[0001] The present invention relates to a metal grate, usually made of steel, which contains
a series of incorporates devices, which, in the case of tampering, will activate the
alarm system being connected to. them. One is reminded that grates, usually built
of steel and in different shapes, are barriers being secured in the openings of walls,
such as windows, or transition areas between one room and the next, in order to permanently
prevent people from entering into reserved or forbidden rooms, or, as in the case
of jails, in order to prevent escapes through the openings being protected by these
grates.
[0002] The grates are firmly secured in the walls by means of cementing or by means of similar
systems and they constitute in themselves a barrier of the passive type, that is,
they oppose by means of their structure and their type of anchorage possible tampering
or attempted force.
[0003] Grates equipped with an electric alarm system which is triggered when the bars constituting
the grate are sawn , are also known. For instance, US-A-2,374,139, describes a grate
constituted by bars, each consisting of an internal and an external tube being insulated
the one from the other and being part of an electric circuit. When the bars are sawn,
the saw causes the electric contact between the internal tube and the external one,
thereby triggering the alarm signal. In actuality this system is effective only when
the bars are sawn, while the alarm may not be activated when the grate undergoes tamperings
of a different nature, such as the spreading apart of the bars or the partial tearing
of the grate off the wall.
[0004] Also, in DE-A-300 6999 a particular disposition of electric connections is described,
which are suited for fencing safety systems, where the wires of the network belonging
to a Wheatston bridge are connected to more copper wires, so as to avoid the possibility
that the alarm may not be triggered if a bridge between the two wires is built.
[0005] The object of the present invention is that of realizing a grate, which, besides
being a barrier of the passive type, is also an active means which prevents, becasuse
of its constitution, any type of tampering, whether represented by the sawing of the
bars, which constitute it, by their being forced apart, or by the tearing of the grate
away from the anchoring wall.
[0006] This object is achieved by a grate having the features defined in claim 1.
[0007] Basically, there is provided a grate with an incorporated alarm system and it includes
a metal structure consisting in hollow bars being welded to each other; inside said
bars and even inside the anchoring of the grate there are electric conductors which
run longitudinally and transversally in the structure and are connected to an alarm
system. According to the invention, each bar and each anchoring unit is strung with
one or more pairs of conductors, one end of which is connected to a load resistance
placed inside the structure, while the other end of the conductors is connected to
an electronic balancing circuit, which detects any variation of resistance in the
circuit. Therefore, whenever there is tampering at any point of the grate - which
may consist in the sawing of the bars, in the drilling, in flame cutting, in the tearing
from the wall or from the anchoring frame, in the forcing apart - a variation of resistance
occurs, which may be due, for example, to a short-circuit or to an interruption of
the circuit: this variation, detected by a balancing circuit of the resistance being
applied to it, will cause in the circuit itself the opening of a relay which is connected
to the burglar alarm station and will, therefore, activate the alarm. In order to
increase the reliability of the functioning of the grate circuits, it was deemed advisable
to introduce into it two circuits at least, one independent from the other, with equivalent
functions and based on the same functional principle and on the same construction
method. Particular attention has been paid to the solution of the problem concerning
the pulling off of the grate, that is, the complete removal of the same from the anchoring
wall or frame. For this reason at least one pair of anchorages and a pivot, preferably
in a diagonal position, which goes completely through the wall and is anchored by
means of an iron loop or cross on the other side of the grate, have been introduced.
The head of this pivot is provided with a loop, through which the wires of the electric
circuit or circuits are strung, so that a possible removal from the wall of the anchorage
in which the pivot is inserted will also cause the tearing of the electric circuit,
with the ensuing activation of the alarm.
[0008] Another interesting aspect of the grate being discussed is that, because of the way
in which it activates the alarm, false alarms due to accidental causes are practically
impossible; in fact, if there is no alteration of the electric circuit in the grate,
caused by the above-described causes, there will be no alarm.
[0009] These and other characteristics and construction details will be better illustrated
in the description of a preferred form of execution of the grate, which is given by
way of indication, but which is not limiting and which is illustrated in the enclosed
drawings, in which:
- Fig. 1 shows the grate strung with the electric circuits;
- Fig. 2 shows the anchorage, in which there is the entrance of the wires of the electric
circuits introduced in the grate; Fig. 3 illustrates the anti-tear system of the anchorage
with a pivot provided with a loop;
- Fig. 4 shows the type of anchorage in which the wires of the circuit are wound once,
in order to continue toward other areas; Fig. 5 shows an anchorage containing the
end-of-the-line resistance of one of the circuits;
- Fig. 6 sketches with a circuit in blocks the connection of the grate circuits with
the alarm station.
[0010] With reference to Fig. 1, grate 1 is built of bars of structural steel, welded and
hollow inside, so as to allow the passage of two pairs of electrical wires 2, 3 and
4, 5, each of which constitutes a closed circuit on a resistance, as shown in 6.
[0011] Fig. 1 shows the route of the wires, which can be strung in any direction, even going
through the same section several times, although it should be kept in mind that no
area, including the anchorage, should be left without wiring.
[0012] In the case being under examination there are 4 anchorages and each of them contains
circuit structures and characteristics, which are different from one another.
[0013] With reference to anchorage 7 (Fig. 2), tube 8, made of plastic material, is placed
inside of it; this tube goes all the way through the wall and serves as a channel
for the introduction in the grate of the conductors being connected to the alarm station.
It is blocked inside anchorage 7 by block 9, made of a gummy plastic material, which
contacts the inside walls of the above-mentioned anchorage.
[0014] In Fig. 3, anchorage 10 holds in its interior pivot 11, made of iron, which goes
all the way through the wall and which has a threaded end 12 protruding from the anchorage.
Plate 13 is screwed to protruding end 12 and then cemented in the wall. Pivot 11 is
provided at the other end with loop 14, through which the electric conductors are
strung. Two bolts, 15 and 16, prevent the rotation of pivot 11 while plate 13 is being
fixed with screws. The anti-tear function of the pivot is obvious: in fact, in the
case of an attempt to tear anchorage 10 from the wall, one also tears the conductors
which are strung through the loop.
[0015] In Fig. 4, inside anchorage 17, there is a block, made of plastic material, 18, which
allows conductors 2, 3 and 4, 5 to wind around and continue to spread themselves in
the horizontal and vertical sections of the grate. In Fig. 5, the inside of anchorage
19 also holds a block made of plastic material, for the reversing of the direction
of the circuit wires, but inside the anchorage there is also the load resistance of
one of the two circuits.
[0016] Conductors 2, 3 and 4, 5 are normal, insulated electric conductors, but with a very
small section, so that, because of their length, they constitute in themselves a resistive
load, in addition to the load resistance. Each circuit is fed with low tension (12
Volts), so that possible contacts between the grate and the conductors can not be
dangerous to people.
[0017] Fig. 6 is a sketch of the circuit in blocks which connects the conductors contained
in the grate to the alarm station. Resistances R1 and R2 represent respectively the
resistive load of the two circuits 2, and 4, 5. Each of the two resistances is connected
with a balancing circuit of a known type, which includes trimmer 20 having the task
of balancing the connected load resistance, so that a transistorized circuit maintains
relay 21 normally closed.
[0018] Each variation of the value of resistance R1 or R2 is felt by the balancing circuit
which, consequently, causes the opening of relay 21, which is connected to alarm station
22. The electric opening of relay 21 will cause the activation of the alarm.
[0019] In the specific case being described, two circuits have been foreseen. They are introduced
into the grate, are independent from one another and are . represented by resistances
R1 and R2, but it is obvious that a single circuit is sufficient for the functioning
of the alarm system; on the other hand, it is also possible, for security reasons,
to increase the number of circuits beyond two.
1. A grate with an incorporated alarm system, comprising a metal structure consisting
of hollow bars welded to one another, the structure being suitable to create a barrier
in an opening to be protected, and electrical conductors (2, 3, 4, 5) extending through
the structure and connected to an alarm (22), characterized in that said hollow bars
extend longitudinally and transversely, and intersect, said structure includes four
or more anchorages (7, 10, 17, 19) securing the structure to a wall or to a supporting
frame, one or more pairs of insulated electrical conductors (2, and 4, 5) extend through
the inside of the entire metal structure, including each of said hollow bars and said
anchorages, the or each pair of conductors is connected at one end to a load resistance
(6) which is also located inside the structure, and the pair is connected to a balancing
electronic circuit, so that any variation in resistance in the circuit causes the
opening of a relay (21) connected to an alarm station (22), thereby activating the
alarm.
2. A grate according to claim 1), characterized by the fact that one or more anchorages
(10) are provided with a pivot (11) going through the entire wall and secured to it
on the opposite side, such pivot being provided with a ring (14), through which the
electric conductors are strung, such that any action tending to tear the anchorage
from the wall will cause the breaking of the conductors and, therefore, a variation
of resistance in the circuit, which, as a consequence, activates the alarm.
3. A grate according to claims 1) and 2), characterized by the fact that inside each
anchorage there are pairs of electric conductors, so that any action breaking these
anchorages causes, as a consequence, the breaking of the conductors contained therein
and, therefore, the activation of the alarm.
1. Une grille avec un système d'alarme incorporé, comprenant une structure en métal,
qui consiste en barres vides à l'intérieur et soudées entre elles, ladite structure
étant apte à créer une barrière dans une ouverture qui doit être protégée, et des
conducteurs électriques (2, 3, 4, 5) qui s'étendent à travers la structure et sont
connectés à une alarme (22), caractérisée en ce que lesdites 'barres vides à l'intérieur
s'étendent longitudinalement et transversalment et s'entrecroisent, ladite structure
comprenant quatre ou plus ancrages (7, 10, 17, 19) qui fixent la structure à un mur
ou à un châssis de support, une ou plus paires de conducteurs électriques isolés (2,
3 et 4, 5) s'étendant à travers l'intérieur de l'entière structure en métal, chacune
desdites barres vides à l'intérieur et chacun ancrage comprenant une paire de conducteurs
étant connectée à une extrémité à une résistance de charge (6) qui se trouve aussi
à l'intérieur de la structure, et la paire étant connectée à un circuit électronique
d'équilibrage, ainsi que toute variation de résistance dans le circuit provoque l'ouverture
d'un relais (21) connecté à une station d'alarme (22), mettant en action l'alarme.
2. Une grille selon la revendication 1, caracterisée en ce que un ou plus ancrages
(10) sont pourvus d'un pivot (11) passant à travers le mure entier et étant fixé de
l'autre côté, ledit pivot étant pourvu d'une bague (14), à travers laquelle les conducteurs
éléctriques sont faits passer, de façon que n'importe quelle action, tendant à arracher
l'ancrage du mur, provoque la rupture des conducteurs et, par conséquent, une variation
de résistance dans le circuit, qui, par conséquent, met en action l'alarme.
3. Une grille selon les revendications 1. et 2., caracterisée en ce qu'à l'intérieur
de chacun ancrage il y a des paires de conducteurs électriques, ainsi que n'importe
quelle action de rupture de ces ancrages provoque par conséquent la rupture des conducteurs
y contenus et, par conséquent, la mise en action de l'alarme.
1. Gitter mit eingebautem Alarmsystem, bestehend aus einer Metalstruktur, die aus
zusammengeschweissten Hohlstangen besteht und dazu geeignet ist, in einer zuschutzenden
Oeffnung ein Schranke zu schaffen, und elektrischen Leitern (2, 3, 4, 5), die durch
die Struktur ausgestreckt und mit einem Alarm (22) verbunden sind, dadurch gekennzeichnet,
daß die genannten Hohlstangen in der waagerechten sowie in der senkrechten Richtung
ausgestreckt sind und sich kreuzen, daß die genannte Struktur vier oder mehr Anker
(7,10, 17, 19), die die Struktur an einer Wand oder an einem Stützrahmen festhalten,
sowie ein oder mehrere Paare elektrischer und isolierter Leiter (2, 3 und 4, 5) enthält,
die durch die ganze Metalstruktur ausgestreckt sind, indem jede der genannten Hohlstangen
und jeder Anker ein Paar Leiter, die an einem Ende mit einem sich auch innerhalb der
Struktur befindlichen Richtwiderstand (6) verbunden ist, enthalten; daß das Paar Leiter
mit einem elektronischen Ausgleichsstromkreis verbunden ist, so daß jede Widerstandsänderung
im Stromkreis die Oeffnung eines mit einer Alarmstation (22) verbundenen Relais verursacht,
das damit den Alarm betätigt.
2. Gitter nach Anspruch 1., dadurch gekennzeichnet, daß ein oder mehrere Anker (10)
mit einem Zapfen versehen sind, der durch die ganze Wand durchdringt und an der anderen
Seite befestigt ist, daß der genannte Zapfen mit einem Ring (14) versehen ist, wodurch
die elektrischen Leiter ausgestreckt sind, so daß jegliche Tätigkeit zum Ausreissen
des Ankers aus der Wand den Bruch der Leiter und dadurch ein Aenderung des Widerstandes
im Stromkreis verursacht, der infolgedessen den Alarm betätigt.
3. Gitter nach Ansprüchen 1. und 2., dadurch gekennzeichnet, daß einige Paare elektrischer
Leiter sich innerhalb jedes Ankers befinden, sa daß jegliche Tätigkeit zum Brechen
dieser Anker den Bruch der sich darin befindlichen Leiter und infolgedessen die Betätigung
des Alarms zur Folge bringt.