Abstract:
The display control apparatus of the present invention includes a motion sensor, a processor and a display controller. The motion sensor is used to sense the motion of an electronic device and sends out a motion parameter to a processor. Each motion parameter is related to a special motion direction and motion velocity. When the processor receives a motion parameter, a corresponding display instruction is triggered. This display instruction is sent to the display controller to move the page based on the motion direction and motion velocity.
Abstract:
The present invention is a luggage case attachable to a briefcase and includes a luggage case and a briefcase mounted and zippered onto the luggage case by means of the zippers on the peripheries. A lifting handle is disposed on the briefcase. The available space in the luggage case will not be occupied by the briefcase, nor will the user have to carry the briefcase while pushing or dragging the luggage case at the same time. The briefcase can be detached from the luggage case, and the cover body can cover the pocket body.
Abstract:
A kind of foldable binoculars includes a substantially L-shaped first bracket including a first bottom plate having a first side and a second side, and a first side plate defining two first viewing holes and having a first side extending from the second side of the first bottom plate and a second side. A substantially L-shaped second bracket includes a second bottom plate having a first side pivotally connected with the second side of the first side plate and a second side, and a second side plate defining two second viewing holes and having a first side extending from the second side of the second bottom plate and a second side pivotally connected with the first side of the first bottom plate. Two concave lenses are each mounted on a corresponding one of the two second viewing holes. An adjusting member is movably mounted between the first bracket and the second bracket and defines two third viewing holes each aligning with a corresponding one of the two first viewing holes and each aligning with a corresponding one of the two second viewing holes. Two convex lenses are each detachably mounted on a corresponding one of the two third viewing holes.
Abstract:
A structure of a light-emitting device includes the following components: a substrate; an epitaxial structure on the substrate, the epitaxial structure including at least a first conductivity type semiconductor layer, a light-emitting active layer, and a second conductivity type semiconductor layer; a first electrode on the first conductivity type semiconductor layer; a transparent conductive layer between the first electrode and the first conductivity type semiconductor layer; and a three-dimensional distributed Bragg reflector (DBR) layer between the transparent conductive layer and the first conductivity type semiconductor layer.
Abstract:
A method for filtering signals of a touch sensitive device is used to judge whether or not a touch signal output from a touch sensitive device is noise by utilize the arrangement pattern of sensing areas. If the sensing areas corresponding to the touch signal are arranged partially conforming to a noise arrangement pattern the touch signal will be discarded. The present invention uses a scheme of comparing the arrangement diagram of a touch signal with a plurality of noise arrangement patterns to decide whether or not to discard the touch signal so as to increase the accuracy and the stability of a capacitive touch sensitive device.
Abstract:
A semiconductor light-emitting structure is provided, which includes a first doped type semiconductor layer, a light-emitting layer, a second doped type semiconductor layer, a first electrical transmission layer and at least one first conductor. The light-emitting layer is disposed on the first doped type semiconductor layer and the second doped type semiconductor layer is disposed on the light-emitting layer. The first electrical transmission layer is disposed on the first doped type semiconductor layer, in which a first interface is formed between the first electrical transmission layer and the first doped type semiconductor layer. The first conductor is disposed on the first doped type semiconductor layer. The first electrical transmission layer connects the first conductor. A second interface is formed between each of the first conductor and the first doped type semiconductor layer, and the resistance of the second interface is less than the resistance of the first interface.
Abstract:
A satellite navigation method and system are provided. The system includes a global position system (GPS) module, an input unit, a picture database, a geographical information system (GIS) module, an integrating unit, and a display unit. The method includes the following steps. Firstly, a navigation area is determined through the input unit, so as to search out several picture batches in the navigation area from the picture database. Next, a map relating to the navigation area is provided by the GIS module. Then, the picture batches and the map are integrated by the integrating unit to produce an integrated map shown on a first frame of the display unit. Afterwards, several pictures of the picture batch chosen from the first frame displayed on a second frame and satellite navigation information of the picture chosen from the second frame are displayed on a third frame by the display unit.
Abstract:
A method for controlling an electronic apparatus, and an apparatus and a recording medium using the method are disclosed. The method includes: detecting a moving motion on a touch sensitive module; generating a sensing signal corresponding to the moving motion; and controlling an operation of the electronic apparatus according to the sensing signal. The step of controlling the operation of the electronic apparatus according to the sensing signal comprises: controlling the electronic apparatus to execute a first predetermined function when determining the moving motion is not terminated in a predetermined period of time according to the sensing signal; and controlling the electronic apparatus to execute a second predetermined function when determining the moving motion is terminated in the predetermined period of time according to the sensing signal.
Abstract:
A method for controlling an electronic apparatus, and an apparatus and a recording medium using the method are disclosed. The method includes: detecting a moving motion on a central sensitive module and a peripheral sensitive module surrounding the central sensing module to generate a central sensing signal and a peripheral sensing signal, respectively, corresponding to the moving motion; and controlling the electronic apparatus to execute a predetermined function when the moving motion is determined starting from the central sensing region according to the central sensing signal and the peripheral sensing signal.
Abstract:
A tapping operation method for inputting a signal into an electrical apparatus by tapping includes the following steps. First, at least one gravitational acceleration vector along the electrical apparatus is detected. Then, a signal is inputted into the electrical apparatus when a variation rate of the gravitational acceleration vector with respect to time exceeds a predetermined value. In addition, a mobile electrical apparatus with the tapping operation function, which employs this method, is also disclosed.