ELECTRONIC SHOOTING TRAINING TARGET
20240369329 ยท 2024-11-07
Inventors
Cpc classification
F41J5/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F41J5/056
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An electronic shooting training target has a target seat, and multiple target holes penetrate through the target seat. A base plate includes a plate body, multiple triggers and a controller. The base plate is mounted on a rear side of the target seat and positioned at a distance from the rear side. Each of the sensing assemblies has a hollow rod, an elastic part, an impact part, and a screw. The hollow rod is mounted through one of the target holes. The elastic part is sleeved on one end of the hollow rod. The impact part is mounted on the hollow rod. The screw is mounted through another end of the hollow rod and is fixed on the impact part.
Claims
1. An electronic shooting training target comprising: a target seat comprising a front side and a rear side, and multiple target holes penetrating through the target seat; a base plate comprising: a plate body mounted on the rear side of the target seat and positioned at a distance from the rear side; multiple triggers, each of the triggers mounted on a surface of the plate body, the surface of the plate body being adjacent to the target seat; and a controller mounted on the plate body and electrically connected to each of the triggers; multiple sensing assemblies, each of the sensing assemblies including: a hollow rod mounted through one of the target holes, and each of the hollow rods corresponding in position to a respective one of the triggers; an elastic part sleeved on one end of the hollow rod and one end of the elastic part abutting the front side of the target seat; an impact part covering said one end of the hollow rod and abutting another end of the elastic part; and a screw, one end of the screw mounted through another end of the hollow rod and fixed on the impact part.
2. The electronic shooting training target as claimed in claim 1, wherein a light transmissive hole penetrates through the impact part, internal threads are formed in the light transmissive hole, one end of the screw is fixed in the light transmissive hole of the impact part, and the screw is made of a light-conducting material.
3. The electronic shooting training target as claimed in claim 1, wherein the hollow rod comprises a front end and a rear end, the front end and the rear end are opposite ends, and an outer diameter of the front end is smaller than an outer diameter of the rear end.
4. The electronic shooting training target as claimed in claim 2, wherein the hollow rod comprises a front end and a rear end, the front end and the rear end are opposite ends, and an outer diameter of the front end is smaller than an outer diameter of the rear end.
5. The electronic shooting training target as claimed in claim 3, wherein an axial length of the front end is greater than a thickness of the target seat.
6. The electronic shooting training target as claimed in claim 4, wherein an axial length of the front end is greater than a thickness of the target seat.
7. The electronic shooting training target as claimed in claim 5, wherein a slot is concavely formed in an end surface of the rear end, the slot corresponds in position to the trigger, and another end of the screw is located in the slot.
8. The electronic shooting training target as claimed in claim 6, wherein a slot is concavely formed in an end surface of the rear end, the slot corresponds in position to the trigger, and another end of the screw is located in the slot.
9. The electronic shooting training target as claimed in claim 7, wherein each one of the triggers includes a sensor and a light-emitting diode (LED) luminous part, and the sensor, the LED luminous part, the plate body and the controller are electrically connected to each other.
10. The electronic shooting training target as claimed in claim 8, wherein each one of the triggers includes a sensor and a light-emitting diode (LED) luminous part, and the sensor, the LED luminous part, the plate body and the controller are electrically connected to each other.
11. The electronic shooting training target as claimed in claim 9 further comprising a fixation holder including: a mounting base comprising a storage area, and multiple screw holes formed on opposite sidewall surfaces of the mounting base; two wall hanging pieces, each one of the wall hanging pieces having multiple hooks and multiple lock holes formed thereon, the two wall hanging pieces respectively locked on the opposite sidewall surfaces of the mounting base; two support members, each of the two support members having one end pivotally connected to a respective one of the opposite sidewall surfaces of the mounting base; and two angle adjusters, each of the angle adjusters having multiple tooth parts formed thereon, the multiple tooth parts arranged in a direction extending toward two ends of the angle adjuster, one end of each of the angle adjusters pivoted on each of the support members, and the two support members and the two angle adjusters secured by multiple fixtures.
12. The electronic shooting training target as claimed in claim 10 further comprising a fixation holder including: a mounting base comprising a storage area, and multiple screw holes formed on opposite sidewall surfaces of the mounting base; two wall hanging pieces, each one of the wall hanging pieces having multiple hooks and multiple lock holes formed thereon, the two wall hanging pieces respectively locked on the opposite sidewall surfaces of the mounting base; two support members, each of the two support members having one end pivotally connected to a respective one of the opposite sidewall surfaces of the mounting base; and two angle adjusters, each of the angle adjusters having multiple tooth parts formed thereon, the multiple tooth parts arranged in a direction extending toward two ends of the angle adjuster, one end of each of the angle adjusters pivoted on each of the support members, and the two support members and the two angle adjusters secured by multiple fixtures.
13. The electronic shooting training target as claimed in claim 1, wherein the target seat is made of metal.
14. The electronic shooting training target as claimed in claim 12, wherein the target seat is made of metal.
15. The electronic shooting training target as claimed in claim 1, wherein the impact part is made of metal.
16. The electronic shooting training target as claimed in claim 14, wherein the impact part is made of metal.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0020] With reference to
[0021] With reference to
[0022] With reference to
[0023] Each of the sensing assemblies 30 comprises a hollow rod 31, an elastic part 32, an impact part 33 and a screw 34. The hollow rod 31 comprises a front end 311 and a rear end 312, and the front end 311 and the rear end 312 are opposite each other. The outer diameter of the front end 311 is smaller than the outer diameter of the rear end 312, and the axial length of the front end 311 is greater than the thickness of the target seat 10. A slot 313 is concavely formed on the surface of the rear end 312. The front end 311 of the hollow rod 31 is mounted through the target hole 11 from the rear side of the target seat 10. The elastic part 32 is a compression spring and is sleeved on the front end of the hollow rod 31, and one end of the elastic part 32 abuts the front side of the target seat 10. A light transmissive hole 331 penetrates through the impact part 33 and is formed with internal threads. The impact part 33 is covered at the front end 311 of the hollow rod 31 and abuts another end of the elastic part 32. The impact part 33 is made of metal, e.g. stainless steel, but it is not limited thereto, and the impact part 33 may not have the light transmissive hole 331. The screw 34 is made of a plastic, transparent and light-conducting material. The screw 34 is mounted through the slot 313 of the hollow rod 31 and out of the front end 311, and is fastened to the light transmissive hole 331 of the impact part 33. Each of the hollow rods 31 corresponds in position to a respective one of the triggers 22, so that each of the hollow rods 31 can trigger the trigger 22, but it is not limited thereto, as the screw 34 may not have the light-conducting function.
[0024] When the present invention is used, please refer to
[0025] With reference to
[0026] When the impact part 33 does not have the light transmissive hole 331 formed thereon, a target image can be projected onto the impact part 33 by a projection device (not shown in the drawings), versatilely displaying the shooting impacts.
[0027] The present invention facilitates users to use recoil simulation toy guns, adopting legal projectiles (such as BB pellets, rubber bullets, etc.) or a variety of non-live-ammunition guns for shooting. In addition to the simulation of manually pressing the trigger of a real gun with real bullets, users can use wired or wireless (Wi-fi) connections to send the hit coordinates back to the tablet or computer for display or storage, which can be used to provide teaching and training data for analysis, and do not need assistant staff to assist the training, saving training manpower and time.
[0028] In the aforementioned process, the sensing part 30 adopts a contactless array electronic sensing system to detect the shooting coordinates, and uses a full-color LED luminous part 222 to display the hit point and the target point. Even when subjected to continuous and intensive shootings, the electronic shooting training target can still produce a feedback signal within a very short period of time after a projectile strikes the target, so that the LED luminous part 222 glows and is transmitted to a tablet or a computer for display or calculation, thus enhancing the convenience and practicality of use.
[0029] In the aforementioned process, because the impact part 33 has sufficient structural rigidity and is re-useable, it is more environmentally friendly.
[0030] In the aforementioned process, the present invention can be used in conjunction with software to add customized training modes to develop relevant application software for specific use. The present invention has the capability of modular combination, which can change the overall size and shape of the target body according to demand.
[0031] Please refer to
[0032] Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.