US 12,313,961 B1
Omnibearing surveillance camera
Gang Wang, Shenzhen (CN)
Filed by Gang Wang, Shenzhen (CN)
Filed on Apr. 8, 2024, as Appl. No. 18/629,698.
Int. Cl. G03B 17/56 (2021.01); G03B 15/05 (2021.01); H04N 23/695 (2023.01); H04N 23/698 (2023.01)
CPC G03B 17/561 (2013.01) [G03B 15/05 (2013.01); H04N 23/695 (2023.01); H04N 23/698 (2023.01)] 19 Claims
OG exemplary drawing
 
1. An omnibearing surveillance camera, comprising a lamp cap, a threaded interface being connected to the lamp cap, a power board connected to the threaded interface and a first motor arranged in the lamp cap, a mains supply being connected by the threaded interface to supply power to the power board, the mains supply being outputted after undergoing voltage reduction and rectification by the power board, a rotatable ball head being connected to a lower part of the lamp cap,
wherein a surveillance camera, a camera mainboard, and a second motor connected to the camera mainboard are arranged in the ball head; and the camera mainboard is powered by the power board, and drives the first motor to drive the ball head to rotate left and right and/or drives the second motor to rotate to drive the ball head to rotate up and down, so as to implement rotational surveillance of the surveillance camera at any angle;
wherein a sliding connection device connected to the power board is further arranged in the lamp cap and comprises the first motor for driving the sliding connection device to rotate; a rotating shaft of the first motor is sleeved with a conductive ring base;
wherein a plurality of conductive rings are arranged on the conductive ring base, and each of the plurality of conductive rings comprises a first connecting wire connected to an external signal source and configured to input the external signal source, and a second connecting wire for outputting an input signal;
the first connecting wire is connected to the second connecting wire by an adapter ring for signal transmission; and when the rotating shaft of the first motor rotates, the plurality of conductive rings are relatively stationary, transmits a signal of the external signal source to the adapter ring by the first connecting wire, and then transmits the signal to the second connecting wire for output.