Patent classifications
H04N5/64
Television Detachable Sliding Charging Screens
The purpose of this invention is an embodied sliding screen that is stored into a television front frame on a built in sliding frame. The built in sliding frame is embodied to allow you to store and access additional television screens. The built in television frame itself will store additional frames that move in and out of the television frame for other viewers to watch selected programs. This will allow one television to be used with detachable sliding screens. The built in additional televisions screens are connected to television tuner once sliding screens are disconnected. The sliding screen still connected to main television set will allow you to go anywhere, view any television programming coming from the television tuner. The detachable screens are charged by built in charger connected to television frame. This method works for all electronics with screens such as phones, camera's computers any screens possible same method.
Television Detachable Sliding Charging Screens
The purpose of this invention is an embodied sliding screen that is stored into a television front frame on a built in sliding frame. The built in sliding frame is embodied to allow you to store and access additional television screens. The built in television frame itself will store additional frames that move in and out of the television frame for other viewers to watch selected programs. This will allow one television to be used with detachable sliding screens. The built in additional televisions screens are connected to television tuner once sliding screens are disconnected. The sliding screen still connected to main television set will allow you to go anywhere, view any television programming coming from the television tuner. The detachable screens are charged by built in charger connected to television frame. This method works for all electronics with screens such as phones, camera's computers any screens possible same method.
Display module, display device and assembling method of display module
The present disclosure relates to a display module, a display device, and an assembling method of the display module. The display module includes: a display panel; a backplane disposed on one side of the display panel away from a light emitting surface of the display panel; a reflective sheet disposed between the display panel and the backplane; and an adapter bracket disposed between the reflective sheet and the backplane, and configured to connect with an external support structure located outside the display module, wherein the adapter bracket has a first surface and a second surface, the first surface is fixed on a surface of the backplane adjacent to the display panel in a surface contact manner, and the second surface supports the reflective sheet.
Display device
A display device includes a display panel including a first area and a second area, a sound generator disposed in at least one of the first and second areas on the display panel, a partition member disposed at a boundary between the first and second areas on the display panel, and extending in a predetermined direction, and a blocking member disposed in at least one of the first and second areas on the display panel, and spaced apart from the partition member.
Flexible display module comprising heat dissipation assembly and display device thereof
A flexible display module and a display device are provided. The flexible display module includes a flexible display panel; and a heat dissipation assembly. The heat dissipation assembly includes a fan assembly and a first air tube; the first air tube is disposed on at least one side edge of the flexible display panel; and the fan assembly provides an airflow to a surface of the flexible display panel through the first air tube.
Wireless power transmission system enabling bidirectional energy flow
A wireless power system for powering a television includes a source resonator, configured to generate an oscillating magnetic field, and at least one television component attached to at least one device resonator, wherein the at least one device resonator is configured to wirelessly receive power from the source resonator via the oscillating magnetic field when the distance between the source resonator and the at least one device resonator is more than 5 cm, and wherein at least one television component draws at least 10 Watts of power.
Wireless power transmission system enabling bidirectional energy flow
A wireless power system for powering a television includes a source resonator, configured to generate an oscillating magnetic field, and at least one television component attached to at least one device resonator, wherein the at least one device resonator is configured to wirelessly receive power from the source resonator via the oscillating magnetic field when the distance between the source resonator and the at least one device resonator is more than 5 cm, and wherein at least one television component draws at least 10 Watts of power.
VIDEO MEDIA STREAMING DEVICE
According to an aspect, an apparatus may include a media streaming device including electronic circuitry configured to receive media content wirelessly from a media content source, and an output cord segment having a first end portion integrally coupled to a structure of the media streaming device, and a second end portion configured to be coupled to a receiving device, where the electronic circuitry is further configured to transmit the received media content through the output cord segment to the receiving device. The apparatus may include a power cord segment having a first end portion configured to be coupled to the media streaming device, and a second end portion configured to be coupled to a power source.
VIDEO MEDIA STREAMING DEVICE
According to an aspect, an apparatus may include a media streaming device including electronic circuitry configured to receive media content wirelessly from a media content source, and an output cord segment having a first end portion integrally coupled to a structure of the media streaming device, and a second end portion configured to be coupled to a receiving device, where the electronic circuitry is further configured to transmit the received media content through the output cord segment to the receiving device. The apparatus may include a power cord segment having a first end portion configured to be coupled to the media streaming device, and a second end portion configured to be coupled to a power source.
DISPLAY DEVICE
A display device includes a display unit which displays an image, a roller to which an end of the display unit is fixed and which winds or unwinds the display unit by rotating, a housing which accommodates the display unit and the roller, and a guide member which is provided inside the housing and guides a movement of the display unit.