摘要:
A mirror reflection processing method for a position sensitive detector device in intelligent bathroom products. The infrared emitter in the position sensitive detector device is provided with two infrared emitting intensity modes. The position sensitive detector device determines whether to consider that no signal is collected in current collection according to the result of comparison between the reflected infrared signal intensity received by the infrared receiver and the preset value therein, thereby overcoming the mis-operation of the position sensitive detector device when being opposite to objects with relatively high reflectivity, and making the position sensitive detector device even more widely applied.
摘要:
The present invention discloses a method for saving power consumption of a position sensitive detector used in a smart bathroom product. An infrared light emitting device included in the position sensitive detector has infrared light emitting modes of at least two strengths. The position sensitive detector determines the emitting strength to be adopted by the infrared light emitting device at the time of next infrared light emission based on the comparison between the strength of the reflected infrared signal received by the infrared light receiving device and a preset value set in the position sensitive detector. Thus, by switching between different emitting strength modes, the infrared light emitting device is made to use an emitting mode with a weak strength in the case that no one is using the position sensitive detector, thereby effectively decreasing the power consumption of the position sensitive detector in its operation.
摘要:
A method for saving power consumption of a position sensitive detector used in a smart bathroom product includes changing infrared light emitting strength modes depending on the received strength of reflected infrared light. If the emitting mode is already the strongest, and the strength of the reflected infrared light received back from a reflecting object is weak, the method includes conducting multiple subsequent emissions and averaging the returns to estimate a distance to the infrared light reflecting object.
摘要:
A distance-detecting sensor may include a housing, a focusing lens, and a circuit board. Infrared light may be transmitted by a transmitter and received by a receiver. The housing may include a main body having two apertures. A transmitting lens and a receiving lens may each be positioned within one of the apertures. The circuit board may be positioned above the transmitter and the receiver and below the transmitting lens and the receiving lens. The transmitter may be an infrared light emitting diode and the receiver may be a distance-detecting sensing module. A shielding case may be provided around the transmitter and the receiver to prevent electromagnetic interference.
摘要:
The present invention discloses a distance detecting sensor, comprising: a housing, a focusing lens, a circuit board, as well as a transmitter device for transmitting infrared light rays and a receiver device for receiving and sensing the reflected infrared light rays, wherein the housing comprises an elongated main body and two apertures located on a top surface of the main body; the lens comprises a transmitting lens and a receiving lens located at positions of the two apertures of the housing; the circuit board is received in the main body of the housing and located below the lens; the transmitter device and the receiver device are positioned directly below the transmitting lens and the receiving lens, wherein the transmitter device is an infrared light emitting diode and the receiver device is a distance detecting sensing module. The transmitter device and the receiver device are installed on the lower side of the circuit board; and the circuit board is provided thereon, between the transmitting lens and the transmitter device and between the receiving lens and the receiver device, with first and second via holes through which the transmitted light rays and the received light rays can pass, respectively. The distance detecting sensor of the present invention tends to be miniaturized and is easily produced and manufactured.
摘要:
A distance detecting induction device (100) comprises a casing (1), focusing lenses (2), a circuit board (3) provided with a plurality of electronic components, an emitting device (4) for emitting infrared light rays, and a receiving device (5) for receiving and inducing reflected infrared light rays. The casing (1) comprises a main body part (10) and two circular openings (11, 12) provided on the top surface of the main body part (10), and the circuit board (3) is arranged in the main body part (10). The lenses (2) comprise an emitting lens (21) and a receiving lens (22) provided at the positions of the two circular openings (11, 12). The emitting device (4) is an infrared light emitting diode for emitting the infrared light rays to the emitting lens (21). The receiving device (5) is a distance detection induction module for inducing the reflected light rays focused by the receiving lens (22). The distance detecting induction device (100) further comprises an emitting light ray guiding device arranged between the emitting lens (21) and the emitting device (4), the guiding device comprises a small circular hole (75) provided at the position of a transmitting tube core of the emitting device (4) and a big circular hole (71) provided at the position of the emitting lens (21).
摘要:
A distance detecting induction device includes a casing, a circuit board within the casing, and a pair of focusing lenses provided at respective openings in the casing. The distance detecting induction device further includes an emitting device including an infrared light emitting diode for emitting infrared light rays to the emitting lens and a receiving device including a distance detection induction module for inducing reflected light rays focused by the receiving lens. The distance detecting induction device further includes an emitting light ray guiding device arranged between the emitting lens and the emitting device. The guiding device includes a small circular hole provided at a position of the emitting device and a big circular hole provided at a position of the emitting lens.