Further aims and advantages of the present invention will be made more apparent from the following description and from the appended drawings, provided simply as a non limiting example, wherein:
In reference to the aforesaid figures, the dissuader according to the invention is shown in a version which can be installed on vehicles, and basically comprising a support unit 2 and a lance unit 3. Said support unit is used to generate pressurised liquid and an electric discharge, while the lance unit is used to provide two jets of such pressurised liquid to be directed at a potential target, and to apply an electric potential difference to said jets, so that when the jets attain the target, the electric circuit closes sending an electric discharge onto the target.
Alternatively, the liquid could be sent in a single jet with an electric potential applied to the jet. In this case the electric circuit would be closed by the connection to earth produced by the target itself combined with earthing created within the dissuader in question.
In one embodiment of the present invention the electric dissuader could be produced in a portable version, in other words, wherein the lance unit could be handled by the operator, and the support unit could be worn by the operator, for example contained in a backpack.
Said lance unit is basically composed of a support base 31, to which it is attached in an articulated manner, by a flexible means such as a universal joint for example, a lance unit comprising a lance tank 32, having preferably a box-like configuration, from which a pair of nozzle barrels 33 extend on one side, and a gunstock 34 protrudes from the other side, to permit the operator an easy grip on the device. Furthermore on the upper surface of the tank is a handle 35 for use together with the gunstock to control the direction movement of the lance device. The nozzle barrels can be conceived with differing angles according to the required firing distance. For example, the nozzle barrels can be basically parallel for firing distances less than 5 metres, whereas they can be positioned at wider angle for longer distances.
For this purpose it is advantageously possible to provide established notches on the gun in order to adjust firing distances. Furthermore it is also possible to provide a device to identify the distance of the target under aim such as ultrasound or Laser sighter. A switch 36 is also positioned on the tank to activate the electric discharge, as well as a lever 37 to open and close the distribution valve of the liquid which is sent to the barrels through conventional flexible hoses (not shown) from the support base.
Said support base can be advantageously positioned on a plate 4 equipped with support feet 41, and can include a device 5 to generate the electric discharge and a device to supply the liquid under pressure in the lance unit. Said device for pressurised liquid supply to the lance unit preferably comprises a tank for liquids 21, a gas compressor 22, and a device to activate the liquid jet, such as a pair of gas cylinders 23 for example, in which the liquid is sent under pressure from the tank by means of a pair of electrovalves 24. This device for liquid supply uses the compressor to transfer the liquid contained in the tank under pressure and sent it to the lance unit.
The device for generating the electric discharge 5 is composed of an electronic circuit shown in a non-limiting example in
In particular, said circuit comprises a transistor switch 51, appropriately controlled by an integrated circuit 52 that operates the charge of a condenser 53 connected to the primary of a transformer 54 and charged to a preset voltage by means of said switch (initially open). When the condenser is charged and the switch is closed, the current impulse that is proposed to the transformer primary provokes an impulse in a form similar to the secondary, but with a step-up in voltage having a factor equal to the coil ratio of the transformer.
The circuit also comprises a regulating circuit 55 to control the intensity of the electric discharge which uses a conventional TRIAC and an impulse generator, for example.
Number | Date | Country | Kind |
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MI2006A001640 | Aug 2006 | IT | national |