Patent classifications
G08B7/02
Electronic vaporizer device, electronic vaporizer device body, and operation method
The present application relates to an electronic vaporizer device, an electronic vaporizer device body, and an operation method. An electronic vaporizer device body, configured to be used in combination with an electronic vaporizer, wherein the electronic vaporizer device body comprises: a power supply, configured to supply power; an airflow sensor; and a main control circuit, configured to activate the airflow sensor after detecting first level information; wherein the first level information is generated when the electronic vaporizer device body being in combination with the electronic vaporizer.
Electronic vaporizer device, electronic vaporizer device body, and operation method
The present application relates to an electronic vaporizer device, an electronic vaporizer device body, and an operation method. An electronic vaporizer device body, configured to be used in combination with an electronic vaporizer, wherein the electronic vaporizer device body comprises: a power supply, configured to supply power; an airflow sensor; and a main control circuit, configured to activate the airflow sensor after detecting first level information; wherein the first level information is generated when the electronic vaporizer device body being in combination with the electronic vaporizer.
ADJUSTABLE T-SQUARE
An adjustable T-square device and method of use is shown and described herein. The adjustable T-square has a plurality of apertures with at least one locking detent to set precise angles. The adjustable T-square has a locking pin to further engage a ruler portion to a head portion to minimize error when using the device.
Anti-concussive helmet and alarm system therefor
Various embodiments comprise systems, methods, architectures, mechanisms or apparatus for a helmet for reducing concussive injuries and an alarm system providing an indication of potential concussive impacts.
Remote-control device and method for locating a parked vehicle
The present invention relates to a system and method using a remote-control device for locating a vehicle parked in a large parking area or structure. The system includes a RF transceiver, an LED light, and a vibration module installed in the vehicle during manufacturing or retrofitted to an existing vehicle. The remote-control device is configured to connect with the vehicle and illuminate the LED light remotely in order to locate the vehicle. The remote device can also vibrate in response to the proximity of the remote device relative to the vehicle using the vibration module. The remote-control device provides the capability to display GPS location of vehicle and the remote device while also enabling an audible recording of a description of the location of the vehicle.
Remote-control device and method for locating a parked vehicle
The present invention relates to a system and method using a remote-control device for locating a vehicle parked in a large parking area or structure. The system includes a RF transceiver, an LED light, and a vibration module installed in the vehicle during manufacturing or retrofitted to an existing vehicle. The remote-control device is configured to connect with the vehicle and illuminate the LED light remotely in order to locate the vehicle. The remote device can also vibrate in response to the proximity of the remote device relative to the vehicle using the vibration module. The remote-control device provides the capability to display GPS location of vehicle and the remote device while also enabling an audible recording of a description of the location of the vehicle.
Adjustable T-square
An adjustable T-square device and method of use is shown and described herein. The adjustable T-square has a plurality of apertures with at least one locking detent to set precise angles. The adjustable T-square has a locking pin to further engage a ruler portion to a head portion to minimize error when using the device.
Remote-Control Device and Method for Locating a Parked Vehicle
The present invention relates to a system and method using a remote-control device for locating a vehicle parked in a large parking area or structure. The system includes a RF transceiver, an LED light, and a vibration module installed in the vehicle during manufacturing or retrofitted to an existing vehicle. The remote-control device is configured to connect with the vehicle and illuminate the LED light remotely in order to locate the vehicle. The remote device can also vibrate in response to the proximity of the remote device relative to the vehicle using the vibration module. The remote-control device provides the capability to display GPS location of vehicle and the remote device while also enabling an audible recording of a description of the location of the vehicle.
Remote-Control Device and Method for Locating a Parked Vehicle
The present invention relates to a system and method using a remote-control device for locating a vehicle parked in a large parking area or structure. The system includes a RF transceiver, an LED light, and a vibration module installed in the vehicle during manufacturing or retrofitted to an existing vehicle. The remote-control device is configured to connect with the vehicle and illuminate the LED light remotely in order to locate the vehicle. The remote device can also vibrate in response to the proximity of the remote device relative to the vehicle using the vibration module. The remote-control device provides the capability to display GPS location of vehicle and the remote device while also enabling an audible recording of a description of the location of the vehicle.
Imaging apparatus
An imaging apparatus includes a housing having an opening, a camera unit including a lens and an imaging device, disposed inside the housing, and configured to image an external object through the opening, a telecommunication member disposed inside the housing and configured to connect a control substrate controlling the camera unit to an imaging device substrate on which at least the imaging device of the camera unit is mounted, and a communication antenna at least partially disposed in a gap between an inner edge of the opening and the camera unit as viewed in an optical axis direction of the camera unit at a position substantially symmetrical to the telecommunication member across the lens.