Patent classifications
A47C27/18
Bed Microclimate Control
A bed system includes microclimate control capabilities for providing quality sleep experience. The bed system can include a microclimate control subsystem configured to supply conditioned air (e.g., heated or cooled air) to a mattress, or draw ambient air from the mattress, to achieve a desired temperature at the top of the mattress. Utilizing supply of conditioned air to provide air at desired temperature to the mattress system, or utilizing air suction to drain heat away from the mattress system, can provide precise microclimate control at the mattress, thereby permitting conformable sleep.
Bed Microclimate Controller
A bed system includes microclimate control capabilities for providing quality sleep experience. The bed system can include a microclimate control subsystem configured to supply conditioned air (e.g., heated or cooled air) to a mattress, or draw ambient air from the mattress, to achieve a desired temperature at the top of the mattress. Utilizing supply of conditioned air to provide air at desired temperature to the mattress system, or utilizing air suction to drain heat away from the mattress system, can provide precise microclimate control at the mattress, thereby permitting conformable sleep.
Pressure-based Bed Microclimate Control
A bed system includes microclimate control capabilities for providing quality sleep experience. The bed system can include a microclimate control subsystem configured to supply conditioned air (e.g., heated or cooled air) to a mattress, or draw ambient air from the mattress, to achieve a desired temperature at the top of the mattress. Utilizing supply of conditioned air to provide air at desired temperature to the mattress system, or utilizing air suction to drain heat away from the mattress system, can provide precise microclimate control at the mattress, thereby permitting conformable sleep.
Bed Air Control System
A bed system includes microclimate control capabilities for providing quality sleep experience. The bed system can include a microclimate control subsystem configured to supply conditioned air (e.g., heated or cooled air) to a mattress, or draw ambient air from the mattress, to achieve a desired temperature at the top of the mattress. Utilizing supply of conditioned air to provide air at desired temperature to the mattress system, or utilizing air suction to drain heat away from the mattress system, can provide precise microclimate control at the mattress, thereby permitting conformable sleep.
STRUCTURE OF INSULATING TEMPERATURE CONDUCTIVITY OF INFLATABLE BED
A structure of insulating temperature conductivity of an inflatable bed contains: a first layer, a second layer, an inner air chamber, multiple connection straps, multiple temperature stoppers, and at least one temperature insulation layer. The inner air chamber is defined between the first layer and the second layer. The multiple connection straps are separately connected between the first layer and the second layer. The multiple temperature stoppers are accommodated in the multiple connection straps respectively, and the at least one temperature insulation layer is filled between the first layer and the second layer.
STRUCTURE OF INSULATING TEMPERATURE CONDUCTIVITY OF INFLATABLE BED
A structure of insulating temperature conductivity of an inflatable bed contains: a first layer, a second layer, an inner air chamber, multiple connection straps, multiple temperature stoppers, and at least one temperature insulation layer. The inner air chamber is defined between the first layer and the second layer. The multiple connection straps are separately connected between the first layer and the second layer. The multiple temperature stoppers are accommodated in the multiple connection straps respectively, and the at least one temperature insulation layer is filled between the first layer and the second layer.
CUSHION STRUCTURE FOR STOPPING TEMPERATURE CONDUCTION
A cushion structure for stopping temperature conduction contains: a covering layer which is hollow, a first body accommodated in an upper portion of the covering layer, a second body accommodated below the first body, and a gluing layer defined between the first body and the second body. The gluing layer is configured to adhere the first body with the second body so as to stop air flowing into the cushion structure and to prevent a temperature of the second body conducting to the first body via the air. Thereby, when the cushion structure is fixed on a ground, a temperature conduction of the ground is stopped below the gluing layer and does not pass upward via the air, thus stopping the temperature conduction effectively.
Mattress construction with self inflated air spring
A multi-layer air mattress having an upper section with one or more layers of comfort material and a lower section having one or more layers of support material. A middle layer is arranged between the upper and lower sections and includes apertures for retaining air springs. The air spring has two cups that are sealed to a form plate to create a welded joint that encapsulates a sealed internal cavity. An invertible nipple is pressed into the internal cavity to reduce the cavity volume and self inflate the air spring.
Mattress construction with self inflated air spring
A multi-layer air mattress having an upper section with one or more layers of comfort material and a lower section having one or more layers of support material. A middle layer is arranged between the upper and lower sections and includes apertures for retaining air springs. The air spring has two cups that are sealed to a form plate to create a welded joint that encapsulates a sealed internal cavity. An invertible nipple is pressed into the internal cavity to reduce the cavity volume and self inflate the air spring.