.
[0002] An apparatus of this type is disclosed in
US 5,434,557.
[0003] Apparatuses of this type are known, which are used for protecting high-risk zones,
such as airports and the like, generally in combination with conventional fences,
e.g. made of an electrically welded mesh supported by piles. A first type of such
intrusion preventing apparatuses includes, at an axial end junction point between
two fiber optic cables, a connector which is used to disconnect the junction between
the two fiber optic cables in case of an intrusion attempt, thereby causing a total
interruption of the signal. However, these connectors should be constructed with great
precision, whereby their mechanical fabrication is considerably expensive. Furthermore,
the signal interruption effect is not automatically reversible. A second known type
of such intrusion preventing apparatus provides the use of three different components,
the first being the actual intrusion preventing means which acts on a cable, for example
made of steel, that is laid horizontally outside the actual fence mesh. Upon tension
increase or cut of said metal cable, one of two cusps pinches a fiber optic cable
which is placed vertically on a fence supporting post. An apparatus protecting case
is further provided, with a tamper indicating device, which is triggered when the
case is opened. Said second element acts on a further fiber optic cable which is laid
horizontally outside the fence mesh by a spring-operated cusp. The third component
is a fastener block for securing the horizontally laid metal wires and fiber optic
cables on some posts of the enclosure. The above apparatus is apparently very complex
and costly, as it requires the use of both an actual intrusion preventing device and
of a tamper indicating device, as well as the presence of at least two separate fiber
optic cables to accomplish both tasks and the use of elastic opposing members such
as springs or the like, which can be exposed to failures caused, for example, by weather
deterioration. In fact, the intrusion signal is provided by the deformation of the
optical fibers subtended between the posts, whereas the deforming and/or pinching
means tamper attempt signal is generated by tamper preventing means which act on an
additional different fiber optic cable.
[0004] This prior art arrangement requires greater amounts of optical fibers, as different
optical fibers to be associated to the tamper preventing device are needed. Also,
the tamper preventing means increase the complexity and costs of the construction,
in terms of both time and difficulty of installation.
[0005] Therefore, the present invention has the object of obviating the above drawbacks
and providing, by simple and inexpensive means, an intrusion preventing apparatus
like the one described hereinbefore, which provides an effective protection of fences
or the like by causing, upon an intrusion attempt, the optical signal transmitted
by a fiber optic cable to be lowered below a predetermined threshold, due to an at
least one reversible deformation of said cable, without requiring fiber optic interruption
and allowing for multiple passages between signal conduction and interruption or attenuation
states. A further object is of combining the intrusion preventing function and the
apparatus tamper preventing function in a single fiber optic cable, without requiring
any complex mechanism, and particularly the use of elastic means such as springs or
the like.
[0006] The invention fulfils the above objects by providing an apparatus of the type described
hereinbefore, in which each of said first deforming and/or pinching means is housed
in a case which has two separable and joinable parts, the case further including tamper
preventing and open-case condition indicating means, which are triggered to deform
and/or pinch the fiber optic cable in response to a relative separating motion of
said two parts of the housing case.
[0007] Advantageously, the means to prevent tampering of the case that houses the first
deforming and/or pinching means are second fiber optic cable deforming and/or pinching
means which are triggered to deform and/or pinch the fiber optic cable by the relative
separating motion of said two parts of the case.
[0008] The second fiber optic cable deforming and/or pinching means are formed by two pinching
members, which are secured to one part and the other of the case respectively, and
have fiber optic cable deforming or pinching surfaces oriented at least partly transverse
to the separation direction of the two parts of the case, and are moved from a closed-case
condition in which they do not interfere with the fiber optic cable, to a fiber optic
cable deforming and/or pinching condition, which occurs when said two parts of the
case are in an intermediate spaced-apart position.
[0009] According to a further improvement, the two parts of the case have intermediate end-of-separation-stroke
means, which end-of-separation-stroke means are designed in such a manner that they
can be defeated by a predetermined pulling force in the separation direction, and
which end-of-stroke means lock, with said predetermined force, the two parts of the
case at such a relative distance that the second deforming and/or pinching means which
form the case tamper preventing means are in the operating fiber optic cable deforming
and/or pinching position.
[0010] Advantageously, said end-of-stroke means are provided in an intermediate position
of cooperating connection/disconnection guide means, which are associated to the one
and the other of the two case parts respectively.
[0011] In accordance with an advantageous improvement, case tamper preventing and case-open
condition indicating means may be provided, whose action is to deform and/or pinch
the same fiber optic cable which is subjected to the action of the two forked pivoting
jaws. Hence, the fabrication and operation of the apparatus are considerably simplified
as compared with prior art apparatuses which, as mentioned above, require two distinct
members to separately act on two different fiber optic cables.
[0012] The above description shows how the invention achieves savings in high-cost materials,
such as optical fibers, and a much simpler construction which allows to shorten installation
times.
[0013] According to one embodiment, the first fiber optic cable deforming and/or pinching
means consist of two jaws facing toward each other and mounted on opposite sides of
the fiber optic cable, to pivot freely along the fiber optic cable axis. In the idle
condition, these jaws engage with a predetermined force two opposite portions of the
outer sheath of the fiber optic cable without causing any deformation thereof whereas,
as the fiber optic cable tension increases, the jaws are urged by the cable into an
arc-shaped pivotal motion in the fiber optic cable puling direction, thereby causing
the fiber optic cable to be pinched and/or deformed, which results in a change in
the optical signal being transmitted. As the tension increase ceases, the elastic
return force of the fiber optic cable causes the clamping jaws to pivot back in the
opposite direction, and restores the conduction condition, in which the signal is
brought back to substantially the original level. Obviously, the cut of the fiber
optic cable causes a total signal interruption.
[0014] According to this embodiment, to be described in greater detail in the description
of the drawings, each of the two clamping jaws may be a forked member, which is freely
pivotable at its apex on a cylindrical pin. The two pins may be situated on opposite
sides of the fiber optic cable and perpendicularly to the post axis and to the fiber
optic cable axis. The two forked jaws are disposed on a common plane, parallel to
the post axis and coplanar with the fiber optic cable, symmetrically with respect
to the fiber optic cable and with apertures that face toward each other. The ends
of the forked jaws, when the latter are in the idle position, are in contact with
the outer sheath of the fiber optic cable to obtain at least a friction engagement
with or a slight compression of the cable sheath only. In this regard, it shall be
noted that said protective sheaths are typically made of a relatively soft and deformable
material, such as plastic or the like.
Each end of a first pivoting forked jaw may be pointed, whereas each end of the second
pivoting forked jaw may have two adjacent points which form a V-shaped recess substantially
complementary to each of the points of the first forked jaw. Each point of the first
forked jaw is at such a distance from the corresponding double point of the other
forked jaw as to engage in a substantially snug manner and/or to slightly compress
the outer sheath only of the fiber optic cable with no deformation thereof, when the
pivoting forked jaws are in the idle condition.
[0015] As the tension of the fiber optic cable increases, the vertexes of the points of
the first forked jaw and the vertexes of the double points of the second forked jaw
move toward said tension increase along arc-shaped paths, which are at least tangent,
particularly slightly intersected. Thanks to this arrangement, a fiber optic cable
segment interposed between the two jaws is deformed and/or pinched between the point
of the first jaw and the opposed double point of the second jaw, which jaws are farthest
from the point in which the pulling force is exerted on the fiber optic cable.
[0016] Nevertheless, in the above preferred embodiment of the invention, the pairs of opposed
fiber optic cable pinching and/or deforming jaws may be housed in a case-like element,
including a bottom wall, which can be secured to the fiber optic cable supporting
post and a cover part, which can be engaged with said bottom wall. The two pins about
which the two forked jaws pivot may be integral with said bottom wall of the case,
whereas the cover part may advantageously have side apertures for snug passage of
the fiber optic cable.
[0017] The cover part and the bottom wall of the case may have each one of two members which
cooperate to perform a fiber optic cable deforming and/or compressing action, upon
separation of the cover from the bottom wall in a predetermined uniquely possible
direction.
[0018] Such unique cover separation direction may be orthogonal to the bottom wall of the
case and to the inner face of the cover. To this end, the bottom wall of the case
and the cover part may have complementary guides for mutual connection/disconnection
which are oriented perpendicular to the bottom wall of the case and to the inner face
of the cover.
[0019] Said connection/disconnection guides include at least two cylindrical pins which
perpendicularly branch off the inner face of the cover part, each of which two pins
is disposed in such position as to correspond to one of the two pivots of the forked
jaws on the bottom wall of the case, said pivots having a tubular shape, i.e. with
a central axial hole so that, when the cover part is brought closer to the bottom
wall for closing the case, each of the two pins of the cover engages in an axially
slideable manner in the corresponding pin of the bottom wall.
[0020] Advantageously, complementary removable engagement means may be provided, e.g. having
a snap fit, force fit or similar action between each pin of the cover part and its
respective pin of the bottom wall of the case which form end-of-stroke means in an
intermediate separation position between the bottom wall and the cover part of the
case.
[0021] Said means may include at least one radially widened, particularly annular portion,
of the outer cylindrical wall of each pin of the cover part and/or at least one radially
narrowed, particularly annular portion, of the inner cylindrical wall of each of the
two pins of the bottom wall of the case, said radially widened and narrowed portions
having such sizes that, when combined with a predetermined resilience and/or deformability
of the material, allow to defeat the end-of-stroke position by a predetermined pulling
force.
[0022] The tamper preventing, open-case condition indicating means may include at least
one first deforming member which protrudes from the bottom wall of the case and a
second deforming member which protrudes from the inner face of the cover, opposite
said bottom wall of the case. These two deforming members may have their longitudinal
axis contained in a plane parallel to the direction of separation between the two
case parts, which two deforming members (12, 13) advantageously have different inclinations
with respect to the axis orthogonal to said bottom wall and to said inner face of
the cover so that, when the case is closed, said deforming members form a corner area
in which the fiber optic cable is housed in an undeformed and/or unpinched condition
whereas, as the cover is removed along the unique extraction direction, said deforming
members slide mutually thereby generating a progressive fiber optic cable deforming
and/or pinching action by wedging the cable between said two deforming members (12,
13). It shall be noted that the pinching action is facilitated by the fact that the
mutual engagement means of the cover and the bottom wall oppose the cover removal
action, so that the latter may be only accomplished abruptly and quickly, and this
assists the wedging of the cable between the two deforming members.
[0023] According to an improvement, the edge of the first deforming member facing toward
the second deforming member may have a cusp section extending all along said first
member, whereas the opposed side of the second deforming member may have a bicuspid
section, which also extends all along said second deforming member. The two longitudinal
cusps may be parallel and form a longitudinal V-shaped recess substantially complementary
to the cusp of the first deforming member, or vice versa, so as to generate a progressive
wedging action, thereby causing the fiber optic cable to be deformed and/or pinched
between the two deforming members as the cover is abruptly removed from the bottom
wall of the case.
[0024] According to a further improvement, means may be provided for retaining the fiber
optic cable and preventing it from slideably moving away from the bottom wall of the
case upon removal of the cover.
[0025] To this end, the cusp-shaped edge of the deforming member associated to the bottom
wall of the case may have a substantially semicircular or U-shaped aperture for housing
and retaining the fiber optic cable and preventing it from slideably moving away from
the bottom wall of the case upon removal of the cover. An additional semicircular
aperture may be provided for further retaining the fiber optic cable in an appropriate
position on the bicuspid edge of the deforming member associated to the inner wall
of the cover.
[0026] The deforming and/or pinching means and the open-case condition and any other tamper
indicating means of the above mentioned means may be provided at the cable fastening
locations of some of the posts, there being provided at least one post without said
deforming and/or pinching means interposed between two posts having said means. On
the posts that have no such deforming and/or pinching means simple means may be provided
for securing the fiber optic cable to said posts and for preventing it from sliding
off. Such fastener means may be housed in an openable case, whose external aspect
is substantially identical to that of the case for housing the deforming and/or pinching
means, so as to prevent undesired detection of the case that contains said means.
[0027] Here again, said fastener means containing case may have a bottom wall and a cover
part that may be removably connected, open-case and/or tamper indicating means being
provided between the cover and the bottom wall, particularly of the same type as described
above.
[0028] While this disclosure relates to the most frequent condition, with a plurality of
vertical posts supporting horizontally laid fiber optic cables, said posts may be
inclined inwardly or outwardly from the perimeter to be protected, or alternatively
the fiber optic cables may be arranged vertically, while the support posts are laid
horizontally. As a further alternative, any other orientation may be provided for
both, intermediate between the horizontal and the vertical orientations.
[0029] The advantages of this invention are apparent from the above description and mainly
consist in that it provides a very simple construction and installation of the apparatus.
In fact, both the intrusion preventing and the system tamper preventing functions
are combined in a single apparatus, which operates on a single fiber optic cable.
This avoids the provision of a second fiber optic cable which is known to be very
costly. Also, the invention requires no movable opposing members, such as springs
or the like, which are exposed to deterioration, particularly due to weather conditions.
Finally, the apparatus does not require the total interruption of the fiber optic
cable, whereby the normal signal conduction condition may be restored in a substantially
automatic manner.
[0030] Further characteristics and improvements will form the subject of the dependent claims.
[0031] The characteristics of the invention and the advantages derived therefrom will be
more apparent from the following detailed description of the annexed drawings , in
which:
- Fig. 1 is a perspective view of an intrusion preventing apparatus of the present invention
combined with a conventional fence segment.
- Fig. 2 is a perspective view of a post with two cases fitted thereon, the one containing
the fiber optic cable deforming/pinching means and the other containing the fiber
optic fastening means, the covers of the two cases being in the open condition.
- Fig. 3 is a top, partly cross sectional view, of the bottom wall of the case designed
for containing the cable deforming/pinching means, fitted on the post, the deforming/pinching
means being omitted.
- Fig. 4 is a front view of the two intrusion preventing deforming/pinching jaws and
the two tamper preventing deforming members, combined with a length of fiber optic
cable which is shown in an unpinched and undeformed condition. The cusp-shaped deforming
member is shown in a sectional view, taken along line I-I of Fig. 7.
- Figures 5A and 5B are partly sectional side view of the case for housing the intrusion
preventing jaws and the tamper preventing deforming members, respectively with the
cover in the open condition and in the closed condition.
- Figs. 6 and 7 are side views of the tamper preventing deforming members associated
to the bottom wall of the case in the idle condition (Fig. 6) and in the fiber optic
cable deforming condition (Fig. 7).
- Fig. 8 is an exploded perspective view of the case containing the fiber optic cable
fastening means, with the cover in the open condition.
- Fig. 9 is a cross sectional view of the fiber optic cable combined with a covering
and protective element.
[0032] Referring to the Figures, a preferred embodiment of the intrusion preventing apparatus
of the invention is shown, which is designed for protecting a conventional fence formed
by a vertical metal mesh 2 and supported by a plurality of vertical piles 1. The intrusion
preventing apparatus is formed by a plurality of fiber optic cables 3 which longitudinally
subtend a length or the whole of the fence perimeter to be protected. These fiber
optic cables 3 are held or supported, each at a different height from the ground and
in parallel arrangements, at a plurality of vertical posts 4. In the embodiment of
the figures, each post 4 is secured on the outer side of a corresponding pile 1 of
the fence. By this arrangement, the post 4 need not be anchored to the ground, but
arrangements other than the one of the figures are feasible. For example, the posts
4 may be placed in positions that do not correspond to the piles 1, and be anchored
to the ground independently thereof, otherwise the fence piles 1 might be avoided
and the metal mesh 2 may be secured directly to the inner side of the posts 4. In
a particularly simple arrangement, the inner fence formed by the piles 1 and the metal
mesh 2 may be completely avoided, and the protection action may be solely performed
by the apparatus of the invention. Each cable 3 is composed of a fiber optic bundle
103 and an outer protective sheath 203, made of a relatively soft and deformable material.
As mentioned above, there are provided means for preventing the cable 3 from being
broken and means for preventing the actual apparatus from being tampered. These means
are contained in a case, e.g. made of metal or plastic, which is formed by a substantially
rectangular bottom wall 5 and a cover part 6, having larger sidewalls 106 and smaller
sidewalls 206. Obviously, the container embodiment described above shall be intended
by way of a non limiting example, as the case may be manufactured in any other desired
and suitable shape. In an intermediate position of each of the two larger sidewalls
106 a recess 306 is provided for snug passage of the fiber optic cable 3.
[0033] The bottom wall 5 of the case is secured on the outer face of the post 4, which is
formed by a tubular pile. The bottom wall 5 has a backplate 105 with dove-tail or
similar shape, which forms a slide, slideably engaged in a complementary guide 104
on the outer side of the post 4. Hence, the bottom wall 5 may be slideably engaged
in the guide, to be easily brought into the ideal position of the post, and to be
easily secured on the post 4 at the desired height from the ground by a screw 7 of
such a length that, in the fastened condition, it does not protrude out of the surface
of the button wall 5, and does not interfere with the moving parts of the apparatus.
As better shown hereafter, said fastening screw 7 is covered by said moving parts,
i.e. by the case cover, so that the case cannot be removed from the post 4 without
generating an alarm. In fact, the screw 7 may be only removed by opening the case,
thereby triggering the tamper preventing means.
[0034] It shall be further noted that, even when a case were slideably released from the
post without causing an alarm, i.e. even when the case could be removed from its fastened
position without being opened, the case might only be separated from the post by being
slid along the guide 104 to the free end opening. This requires all the cases on the
post to be separated from the post, and increases the probability that one of the
abusive removal operations might generate an alarm, as well as the time required for
such operations.
[0035] In the embodiment that is shown in the figures, the post has a tubular shape and
has on one side, i.e. on the side for attachment of the cable fastener case and/or
the deforming and/or pinching member and tamper-preventing sensor containing case,
a tubular C-shaped guide which opens by a longitudinal median slot along the wall
which adheres to such cases. On the other hand, the cases have a rear appendage which
is formed by a plate-like slide which is supported in a cantilever fashion and at
a predetermined distance from the rear wall of the case, by a rib or a rear extension.
The slide is formed by a plate that is wider than the longitudinal slot and has surfaces
for abutment against the inner side of the two wall parts on the two sides of the
slot. The rear rib or extension have such a thickness that they are able to pass through
the longitudinal slot. Furthermore, the bottom side of the case, the slide and the
rib form two grooves for slideable engagement of the two wall strips that laterally
delimit the slot and the facing surfaces of the slide and the bottom wall of the case
are at such a distance from each other that at least one screw engaged in a threaded
through hole of the bottom wall of the case might be brought to contact with the corresponding
wall strip of the guide that delimits on at least one side the longitudinal strip
of the guide that delimits on at least one side the longitudinal slot of the guide,
thereby acting to clamp said wall strip between the screw and the slide, whereby the
case and slide assembly are locked in position in the longitudinal guide. The post
or at least the longitudinal guide are open on at least one end side.
[0036] In addition to the above functional advantages, the construction with an open longitudinal
guide allows the posts to be fabricated by extrusion, for instance by cutting tubular
aluminum sections. The only processing step required after extrusion is cutting the
sections to the appropriate length, whereas the guide with longitudinal slot on the
side by which the case is secured to the post may be formed at the same time as the
extrusion of the sections. The above allows to considerably reduce the operational
steps required for securing the cases containing the fastener devices and the deforming
and/or pinching means to the posts, thereby dramatically reducing the number and types
of assembly parts to be kept in stock.
[0037] The apparatus further includes a pair of forked jaws 8, 9, which face toward each
other and are mounted on opposite sides of the fiber optic cable 3, each being pivoted
in the apex zone to swing freely on a cylindrical pin 10, 11 along the axis of the
fiber optic cable 3. The two pins respectively 10 and 11 are provided on opposite
sides of the fiber optic cable 3 and perpendicularly branch off the bottom wall 5
and the inner face of the cover 6 respectively. The two forked jaws 8, 9 are situated
on a common plane, parallel to the bottom wall 5 and coplanar with the axis of the
fiber optic cable 3. The two forked jaws 8, 9 are disposed symmetrically with respect
to the fiber optic cable 3 and with apertures that face toward each other. Each end
of a pivoting jaw 9 has one point 109, whereas each end of the other pivoting forked
jaw 8 has two adjacent points 108 which form a V-shaped recess substantially complementary
to each of the points 109 of the forked jaw 9. Each point 109 of the first forked
jaw 9 is at such a distance from the corresponding double point 108 of the other forked
jaw 8 as to engage in a substantially snug manner and/or to slightly compress the
outer sheath 203 of the fiber optic cable 3 with no deformation thereof, when the
pivoting forked jaws 8, 9 are in the idle condition. As the tension of the fiber optic
cable 3 increases, for instance due to a pulling/bending action thereon, the two forked
jaws 8, 9 are urged by the cable to pivot along an arc of a circle in the direction
of the tension increase, thanks to a slight engagement of the points 109 and the double
points 108 with the outer sheath 203 of the cable 3. The vertexes of the points 109
of the first forked jaw 9 and the vertexes of the double points 108 of the second
forked jaw 8 move in the direction of the tension increase along slightly intersecting
circular arc paths, and move closer to each other to the central area, so that a segment
of the fiber optic cable 3 is deformed and/or pinched between the point 109 of the
first jaw 9 and the opposed double point 108 of the second jaw which are farthest
from the point in which the pulling force is exerted on the fiber optic cable 3. By
this arrangement, the optical signal transmitted by the fiber optic cable 3 is attenuated
below a predetermined threshold value, and an intrusion attempt is detected. It shall
be noted that the arrangement of the jaws 8, 9 may be different from that described
above, i.e. the jaws may have inverted positions. Optionally, a greater number of
jaw pairs 8, 9 may be provided, still disposed on opposite sides of the fiber optic
cable 3, for simultaneously deforming/pinching the cable 3 in response to an increase
of the tension thereof. It shall be further noted that the two jaws 8, 9 are constructed
in such a manner as to allow the cable deforming/pinching action to be performed in
either direction parallel to the cable axis, depending on the tension application
point thereon.
[0038] Two cylindrical pins are further provided, which perpendicularly branch off the inner
face of the cover part 6, each of which two pins 11 has a position that corresponds
to that of one of the two pins 10 of the forked jaws 8, 9 on the bottom wall of the
case. The two pins 10 have a tubular shape and the inner hole thereof is substantially
complementary in shape to the two pins on the cover part 6. As the cover part 6 is
moved closer to the bottom wall 5 for closing the case, each of the two pins 11 of
the cover 6 engages in an axially slideable manner in the corresponding pin 10 of
the bottom wall 5. To this end, each of said pins 10 has a hollow cylindrical shape,
corresponding to each of the two pins 11 of the cover 5. Thus, the case may be opened/closed
by moving the cover part 6 away and toward the bottom wall 5 in a uniquely possible
direction which, in a preferred embodiment, is perpendicular to said bottom wall 5.
Each of the pins 11 of the cover 6 has a radially widened portion 111. The hole in
the pivots 10 substantially corresponds to the radial widened portion whereas, in
a predetermined location with reference to the axial extension of the hole, an inner
shoulder is provided for abutment against the radial enlargement, which forms an end-of-stroke
pawl in the direction of removal of the pins 11 from the corresponding holes in the
pivots 10. The abutment position with reference to the separation stroke of the cover
6 is selected in such a manner that, when the radial widened portion 111 on the pins
11 abuts against the radial narrowed portion 110, i.e. the radial shoulder in the
corresponding holes of the pivots 10, the tamper preventing means are in the operating
indication position. The cooperating radially widened portions 111 of the guide pins
11 and the radial shoulders in the holes of the pivots 10 have such a shape and size
that, in combination with the elastic deformability properties of the material which
constitutes said pins 10, 11, the abutment position may be defeated by exerting a
pulling force exceeding a predetermined pulling force. Thanks to this arrangement,
the action of removing the cover 6 may solely be an abrupt and quick action. The usefulness
of these arrangements shall be considered in relation to the proper operation of the
tamper preventing means and open case condition indicating means that are provided
in the apparatus. These include a first deforming member 12 protruding from the bottom
wall 5 and a second deforming member 13 protruding from the inner face of the cover
6 opposed to said bottom wall 5 of the case. These two deforming members 12, 13 have
different inclinations with respect to the axis orthogonal to the said bottom wall
5 and to the inner face of the cover 6. The edge of the first deforming member 12
facing toward the second deforming member 13 has a cusp section 112 extending all
along said first deforming member 12, whereas the opposed side of the second deforming
member 13 has a bicuspid section 113, which also extends all along said second deforming
member 13. The two longitudinal cusps 113 are parallel and form a V-shaped longitudinal
recess which is substantially complementary to the cusp 112 of the first deforming
member 12. The cusp-shaped edge 112 of the deforming member 12 associated to the bottom
wall 5 of the case has a substantially semicircular aperture 212 for housing and retaining
the fiber optic cable 3 and preventing it from slideably moving away from the bottom
wall 5. Upon removal of the cover 6 along the only possible removal direction, the
deforming member 13 associated to the cover 6 moves parallel to itself and to the
deforming member 12 associated to the bottom wall 5, thereby causing the fiber optic
cable 3 to be progressively wedged between the cusp 112 and the opposed two cusps
113 of the deforming member 13 and to be consequently deformed/pinched thereby attenuating
the signal below a predetermined threshold value. Such condition occurs as soon as
the radially widened portions 111 of the guide pins 11 abut against the cooperating
inner radial shoulders 110 in the pivots 10. This provides an advantageous effect.
Whenever someone should try to separate the cover part 6 from the rest of the case,
they would first encounter no hindrance to the motion of the cover in the separation
direction defined by the cooperating guide pins 11 and by the pivots 10, wherein the
former slide. However, such sliding motion would suddenly be stopped by the abutment
of the radially enlarged portions 111 against the radial inner shoulders 11, whereby
the cover separation action would be suddenly stopped. This occurs in the relative
position of the two case parts, in which the deforming and/or pinching means 12, 13
which have the function of tamper preventing means are in the operating fiber optic
cable deforming and/or pinching position, hence in the case tamper indicating condition.
As the continuous separation movement of the two case parts is stopped, the intruder
would encounter a resistance and stop the movement to repeat the pulling action, and
exert a higher separation force. This causes the two case parts to remain in the intermediate
abutment position of the separation stroke, which is an optimal deformation condition
for tamper indication for a certain time, such as to ensure a safe open case condition
indicating action.
[0039] Thanks to the longer operation time of the deforming/pinching means 12, 13 which
act as tamper preventing means, the light signal change generated by said deforming/pinching
means may be effectively differentiated from fast light signal change transients which
are typically not caused by tamper or intrusion actions, which increases the system
operation safety against false alarms.
[0040] It shall be noted that the deforming/pinching means, combined with the tamper preventing
means described above are only provided at the fiber optic cable 3 fastening locations
of some of the posts 4, the fiber optic cable 3 being provided with simple means for
securing it to the posts 4 only at some of said posts 4. These fastener means are
housed in an openable case, whose external aspect is identical to that of the case
for housing the pinching jaws 8, 9, and may be secured to the post 4 in a similar
fashion. The fastener means include a cable grip clamp 14 which uses screws 15 to
secure the cable 3 to the bottom wall 5' without causing any significant deformation
of the cable 3. A longitudinal member 16 may be further provided for covering and
protecting the fiber optic cable 3 in the lengths between two adjacent posts 4, in
such a manner as to prevent the cable 3 from being damaged, for instance by rodents
or the like. This protective member 16 is a C-shaped member whose diameter substantially
corresponds to that of the fiber optic cable 3. The latter is open on one side to
allow application thereof on the fiber optic cable 3. The two stems of the C shape
of the member 16 extend in parallel directions to such an extent as to prevent easy
access to the cable 3 from the open portion of the cover member 16.
[0041] All the above members that form the intrusion preventing apparatus of the invention
may be made of any suitable material, particularly plastic or metal.
[0042] In order to achieve an optimized detection functionality, slipping between the cable
parts shall be minimized. Typically, the cable is formed by an optical fiber or a
fiber optic bundle, enclosed in a first inner coating, composed of a plurality of
resilient strands, made of a material named Kevlar and this assembly is in turn enclosed
in an additional outer tubular sheath made of plastic, particularly polyurethane.
The inner Kevlar coating and the outer sheath are applied to the cable by extrusion
or coextrusion.
[0043] A special kind of cable has an outer polyurethane sheath, which is attached to the
inner Kevlar coating layer by physico-chemical bonding and/or by embedding at least
some of the strands of the inner covering of the optical fiber in the material of
the outer sheath.
[0044] The inner Kevlar coating and the external polyurethane sheath are provided by coextrusion
and simultaneous direct application on the core formed by at least one optical fiber
or a fiber bundle. The process for obtaining a physico-chemical bonding between the
inner coating and the outer sheath and/or for at least partially embedding the strands
of the inner coating in the outer sheath material adds a delay for sheath cooling,
with reference to the moment in which the sheath is brought to contact with the strands
of the inner coating layer. This is achieved, for instance, by decreasing the extrusion
rate to a predetermined extent. This arrangement causes the extruded polyurethane
sheath to be still warm enough when it contacts the Kevlar strands of the inner lining,
to generate a physico-chemical bonding and/or a partial embedding thereof in the mutual
contact area as described above. Extrusion rate adjustment allows to adjust the physico-chemical
bonding and/or at least partial embedding effect as described above, depending on
the mechanical features being requested.
[0045] Thanks to the above, the Kevlar strands generate, with the outer sheath, a sort of
fiber reinforced plastic coating connected thereto. The advantages consist in avoiding
any relative slipping motion between the components of the fiber optic cable and in
achieving a stronger fiber optic cable.
1. An intrusion preventing apparatus for fences (1, 2) or the like, comprising at least
one, preferably two or more cables (3), each composed of at least one or a bundle
of optical fibers (103) and an outer protective sheath (203), which fiber optic cables
(3) subtend substantially longitudinally a length or a perimeter to be protected and
are held or supported, each at a different height, at a plurality of spaced support
locations (4) and wherein, at least at some of said support locations (4), first deforming
and/or pinching means (8, 9) are provided for each fiber optic cable (3), which first
deforming/pinching means (8, 9) may be moved from an idle position in which they do
not interfere with the fiber optic cable (3) to an operating fiber optic cable (3)
deforming and/or pinching position, in which an optical signal transmitted through
the cable is attenuated below a predetermined threshold value or anyway modified,
and which first deforming and/or pinching means (8, 9) are automatically operated
upon increase of the tension of the fiber optic cable (3), for example caused by a
pulling/bending action on said fiber optic cable (3), characterized in that each of said first deforming and/or pinching means is housed in a case having two
separable and joinable case parts, said case further containing tamper preventing
and open-case condition indicating means (11, 12), which are triggered to deform and/or
pinch the fiber optic cable in response to a relative separating motion of said two
parts of the housing case.
2. An apparatus as claimed in claim 1, characterized in that the means to prevent tampering of the case that houses the first deforming and/or
pinching means are second fiber optic cable deforming and/or pinching means which
are triggered to deform and/or pinch the fiber optic cable by the relative separating
motion of said two parts of the case.
3. An apparatus as claimed in claim 2, characterized in that the second fiber optic cable deforming and/or pinching means are formed by two pinching
members, which are secured to one part and the other of the case respectively, and
have fiber optic cable deforming or pinching surfaces oriented at least partly transverse
to the separation direction of the two parts of the case, and are moved from a closed-case
condition in which they do not interfere with the fiber optic cable, to a fiber optic
cable deforming and/or pinching condition, which occurs when said two parts of the
case are in an intermediate spaced-apart position.
4. An apparatus as claimed in one or more of the preceding claims, characterized in that the two parts of the case have intermediate end-of-separation-stroke means, which
end-of-separation-stroke means are designed in such a manner that they can be defeated
by a predetermined pulling force in the separation direction, and which end-of-stroke
means lock, with said predetermined force, the two parts of the case at such a relative
distance that the second deforming and/or pinching means which form the case tamper
preventing means are in the operating fiber optic cable deforming and/or pinching
position.
5. An apparatus as claimed in claim 4, characterized in that said end-of-stroke means are provided in an intermediate position of cooperating
connection/disconnection guide means, which are associated to the one and the other
of the two case parts respectively.
6. An apparatus as claimed in one or more of the preceding claims, characterized in that the first deforming/pinching means are a pair of clamping jaws (8, 9) facing toward
each other on opposite sides of the fiber optic cable (3) and freely pivoting on pins
(10) along the axis of the fiber optic cable (3), which jaws (8, 9), in the idle position,
engage the outer sheath (203) of the fiber optic cable (3) with a predetermined force
without deforming it whereas, as the tension of the fiber optic cable (3) increases,
they are urged by the cable (3) into an arc-shaped pivotal motion in the direction
of the pulling/bending action exerted on the fiber optic cable (3), thereby causing
the fiber optic cable (3) to be pinched and/or deformed, which involves a change in
the optical signal being transmitted.
7. An apparatus as claimed in one or more of the preceding claims, characterized in that the fiber optic cable/s are secured or held, each at a different height, at a plurality
of vertical or substantially vertical posts (4), such as piles or the like, which
are arranged at a distance from each other and wherein first deforming and/or pinching
means (8, 9) are provided at least at some of said vertical posts (4).
8. An apparatus as claimed in one or more of the preceding claims, characterized in that each of the two clamping jaws (8, 9) is a forked member, which is freely pivotable
at its apex on a cylindrical pin (10), the two pins (10) being situated on opposite
sides of the fiber optic cable (3) and perpendicularly to the axis of the post (4)
and to the axis of the fiber optic cable (3), the two forked jaws (8, 9) being disposed
on a common plane, parallel to the post axis (4) and coplanar with the fiber optic
cable (3), and the two forked jaws (8, 9) being disposed symmetrically with respect
to the fiber optic cable (3) and with apertures that face toward each other, and the
ends (108, 109) of the forked jaws (8, 9), in the idle position of said forked jaws
(8, 9), being in contact with the outer sheath (203) of the fiber optic cable (3)
to obtain at least a friction engagement with or a slight compression of the sheath
(203) of the cable (3).
9. An apparatus as claimed in one or more of the preceding claims, characterized in that each end of a first pivoting forked jaw (9) has one point (109), whereas each end
of the second pivoting forked jaw (8) has two adjacent points (108) which form a V-shaped
recess substantially complementary to each of the points (109) of the first forked
jaw (9), each point (109) of the first forked jaw (9) being at such a distance from
the corresponding double point (108) of the other forked jaw (8) as to engage in a
substantially snug manner and/or to slightly compress the outer sheath (203) only
of the fiber optic cable (3) with no deformation thereof, when the pivoting forked
jaws (8, 9) are in the idle condition.
10. An apparatus as claimed in one or more of the preceding claims, characterized in that, as the tension of the fiber optic cable (3) increases, the vertexes of the points
(109) of the first forked jaw (9) and the vertexes of the double points (108) of the
second forked jaw (8) move in the direction of the tension increase along arc-shaped
paths that are at least tangent, particularly slightly intersected, so that a segment
of the fiber optic cable (3) is deformed and/or pinched between the point (109) of
the first jaw (9) and the opposed double point (108) of the second jaw (8) which are
farthest from the point in which the pulling force is exerted on the fiber optic cable
(3).
11. An apparatus as claimed in one or more of the preceding claims, characterized in that the two pins (10) about which the two forked jaws (8, 9) pivot are made of one piece
with the surface of the post (4) that holds or supports the fiber optic cable (3).
12. An apparatus as claimed in one or more of the preceding claims, characterized in that the pairs of opposed jaws (8, 9) for pinching and/or deforming the fiber optic cable
(3) are housed in a case-like enclosure element, including a bottom wall (5), which
can be secured to a corresponding post (4) for supporting the fiber optic cable (3)
and a cover part (6), which can be engaged with said bottom wall (5), the two pins
(10) about which the two forked jaws (8, 9) pivot being made of one piece with said
bottom wall (5) of the case, and the cover part (6) having apertures (306) for snug
passage of the fiber optic cable (3).
13. An apparatus as claimed in one or more of the preceding claims, characterized in that the case tamper preventing and case-open condition indicating means (12, 13) act
to deform and/or pinch the same fiber optic cable (3) which is subjected to the action
of the two forked pivoting jaws (8, 9).
14. An apparatus as claimed in one or more of the preceding claims, characterized in that the cover part (6) and the bottom wall (5) of the case have each one of two members
(13, 12) which cooperate to perform a fiber optic cable (3) deforming and/or compressing
action, upon separation of the cover (6) from the bottom wall (5) in a predetermined
uniquely possible direction.
15. An apparatus as claimed in one or more of the preceding claims, characterized in that said unique direction of separation of the cover part (6) is orthogonal to the bottom
wall (5) of the case and to the inner face of the cover (6), the bottom wall (5) of
the case and the cover part (6) having complementary connection/disconnection guides
(10, 11) which are oriented perpendicular to the bottom wall (5) of the case and to
the inner face of the cover (6).
16. An apparatus as claimed in one or more of the preceding claims, characterized in that said connection/disconnection guides include at least two cylindrical pins (11) which
perpendicularly branch off the inner face of the cover part (6), each of which two
pins (11) is disposed in such position as to correspond to one of the two pins pivots
(10) of the forked jaws (8, 9) on the bottom wall (5) of the case, said pivots (10)
having a tubular shape, i.e. with a central axial hole so that, when the cover part
(6) is brought closer to the bottom wall (5) for closing the case, each of the two
pins (11) of the cover (6) engages in an axially slideable manner in the corresponding
pin (10) of the bottom wall (5).
17. Advantageously, complementary removable engagement means (111) are provided, e.g.
having a snap fit, force fit or similar action between each pin (11) of the cover
part (6) and its respective pin (10) of the bottom wall (5) of the case which form
end-of-stroke means in an intermediate separation position between the bottom wall
and the cover part of the case.
18. An apparatus as claimed in one or more of the preceding claims, characterized in that said removable engagement means include at least one radially widened, particularly
annular portion (111), of the outer cylindrical wall of each pin (11) of the cover
part (6) and/or at least one radially narrowed, particularly annular portion, of the
inner cylindrical wall of each of the two pins (10) of the bottom wall (5) of the
case, said radially widened and narrowed portions having such sizes that, when combined
with a predetermined resilience and/or deformability of the material, allow to defeat
the end-of-stroke position by a predetermined pulling force.
19. An apparatus as claimed in one or more of the preceding claims, characterized in that the tamper preventing and open-case condition indicating means include at least one
first deforming member (12) protruding from the bottom wall (5) of the case and a
second deforming member (13) protruding from the inner face of the cover (6) opposed
to said bottom wall (5) of the case, which two deforming members (12, 13) have their
longitudinal axis contained in a plane parallel to the direction of separation between
the two case parts, which two deforming members (12, 13) have different inclinations
with respect to the axis orthogonal to said bottom wall (5) and to said inner face
of the cover (6) so that, when the case is closed, said deforming members (12, 13)
form a corner area in which the fiber optic cable (3) is housed in an undeformed and/or
unpinched condition whereas, as the cover part (6) is removed along the unique extraction
direction, said deforming members (12, 13) slide mutually thereby generating a progressive
deforming and/or pinching action on the fiber optic cable (3) by wedging thereof between
said two deforming members (12, 13).
20. An apparatus as claimed in one or more of the preceding claims, characterized in that the edge of the first deforming member (12) facing toward the second deforming member
(13) has a cusp section (112) extending all along said first deforming member (12),
whereas the opposed side of the second deforming member (13) has a bicuspid section
(113), which also extends all along said second deforming member (13) the two longitudinal
cusps (113) being parallel and forming a longitudinal V-shaped recess substantially
complementary to the cusp (112) of the first deforming member (12), or vice versa,
so as to generate a progressive wedging action, thereby causing the fiber optic cable
(3) to be deformed and/or pinched between the two deforming members (12, 13) as the
cover (6) is removed from the bottom wall (5) of the case.
21. An apparatus as claimed in one or more of the preceding claims, characterized in that means (212) are provided for retaining the fiber optic cable (3) and preventing it
from slideably moving away from the bottom wall (5) of the case upon removal of the
cover (6).
22. An apparatus as claimed in one or more of the preceding claims, characterized in that the cusp-shaped edge (112) of the deforming member (12) associated to the bottom
wall (5) of the case has a substantially semicircular or U-shaped aperture (212) for
housing and retaining the fiber optic cable (3) and preventing it from slideably moving
away from the bottom wall (5) of the case upon removal of the cover (6).
23. An apparatus as claimed in one or more of the preceding claims, comprising a plurality
of posts (4) and at least one fiber optic cable (3) which is secured to said posts
(4), characterized in that the deforming/pinching means (8, 9), combined with the means (12, 13) for indicating
the opening or tamper of said deforming/pinching means (8, 9) are only provided at
the fiber optic cable (3) fastening locations of some of the posts (4), there being
provided at least one post (4) without said deforming/pinching means (8, 9) interposed
between two posts (4) having said means (8, 9), whereas on said posts (4) that have
no such deforming and/or pinching means (8, 9) simple means (14, 15) are provided
for fastening the fiber optic cable (3) to said posts (4), which fastener means (14,
15) are housed in an openable case, whose external aspect is substantially identical
to that of the case for housing the first deforming/pinching means (8, 9).
24. An apparatus as claimed in claim 23, characterized in that the case containing the fastener means (14, 15) has a bottom wall (5') and a cover
part that may be removably connected, open-case and/or tamper indicating means being
provided between the cover and the bottom wall (5').
25. An apparatus as claimed in one or more of the preceding claims, characterized in that the fiber optic cables (3) are laid horizontally, whereas the piles or posts (4)
for supporting the latter are inclined inwardly or outwardly from the perimeter to
be protected.
26. An apparatus as claimed in one or more of the preceding claims, characterized in that the fiber optic cables (3) are arranged vertically, whereas the support posts (4)
are laid horizontally.
27. An apparatus as claimed in one or more of the preceding claims, characterized in that both the cases or enclosures for the deforming and/or pinching means and the cases
or enclosures for the fastener means are engaged on the posts by means that allow
said cases or enclosures to slide along said posts (4), there being provided position
lock means for said sliding cases or enclosures, which means are solely accessible
from inside said cases or enclosures.
28. An apparatus as claimed in claim 27, characterized in that, on the side of each post (4) designed for attachment of said cases or enclosures,
each post (4) has a longitudinal guide, which guide has a tubular section all along
it which opens by a longitudinal slot at the center of the surface upon which the
enclosures and/or cases are fixed to said post, whereas said bottom of the enclosures
or cases has a slide-like appendage which is formed by a widened member whose transverse
extension is greater than the width of the slot and which is connected to said bottom
of the case or enclosure by means of a rib that is slightly thinner than said longitudinal
slot and holds the widened member at a distance from the bottom wall that is slightly
greater than the thickness of the wall of the tubular guide.
29. An apparatus as claimed in claim 28 or 29, characterized in that the removable means for locking the housing cases or enclosures in position are means
for clamping the wall of the guide upon which the bottom of the case or enclosure
rest, such as screw-operated clamps.
30. An apparatus as claimed in claim 29, characterized in that the bottom of the case has, at the side of the longitudinal slot of the guide, at
least one threaded through hole, for engagement of a screw or bolt fastener.
31. An apparatus as claimed in claim 30, characterized in that the bottom of the case has at least two or more threaded through holes, arranged
on the bottom of the case or enclosure on the two sides of the longitudinal slot of
the guide, the screws or bolts being only accessible from inside the case or enclosure.
32. An apparatus as claimed in one or more of the preceding claims, characterized in that the posts and the guides thereon for the sliding enclosures or cases are made from
one piece.
33. An apparatus as claimed in claim 32, characterized in that the posts are made from extruded aluminum bars or the like that are cut to length.
1. Eindringverhinderungsvorrichtung für Zäune (1, 2) oder dergleichen, umfassend mindestens
ein, bevorzugt zwei oder mehr Kabel (3), die jeweils aus mindestens einer oder einem
Bündel von optischen Fasern (103) und einem äußeren Schutzmantel (203) besteht, wobei
die faseroptischen Kabel (3) im wesentlichen longitudinal einer zu schützenden Länge
oder einem zu schützenden Umfang gegenüberliegen und jeweils in einer anderen Höhe
an mehreren beabstandeten Stützorten (4) gehalten oder gestützt werden und wobei an
mindestens einigen der Stützorte (4) erste Verformungs- und/oder Quetschungsmittel
(8, 9) für jedes faseroptische Kabel (3) vorgesehen sind, wobei die ersten Verformungs-/Quetschungsmittel
(8, 9) aus einer Ruheposition, in der sie das faseroptische Kabel (3) nicht stören,
zu einer ein faseroptisches Kabel (3) verformenden und/oder quetschenden Arbeitsposition,
in der ein durch das Kabel übertragenes optisches Signal unter einen vorbestimmten
Schwellwert gedämpft oder anderweitig modifiziert wird, bewegt werden können, und
wobei die ersten Verformungs- und/oder Quetschungsmittel (8, 9) bei einer Zunahme
der Zugspannung des faseroptischen Kabels (3), beispielsweise bewirkt durch eine ziehende/biegende
Wirkung auf das faseroptische Kabel (3), automatisch betätigt werden, dadurch gekennzeichnet, dass jedes der ersten Verformungs- und/oder Quetschungsmittel in einem Gehäuse untergebracht
ist, die zwei trennbare und verbindbare Gehäuseteile aufweist, wobei das Gehäuse weiterhin
Mittel (11, 12) zum Verhindern einer Manipulation und zum Anzeigen eines offenen Gehäusezustands
enthält, die ausgelöst werden, um das faseroptische Kabel als Reaktion auf eine relative
trennende Bewegung der beiden Teile des aufnehmenden Gehäuses zu verformen und/oder
zu quetschen.
2. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass die Mittel zum Verhindern eines Manipulierens des Gehäuses, die das erste Verformungs-
und/oder Quetschungsmittel aufnimmt, zweite Mittel zum Verformen und/oder Quetschen
eines faseroptischen Kabels sind, die ausgelöst werden, um das faseroptische Kabel
durch die relative trennende Bewegung der beiden Teile des Gehäuses zu verformen und/oder
zu quetschen.
3. Vorrichtung nach Anspruch 2, dadurch gekennzeichnet, dass die zweiten Mittel zum Verformen und/oder Quetschen eines faseroptischen Kabels durch
zwei Quetschungsglieder gebildet werden, die an einem Teil bzw. dem anderen des Gehäuses
befestigt sind und ein faseroptisches Kabel verformende oder quetschende Oberflächen
aufweisen, die zumindest teilweise quer zur Trennungsrichtung der beiden Teile des
Gehäuses orientiert sind, und aus einem geschlossenen Gehäusezustand, in dem sie das
faseroptische Kabel nicht stören, zu einem ein faseroptisches Kabel verformenden und/oder
quetschenden Zustand bewegt werden, der eintritt, wenn die beiden Teile des Gehäuses
sich in einer beabstandeten Zwischenposition befinden.
4. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die beiden Teile des Gehäuses dazwischenliegende Trennungs-Hubbegrenzungsmittel aufweisen,
welche derart ausgelegt sind, dass sie durch eine vorbestimmte Zugkraft in der Trennungsrichtung
überwunden werden können, und welche Hubbegrenzungsmittel mit der vorbestimmten Kraft
die beiden Teile des Gehäuses in einem derartigen relativen Abstand verriegeln, dass
die zweiten Verformungs- und/oder Quetschungsmittel, die die Gehäusemanipulierungsverhinderungsmittel
bilden, sich in der ein faseroptisches Kabel verformenden und/oder quetschenden Arbeitsposition
befinden.
5. Vorrichtung nach Anspruch 4, dadurch gekennzeichnet, dass die Hubendemittel in einer Zwischenposition von kooperierenden Verbindungs-/Unterbrechungsführungsmitteln
vorgesehen sind, die mit dem einen bzw. dem anderen der beiden Gehäuseteile assoziiert
sind.
6. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es sich bei den ersten Verformungs-/Quetschungsmitteln um ein Paar Klemmbacken (8,
9) handelt, die einander auf gegenüberliegenden Seiten des faseroptischen Kabels (3)
zugewandt sind und frei auf Stiften (10) entlang der Achse des faseroptischen Kabels
(3) schwenken, wobei die Backen (8, 9) in der Ruheposition den Außenmantel (203) des
faseroptischen Kabels (3) mit einer vorbestimmten Kraft in Eingriff nehmen, ohne ihn
zu verformen, wohingegen sie, wenn die Zugspannung des faseroptischen Kabels (3) zunimmt,
von dem Kabel (3) in eine bogenförmige Schwenkbewegung in der Richtung der auf das
faseroptische Kabel (3) ausgeübten ziehenden/biegenden Wirkung gedrängt werden, wodurch
bewirkt wird, dass das faseroptische Kabel (3) gequetscht und/oder verformt wird,
was eine Änderung bei dem übertragenen optischen Signal beinhaltet.
7. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das oder die faseroptischen Kabel jeweils in einer anderen Höhe an mehreren vertikalen
oder im wesentlichen vertikalen Pfosten (4) wie etwa Pfählen oder dergleichen gesichert
oder gehalten werden, die in einem Abstand voneinander angeordnet sind, und wobei
erste Verformungs- und/oder Quetschungsmittel (8, 9) an mindestens einigen der vertikalen.
Pfosten (4) vorgesehen sind.
8. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass jede der beiden Klemmbacken (8, 9) ein gegabeltes Glied ist, das an seinem Scheitelpunkt
frei auf einem zylindrischen Stift (10) schwenken kann, wobei sich die beiden Stifte
(10) auf gegenüberliegenden Seiten des faseroptischen Kabels (3) und senkrecht zur
Achse des Pfostens (4) und zur Achse des faseroptischen Kabels (3) befinden, wobei
die beiden gegabelten Backen (8, 9) in einer gemeinsamen Ebene parallel zur Pfostenachse
(4) und koplanar zu dem faseroptischen Kabel (3) angeordnet sind und die beiden gegabelten
Backen (8, 9) symmetrisch bezüglich des faseroptischen Kabels (3) und mit Öffnungen
angeordnet sind, die einander zugewandt sind, und die Enden (108, 109) der gegabelten
Backen (8, 9) in der Ruheposition der gegabelten Backen (8, 9) in Kontakt mit dem
Außenmantel (203) des faseroptischen Kabels (3) stehen, um zumindest eine Reibungsineingriffnahme
mit dem Mantel (203) des Kabels (3) oder eine geringe Kompression des Mantels (203)
des Kabels (3) zu erhalten.
9. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass jedes Ende einer ersten schwenkenden gegabelten Backe (9) eine Spitze (109) aufweist,
wohingegen jedes Ende der zweiten schwenkenden gegabelten Backe (8) zwei benachbarte
Spitzen (108) aufweist, die eine V-förmige Vertiefung im wesentlichen komplementär
zu jeder der Spitzen (109) der ersten gegabelten Backe (9) bilden, wobei sich jede
Spitze (109) der ersten gegabelten Backe (9) in einem derartigen Abstand von der entsprechenden
Doppelspitze (108) der anderen gegabelten Backe (8) befindet, dass nur der Außenmantel
(203) des faseroptischen Kabels (3) auf im wesentlichen enge Weise in Eingriff genommen
und/oder geringfügig zusammengedrückt wird, ohne jegliche Verformung davon, wenn sich
die schwenkenden gegabelten Backen (8, 9) in dem Ruhezustand befinden.
10. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass mit zunehmender Zugspannung des faseroptischen Kabels (3) sich die Scheitelpunkte
der Spitzen (109) der ersten gegabelten Backe (9) und die Scheitelpunkte der Doppelspitzen
(108) der zweiten gegabelten Backe (8) in der Richtung der Zugspannungserhöhung entlang
bogenförmigen Wegen bewegen, die zumindest eine Tangente sind, insbesondere geringfügig
geschnitten, so dass ein Segment des faseroptischen Kabels (3) zwischen der Spitze
(109) der ersten Backe (9) und der gegenüberliegenden Doppelspitze (108) der zweiten
Backe (8), die sich am weitesten von dem Punkt weg befinden, wo die Zugkraft auf das
faseroptische Kabel (3) ausgeübt wird, verformt und/oder gequetscht wird.
11. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die beiden Stifte (10), um die die beiden gegabelten Backen (8, 9) schwenken, aus
einem Stück mit der Oberfläche des Pfostens (4) hergestellt sind, der das faseroptische
Kabel (3) hält oder stützt.
12. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Paare von gegenüberliegenden Backen (8, 9) zum Quetschen und/oder Verformen des
faseroptischen Kabels (3) in einem gehäuseartigen Umhüllungselement untergebracht
sind, das eine Bodenwand (5), die an einem entsprechenden Pfosten (4) zum Stützen
des faseroptischen Kabels (3) befestigt werden kann, und einen Abdeckungsteil (6),
der die Bodenwand (5) in Eingriff nehmen kann, enthält, wobei die beiden Stifte (10),
um die die beiden gegabelten Backen (8, 9) schwenken, aus einem Stück mit der Bodenwand
(5) des Gehäuses hergestellt sind und der Abdeckungsteil (6) Öffnungen (306) für den
engen Durchtritt des faseroptischen Kabels (3) aufweist.
13. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Mittel (12, 13) zum Verhindern einer Manipulation an dem Gehäuse und zum Anzeigen
eines offenen Gehäusezustands dahingehend wirken, das gleiche faseroptische Kabel
(3), das der Aktion der beiden gegabelten schwenkenden Backen (8, 9) unterworfen ist,
zu verformen und/oder zu quetschen.
14. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Abdeckungsteil (6) und die Bodenwand (5) des Gehäuses jeweils eines von zwei
Gliedern (13, 12) aufweisen, die zusammenwirken um eine ein faseroptisches Kabel (3)
verformende und/oder komprimierende Wirkung bei Trennung der Abdeckung (6) von der
Bodenwand (5) in einer vorbestimmten einzig möglichen Richtung durchzuführen.
15. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die einzige Trennungsrichtung des Abdeckungsteils (6) orthogonal zur Bodenwand (5)
des Gehäuses und zur Innenfläche der Abdeckung (6) verläuft, wobei die Bodenwand (5)
des Gehäuses und das Abdeckungsteil (6) komplementäre Verbindungs-/Unterbrechungsführungen
(10, 11) aufweisen, die senkrecht zur Bodenwand (5) des Gehäuses und zur Innenfläche
der Abdeckung (6) orientiert sind.
16. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Verbindungs-/Unterbrechungsführungen mindestens zwei zylindrische Stifte (11)
enthalten, die senkrecht von der Innenfläche des Abdeckungsteils (6) abzweigen, wobei
jeder der beiden Stifte (11) in einer derartigen Position angeordnet ist, dass er
einer der beiden Stiftedrehachsen (10) der gegabelten Backen (8, 9) an der Bodenwand
(5) des Gehäuses entspricht, wobei die Drehachsen (10) eine Rohrform besitzen, d.h.
mit einem zentralen axialen Loch, so dass, wenn der Abdeckungsteil (6) zum Schließen
des Gehäuses näher an die Bodenwand (5) gebracht wird, jeder der beiden Stifte (11)
der Abdeckung (6) auf axial gleitbare Weise in den entsprechenden Stift (10) der Bodenwand
(5) eingreift.
17. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass komplementäre entfernbare Eingriffsmittel (111) vorgesehen sind, zum Beispiel mit
einer Schnappassung, einer Kraftpassung oder einer ähnlichen Wirkung zwischen jedem
Stift (11) des Abdeckungsteils (6) und seinem jeweiligen Stift (10) der Bodenwand
(5) des Gehäuses, die Hubendemittel in einer Trennungszwischenposition zwischen der
Bodenwand und dem Abdeckungsteil des Gehäuses bilden.
18. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die entfernbaren Eingriffsmittel mindestens einen radial verbreiterten, insbesondere
ringförmigen Abschnitt (111) der äußeren zylindrischen Wand jedes Stifts (11) des
Abdeckungsteils (6) und/oder mindestens einen radial verengten, insbesondere ringförmigen
Abschnitt der inneren zylindrischen Wand jedes der beiden Stifte (10) der Bodenwand
(5) des Gehäuses enthalten, wobei die radial verbreiterten und verengten Abschnitte
derartige Größen aufweisen, die in Kombination mit einer vorbestimmten Nachgiebigkeit
und/oder Verformbarkeit des Materials gestatten, dass die Hubendeposition durch eine
vorbestimmte Zugkraft überwunden wird.
19. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Mittel zum Verhindern einer Manipulation und zum Anzeigen eines offen Gehäusezustands
mindestens ein erstes Verformungsglied (12), das von der Bodenwand (5) des Gehäuses
vorsteht, und ein zweites Verformungsglied (13), das von der Innenfläche der Abdeckung
(6) gegenüber der Bodenwand (5) des Gehäuses vorsteht, enthalten, wobei die Längsachse
der beiden Verformungsglieder (12, 13) in einer Ebene parallel zur Trennungsrichtung
zwischen den beiden Gehäuseteilen enthalten ist, wobei die beiden Verformungsglieder
(12, 13) unterschiedliche Steigungen bezüglich der Achse orthogonal zur Bodenwand
(5) und zu der Innenfläche der Abdeckung (6) aufweisen, so dass beim Schließen des
Gehäuses die Verformungsglieder (12, 13) einen Eckbereich bilden, in dem das faseroptische
Kabel (3) in einem unverformten und/oder ungequetschten Zustand aufgenommen wird,
wohingegen, wenn das Abdeckungsteil (6) entlang der einzigen Extraktionsrichtung entfernt
wird, die Verformungsglieder (12, 13) gegenseitig gleiten, wodurch eine fortschreitende
Verformungs- und/oder Quetschungswirkung an dem faseroptischen Kabel (3) durch sein
Verkeilen zwischen den beiden Verformungsgliedern (12, 13) erzeugt wird.
20. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Rand des ersten Verformungsglieds (12), in Richtung des zweiten Verformungsglieds
(13) gewandt, eine Scheitelsektion (112) aufweist, die sich entlang des ganzen ersten
Verformungsglieds (12) erstreckt, wohingegen die gegenüberliegende Seite des zweiten
Verformungsglieds (13) eine Doppelscheitelsektion (113) aufweist, die sich ebenfalls
entlang des ganzen zweiten Verformungsglieds (13) erstreckt, wobei die beiden Längsscheitel
(113) parallel verlaufen und eine longitudinale V-förmige Vertiefung im wesentlichen
komplementär zum Scheitel (112) des ersten Verformungsglieds (12) oder umgekehrt bilden,
um eine fortschreitende Verkeilungswirkung zu erzeugen und dadurch zu bewirken, dass
das faseroptische Kabel (3) zwischen den beiden Verformungsgliedern (12, 13) verformt
und/oder gequetscht wird, wenn die Abdeckung (6) von der Bodenwand (5) des Gehäuses
entfernt wird.
21. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass Mittel (212) vorgesehen sind zum Halten des faseroptischen Kabels (3) und zum Verhindern,
dass es sich beim Entfernen der Abdeckung (6) gleitend von der Bodenwand (5) wegbewegt.
22. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der scheitelförmige Rand (112) des mit der Bodenwand (5) des Gehäuses assoziierten
Verformungsglieds (12) eine im wesentlichen halbkreisförmige oder U-förmige Öffnung
(212) zum Aufnehmen und Halten des faseroptischen Kabels (3) aufweist, und um zu verhindern,
dass es sich beim Entfernen der Abdeckung (6) gleitend von der Bodenwand (5) des Gehäuses
wegbewegt.
23. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, umfassend mehrere
Pfosten (4) und mindestens ein faseroptisches Kabel (3), das an den Pfosten (4) befestigt
ist, dadurch gekennzeichnet, dass die Verformungs-/Quetschungsmittel (8, 9) kombiniert mit den Mitteln (12, 13) zum
Anzeigen des Öffnens oder einer Manipulation der Verformungs-/Quetschungsmittel (8,
9) nur an den Befestigungsorten für ein faseroptisches Kabel (3) von einigen der Pfosten
(4) vorgesehen sind, wobei mindestens ein Pfosten (4) ohne die Verformungs-/Quetschungsmittel
(8, 9) zwischen zwei Pfosten (4) mit den Mitteln (8, 9) vorgesehen ist, wohingegen
an den Pfosten (4), die keine derartigen Verformungs- und/oder Quetschungsmittel (8,
9) aufweisen, einfache Mittel (14, 15) vorgesehen sind zum Befestigen des faseroptischen
Kabels (3) an den Pfosten (4), wobei die Befestigungsmittel (14, 15) in einem Gehäuse
untergebracht sind, das geöffnet werden kann, dessen externer Aspekt im wesentlichen
identisch zu dem des Gehäuses zum Aufnehmen der ersten Verformungs-/Quetschungsmittel
(8, 9) ist.
24. Vorrichtung nach Anspruch 23, dadurch gekennzeichnet, dass das die Befestigungsmittel (14, 15) enthaltende Gehäuse eine Bodenwand (5') und einen
Abdeckungsteil, der entfernbar verbunden sein kann, enthält, wobei zwischen der Abdeckung
und der Bodenwand (5') Mittel zum Anzeigen eines offenen Gehäuses und/oder einer Manipulation
vorgesehen sind.
25. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die faseroptischen Kabel (3) horizontal verlegt sind, wohingegen die Pfähle oder
Pfosten (4) zum Stützen der letzteren von dem zu schützenden Umfang nach innen oder
außen geneigt sind.
26. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die faseroptischen Kabel (3) vertikal angeordnet sind, wohingegen die Stützpfosten
(4) horizontal verlegt sind.
27. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass sowohl die Gehäuse oder Umhüllungen für die Verformungs- und/oder Quetschungsmittel
als auch die Gehäuse oder Umhüllungen für die Verbindungselementemittel an den Pfosten
mit Mitteln in Eingriff treten, die gestatten, dass die Gehäuse oder Umhüllungen entlang
den Pfosten (4) gleiten, wodurch Positionsverriegelungsmittel für die gleitenden Gehäuse
oder Umhüllungen bereitgestellt werden, welche Mittel allein von der Innenseite der
Gehäuse oder Umhüllungen aus zugänglich sind.
28. Vorrichtung nach Anspruch 27, dadurch gekennzeichnet, dass auf der Seite jedes zur Anbringung der Gehäuse oder Umhüllungen ausgelegten Pfostens
(4) jeder Pfosten (4) eine Längsführung aufweist, die einen rohrförmigen Schnitt entlang
sich aufweist, der sich durch einen Längsschlitz in der Mitte der Oberfläche öffnet,
auf der die Umhüllungen und/oder Gehäuse an dem Pfosten fixiert sind, wohingegen der
Boden der Umhüllungen oder Gehäuse ein schlittenartiges Anhängsel aufweist, das durch
ein erweitertes Glied gebildet wird, dessen Quererstreckung größer ist als die Breite
des Schlitzes und das mit dem Boden des Gehäuses oder der Umhüllung mit Hilfe einer
Rippe verbunden ist, die geringfügig dünner ist als der Längsschlitz und das erweiterte
Glied in einem Abstand von der Bodenwand hält, der geringfügig größer ist als die
Dicke der Wand der rohrartigen Führung.
29. Vorrichtung nach Anspruch 28 oder 29, dadurch gekennzeichnet, dass die entfernbaren Mittel zum Verriegeln der aufnehmenden Gehäuse oder Umhüllungen
in ihrer Position Mittel sind zum Festklemmen der Wand der Führung, auf der der Boden
des Gehäuses oder der Umhüllung ruht, wie etwa mit Schrauben betriebene Klemmen.
30. Vorrichtung nach Anspruch 29, dadurch gekennzeichnet, dass der Boden des Gehäuses auf der Seite des Längsschlitzes der Führung mindestens ein
Gewindedurchgangsloch zur Ineingriffnahme einer Schraube oder eines Bolzenverbindungselements
aufweist.
31. Vorrichtung nach Anspruch 30, dadurch gekennzeichnet, dass der Boden des Gehäuses mindestens zwei oder mehr Gewindedurchgangslöcher aufweist,
die am Boden des Gehäuses oder der Umhüllung auf den beiden Seiten des Längsschlitzes
der Führung angeordnet sind, wobei die Schrauben oder Bolzen nur vom Inneren des Gehäuses
oder der Umhüllung aus zugänglich sind.
32. Vorrichtung nach einem oder mehreren der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Pfosten und die Führungen daran für die gleitenden Umhüllungen oder Gehäuse aus
einem Stück hergestellt sind.
33. Vorrichtung nach Anspruch 32, dadurch gekennzeichnet, dass die Pfosten aus extrudierten Aluminiumstangen oder dergleichen hergestellt sind,
die zurechtgeschnitten sind.
1. Appareil de prévention d'intrusion pour clôtures (1, 2) ou éléments similaires, comprenant
au moins un, de préférence deux ou plus de câbles (3), chacun composé d'une ou d'un
groupe de fibres optiques (103) et d'une gaine protectrice extérieure (203), lesquels
câbles de fibre optique (3) sous-tendent sensiblement longitudinalement une longueur
ou un périmètre à protéger et sont maintenus ou supportés, chacun à une hauteur différente,
à une pluralité d'emplacements de support espacés (4) et dans lequel, au moins à certains
desdits emplacements de support (4), des premiers moyens de déformation et/ou pincement
(8, 9) sont fournis pour chaque câble de fibre optique (3), lesquels premiers moyens
de déformation et/ou pincement (8, 9) peuvent être déplacés d'une position de veille
à laquelle ils n'interfèrent pas avec le câble de fibre optique (3) à une position
de déformation et/ou pincement de câble de fibre optique (3) d'exploitation, à laquelle
un signal optique transmis à travers le câble est atténué au-dessous d'une valeur
de seuil prédéterminée ou est modifié de toute façon, et lesquels premiers moyens
de déformation et/ou pincement (8, 9) sont automatiquement utilisés à l'augmentation
de la tension du câble de fibre optique (3), par exemple provoquée par une action
de tirage/flexion sur ledit câble de fibre optique (3), caractérisé en ce que chacun desdits premiers moyens de déformation et/ou pincement est hébergé dans un
boîtier ayant deux parties de boîtier séparables et joignables, ledit boîtier contenant
en outre des moyens de prévention de manipulation illicite et d'indication d'état
d'ouverture de boîtier (11, 12), qui sont déclenchés pour déformer et/ou pincer le
câble de fibre optique en réponse à un mouvement de séparation relative desdites deux
parties du boîtier d'hébergement.
2. Appareil selon la revendication 1, caractérisé en ce que les moyens pour empêcher toute manipulation illicite du boîtier qui héberge les premiers
moyens de déformation et/ou pincement sont des deuxièmes moyens de déformation et/ou
pincement de câble de fibre optique qui sont déclenchés pour déformer et/ou pincer
le câble de fibre optique par le mouvement de séparation relative desdites deux parties
du boîtier.
3. Appareil selon la revendication 2, caractérisé en ce que les deuxièmes moyens de déformation et/ou pincement de câble de fibre optique sont
formés par deux membres de pincement, qui sont fixés à une partie et à l'autre partie
du boîtier respectivement, et ont des surfaces de déformation ou pincement de câble
de fibre optique orientée au moins partiellement transversalement à la direction de
séparation des deux parties du boîtier, et sont déplacés d'un état de boîtier fermé
dans lequel ils n'interfèrent pas avec le câble de fibre optique à un état de déformation
et/ou pincement de câble de fibre optique, qui survient lorsque lesdites deux parties
du boîtier sont à une position espacée intermédiaire.
4. Appareil selon l'une quelconque des revendications précédentes, caractérisé en ce que les deux parties du boîtier ont des moyens intermédiaires de fin de course de séparation,
lesquels moyens de fin de course de séparation sont conçus de manière à ce qu'ils
puissent contrecarrer une force de tirage prédéterminée dans la direction de séparation,
et lesquels moyens de fin de course verrouillent, avec ladite force prédéterminée,
les deux parties du boîtier à une distance relative de sorte que les deuxièmes moyens
de déformation et/ou pincement qui forment les moyens de prévention de manipulation
illicite de boîtier se trouvent à la position de déformation et/ou pincement de câble
de fibre optique d'exploitation.
5. Appareil selon la revendication 4, caractérisé en ce que lesdits moyens de fin de course sont fournis à une position intermédiaire de moyens
de guidage de connexion/déconnexion en coopération, qui sont associés à l'une et à
l'autre des deux parties de boîtier respectivement.
6. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les premiers moyens de déformation et/ou pincement sont une paire de mâchoires de
serrage (8, 9) se faisant face l'une à l'autre sur des côtés opposés du câble de fibre
optique (3) et pivotant librement sur des broches (10) le long de l'axe du câble de
fibre optique (3), lesquelles mâchoires (8, 9), dans la position de veille, se mettent
en prise avec la gaine extérieure (203) du câble de fibre optique (3) avec une force
prédéterminée sans la déformer alors que, au fur et à mesure que la tension du câble
de fibre optique (3) augmente, elles sont amenées par le câble (3) dans un mouvement
pivotant en forme d'arc de cercle dans la direction de l'action de tirage/flexion
exercée sur le câble de fibre optique (3), ce qui fait en sorte que le câble de fibre
optique (3) soit pincé et/ou déformé, ce qui implique un changement du signal optique
en cours de transmission.
7. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que le ou les câbles de fibre optique sont fixés ou maintenus, chacun à une hauteur différente,
à une pluralité de montants verticaux ou sensiblement verticaux (4), comme des piles
ou des éléments similaires, qui sont agencés à une distance l'un de l'autre et dans
lequel les premiers moyens de déformation et/ou pincement (8, 9) sont fournis au moins
à certains desdits montants verticaux (4).
8. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que chacune des deux mâchoires de serrage (8, 9) est un membre en fourche, qui peut librement
pivoter à son sommet sur une broche cylindrique (10), les deux broches (10) étant
situées sur des côtés opposés du câble de fibre optique (3) et perpendiculairement
à l'axe du montant (4) et à l'axe du câble de fibre optique (3), les deux mâchoires
en fourche (8, 9) étant disposées sur un plan commun, parallèle à l'axe du montant
(4) et coplanaire avec le câble de fibre optique (3), et les deux mâchoires en fourche
(8, 9) étant disposées symétriquement par rapport au câble de fibre optique (3) et
avec des ouvertures qui se font face l'une à l'autre, et les extrémités (108, 109)
des mâchoires en fourche (8, 9), à la position de veille desdites mâchoires en fourche
(8, 9), étant en contact avec la gaine extérieure (203) du câble de fibre optique
(3) pour obtenir au moins une mise en prise par frottement ou une légère compression
de la gaine (203) du câble (3).
9. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que chaque extrémité d'une première mâchoire en fourche pivotante (9) a un point (109),
alors que chaque extrémité de la deuxième mâchoire en fourche pivotante (8) a deux
points adjacents (108) qui forment un renfoncement en forme de V sensiblement complémentaire
à chacun des points (109) de la première mâchoire en fourche (9), chaque point (109)
de la première mâchoire en fourche (9) étant à une distance du double point correspondant
(108) de l'autre mâchoire en fourche (8) de façon à se mettre en prise d'une manière
qui s'emboîte sensiblement parfaitement et/ou compresser légèrement la gaine extérieure
(203) uniquement du câble de fibre optique (3) sans déformation de celui-ci, lorsque
les mâchoires en fourche pivotantes (8, 9) sont dans l'état de veille.
10. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que, au fur et à mesure que la tension du câble de fibre optique (3) augmente, les sommets
des points (109) de la première mâchoire en fourche (9) et les sommets des doubles
points (108) de la deuxième mâchoire en fourche (8) se déplacent dans la direction
de l'augmentation de tension le long de chemins en forme d'arc de cercle qui sont
au moins tangents, en particulier légèrement en intersection, de manière à ce qu'un
segment du câble de fibre optique (3) soit déformé et/ou pincé entre le point (109)
de la première mâchoire (9) et le double point opposé (108) de la deuxième mâchoire
(8) qui sont les plus éloignés du point auquel la force de tirage est exercée sur
le câble de fibre optique (3).
11. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les deux broches (10) autour desquelles les deux mâchoires en fourche (8, 9) pivotent
sont constituées d'un seul bloc avec la surface du montant (4) qui maintient ou supporte
le câble de fibre optique (3).
12. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les paires de mâchoires opposées (8, 9) pour pincer et/ou déformer le câble de fibre
optique (3) sont hébergées dans un élément d'enceinte en forme de boîtier, comprenant
une paroi de fond (5), qui peut être fixée à un montant correspondant (4) pour supporter
le câble de fibre optique (3) et une partie de couvercle (6), qui peut être mise en
prise avec ladite paroi de fond (5), les deux broches (10) autour desquelles les deux
mâchoires en fourche (8, 9) pivotent étant constituées d'un seul bloc avec ladite
paroi de fond (5) du boîtier, et la partie de couvercle (6) ayant des ouvertures (306)
pour le passage parfaitement emboîté du câble de fibre optique (3).
13. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les moyens de prévention de manipulation illicite de boîtier et d'indication d'état
d'ouverture de boîtier (12, 13) agissent pour déformer et/ou pincer le même câble
de fibre optique (3) qui est soumis à l'action des deux mâchoires pivotantes en fourche
(8, 9).
14. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que la partie de couvercle (6) et la paroi de fond (5) du boîtier ont chacune l'un de
deux membres (13, 12) qui coopèrent pour effectuer une action de déformation et/ou
compression de câble de fibre optique (3), à la séparation du couvercle (6) de la
paroi de fond (5) dans une position possible prédéterminée de manière unique.
15. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que ladite direction unique de séparation de la partie de couvercle (6) est orthogonale
à la paroi de fond (5) du boîtier et à la face intérieure du couvercle (6), la paroi
de fond (5) du boîtier et la partie de couvercle (6) ayant des guides de connexion/déconnexion
complémentaires (10, 11) qui sont orientés perpendiculairement à la paroi de fond
(5) du boîtier et à la face intérieure du couvercle (6).
16. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que lesdits guides de connexion/déconnexion comprennent au moins deux broches cylindriques
(11) qui bifurquent perpendiculairement à la face intérieure de la partie de couvercle
(6), chacune desdites deux broches (11) est disposée à une position de manière à correspondre
à l'un des deux pivots de broches (10) des mâchoires en fourche (8, 9) sur la paroi
de fond (5) du boîtier, lesdits pivots (10) ayant une forme tubulaire, c'est-à-dire
avec un trou axial central de sorte que, lorsque la partie de couvercle (6) est rapprochée
de la paroi de fond (5) pour fermer le boîtier, chacune des deux broches (11) du couvercle
(6) se met en prise d'une manière coulissable axialement dans la broche correspondante
(10) de la paroi de fond (5).
17. De manière avantageuse, des moyens de mise en prise amovibles complémentaires (111)
sont fournis, par exemple en ayant une adaptation par pression, une adaptation par
force ou une action similaire entre chaque broche (11) de la partie de couvercle (6)
et sa broche respective (10) de la paroi de fond (5) du boîtier qui forment des moyens
de fin de course à une position de séparation intermédiaire entre la paroi de fond
et la partie de couvercle du boîtier.
18. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que lesdits moyens de mise en prise amovibles comprennent au moins une portion particulièrement
annulaire radialement élargie (111), de la paroi cylindrique extérieure de chaque
broche (11) de la partie de couvercle (6) et/ou au moins une portion particulièrement
annulaire radialement rétrécie, de la paroi cylindrique intérieure de chacune des
deux broches (10) de la paroi de fond (5) du boîtier, lesdites portions radialement
élargie et rétrécie ayant des tailles telles que, lorsqu'elles sont combinées à une
résilience et/ou déformabilité prédéterminée du matériau, permettent de contrecarrer
la position de fin de course par une force de tirage prédéterminée.
19. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les moyens de prévention de manipulation illicite et d'indication d'état d'ouverture
de boîtier comprennent au moins un premier membre de déformation (12) faisant saillie
à partir de la paroi de fond (5) du boîtier et un deuxième membre de déformation (13)
faisant saillie à partir de la face intérieure du couvercle (6) opposé à ladite paroi
de fond (5) du boîtier, lesquels deux membres de déformation (12, 13) ont leur axe
longitudinal contenu dans un plan parallèle à la direction de séparation entre les
deux parties de boîtier, lesquels deux membres de déformation (12, 13) ont des inclinaisons
différentes par rapport à l'axe orthogonal à ladite paroi de fond (5) et à ladite
face intérieure du couvercle (6) de manière à ce que, lorsque le boîtier est fermé,
lesdits membres de déformation (12, 13) forment une zone de coin dans laquelle le
câble de fibre optique (3) est hébergé dans un état non déformé et/ou non pincé alors
que, lorsque la partie de couvercle (6) est enlevée dans la direction d'extraction
unique, lesdits membres de déformation (12, 13) coulissent mutuellement ce qui génère
une action de déformation et/ou pincement progressive sur le câble de fibre optique
(3) en le calant entre lesdits deux membres de déformation (12, 13).
20. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que le bord du premier membre de déformation (12) faisant face au deuxième membre de
déformation (13) a une section de sommet (112) s'étendant tout le long dudit premier
membre de déformation (12), alors que le côté opposé du deuxième membre de déformation
(13) a une section à deux sommets (113), qui s'étend également tout le long dudit
deuxième membre de déformation (13), les deux sommets longitudinaux (113) étant parallèles
et formant un renfoncement longitudinal en forme de V sensiblement complémentaire
au sommet (112) du premier membre de déformation (12), ou vice versa, de manière à
générer une action de calage progressive, ce qui amène le câble de fibre optique (3)
à être déformé et/ou pincé entre les deux membres de déformation (12, 13) lorsque
le couvercle (6) est enlevé de la paroi de fond (5) du boîtier.
21. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que des moyens (212) sont fournis pour retenir le câble de fibre optique (3) et l'empêcher
de se déplacer de manière coulissable à l'écart de la paroi de fond (5) du boîtier
à l'enlèvement du couvercle (6).
22. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que le bord en forme de sommet (112) du membre de déformation (12) associé à la paroi
de fond (5) du boîtier a une ouverture sensiblement semi-circulaire ou en forme de
U (212) pour héberger et retenir le câble de fibre optique (3) et l'empêcher de se
déplacer de manière coulissable à l'écart de la paroi de fond (5) du boîtier à l'enlèvement
du couvercle (6).
23. Appareil selon une ou plusieurs des revendications précédentes, comprenant une pluralité
de montants (4) et au moins un câble de fibre optique (3) qui est fixé aux dits montants
(4), caractérisé en ce que les moyens de déformation et/ou pincement (8, 9), combinés avec les moyens (12, 13)
pour indiquer l'ouverture ou la manipulation illicite desdits moyens de déformation
et/ou pincement (8, 9), ne sont fournis qu'aux emplacements de fixation du câble de
fibre optique (3) de certains des montants (4), où il est fourni au moins un montant
(4) sans lesdits moyens de déformation et/ou pincement (8, 9) interposés entre deux
montants (4) ayant lesdits moyens (8, 9), alors que sur lesdits montants (4) qui n'ont
pas de tels moyens de déformation et/ou pincement (8, 9) de simples moyens (14, 15)
sont fournis pour fixer le câble de fibre optique (3) sur lesdits montants (4), lesquels
moyens de fixation (14, 15) sont hébergés dans un boîtier ouvrable, dont l'aspect
externe est sensiblement identique à celui du boîtier pour héberger les premiers moyens
de déformation et/ou pincement (8, 9).
24. Appareil selon la revendication 23, caractérisé en ce que le boîtier contenant les moyens de fixation (14, 15) a une paroi de fond (5') et
une partie de couvercle qui peuvent être connectées de manière amovible, des moyens
d'indication d'ouverture de boîtier et/ou de manipulation illicite étant fournis entre
le couvercle et la paroi de fond (5').
25. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les câbles de fibre optique (3) sont posés horizontalement, alors que les piles ou
les montants (4) pour les supporter sont inclinés vers l'intérieur ou vers l'extérieur
à partir du périmètre à protéger.
26. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les câbles de fibre optique (3) sont agencés verticalement, alors que les montants
de support (4) sont posés horizontalement.
27. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les boîtiers ou les enceintes pour les moyens de déformation et/ou pincement et les
boîtiers ou enceintes pour les moyens de fixation sont mis en prise sur les montants
par des moyens qui permettent aux dits boîtiers ou enceintes de coulisser le long
desdits montants (4), où il est fourni des moyens de verrouillage de position pour
lesdits boîtiers ou enceintes coulissants, lesquels moyens sont uniquement accessibles
de l'intérieur desdits boîtiers ou enceintes.
28. Appareil selon la revendication 27, caractérisé en ce que, sur le côté de chaque montant (4) conçu pour l'attachement desdits boîtiers ou enceintes,
chaque montant (4) a un guide longitudinal, lequel guide a une section tubulaire tout
le long de celui-ci qui s'ouvre par une fente longitudinale au centre de la surface
sur laquelle les enceintes et/ou boîtiers sont fixés au dit montant, alors que ledit
fond des enceintes ou boîtiers a un appendice comme une glissière qui est formé par
un membre élargi dont l'extension transversale est plus grande que la largeur de la
fente et qui est connectée au dit fond du boîtier ou de l'enceinte au moyen d'une
nervure qui est légèrement plus fine que ladite fente longitudinale et qui contient
le membre élargi à une distance de la paroi de fond qui est légèrement plus grande
que l'épaisseur de la paroi du guide tubulaire.
29. Appareil selon la revendication 28 ou 29, caractérisé en ce que les moyens amovibles pour verrouiller les boîtiers ou enceintes d'hébergement en
position sont des moyens pour serrer la paroi du guide sur laquelle repose le fond
du boîtier ou de l'enceinte, comme des colliers de serrage actionnés par vis.
30. Appareil selon la revendication 29, caractérisé en ce que le fond du boîtier a, sur le côté de la fente longitudinale du guide, au moins un
trou traversant fileté, pour la mise en prise d'une fixation à vis ou à boulons.
31. Appareil selon la revendication 30, caractérisé en ce que le fond du boîtier a au moins deux trous traversants filetés, agencés sur le fond
du boîtier ou de l'enceinte sur les deux côtés de la fente longitudinale du guide,
les vis ou les boulons n'étant accessibles que de l'intérieur du boîtier ou de l'enceinte.
32. Appareil selon une ou plusieurs des revendications précédentes, caractérisé en ce que les montants et les guides sur ceux-ci pour les enceintes ou les boîtiers coulissants
sont constitués d'un seul bloc.
33. Appareil selon la revendication 32, caractérisé en ce que les montants sont constitués de barres d'aluminium profilées ou d'éléments similaires
qui sont coupés à la longueur adéquate.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description