Dual-wavelength gun aiming collimated beam light source module
11929587 ยท 2024-03-12
Assignee
Inventors
Cpc classification
H01S5/02212
ELECTRICITY
H01S5/4012
ELECTRICITY
F41G1/35
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01S3/0071
ELECTRICITY
International classification
H01S3/08
ELECTRICITY
F41G1/35
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G02B27/09
PHYSICS
H01S3/00
ELECTRICITY
Abstract
A dual-wavelength gun aiming collimated beam light source module, comprising: a positioning seat, having a first through hole and a second through hole inside; a first laser module for emitting laser light of first wavelength; a second laser module for emitting laser light of second wavelength; a first reflecting mirror, and the inner surface of the first reflecting mirror has a first wavelength laser light high-reflection coating; and a second reflecting mirror, and the outer surface of the second reflecting mirror has a first wavelength laser light high-reflection coating and a second wavelength laser light high-reflection coating; so as to solve the aiming deviation problem.
Claims
1. A dual-wavelength gun aiming collimated beam light source module, comprising: a positioning seat having a first through hole and a second through hole extending inside said positioning seat substantially in parallel to one another; a first laser module arranged inside the first through hole of the positioning seat for emitting laser light of a first wavelength, wherein the first laser module is configured with a first tubular body, and a first collimating lens and a first wavelength laser diode positioned within the first tubular body, wherein the first tubular body has a first ball unit, wherein the first through hole has a first ball and socket unit relative to the first ball unit, and wherein a first fixing ring is used to fix the first tubular body to the first through hole; a second laser module arranged inside the second through hole of the positioning seat for emitting laser light of a second wavelength, wherein the second laser module is configured with a second tubular body, and a second collimating lens and a second wavelength laser diode positioned within the second tubular body, wherein the second tubular body has a second ball unit, wherein the second through hole has a second ball and socket unit relative to the second ball unit, and wherein a second fixing ring is used to fix the second tubular body to the second through hole; a first reflecting mirror supported by the positioning seat obliquely with respect to the first laser module and the first through hole of the positioning seat, and wherein an inner surface of the first reflecting mirror with respect to the first laser module has a first wavelength laser light high-reflection coating; and a second reflecting mirror supported by the positioning seat obliquely with respect to the second laser module and the second through hole of the positioning seat, and wherein an outer surface of the second reflecting mirror with respect to the second laser module has a first wavelength laser light high-reflection coating and a second wavelength laser light anti-reflection coating; whereby, after passing through the reflection coatings of the first reflecting mirror and the second reflecting mirror, respectively, the laser light of the first wavelength coincides with the optical path of the laser light of the second wavelength which penetrates the second reflecting mirror.
2. The dual-wavelength gun aiming collimated beam light source module as claimed in claim 1, wherein the positioning seat is combined with a front cap and a rear cap.
3. The dual-wavelength gun aiming collimated beam light source module as claimed in claim 2, wherein the front cap has a dust mirror.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(6) Referring to
(7) With the feature disclosed above, after the laser light of the first wavelength passes through the reflection of the first reflecting mirror 50 and the second reflecting mirror 60, it coincides with the optical path of the laser light of the second wavelength which penetrating the second reflecting mirror 60.
(8) Referring to
(9) In addition, when the first laser module 30 is a combination of visible light (such as red light) and the second laser module 40 is a combination of visible light (such as green light); when only turns on the first laser module 30, the first visible light (such as red light) is emitted, when only turns on the second laser module 40, the second visible light (such as green light) is emitted, and when the first laser module 30 and the second laser module 40 are both turned on at the same time, the optical path will be as shown in
(10) Moreover, the corresponding first ball unit 311 and the first ball-and-socket unit 211 allow the first tubular body 31 of the first laser module 30 to adjust the optical path of the first wavelength laser diode 33 according to the first through hole 21, and then use the first fixing ring 34 to fix the first tubular body 31 in the first through hole 21; Similarly, the optical path of the second wavelength laser diode 43 can also be adjusted; After the optical path is adjusted, it can be ensured that after the first wavelength laser light is reflected by the first reflecting mirror 50 and the second reflecting mirror 60, it will coincide with the optical path of the second wavelength laser light penetrating the second reflecting mirror 60, which is convenient for the effect of light optical adjustment.