Abstract:
Discussed is a display device including a substrate, semiconductor light-emitting elements on the substrate, flip-flops which can apply an electrical signal to the semiconductor light-emitting elements to maintain the semiconductor light-emitting elements in a light-emitting state for a predetermined time interval, scan electrodes and data electrodes electrically connected to the flip-flops, respectively, and a driver. When a frame synchronization signal is generated during a time interval from a time point of the generation of a sub field signal to a time point of the generation of a subsequent sub field signal, the driver can prevent a voltage from being applied to the data electrodes for the time interval.
Abstract:
A mobile terminal is disclosed. The mobile terminal includes a housing having an internal space that is opened toward a front, and a display unit coupled to the housing and positioned in front of the internal space. The display unit includes a cover glass, a glass support adjacent to a side of the cover glass and disposed on a rear surface of the cover glass, wherein at least a portion of the glass support is positioned in the internal space and fixed to the cover glass, a frame including a frame body positioned in a rear of the cover glass, a first frame extension bent from the frame body to a rear of the frame body, and a second frame extension bent from the first frame extension, positioned between the first frame extension and the glass support, and coupled to the glass support, and a flexible display placed on the frame and disposed between the frame and the cover glass, wherein an edge area of the flexible display adjacent to the second frame extension is disposed between the glass support and the first frame extension.
Abstract:
Disclosed are a device for evaluating performance of an air conditioner based on climate simulation and a method thereof. The device for evaluating performance of an air conditioner based on climate simulation and the method thereof may supply load to one or more sub-chambers that simulates climate of a selected region, may calculate energy consumption of an air conditioner by applying changes in temperature and humidity supplied by the sub-chambers, and may evaluate energy consumption of the air conditioner that operates in the region with specific climate.
Abstract:
A display apparatus includes a plurality of first brackets adhered to the rear panel. A first bracket has a recess on a first surface where an adhesive is applied, and a first protrusion extending from a second surface and a second protrusion extending from the first protrusion. A connection bracket has a side wall and a plurality of first tab portions. The tab portion is provided into an opening of the first protrusion. A second bracket is provided adjacent to the plurality of the first brackets and attached to the connection bracket. A frame is mounted to the at least one second bracket. A light source is provided between the frame and the second bracket.
Abstract:
Disclosed is a method of controlling an air conditioner including a step of sensing the capacitance of condensed water through any one of a plurality of electrode pads to sense the level of the condensed water during cooling, and a step of operating a drainage pump based on the level of the condensed water sensed through any one of the electrode pads to drain the condensed water stored in the condensed water storage part. A water level detecting device of the air conditioner more accurately senses the level of condensed water based on the capacitance of the condensed water, thereby effectively controlling the drainage pump.
Abstract:
Disclosed is an air conditioner. The air conditioner of the present disclosure includes: an outdoor unit; at least one indoor unit configured to cool and heat an indoor space while repeating operation (Thermo-ON) and operation stop (Thermo-OFF); a sensor unit configured to measure a temperature and humidity of each indoor space where the at least one indoor unit is located; and a controller, wherein the controller calculates a sensible heat load and a latent heat load of each indoor space, based on a time when the operation stop occurs, a time when the operation starts again after the operation stop occurs, and temperature and humidity information of each indoor space, derives target sensible heat and target latent heat based on the calculated sensible heat load and latent heat load, and derives a target refrigerant temperature and an air volume of the at least one indoor unit based on the target sensible heat and the target latent heat. Accordingly, indoor sensible heat and latent heat loads can be accurately derived, and the operation efficiency of the air conditioner can be improved.
Abstract:
Discussed is a display device including a substrate, a thin film transistor formed on the substrate, the thin film transistor including a source electrode, a drain electrode, and a gate electrode, and a plurality of semiconductor light emitting devices emitting light so as to each form individual pixels and each having a p-type electrode and an n-type electrode, wherein at least one of the plurality of of the semiconductor light emitting devices is disposed so that one of the p-type electrode and the n-type electrode overlaps the source electrode of the thin film transistor.
Abstract:
The present invention relates to an air conditioner system including an integrated controller that separately determines whether sensor fault is occurred in each of the plurality of outdoor units, based on a sensing data of each of a plurality of outdoor units, and if there is an outdoor unit in which sensor fault is occurred, finally determines that sensor fault is occurred when a difference between a first sensing data of the outdoor unit in which sensor fault is occurred and a second sensing data of remaining outdoor unit is equal to or greater than a failure determination reference value, while operating the plurality of outdoor units under the same condition for a set time, and if a difference between the first sensing data and the second sensing data is less than the failure determination reference value, determines that sensor fault is not occurred, and if there is an outdoor unit determined to have sensor fault among the plurality of outdoor units, controls the outdoor unit in which sensor fault is occurred, based on the sensing data of the outdoor unit in which sensor fault is not occurred, and a control method thereof.
Abstract:
Discussed is a display device including a plurality of semiconductor light-emitting devices applied to sub-pixels included in each pixel of a display panel; and a driving unit for driving the plurality of semiconductor light-emitting devices on the basis of a digital pulse width modulation (PWM) signal, wherein the driving unit further includes: a current sensing unit for sensing the value of a current flowing through at least one of the plurality of semiconductor light-emitting devices; and a current compensation unit for compensating for the current deviation between the plurality of semiconductor light-emitting devices on the basis of the current value sensed by the sensing unit.
Abstract:
A display apparatus includes a plurality of first brackets adhered to the rear panel. A first bracket has a recess on a first surface where an adhesive is applied, and a first protrusion extending from a second surface and a second protrusion extending from the first protrusion. A connection bracket has a side wall and a plurality of first tab portions. The tab portion is provided into an opening of the first protrusion. A second bracket is provided adjacent to the plurality of the first brackets and attached to the connection bracket. A frame is mounted to the at least one second bracket. A light source is provided between the frame and the second bracket.