Abstract:
A universal series bus (USB) connector including a base, a first terminal set, and a second terminal set and a method of manufacturing the universal series bus connector are provided. The first terminal set includes a pair of first differential signal terminals and a pair of second differential signal terminals, and terminals of the pair of first differential signal terminals are adjacent to each other and terminals of the pair of second differential signal terminals are adjacent to each other. Two of terminals of the second terminal set are located at two opposite sides of the pair of first differential signal terminals, and another two of the terminals of the second terminal set are located at two opposite sides of the pair of second differential signal terminals.
Abstract:
A switching module including a body, a first interface assembly, and a second interface assembly is provided. The body has a first end and a second end opposite to each other. The first interface assembly is disposed at the first end. The second interface assembly is disposed at the second end and electrically connected to the first interface assembly. An electronic device including the switching module and a storage unit is provided. The switching module has a first interface assembly and a second interface assembly electrically connected to each other. The storage unit has a third interface assembly, wherein the third interface assembly is electrically connected to the first interface assembly through the second interface assembly.
Abstract:
A switching module including a body, a first interface assembly, and a second interface assembly is provided. The body has a first end and a second end opposite to each other. The first interface assembly is disposed at the first end. The second interface assembly is disposed at the second end and electrically connected to the first interface assembly. An electronic device including the switching module and a storage unit is provided. The switching module has a first interface assembly and a second interface assembly electrically connected to each other. The storage unit has a third interface assembly, wherein the third interface assembly is electrically connected to the first interface assembly through the second interface assembly.
Abstract:
A storage device including a bearing member, a storage unit, and a casing is provided. The casing has a bottom plate, a top plate and a main assembling structure. The bearing member has an interfering portion and a sub-assembling structure. The storage unit has a body with a first surface and a second surface opposite to each other, a limiting portion and a terminal set. Parts of the terminal set and the limiting portion are located at the first surface. The storage unit and the interfering portion are accommodated in the casing. The interfering portion provides interfering force to the limiting portion, and the bottom plate provides a supporting force to the second surface, so that the storage unit is positioned in the casing. The main assembling structure and the sub-assembling are assembled detachably to each other to configure or detach the bearing member and the casing.
Abstract:
A flash drive includes a storage module, a switching module, and a transforming mechanism. The storage module has a storage unit and a first interface electrically connected to each other. The switching module has a second interface and a third interface which are in different types but are electrically connected to each other, and the first interface corresponds to the second interface. The transforming mechanism is located at a first position or a second position relative to the storage module, and the switching module is located in the transforming mechanism. When the transforming mechanism is located at the first position, the first interface is electrically connected to the second interface, so that the storage unit is electrically connected to a host through the third interface. When the transforming mechanism is located at the second position, the first interface of the storage unit is electrically connected to the host.
Abstract:
A storage apparatus including a storage element and a fitting member is provided. The storage element includes a body, a first pad set and a second pad set. The first and the second pad sets are exposed out of the body and located at opposite sides of the body. The fitting member comprises a first terminal set and a second terminal set electrically connected to each other. The storage element is detachably assembled to the fitting member. The first terminal set electrically connected to the first pad set and the second terminal set located between the first pad set and the second pad set, the second terminal set and the second pad set form a connecting interface of the storage apparatus that the storage apparatus is used for being electrically connected to an external apparatus. A production method of the storage apparatus is further provided.
Abstract:
A storage device including a bearing member, a storage unit, and a casing is provided. The casing has a bottom plate, a top plate and a main assembling structure. The bearing member has an interfering portion and a sub-assembling structure. The storage unit has a body with a first surface and a second surface opposite to each other, a limiting portion and a terminal set. Parts of the terminal set and the limiting portion are located at the first surface. The storage unit and the interfering portion are accommodated in the casing. The interfering portion provides interfering force to the limiting portion, and the bottom plate provides a supporting force to the second surface, so that the storage unit is positioned in the casing. The main assembling structure and the sub-assembling are assembled detachably to each other to configure or detach the bearing member and the casing.