Abstract:
An alarm device includes: a detection device which detects an occurrence of an abnormal condition within a monitoring area; a transmission device which transmits an alarm signal when the detection device detects the abnormal condition; and an output device which, after the transmission device has transmitted the alarm signal, outputs an alarm after a lapse of a predetermined time after the transmission.
Abstract:
An alarm device includes: a detection device which detects an occurrence of an abnormal condition within a monitoring area; a transmission device which transmits an alarm signal when the detection device detects the abnormal condition; and an output device which, after the transmission device has transmitted the alarm signal, outputs an alarm after a lapse of a predetermined time after the transmission.
Abstract:
A communication system of the present invention is provided with a transmitting unit and a receiving unit. The transmitting unit is provided with: a transmitting device that performs transmission of signals of a predetermined frequency; and a transmission control device that, through the transmitting device, transmits a first signal containing predetermined information, and a second signal that contains identification information for identifying the receiving unit, to which this first signal is to be transmitted, and that requires, for analyzing this signal, an amount of processing less than that required for the first signal. The receiving unit is provided with: a receiving device that detects the presence or absence of a signal of the predetermined frequency and receives the signal of the predetermined frequency; and a reception control device that, in a case where this receiving device has detected the signal of the predetermined frequency, controls the receiving device to receive the signal of the predetermined frequency only during a first period of time, that determines whether or not the signal received by the receiving device contains the second signal, and that, in a case where this second signal is contained, controls the receiving device to receive the signal of the predetermined frequency only during a second period of time, which is longer than the first period of time.
Abstract:
The alarming device of the present invention includes a battery power supply; a sensor section that outputs an anomaly detection signal in the case of detecting an anomaly; a alert section that outputs an anomaly alarm based on the anomaly detection signal; a reception circuit section that receives an event signal from another alarming device; a transmission circuit section that transmits an event signal to the other alarming device; an anomaly monitoring section that, when the sensor section has detected an anomaly, causes the alert section to output the anomaly alarm based on the anomaly detection signal and causes the transmission circuit section to transmit an event signal according to the anomaly of the alarming device to the other alarming device, and on the other hand, when the reception circuit section has received an event signal according to an anomaly of the other alarming device from the other alarming device, causes the alert section to output the anomaly alarm; and a communication control section that detects a predetermined event and performs communication control by adjusting the transmitting and receiving of an event signal by the transmission circuit section and the reception circuit section.
Abstract:
The relay method for an alarm system of the present invention includes: a third process in which a reception intensity of the acknowledgement signal is measured when the source alarm device receives the acknowledgement signal, and in which, if there are one or more destination alarm devices that have not transmitted the acknowledgement signal among all of the destination alarm devices registered in advance, a destination alarm device that has the lowest reception intensity of the acknowledgement signal is assigned as a relay destination alarm device; and a fourth process in which an abnormality signal is relay-transmitted from the source alarm device, through the relay destination alarm device, to the destination alarm devices that are interconnected with the relay destination alarm device, and then, from the destination alarm device that has received the abnormality signal, a signal indicating that a sender thereof is the destination alarm device is outputted, and also an acknowledgement signal is transmitted to the source alarm device. In addition, when there are one or more all of the destination alarm devices which have not transmitted an acknowledgement signal to the source alarm device among all of the destination the alarm devices registered in advance, the third and fourth processes are repeated.
Abstract:
The alarming device of the present invention includes a battery power supply; a sensor section that outputs an anomaly detection signal in the case of detecting an anomaly; a alert section that outputs an anomaly alarm based on the anomaly detection signal; a reception circuit section that receives an event signal from another alarming device; a transmission circuit section that transmits an event signal to the other alarming device; an anomaly monitoring section that, when the sensor section has detected an anomaly, causes the alert section to output the anomaly alarm based on the anomaly detection signal and causes the transmission circuit section to transmit an event signal according to the anomaly of the alarming device to the other alarming device, and on the other hand, when the reception circuit section has received an event signal according to an anomaly of the other alarming device from the other alarming device, causes the alert section to output the anomaly alarm; and a communication control section that detects a predetermined event and performs communication control by adjusting the transmitting and receiving of an event signal by the transmission circuit section and the reception circuit section.
Abstract:
According to one embodiment, a solid-state imaging device includes a pixel outputting a photoelectrically converted signal, an ADC circuit disposed in an edge portion of a pixel area to convert an analog signal of the pixel into a digital signal on the basis of a result of comparison between a signal level output from the pixel and a ramp wave which is a reference, and a multi-ramp-wave generating circuit generating a plurality of ramp waves with different amplitudes and combining the plurality of ramp waves to obtain the ramp wave.
Abstract:
An image pickup device includes a signal processing unit which processes a signal generated by separating a luminous signal into wavelength components of two or more colors by use of a sensor unit including two-dimensionally arranged pixels to which a wavelength separating unit for separating light wavelengths is arranged at a front face of a photoelectric converting element which converts the luminous signal condensed by an optical lens unit into electric signals, wherein the optical lens unit includes at least one optical lens having different focusing positions in accordance with the wavelengths of the luminous signal, and the signal processing unit includes an outline signal generating unit which extracts an outline signal from an output signal of the sensor unit.
Abstract:
According to one embodiment, a solid-state imaging device includes, a pixel section, a read pulse amplitude control unit which controls exposure time for which a photo diode carries out the photoelectric conversion and dividing the signal charge accumulated in the photo diode into fractions so that the fractions are read from the photo diode, a plurality of line memories to which the plurality of read signals are saved. And the device further includes an addition unit which synthesizes the plurality of read signals into one signal, the addition unit includes first determination unit which reads the signal saved to the predetermined line memory and comparing a signal level of the read signal with a predetermined level to determine whether or not to add a signal read from a different line memory to the compared signal.
Abstract:
A solid-state image sensing device has a plurality of pixels, a read-out circuit for reading out electric signals obtained by the photoelectric conversion element, and a signal processing unit for performing signal processing for the electric signal read out from the read-out circuit. The plurality of pixels include a first pixel having a transparent film, a plurality of second pixels each having a first color filter, a plurality of third pixels each having a second color filter, and a plurality of fourth pixels each having a third color filter. The signal processing unit has a color acquisition unit for acquiring a white pixel value and first to third color pixel values, an edge judgment unit, a color separation unit and a single color pixel calculation unit.