[0001] The present invention relates to a burglary-prevention device for containers with
telematic connection.
[0002] As is known, handling of goods is carried out chiefly using containers. It is also
known how many of these containers get tampered with, lost, or stolen during the shipping
operations, for example by sea.
[0003] In order to trace the movement of containers, there has been proposed the use of
RFID devices that are associated to the containers and are queried by reading systems
arranged at check barriers, for example customs barriers, or via portable RFID reading
systems. Said RFID devices may, however, be easily removed from the container, rendering
in effect the querying system uncertain in so far as the container could be stolen
or tampered with, while the RFID device is kept in place in order to simulate the
presence of the container itself. Moreover, not all RFID devices lose their functionality
following upon tampering, so that they continue to be identified, without any possibility
of realizing that they have been tampered with.
[0004] The aim of the present invention is to provide a device whereby it will be easy to
identify attempts at removal of the RFID device or of theft or burglary of the container.
[0005] The above aim is achieved by the present invention in so far as it regards a burglary-prevention
device for containers of the type specified in Claim 1. The invention will now be
described with reference to the attached drawings, which illustrate a preferred non-limiting
embodiment thereof and in which:
Figure 1 is a perspective view of a burglary-prevention device for containers with
telematic connection in an operating condition;
Figures 2 and 3 are perspective views of a first part (electronic lock) of the device
of Figure 1;
Figure 4 is a perspective view of a first portion of the electronic lock;
Figures 5 and 6 are partially exploded perspective views of a second portion of the
electronic lock; and
Figures 7, 8, and 9 illustrate installation of the burglary-prevention device.
[0006] In Figure 1 designated as a whole by 1 is a burglary-prevention device for containers
with telematic connection.
[0007] The device 1 comprises an electronic lock 3, which can be coupled to a first lock
eye 4a and a second lock eye 4b of a door 5 (represented partially) of a container
(not illustrated as a whole). The device 1 comprises an RFID device, which will be
described in greater detail hereinafter.
[0008] According to the example of embodiment illustrated, the lock eyes 4a, 4b are formed
by first and second rectangular metal plates 6, stably connected to edges of respective
leaves of the door 5 and provided with circular through holes 7 for housing of the
lock 3 with the modalities that will be clarified hereinafter.
[0009] The device 1 further comprises a telematic unit 10 connected via cable to the RFID
device and designed to communicate, by means of known technologies, with a central
control unit (not illustrated) for transmitting the detected instantaneous position
of the telematic unit and other information. The telematic unit 10 is designed to
detect the integrity of the circuit connection between the RFID device and the telematic
unit 10 itself and is designed to emit a warning of possible burglary in the case
of even partial interruption of the circuit connection. The data connection between
the telematic unit and the central unit is made by means of known technologies, for
example cellular and/or satellite data network.
[0010] The telematic unit 10 is housed within a protective casing 12 made of high-strength
plastic material and provided with permanent magnets (see Figure 9) for connection
of the protective casing 12 to a metal wall of the container 5. In the example of
embodiment illustrated, the protective casing 12 has a parallelpipedal shape with
rounded corners and is provided with a base wall (Figure 9), provided on which are
four cylindrical lowered seats, within which the permanent magnets 13, which have
a cylindrical shape, are arranged. The permanent magnets 13 project by a few millimetres
from the base wall. The base wall is also provided with an optional central biadhesive
element. The protective casing 12 is provided with a pushbutton 14 that can be operated
for activating the device 10, and with a warning LED that, when lit up, indicates
that the telematic unit 10 is operating. The telematic unit 10, following upon its
activation, can only be deactivated in a remote way by means of technologies of a
known type that will not be described any further. It is consequently not possible
to act from outside the telematic unit 10 to deactivate it.
[0011] With reference to
Figures 2 and
3, the electronic lock 3 comprises a body 15, elongated along an axis 16 and configured
for engaging, in use, the lock eyes 4a, 4b setting itself with its axis 16 coinciding
with the axis of the holes 7 of the lock eyes 4a, 4b.
[0012] The elongated body 15 has a first end portion 15a widened in a radial direction designed
to come to bear, in use, upon the plate 6 of a first lock eye 4a, and a second end
portion 15b of the elongated body is configured for providing, in a stable coupling
position (described in greater detail hereinafter, an electrical and mechanical connection
with a supporting structure 17 that houses the RFID device. The supporting structure
17 is configured for bearing, in use, upon the plate 6 of the second lock eye 4b.
[0013] With particular reference to
Figure 4, the elongated body 15 comprises a cylindrical tubular element that defines an internal
cylindrical cavity 18 sharing the axis 16.
[0014] The elongated body 15, at its second end portion 15b, has a plane rectangular portion
19, which extends in an axial direction and onto which a rectangular window 21 communicating
with the internal cylindrical cavity 18 opens. Conveniently but not exclusively, the
elongated body 15 is made of polycarbonate with glass-fibre filler.
[0015] The internal cylindrical cavity houses an elongated rectangular printed circuit 23,
which is set parallel to the axis 16 and is stably fixed within the cavity 18. The
printed circuit 23 defines a plurality of electrical lines (bus) having first ends
communicating with an electrical cable 24 (see also Figures 1, 2, and 3) that exits
from the first end portion 15a and ensures connection between the electronic lock
3 and the telematic unit 10.
[0016] The electrical lines (bus) have second free end portions that provide pads 26 (in
the example, six rectangular pads, but the number and shape may obviously be different)
configured for providing an electrical connection with the RFID device when the supporting
structure 17 is properly coupled to the second end portion 15b of the elongated body
15 in the stable coupling position. In this way, decoupling of the supporting structure
17 from the second end portion 15b causes interruption of the electrical connection
between the pads 26 and the RFID device.
[0017] Typically, the first end portion of the body 15 is obtained by co-moulding, on the
cylindrical tubular element, a rigid plastic that englobes the electrical cable 24
and seals the internal cavity 18.
[0018] The supporting structure 17 (
Figure 5) comprises a plane casing 30, entirely housing the RFID device, and centring and
locking elements 31, designed to provide a positioning of the plane casing 17 on the
elongated body 15 in the stable coupling position in which the pads 26 are connected
to the RFID device.
[0019] The plane casing 17 has a rectangular shape and comprises a shell 32 that defines
a lowered rectangular seat 33, which houses a plane rectangular printed circuit 34,
provided on which is the RFID device, which can operate both in passive mode and in
active mode. The electronic circuits (UHF antenna, transmitter/receiver device, microprocessor
unit, energy-storage unit, etc.) provided on the printed circuit 34 are of a standard
type and for this reason will not be described any further.
[0020] The shell 32 is closed by a plane wall 35 (not illustrated in Figure 6) provided
with a central rectangular window 36, accessible through which, from outside the casing
30, are elastic electrical terminals 37 carried by a base 38, which extends from the
printed circuit at the window 35. The rectangular window 36 can be provided with a
rectangular perimetral gasket made of soft material. The electrical terminals 37 (in
the example, six electrical terminals, but the number and shape may obviously be different)
are designed to couple with respective pads 26 when the plane casing 17 is set in
the stable coupling position. The connection between the shell 32 and the plane wall
35 can be obtained by gluing or by ultrasonic welding.
[0021] The locking elements 31 comprise a pair of rectilinear elastic appendages 40 set
facing and parallel to one another carried by a rectangular flange 42 that extends
from a central portion of a side wall of the shell 32. The appendages 40 extend perpendicular
to the plane defined by the wall 35 and are provided with widened end portions 42d.
The distance between the appendages 40 is a little less than the diameter of the tubular
elongated body 15. Said appendages 40 are configured for pressing on the elongated
body when this is set between the appendages 40 themselves in the stable coupling
position.
[0022] The centring elements 31 comprise a cylindrical pin 50, which extends from the flange
42 parallel to the appendages 40 between which it is set, and a cylindrical seat 52
(see Figure 4), provided on the side wall of the elongated body 15 and designed to
house the pin 52 in the stable coupling position.
[0023] Finally, the supporting structure has a first through hole 70 (Figures 5 and 6),
and the second end portion 15b of the elongated body 15 has a second through hole
72, said holes being arranged coaxial and in communication with one another in the
stable coupling position. These holes 70, 72 can be used for passage of a filiform
element 74 of a mechanical security seal of a known type (Figure 8).
[0024] In use, to install the device 1 the door of the container is closed by means of the
mechanical closing devices of a known type. In this position, the plates 6 are parallel
to one another and the holes 7 are coaxial. The protective casing 12 is then fixed
to a portion of the door of the container 5 using the permanent magnets (see Figure
1), and the elongated body 15, without the supporting structure 17, is inserted in
the holes 7 until the first end portion 15a comes to bear upon the first lock eye
4a. In this position, the second end portion 15b of the elongated body exits for a
stretch from the second lock eye 4b. The supporting structure 17 is then pushed against
the second end portion that exits from the lock eye 4b. In this way, the appendages
40 divaricate by being elastically loaded, and then the tubular body 15 snaps between
the appendages 40, which push it to come so that it bears upon the wall 35. Conveniently,
during these operations the end of the second end portion 15 sets itself bearing upon
a contrast wall 55 that extends from the wall 35 (Figure 7).
[0025] The pin 50 engages the cylindrical seat 52, thus providing the stable coupling position
in which the pads 26 couple with the electrical terminals 37 (Figure 8). The telematic
unit 10 recognises a complete connection between the RFID unit and the electronic
circuits (not illustrated) that query the RFID unit. The electronic unit 10 associates
to said complete connection a completely closed state of the electronic lock. This
state is sent to the central control unit by data transmission.
[0026] When the container is in the proximity of an electronic barrier provided with system
for querying the RFID unit a connection is set up between said querying system and
the telematic unit 10 for control of the passage of the containers through the barrier,
which may, for example, be a customs barrier. These operations occur according to
known technologies and are consequently not described any further.
[0027] Any possible mechanical tampering of the electronic lock leads to interruption of
the connection between the RFID unit and the telematic unit 10, for example:
- a) cutting of the electrical cable 24 involves interruption of the connection between
the RFID unit and the telematic unit 10;
- b) cutting of the elongated body 15 involves cutting of the printed circuit 23 and
of the buses formed thereon; also in this case, the telematic unit 10 is disconnected
from the RFID unit;
- c) the attempt at tampering with the supporting structure 17 generally involves decoupling
between the pads 26 and the electrical terminals 37 in so far as the parts move away
from the stable coupling position; also in this case, the telematic unit 10 is disconnected
from the RFID unit;
- d) removal of the supporting structure 17 necessarily involves decoupling between
the pads 26 and the electrical terminals 37; also in this case, the telematic unit
10 is disconnected from the RFID unit.
[0028] The unit 10 promptly sends an alarm message in the conditions a) - d) referred to
above, notifying the control centre of and attempt in progress at burglary of the
container. The central unit can hence activate all the operations necessary for management
of the event. In this way, the burglary event is immediately detected and is associated
to a precise geographical position, enabling effective intervention.
1. A burglary-prevention device for containers with telematic connection comprising:
- an electronic lock (3), which can be coupled to a first lock eye (4a) and a second
lock eye (4b) of leaves of a door of the container and comprises an RFID device; and
- a telematic unit (10), connected to the RFID device and designed to communicate
with a central control unit by transmitting the instantaneous position detected by
the telematic unit (10); said telematic unit (10) being designed to detect the integrity
of the circuit connection between the RFID device and the telematic unit itself and
being designed to emit a warning of possible burglary in the case of even partial
interruption of said circuit connection,
said device being
characterized in that the electronic lock (3) comprises:
- an elongated body (15) configured for engaging, in use, said lock eyes setting itself
with its axis (16) coinciding with the axis of the holes (7) of the lock eyes (4a,
4b) themselves;
said elongated body (15) having a first end portion (15a) widened in a radial direction
designed to bear upon a first lock eye (4a);
a second end portion (15b) of said elongated body (15) being configured for providing
an electrical and mechanical connection with a supporting structure (17) that houses
the RFID device; the supporting structure (17) is configured for bearing, in use,
upon a second lock eye (4b); said elongated body (15) houses, within it, a plurality
of electrical lines, which present first ends communicating with an electrical cable
(24) that ensures the connection between said electronic lock (3) and said telematic
unit (10);
said electrical lines having second free end portions that provide pads (26) configured
for providing an electrical connection with said RFID device when the supporting structure
(17) is properly coupled to the second end portion (15b) of said elongated body (15);
decoupling of the supporting structure (17) from said second end portion (15b) causes
interruption of the electrical connection between the pads and the RFID device.
2. The device according to Claim 1, wherein said elongated body (15) has a tubular shape
and houses, within it, an elongated printed circuit (23) defining said electrical
lines; said tubular elongated body having a window (21) through which said pads (26)
are accessible in such a way as to provide the electrical connection between the RFID
device and the pads themselves when the supporting structure (17) is properly coupled
to the second end portion (15b) of said elongated body (15) .
3. The device according to Claim 2, wherein said tubular elongated body (15) has a cylindrical
shape and is provided with a plane end portion (19) onto which said window (21) opens.
4. The device according to Claim 1, wherein said supporting structure (17) comprises
a plane casing (30) entirely housing said RFID device; the supporting structure (17)
being provided with centring and locking elements (31) designed to provide a stable
positioning of the plane casing (30) on said elongated body (15) where there is obtained
a stable coupling position in which said pads (26) are connected to said RFID device.
5. The device according to Claim 4, wherein said locking elements comprise elastic elements
(40), which extend from said plane casing (30) and are configured for snap-action
coupling on said elongated body (15) in said stable coupling position.
6. The device according to Claim 5, wherein said locking elements comprise a pair of
elastic appendages (40) set facing and parallel to one another that extend in a direction
transverse to said plane casing (30); in said stable coupling position said elastic
appendages pressing on the elongated body set between the elastic appendages themselves.
7. The device according to Claim 4, wherein said centring elements (31) comprise a pin
(50), which extends from the plane casing (30), and a seat (52), which is provided
on the side wall of the elongated body (15) and is designed to house the pin (52)
in the stable coupling position.
8. The device according to Claim 4, wherein said plane casing (30) has a rectangular
shape and comprises a shell (32), which defines a lowered seat (33) that houses a
printed circuit (34) defining said RFID; said shell (32) being closed by a plane wall
(35) provided with a window (36), through which electrical terminals (37) are available
designed to couple with respective pads (26).
9. The device according to Claim 4, wherein said supporting structure has a first through
hole and said elongated body has a second through hole that are set in communication
with one another in said stable coupling position and used for passage of an elongated
element of a mechanical security seal.
10. The device according to any one of the preceding claims, wherein the telematic unit
(10) is housed within a protective casing (12) made of high-strength plastic material
and provided with permanent magnets for connection of the protective casing (12) to
a metal wall of the container.