Abstract:
An organic light emitting display device which prevents deterioration of an organic light emitting diode (OLED), the organic light emitting display device includes a first substrate including a display unit that includes at least one organic light emitting diode (OLED), a second substrate facing the first substrate and bonded to the first substrate, a sealant arranged surrounding the display unit and bonding the first substrate to the second substrate, a dam portion arranged between the display unit and the sealant and surrounding a periphery of the display unit and including a plurality of magnetic particles and a filling material arranged within an inner space of the dam portion and between the first and second substrates and including a plurality of magnetic particles.
Abstract:
The present invention discloses a stay device for a vehicle comprising a mount having a ball formed protrudely on a front surface thereof and a wire passage formed therein and extended into the ball; a body coupled to the mount through the ball of the mount, the body having a wire passage formed therein; a plate spring provided for pressurizing the body; a body cover for wrapping the body and the plate spring; and a pivot ball assembly having a ball protrudely formed on a rear surface thereof, the pivot ball assembly being coupled to the body.
Abstract:
In a flat panel display panel and a method of manufacturing the same, the flat panel display panel may be constructed with a first substrate on which a plurality of pixels are formed; a second substrate disposed so as to face a surface of the first substrate on which the plurality of pixels are formed; a first sealing member disposed between the first and second substrates for sealing them; a first bank formed on the first substrate; a second bank formed on the second substrate and disposed facing the first bank; and a second sealing member disposed between the first and second banks.
Abstract:
A method and apparatus of generating a data block for a plurality of uplink frequencies is provided. The apparatus determines a size of a data field of the data block so that each data block matches a minimum of a first amount of data and second amount of data. The first amount of data is allowed to be transmitted by a first grant on a first uplink frequency and the second amount of data is allowed to be transmitted by a second grant on a second uplink frequency. The apparatus generates at least one data block so that the amount of data in the generated data blocks is less than multiple times the minimum of the first amount of data and the second amount of data.
Abstract:
The present invention discloses a stay device for a vehicle comprising a mount having a ball formed protrudely on a front surface thereof and a wire passage formed therein and extended into the ball; a body coupled to the mount through the ball of the mount, the body having a wire passage formed therein; a plate spring provided for pressurizing the body; a body cover for wrapping the body and the plate spring; and a pivot ball assembly having a ball protrudely formed on a rear surface thereof, the pivot ball assembly being coupled to the body.
Abstract:
The present invention is related to a vehicle inside mirror device employing ball clamp in which a barrel-shaped ball clamp is prepared by assembling a pair of semi-barrel-shaped and symmetrical bodies to absorb a mechanical error or an assembling error caused by a loosen assembly between the ball clamp and a counterpart or caused by a press-fitting manner for inhibiting a deformation of the ball clamp. The vehicle inside mirror device employing ball clamp according to the present invention comprises a mirror through which a driver can view the rear; a housing surrounding the mirror; a mirror mounting part mounted to a rear side of the housing, the mirror mounting part having a barrel-shaped hinge part provided thereon; a first ball clamp surrounding and clamping the hinge part of the mirror mounting part; a second ball clamp provided at a place corresponding to the first ball clamp; a spring provided between the first ball clamp and the second ball clamp for generating an expansion force; a mounting part fixed to a glass or a ceiling of a vehicle and having a hinge part for coupling the second ball clamp thereto; and a tube surrounding the first ball clamp, the second ball clamp and the spring.
Abstract:
An operation method performed by user equipment in a wireless communication system is provided. The method includes: determining whether to switch a Discontinuous Reception (DRX) state; switching to a new DRX state and operating in the new DRX state, if it is determined to switch to the DRX state; and reporting the switch to the new DRX state to a network. The new DRX state is based on a new DRX cycle comprising on-duration for which a downlink channel is monitored and off-duration for which the downlink channel is not monitored.
Abstract:
An OLED display according to an exemplary embodiment includes: a first substrate; a second substrate facing the first substrate; an organic light emitting element on the first substrate; a liquid crystal driving electrode facing the organic light emitting diode at a lower portion of the second substrate; and a plurality of liquid crystals between the organic light emitting element and the liquid crystal driving electrode. In this case, the plurality of liquid crystals has optical isotropy when an electric field is not applied and has optical anisotropy when the electric field is applied.
Abstract:
A method and apparatus for measuring a cell a wireless communication system are disclosed. The method includes receiving measurement configuration information for a plurality of frequencies from a BS, without a dedicated connection between a UE and a network, and measuring cells using the plurality of frequencies according to the measurement configuration information.
Abstract:
A method of a power increase/decrease request of a user equipment in a wireless communication system using a plurality of frequencies is disclosed. The method of operating of a user equipment comprises receiving grants for each of the plurality of uplink frequencies from a base station; dividing a maximum power of the user equipment for each of the plurality of uplink frequencies in accordance with the received grants, and selecting a corresponding transport block for each of the plurality of uplink frequencies by considering the received grants; and comparing a remaining power of the user equipment to a power obtained by subtracting a power required to transmit a first transport block selected for a first uplink frequency from a power required to transmit a minimum transport block, which transmits more data than those of the first transport block.