Abstract:
A system and method for simultaneously validating a client-server software application from a client side and a server side, the client-server software application having a client application and a server application. The method and system include: defining a test case to exercise or emulate the client application; specifying validations to be made against server-side state in the defined test case; controlling a monitoring program to monitor the server application and collect information about the server-side state; executing the defined test case to exercise the server application through the client or a client emulator; processing the collected information; simultaneously performing validation tests against the collected information about the server-side state and against the client application or outputs from the server; and reporting results of the validation tests.
Abstract:
Provided are embodiments of a transreflective display panel, and a display apparatus including the transreflective display panel and a backlight unit. The transreflective display panel according to one or more embodiments includes a plurality of pixels arranged in a matrix formation, wherein each of the pixels includes a first polarizing plate, a liquid crystal layer disposed on the first polarizing plate and controlling light transmissivity of incident light according to electrical control, and a specular reflector disposed in a portion of the liquid crystal layer and reflecting external light. Thus, the display apparatus may operate in a reflective mode using the external light and a transmissive mode using the backlight unit.
Abstract:
A touch sensing apparatus includes a light source generating a light. The light travels though a light distribution part. A light guide part guides the light to the light distribution part. A light sensing part outputs an output signal corresponding to an intensity of the light incident through the light guide part and the light distribution part when a touch occurs. A light reflection part reflects the light provided to the light distribution part, and a coordinate generating part calculates a coordinate value of the touch using the output signal from the light sensing part.
Abstract:
A touch sensing apparatus includes a light source generating a light. The light travels though a light distribution part. A light guide part guides the light to the light distribution part. A light sensing part outputs an output signal corresponding to an intensity of the light incident through the light guide part and the light distribution part when a touch occurs. A light reflection part reflects the light provided to the light distribution part, and a coordinate generating part calculates a coordinate value of the touch using the output signal from the light sensing part.
Abstract:
A touch sensing apparatus includes a light source generating a light. The light travels though a light distribution part. A light guide part guides the light to the light distribution part. A light sensing part outputs an output signal corresponding to an intensity of the light incident through the light guide part and the light distribution part when a touch occurs. A light reflection part reflects the light provided to the light distribution part, and a coordinate generating part calculates a coordinate value of the touch using the output signal from the light sensing part.
Abstract:
A system and method for generating test cases for a computer program. The method and system include invoking execution of the computer program via a remote client and monitoring the execution of the computer program. Information about execution path of the computer program is collected and then the execution of the computer program is stopped via the remote client. One or more test cases are then generated utilizing the collected information. In one embodiment, the remote client is a computer test tool and the computer program is a web application.
Abstract:
A light guide plate includes at least one incident surface into which light is incident, an exit surface at least one end of which is connected the incident surface and through which the light is output, an opposite surface spaced apart from the exit surface and opposing the exit surface, and a plurality of reflective patterns extending from the exit surface toward the opposite surface. When a direction from the exit surface to the opposite surface is referred to as a first direction, a direction perpendicular to the incident surface is referred to as a second direction, and a direction parallel to the incident surface and perpendicular to the first direction is referred to as a third direction, a length of each reflective pattern in the first direction is smaller than a distance between the exit surface and the opposite surface, and a length of each reflective pattern in the second direction is larger than a length of each reflective pattern in the third direction.
Abstract:
A light guide plate includes at least one incident surface into which light is incident, an exit surface at least one end of which is connected the incident surface and through which the light is output, an opposite surface spaced apart from the exit surface and opposing the exit surface, and a plurality of reflective patterns extending from the exit surface toward the opposite surface. When a direction from the exit surface to the opposite surface is referred to as a first direction, a direction perpendicular to the incident surface is referred to as a second direction, and a direction parallel to the incident surface and perpendicular to the first direction is referred to as a third direction, a length of each reflective pattern in the first direction is smaller than a distance between the exit surface and the opposite surface, and a length of each reflective pattern in the second direction is larger than a length of each reflective pattern in the third direction.
Abstract:
A touch sensing apparatus includes a light source generating a light. The light travels though a light distribution part. A light guide part guides the light to the light distribution part. A light sensing part outputs an output signal corresponding to an intensity of the light incident through the light guide part and the light distribution part when a touch occurs. A light reflection part reflects the light provided to the light distribution part, and a coordinate generating part calculates a coordinate value of the touch using the output signal from the light sensing part.
Abstract:
Provided is a touch screen. The touch screen includes a touch panel including a first substrate and a second substrate that face each other. The first resistor line part is bent several times, has a first end receiving a first voltage, and has a second end receiving a second voltage having a potential lower than the first voltage. Also, the touch screen includes a touch detection unit that determine whether a touch event occurs, a single/multi touch determination unit that determines whether the touch event is single touch or multi-touch, and a coordinate information calculating unit that calculates coordinate information of a touched point. Therefore, the touch screen may calculate coordinate information of multi-touched points.