US2014075821A1PendingUtilityA1

Touch display screen used for adjusting and determining the reticle of an electronic firearm sight

Assignee: LI DANYUNPriority: Oct 19, 2010Filed: Apr 8, 2013Published: Mar 20, 2014
Est. expiryOct 19, 2030(~4.2 yrs left)· nominal 20-yr term from priority
Inventors:Danyun Li
F41G 1/00F41G 3/142F41G 1/473F41G 3/06F41G 1/38F41G 3/08F41G 3/165
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Claims

Abstract

A touch display screen used for adjusting and determining the reticle of an electronic firearm sight, includes: a display; a touch screen installed in front of the display; and a display driver. The touch display screen is connected with a processor, the processor in turn is connected with a memory; the memory is provided with pre-saved data of a Cartesian coordinate system, ballistic trajectory data of different bullets and reticle scales formed based on different ballistic trajectories of different bullets; the touch display screen receives operations of adjusting the reticle from a user and sends corresponding information to the processor; the processor analyzes the information through using the pre-saved data in the memory, forms commands, and sends the commands to the touch display screen to execute.

Claims

exact text as granted — not AI-modified
1 . A touch display screen used for adjusting and determining a reticle of an electronic firearm sight, comprising:
 a display;   a touch screen installed in front of the display; and   a display driver;   wherein the touch display screen is connected with a processor, the processor in turn is connected with a memory;   the memory is provided with pre-saved data of a Cartesian coordinate system, ballistic trajectory data of different bullets and reticle scales formed based on different ballistic trajectories of different bullets;   the touch display screen receives operations of adjusting the reticle from a user and sends the operations to the processor;   the processor analyzes the operations through using the pre-saved data in the memory, forms commands, and sends the commands to the touch display screen to execute,   wherein the pre-saved data is obtained by a method comprising: firing a first bullet toward an object to obtain a position of a first bullet hole on the image,   wherein the processor corrects the reticle for a second bullet according to the pre-saved data by adjusting the reticle to the position of the first bullet hole, in such a manner that the electronic firearm sight improves an accuracy thereof according to the pre-saved data obtained from firing.   
     
     
         2 . The touch display screen set forth in  claim 1 , wherein the processor is connected with an operation panel;
 the operation panel is provided with buttons for controlling the Cartesian coordinate system and reticle shapes, locking an image of an object, zooming in and zooming out the image of the object.   
     
     
         3 . The touch display screen set forth in  claim 1 , wherein a rangefinder is connected with the processor for measuring the distance between the object and the firearm sight itself, and sending corresponding data to the processor. 
     
     
         4 . The touch display screen set forth in  claim 2 , wherein a rangefinder is connected with the processor for measuring the distance between the object and the firearm sight itself, and sending corresponding data to the processor. 
     
     
         5 . The touch display screen set forth in  claim 1 , wherein a wind speed & direction sensor is connected with the processor for detecting wind speed and wind direction, converting into electronic data, and sending the electronic data to the processor. 
     
     
         6 . The touch display screen set forth in  claim 2 , wherein a wind speed & direction sensor is connected with the processor for detecting wind speed and wind direction, converting into electronic data, and sending the electronic data to the processor. 
     
     
         7 . The touch display screen set forth in  claim 3 , wherein a wind speed & direction sensor is connected with the processor for detecting wind speed and wind direction, converting into electronic data, and sending the electronic data to the processor. 
     
     
         8 . The touch display screen set forth in  claim 4 , wherein a wind speed & direction sensor is connected with the processor for detecting wind speed and wind direction, converting into electronic data, and sending the electronic data to the processor. 
     
     
         9 . The touch display screen set forth in  claim 1 , wherein the processor is connected through an Analog-to Digital Converter with an image sensor to convert the electrical signals of an image into digital signals; the processor includes an image-processing chip for restoring the digital signals to an optical image. 
     
     
         10 . The touch display screen set forth in  claim 2 , wherein the processor is connected through an Analog-to Digital Converter with an image sensor to convert the electrical signals of an image into digital signals; the processor includes an image-processing chip for restoring the digital signals to an optical image. 
     
     
         11 . The touch display screen set forth in  claim 3 , wherein the processor is connected through an Analog-to Digital Converter with an image sensor to convert the electrical signals of an image into digital signals; the processor includes an image-processing chip for restoring the digital signals to an optical image. 
     
     
         12 . The touch display screen set forth in  claim 4 , wherein the processor is connected through an Analog-to Digital Converter with an image sensor to convert the electrical signals of an image into digital signals; the processor includes an image-processing chip for restoring the digital signals to an optical image. 
     
     
         13 . The touch display screen set forth in  claim 5 , wherein the processor is connected through an Analog-to Digital Converter with an image sensor to convert the electrical signals of an image into digital signals; the processor includes an image-processing chip for restoring the digital signals to an optical image. 
     
     
         14 . The touch display screen set forth in  claim 8 , wherein the processor is connected through an Analog-to Digital Converter with an image sensor to convert the electrical signals of an image into digital signals; the processor includes an image-processing chip for restoring the digital signals to an optical image. 
     
     
         15 . The touch display screen set forth in  claim 1 , wherein an electronic reticle with different shapes is provided, which can be superimposed on the image of the object, also can be adjusted to any place of display screen. 
     
     
         16 . The touch display screen set forth in  claim 2 , wherein an electronic reticle with different shapes is provided, which can be superimposed on the image of the object, also can be adjusted to any place of display screen. 
     
     
         17 . The touch display screen set forth in  claim 3 , wherein an electronic reticle with different shapes is provided, which can be superimposed on the image of the object, also can be adjusted to any place on the display. 
     
     
         18 . The touch display screen set forth in  claim 4 , wherein an electronic reticle with different shapes is provided, which can be superimposed on the image of the object, also can be adjusted to any place on the display. 
     
     
         19 . The touch display screen set forth in  claim 5 , wherein an electronic reticle with different shapes is provided, which can be superimposed on the image of the object, also can be adjusted to any place on the display. 
     
     
         20 . The touch display screen set forth in  claim 14 , wherein an electronic reticle with different shapes is provided, which can be superimposed on the image of the object, also can be adjusted to any place on the display.

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