Abstract:
The invention relates to an adjusting method and an adjusting device for adjusting an axis (2.3) of a shooting simulator (2) to the line of sight (1.2) of the sighting apparatus (1.1) of a firearm (1). The adjusting device is composed of two modules, i.e. a display module (3) having an axis (3.3) and a camera module (4) having an axis (4.3). The axis (3.3) of the display module can be adjusted so as to be aligned with the line of sight (1.2) by moving crosshairs on the display (3.1). In order to align the axis (2.3) of the simulator with the previously adjusted axis (3.3) of the display module, and thus with the line of sight (1.2), a laser beam emitted by the shooting simulator is represented on the camera chip and is moved into a position that is adequate to the crosshairs by actuating a tilting mechanism which is part of the shooting simulator (2).
Abstract:
A method and system for a projectile training system that automatically predicts a ballistics solution based upon automatically-gathered meteorological and distance information is disclosed. The projectile training system also confirms that manual efforts performed by an operator to adjust the sight turrets would or would not result in a hit and/or kill of the target. Both adjustment of the turrets and aim of weapon is automatically gathered in a determination of whether there was a hit, kill, miss, or near miss. A light or other signal is sent from the weapon toward the target to indicate a shot was sent by the weapon.
Abstract:
A scope may include an adjustment dial, which may be moved among a plurality of positions to configure the scope to compensate for projectile drops. The adjustment dial may be labeled with dial-calibration data, which may include one or more distance indicators and/or one or more windage hold-off indicators. The scope may be attached to a gun and the dial-calibration data may be at least partially generated using ballistics performance data based on shots fired by the gun. The dial-calibration data may be at least partially generated using shooting conditions. An electronic device may include a derived distance calculation module, which may be configured to use a distance to a target and actual shooting conditions to calculate a derived distance. The derived distance may be used in connection with an adjustment dial labeled with dial-calibration data at least partially generated using shooting conditions different from the actual shooting conditions.
Abstract:
Die Justiervorrichtung enthält auf einem gemeinsamen Träger (10) außer einer Koppeleinrichtung (9) zum Ankoppeln an den Schusssimulator, einem Stellantrieb (8) und einer Steuer- und Auswerteeinrichtung (23) zur Generierung von Steuersignalen zur Steuerung des Stellantriebes (8), einen optischen Kanal, bestehend aus einem verschwenkbaren Fernrohr (4) mit einer integrierten Zielmarke (17), Strahlumienkmitteln (5), durch welche die Zielmarke (17) zur gleichzeitigen Sichtbarmachung mit der Zielvorrichtung der Waffe in das Auge eines Schützen abgebildet werden kann und einem Flächenempfänger (22) mit einer Abbildungsoptik, welche die Zielmarke (17) und den von dem Schusssimulator ausgehenden und durch das Fernrohr (4) gerichteten Simulatorstrahl als Spot auf den Flächenempfänger (22) abbildet.
Abstract:
In a laser-beam device (1) that is to be attached coaxially to barrel of a gun in order to calibrate the sight, body (3) of the laser is attached in such a way that its beam (10) strikes a point that is located on the extension of longitudinal axis (K-K) of barrel (2) itself along which the projectile is directed by a shot, characterized by the fact that body (3) of the laser is attached in such a way that its beam (10) lies on the extension of the axis of the gun barrel on a support (4) that terminates in a hollow, essentially cylindrical tang (5) which is to be inserted into barrel (2) on which there are several longitudinal cuts (6, 7) that allow the device to undergo a certain preset amount of reversible deformation in a conical shape once a tapered element (8) is introduced into tang (5) itself that is made to slide into the barrel, with tang (5) thus remaining locked inside barrel (2) into which it is inserted with its axis which coincides exactly with that (K-K) of barrel (2) itself.
Abstract:
Изобретение относится к области устройств корректировки прицелов стрелкового оружия. Устройство для корректировки прицела оружия относительно оси ствола этого оружия, включает излучатель и центрирующее устройство, имеющее фиксатор, фиксируемое фиксатором внутри ствола, при этом излучатель закреплён на центрирующем устройстве за пределами передней части ствола, а центрирующее устройство содержит как минимум один дополнительный фиксатор. Устройство может дополнительно иметь устройство имитации отдачи. Устройство может дополнительно иметь устройство для вращения и/или отклонения излучателя и/или луча излучателя. Устройство может иметь устройство для корректировки положения центрирующего устройства. Устройство может иметь устройство для измерения расстояния до мишени. Устройство может иметь электронно-вычислительную машину и/или вычислительный прибор. Устройство может иметь хотя бы один датчик.
Abstract:
The invention relates to an adjusting method and an adjusting device for adjusting an axis (2.3) of a shooting simulator (2) to the line of sight (1.2) of the sighting apparatus (1.1) of a firearm (1). The adjusting device is composed of two modules, i.e. a display module (3) having an axis (3.3) and a camera module (4) having an axis (4.3). The axis (3.3) of the display module can be adjusted so as to be aligned with the line of sight (1.2) by moving crosshairs on the display (3.1). In order to align the axis (2.3) of the simulator with the previously adjusted axis (3.3) of the display module, and thus with the line of sight (1.2), a laser beam emitted by the shooting simulator is represented on the camera chip and is moved into a position that is adequate to the crosshairs by actuating a tilting mechanism which is part of the shooting simulator (2).
Abstract:
Vorgeschlagen wird ein Spanndorn (1) zur achsparallelen Aufnahme von Geräten mit im Spanndorn (1) beweglich gelagerten Abstützungen (6) sowie einer drehbar im Spanndorn (1) eingebundenen Stange (7). Die Stange (7) weist im Bereich der Abstützung (6) eine Exzentrizität (11) auf, in die die Abstützungen (6) beim Verdrehen der Stange (7) eingefahren werden, wobei ein jeweiliges Druckstück (10) unterhalb der Abstützung (6) diesen Vorgang einleitet und unterstützt, in dem diese durch die Exzentrizität (11) entlang der Außenfläche der Stange (7) zurückgezogen werden.
Abstract:
A firearm sight can detect engagement of a firing pin with a cartridge, and can respond to this event by saving an image which shows a target and reticle at a point in time just prior to the detected event. An electronic reticle can be downloaded into the sight. The effective position of the reticle within the sight can be adjusted electronically, and a zoom factor of the sight can be adjusted electronically. The sight can sense approximately transverse movement thereof, and can provide a user with an indication of the amount of transverse movement. With the use of an additional device, the sight can automatically align its reticle to the bore of a firearm on which the sight is mounted.