Abstract:
The present invention discloses a light emitting device array billboard and a control method thereof. The light emitting device array billboard includes a light emitting device array circuit, plural line switch circuits, plural channel switch circuits, plural ghost image compensation switch circuits, and a control circuit. The control circuit operates the line switch circuits and the channel switch circuit to turn ON a selected light emitting device for a duty period in a lighting period, and operates the plural ghost image compensation switch circuits to electrically connect a channel node corresponding to the selected light emitting device to a ghost image compensation voltage after the lighting period. The control circuit further adjusts a channel operation signal according to a gray scale compensation signal, to turn ON the selected light emitting device for a gray scale compensation period in addition to the duty period.
Abstract:
An illumination system and an operation method thereof are provided. The illumination system includes a first controller and a first lighting device. The first controller is capable of emitting a wireless control signal. The first lighting device is capable of receiving the wireless control signal, adjusting a light emitting state thereof according to the wireless control signal, and accordingly emitting a wireless feedback signal. When the first controller does not receive the wireless feedback signal within a predetermined time or receives a wrong wireless feedback signal after the first controller emitted the wireless control signal to the first lighting device, the first controller emits the wireless control signal again.
Abstract:
A lamp and an illumination system and a driving method thereof are provided. The lamp includes a lighting unit, a conversion unit, and a driver. The conversion unit is capable of receiving an input pulse width modulation (PWM) signal and converting the input PWM signal into an output PWM signal, wherein a frequency of the input PWM signal and a frequency of the output PWM signal are different. The driver is coupled between the lighting unit and the conversion unit. The driver is capable of receiving the output PWM signal and generating a driving signal to drive the lighting unit according to the output PWM signal.
Abstract:
A nozzle plate and an atomizing module using the nozzle plate are disclosed. The atomizing module is installed at a cavity and includes a piezoelectric circular plate, a braking circular plate and a nozzle plate. The braking circular plate is installed on a side of the piezoelectric circular plate. The nozzle plate is a circular disc clamped between the piezoelectric circular plate and the braking circular plate, and the nozzle plate includes firing holes and first protrusions. Each first protrusion is non-circular and protruded in a direction towards the piezoelectric circular plate or the braking circular plate to form a multi-curved surface structure radially or circularly arranged into a specific geometric pattern. The nozzle plate can increase the atomizing area, atomizing quantity and liquid-gas exchange rate to prevent excessive stresses from concentrating at the center of the nozzle plate or vibrations from cracking or breaking the nozzle plate.
Abstract:
An RFID (Radio Frequency Identification) tag includes a grounding casing, an coupling casing disposed opposite to the grounding casing and an RFID module. The coupling casing includes a coupling part cooperating with the grounding casing to define a coupling space there-between. The RFID module is disposed in the coupling space and includes an RFID chip and a coupling member coupled electrically to the RFID chip such that upon receipt of one of the driving signal and the identification signal, surface current is generated on an upper surface of the RFID tag, which, in turn, induces a resonant electromagnetic energy within the coupling space, thereby increasing a detecting strength of the RFID module relative to the one of the driving signal and the identification signal.
Abstract:
An apparatus includes an image sensor module with a lens stack disposed on the image sensor module. A protective tube is disposed on the image sensor module and encloses the lens stack. The protective tube includes an outer wall having a snap-in latch element disposed thereon. A metal housing encloses the protective tube. The metal housing includes a housing foot and inner wall having an opposite snap-in latch element disposed thereon. The image sensor module is adapted to be secured between the housing foot of the metal housing and the protective tube when the opposite snap-in latch element of the metal housing is engaged with the snap-in latch element of the protective tube.
Abstract:
A method for protecting software of a mobile terminal is provided in the disclosure, wherein an encryption chip is mounted in the mobile terminal. The method includes: when the mobile terminal is turned on, whether or not the encryption chip is invalid is detected; when it is not invalid, the encryption chip authenticates the software of the mobile terminal through interaction with a main chip; when the authentication is not passed, the encryption chip controls a functional module of the mobile terminal through a hardware protection circuit. An apparatus for protecting software of a mobile terminal is also provided in the present disclosure. The solution of the disclosure can prevent the software of the mobile terminal from being cracked and protect the functions of the mobile terminal from illegal usage, thus the security of the mobile terminal is greatly improved and the interests of operators and manufacturers are protected.