Abstract:
The present invention provides an adjustable bed handheld remote control that may include a handheld housing, a touch sensor on a front face of the handheld housing, a transmitter and the like. The touch sensor may be presented in a slider form and may be adapted to facilitate a user in adjusting a frame position of an adjustable bed. The transmitter may be electrically coupled to a processor and may receive input from the touch sensor, for communication control signals to the adjustable bed in accordance with the input received from the touch sensor.
Abstract:
The present invention provides an adjustable bed handheld remote control that may include a handheld housing, a touch sensor on a front face of the handheld housing, a transmitter and the like. The touch sensor may be presented in a slider form and may be adapted to facilitate a user in adjusting a frame position of an adjustable bed. The transmitter may be electrically coupled to a processor and may receive input from the touch sensor, for communication control signals to the adjustable bed in accordance with the input received from the touch sensor.
Abstract:
The present disclosure concerns an adjustable bed facility including a system for executing a computer-based safety-action during a motor-actuated adjustable bed position adjustment, comprising an adjustable bed facility comprising a computer-based controller, an actuator, and a sensor, the computer-based controller providing control of adjustable bed position adjustments, the actuator configured to adjust a height of the adjustable bed facility upon receiving a height-adjustment command from the computer-based controller, and the sensor for determining an actuator action parameter measured value of the actuator, the computer-based controller in communicative connection with the sensor to monitor and compare the motor action parameter measured value to an actuator action parameter normal operation value range, and when the controller determines the monitored motor action parameter measured value is outside the range of the actuator action parameter normal operation value range the controller sends a safety-action command to the actuator.
Abstract:
This disclosure concerns a wireless communication system adapted to produce a closed-loop feedback scheme between a handheld remote control and an adjustable bed controller. The adjustable bed controller is adapted to, in response to a receipt of a motion command from the handheld remote control via the closed-loop feedback scheme, adjust, with feedback, a portion of an adjustable bed. The feedback is based on a comparison of sensor feedback and a predetermined position stored in a memory of the adjustable bed controller. The handheld remote control can receive, through the closed-loop feedback scheme, a returned confirmation reflecting the state of the position of the bed segment in response to the control signal.
Abstract:
Aspects of this invention relate to an adjustable bed that may include one or more articulating portions, and may include one or more components, including an air inflatable mattress associated with the adjustable bed frame, a programmable logic controller, a remote memory storage facility, a remote storage location of user preferences, a cell phone remote control, a modular control device, an air purification facility, a power outlet controller, a Bluetooth remote control, an ultra wide band remote control, a wireless USB remote control, and the like.
Abstract:
An aspect of the present invention relates to a method and system of receiving information of a user's support facility comfort requirements; using a software application to determine a proper support facility firmness configuration to match the user's requirement; selecting foam springs with the proper user required firmness as determined by the software application; and configuring the selected foam springs within the support facility to match the user's firmness requirements.
Abstract:
An adjustable bed is associated with a second system and both the bed and the second system are controlled by a modular control system. The modular controller further facilitates using a global command input to control both the bed and the second system. In an embodiment the modular control system includes a touchscreen for accepting user input to control the bed and the second system.
Abstract:
A method includes providing an adjustable bed flame including one or more articulating portions; providing an air inflatable mattress associated with the adjustable bed flame to form an adjustable bed, said air inflatable mattress including flex regions about which the air inflatable mattress can flex; regulating air pressure in the air inflatable mattress with an air pump; and storing user preferences in a remote memory, said user preferences representing recall parameters relating to one or more adjustable aspects of the adjustable bed, said remote memory disposed apart from both the adjustable bed frame, the air inflatable mattress, and the air pump, and said storing user preferences comprising: storing a plurality of values that define a range of available parameters for the adjustable bed, said storing the plurality of values including storing a table having a plurality of entries.
Abstract:
A controller for an adjustable bed can accept voice input, such as spoken commands to control functions of an adjustable bed. The controller can also accept voice commands to control functions of a second system associated with the bed. One or more voice commands can result in both the adjustable bed and the second system functionality being controlled.