Patent classifications
E05Y2400/61
Power Supply for Movable Barrier Opener with Brushless DC Motor
A movable barrier opener system having a brushless DC motor is provided. The movable barrier opener system may have a power supply unit with a drive circuit power module and a storage bank. The storage bank may be chargeable by the drive circuit power module and may be connectable to the drive assembly to provide electrical power to the drive assembly to move the movable barrier. The drive circuit power module may be selectably turned on and off to improve efficiency of power consumption by turning off during periods of lowered demand.
Power supply for movable barrier opener with brushless DC motor
A movable barrier opener system having a brushless DC motor is provided. The movable barrier opener system may have a power supply unit with a drive circuit power module and a storage bank. The storage bank may be chargeable by the drive circuit power module and may be connectable to the drive assembly to provide electrical power to the drive assembly to move the movable barrier. The drive circuit power module may be selectably turned on and off to improve efficiency of power consumption by turning off during periods of lowered demand.
DOOR OPERATOR SYSTEM WITH ADAPTOR AND BACK PLATE
Door operator systems are described herein that include the use of an adaptor. It should be understood that the adaptor may be utilized in order to operatively couple separate door operator assemblies together in a double door operator system. The adaptor may include control components (e.g., switches, buttons, toggles, levers, or the like) that are used to turn the door operator system on and off. While the adaptor may be used to operatively couple two separate door operator assemblies together to form a double door operator system, the adaptor may also be used within a single door operator system. Furthermore, with respect to double door operator systems, the system may also utilize a back plate assembly comprising two or more separate back plates (e.g., two or more back plate portions).
OPENING/CLOSING BODY CONTROL DEVICE
An opening/closing body control device may include an actuator, a drive device configured to drive the actuator configured to at least one of open and close an opening/closing body of a vehicle, an operation switch, and a signal output device. The signal output device may be configured to drive the actuator via outputting a signal to the drive device when the operation switch is operated. The signal output device may include a signal line, a submergence detection circuit configured to detect submergence of the vehicle in water, a switch, and a pullup resistance connected via the switch to a power source. The switch may be configured to turn on when submergence of the vehicle in water is detected and the operation switch is not operated. The pullup resistance may be connected electrically to the signal line when the switch turns on to output a signal to the drive device.
ELECTRIC DOOR RELEASE POWERED BY AN ENERGY HARVESTER
A piezoelectric energy harvester system for collecting kinetic energy is provided, wherein the kinetic energy is converted into electrical energy, and wherein at least a portion of the converted electrical energy is utilized to operate a load. The system comprises an energy input portion and an energy harvesting portion. The energy input portion includes an input member configured to be actionable by an outside force. The energy harvesting portion includes a capture member, a sprocket portion, and a piezoelectric energy harvester. The capture member is adapted for receiving mechanical input from the input member. The sprocket portion is disposed for movement with the capture member. The sprocket portion includes at least one radially disposed sprocket actuator configured for making contact with and exciting the piezoelectric energy harvester. The piezoelectric energy harvester is excited by the contact to produce the kinetic energy.
Electric door release powered by an energy harvester
A piezoelectric energy harvester system for collecting kinetic energy is provided, wherein the kinetic energy is converted into electrical energy, and wherein at least a portion of the converted electrical energy is utilized to operate a load. The system comprises an energy input portion and an energy harvesting portion. The energy input portion includes an input member configured to be actionable by an outside force. The energy harvesting portion includes a capture member, a sprocket portion, and a piezoelectric energy harvester. The capture member is adapted for receiving mechanical input from the input member. The sprocket portion is disposed for movement with the capture member. The sprocket portion includes at least one radially disposed sprocket actuator configured for making contact with and exciting the piezoelectric energy harvester. The piezoelectric energy harvester is excited by the contact to produce the kinetic energy.
DOOR LOCK APPARATUS FOR VEHICLE
A door lock apparatus for vehicle includes a first electric circuit, a second electric circuit, and a positioning member. The first electric circuit includes first electric conductive plates formed with terminals connected to an electrical component. The first electric circuit also includes a first support member extending over terminals of the first electric conductive plates, the first support member supporting terminals of the first electric conductive plates. The second electric circuit includes second electric conductive plates formed with terminals connected to an electrical component. The second electric circuit also includes a second support member extending over terminals of the second electric conductive plates, the second support member supporting terminals of the second electric conductive plates. The positioning member determines positions of the first support member and the second support member, and is commonly used for the first support member and the second support member.
SMART PEEPHOLE
A smart peephole includes a front door body, a rear door body including a power source, and a connecting structure. The front door body includes a monitoring unit configured to monitor a scene. The connecting structure includes an electrical connection line, a connecting sleeve, and a regulator. The electrical connection line is configured to electrically couple the monitoring unit to the power source to provide power to the monitoring unit. The connecting sleeve passes through a door panel to couple the front door body to the rear door body. The regulator is disposed on the rear door body and is configured to adjust a length of the electrical connection line between the front door body and the rear door body according to a thickness of the door panel.
MATERIAL-ACTUATED LAUNCH AND RECOVERY DOORS
A material-actuated door includes a door housing including a flexible material; and one or more least one Shape Memory Alloy (SMA) actuators embedded in the door housing. Each SMA actuator is elastically biased in a first actuator physical state and is configured to transition into a second actuator physical state in response to receiving electrical current. The material-actuated door is transitioned into a first door position in response to disconnecting the electrical current to the at least one SMA actuator, and is transitioned into a second door position in response to delivering the electrical current to the at least one SMA actuator.
POWERED OPENING MODULE FOR A DOOR CLOSER
A retrofit module configured for use with a door closer having a pinion. The retrofit module generally includes a case, an output shaft, a motor, and a control assembly. The output shaft is rotatably mounted in the case, and is configured for rotational coupling with the pinion. The motor is mounted to the case, and is operable to rotate the output shaft in a door-opening direction. The control assembly is mounted to the case, and is configured to operate the motor to drive the output shaft in the door-opening direction in response to an actuating signal.