Background technique:
Ranging telescope, a laser rangefinder that integrates the ranging system and the telescopic system, so that it can integrate the functions of observation and measurement. The laser rangefinder emits a very thin laser beam to the target when it is working, and the laser beam reflected by the target is received by the photoelectric element. At present, laser ranging telescopes have been popularized in the market, and have a wide range of application scenarios from military industry, industry to civilian use.
The existing laser ranging telescope includes a display screen. The display screen and the eyepiece are not located on a horizontal line. The telephoto function is realized through the cooperation of the eyepiece and the objective lens. Effect; when you need to watch the target at different distances, you often need to adjust the eyepiece to achieve the effect of focusing and clear imaging, but the position of the display screen cannot be adjusted, and the phenomenon that the image of the target is clear but the image of the display screen data is blurred will occur during the focusing process. Seriously affect the use and observation experience.
Technical implementation elements:
The purpose of the invention of the present utility model is to provide an electric focusing and ranging telescope.
The technical scheme adopted by the utility model to solve the above-mentioned technical problems is as follows:
An electric focusing and ranging telescope, comprising an eyepiece 1, a display screen 2, an image sensor 3, a camera lens group, a laser emission source 7, a detector 8, a power supply and a processor, and the camera lens group includes a focusing mirror 4, A variable magnification mirror 5 and a variable aperture 6, the camera lens group is provided with a focusing motor for focusing, a zoom motor for zooming, and a diaphragm motor for adjusting the diaphragm, the camera lens The rear of the group is provided with an image sensor 3 for receiving optical signals, and the eyepiece 1 is used to observe the display content of the display screen 2. The display screen 2, the image sensor 3, the laser emission source 7, the detector 8 and the power supply are all processed with electrical connection. The eyepiece 1 is fixed, an image sensor 3 and a display screen 2 are arranged between the eyepiece 1 and the objective lens, the light is focused on the image sensor 3 through the objective lens, the image sensor 3 converts the light signal into an electrical signal, and the display screen 2 presents the target scene and The measurement data is marked to achieve the image overlap effect in the existing ranging telescope. When viewing targets at different distances under different light, the camera lens group can be adjusted by operating the motor.
Preferably, the focus motor, zoom motor and diaphragm motor are DC motors.
Preferably, the display screen 2 is an ultra-clear display screen. The eyepiece 1 directly controls the imaging content of the display screen 2. The higher the resolution of the display screen 2, the better the observation effect.
Other features and advantages of the invention will be set forth in the description which follows, and in part will be apparent from the description, or may be learned by practice of the invention. The objectives and other advantages of the invention may be realized and attained by the structure particularly pointed out in the written description, claims, and drawings.






