US 12,460,800 B1
Downward hanging type lamp
Wenjie Li, Guangdong (CN); Xi Wang, Guangdong (CN); and Zhenkai Zhou, Guangdong (CN)
Assigned to SYSWIT OPTOELECTRONICS TECHNOLOGY CO., LTD., Guangdong (CN)
Filed by Syswit Optoelectronics Technology Co., Ltd., Guangdong (CN)
Filed on Nov. 7, 2024, as Appl. No. 18/940,820.
Claims priority of application No. 202411288681.6 (CN), filed on Sep. 13, 2024.
Int. Cl. F21V 21/088 (2006.01); F41G 1/34 (2006.01); F41G 1/35 (2006.01); F41G 1/36 (2006.01); F41G 3/14 (2006.01); H04B 1/3883 (2015.01); H04M 1/02 (2006.01)
CPC F21V 21/088 (2013.01) [F21V 21/0885 (2013.01); F41G 1/34 (2013.01); F41G 1/35 (2013.01); F41G 1/36 (2013.01); F41G 3/145 (2013.01); H04B 1/3883 (2013.01); H04M 1/0262 (2013.01)] 5 Claims
OG exemplary drawing
 
1. A downward hanging type lamp, used for being mounted on a handguard of a firearm provided with a modular locking M-LOK® (modular lock) slot, wherein the downward hanging type lamp comprises a lamp body and a battery, the lamp body comprises a mounting base and an illumination lamp, the illumination lamp is mounted inside the mounting base, and the illumination lamp is electrically connected to the battery;
a battery mounting groove is formed on the mounting base, the battery is detachably mounted in the battery mounting groove, a locking screw is arranged in the battery mounting groove, the locking screw penetrates out of a bottom of the mounting base and is connected to an M-LOK® (modular lock) nut, and a head of the locking screw is located in the battery mounting groove;
an accommodating groove is formed in the battery mounting groove at a position where the locking screw penetrates out, and the accommodating groove is used for accommodating the head of the locking screw, so that when the locking screw cooperates with the M-LOK® (modular lock) nut to fix the mounting base on the handguard, a height of a top of the head of the locking screw is equal to or lower than a height of a bottom surface of the battery mounting groove; and
the battery comprises a battery body, and a battery circuit board is arranged in the battery body;
wherein a mounting cavity is formed at one end of the mounting base close to the illumination lamp, a mounting hole is provided on one side of the mounting cavity close to the battery mounting groove, and the mounting hole is in communication with the battery mounting groove;
a battery buckle is arranged in the mounting cavity, the limitation of the battery buckle by the mounting hole only has a linear freedom degree close to or away from the battery mounting groove, and an end portion of the battery buckle close to the battery mounting groove is arranged to extend out of the mounting hole;
a buckle reset spring is arranged between one end of the battery buckle away from the battery mounting groove and a side wall of the mounting cavity, the buckle reset spring is used for keeping an initial position of the battery buckle in the mounting cavity, and when the battery buckle is located at the initial position, one end of the battery buckle close to the battery mounting groove extends into the battery mounting groove; and
a battery buckle groove hole is provided on one side of the battery body, and when the battery is mounted in the battery mounting groove, an end portion of the battery buckle is arranged to be embedded in the battery buckle groove hole;
wherein an opening is provided above the mounting cavity and a battery replacement button is accommodated, and the battery replacement button only has a longitudinal linear motion degree of freedom under constraint of the mounting cavity;
a bottom of the battery replacement button is connected to a bottom wall of the mounting cavity via a button reset spring, a connecting groove capable of accommodating the battery buckle is formed at the bottom of the battery replacement button, the connecting groove divides the bottom of the battery replacement button into two limiting blocks, and the button reset spring is arranged between bottom surfaces of the limiting blocks and a bottom surface of the mounting cavity; and
through grooves for the limiting blocks and the button reset spring to longitudinally pass through are formed on two sides of the battery buckle, a first inclined surface is formed on a side face of one of the limiting blocks, a second inclined surface is formed on one side of the through grooves close to the battery replacement button; when the battery replacement button moves downwards, the two limiting blocks move in the through grooves on the two sides of the battery buckle; and the first inclined surface abuts against the second inclined surface, and the battery replacement button pushes the battery buckle away from the battery mounting groove when the battery replacement button moves downwards.