Abstract:
A lighting structure adapted to be disposed at an electronic apparatus is provided. The lighting structure includes a lighting module, a first elastic element, a latch, and a second elastic element. The lighting module has a light source and a stopper element. The first elastic element is connected to the lighting module. The latch has an interfering portion for blocking the stopper element and is capable of sliding in the electronic apparatus. The second elastic element is connected to the latch. When the latch is subjected to an external force and slides to deform the second elastic element, the stopper element disengages from the interfering portion, and the first elastic element rotates the lighting module, such that the lighting module is at a different position, and the light source is used to illuminate part of the electronic apparatus.
Abstract:
A cover plate includes two substrates and a composite structure disposed between the two substrates. The cover plate has low specific weight and high strength. The composite structure includes an adhesive layer and a fiber layer disposed in the adhesive layer, where the fiber layer is made of degradable fibers or a composite material having degradable fibers fixed by a forming material.
Abstract:
An electronic device having a touching function, including a touching region, a housing, a touch module, and a switch module is provided. The touching region is performing the touching function. The touching region is located over the housing. The touch module is disposed in the housing in correspondence with the touching region. The switch module includes at least one switch and is disposed under the touch module. The touch module is bent under force to turn on the switch when the touching region is touched.
Abstract:
A composite material structure includes a first fiber layer, a second fiber layer, and a third fiber layer. The first fiber layer is composed of a first long fiber and a first resin material. The second fiber layer is composed of a second long fiber and a second resin material. The third fiber layer is disposed between the first fiber layer and the second fiber layer. The third fiber layer is composed of a short fiber and a third resin material. A length of the first long fiber and a length of the second long fiber are both greater than a length of the short fiber, and the length of the short fiber is less than or equal to 25 mm.
Abstract:
A decorative film structure includes a foamed resin layer and a protective resin layer. The protective resin layer is disposed on the foamed resin layer and has a stereoscopic patterned surface relatively far from the foamed resin layer. A manufacturing method of the decorative film structure is also provided.
Abstract:
An electronic device including a first housing, a second housing and a pivot structure is provided. The pivot structure includes a pivot shaft, a sliding component and a supporting component. The pivot shaft is pivoted on the first housing. The sliding component is disposed on the second housing. One end of the sliding component sleeves the pivot shaft, such that the second housing rotates relative to the first housing. The supporting component has a first end and a second end. The first end is pivoted to the first housing. When the second housing rotates relative to the first housing, the supporting component provides a supporting force to the second housing.
Abstract:
A computer dock comprises a main body and a retractable assembly disposed on the back side of the main body, the retractable assembly includes a slide, a connector, a supporting plate and a moving block, and both the moving block and the connector are protruded out the main body and provided function of vertical movement, when an electronic device put on the main body of the computer dock for connection the moving block is then by vertical movement to drive the slide moved in horizontal movement and further to drive the connector moved back in vertical movement relative to the slide horizontally moved, by this manner the computer dock in application allows various electronic devices with different thicknesses to connect.
Abstract:
A composite material structure, including an outer layer, an inner layer, and a middle layer, is provided. The outer layer includes a metallic material. The inner layer includes a fiber material and a resin material. The outer layer has a first thickness, the inner layer has a second thickness, and the first thickness is different from the second thickness. The middle layer includes an adhesive material and is disposed between the outer layer and the inner layer. Two opposite surfaces of the middle layer are respectively in direct contact with the outer layer and the inner layer. A manufacturing method of the composite material structure is also provided.
Abstract:
A composite material structure, including an outer layer, an inner layer, and a middle layer, is provided. The outer layer includes a metallic material. The inner layer includes a fiber material and a resin material. The outer layer has a first thickness, the inner layer has a second thickness, and the first thickness is different from the second thickness. The middle layer includes an adhesive material and is disposed between the outer layer and the inner layer. Two opposite surfaces of the middle layer are respectively in direct contact with the outer layer and the inner layer. A manufacturing method of the composite material structure is also provided.
Abstract:
A mobile electronic device includes a first body, a pivot mechanism and a second body. The pivot mechanism includes a rotating element and a supporting element. The rotating element is connected between the first body and the second body to facilitate rotating the second body relatively to the first body. The rotating element includes a guiding trench connected to the second body, and the second body is suitable for sliding relatively to the first body. The supporting element is pivoted to the rotating element or the second body. When the second body slides to drive the rotating element to a rotating position, the rotating element is rotated relatively to the first body to drive the second body for tilting from the first body, and the supporting element is suitable of rotating relatively to the rotating element or the second body to provide a supporting force to the second body.