Abstract:
Provided are a photoelectric conversion connector which enables a high-speed signal transmission between an imaging element with a large number of pixels and a signal processing device and whose size can be reduced, and an optical transmission module. The photoelectric conversion connector is provided with an aligning and connecting part 43 that allows connecting, to a substrate 34, an optical element 32 and an optical fiber 38 that inputs or outputs an optical signal, the aligning and connecting part 43 is provided on a surface different from a surface on which the optical element 32 is mounted of the substrate, the optical fiber 38 is connected to the substrate 34 via the aligning and connecting part 43, and the optical element 32 and the optical fiber 38 are mounted and arranged in line along a direction of a thickness of the substrate 34.
Abstract:
A cable connecting structure includes a coaxial cable (1) that has a conductive film (21) formed on a surface of a center conductor (12) exposed at a distal end surface (11); and a substrate (3) that has a center conductor connecting electrode (311) formed on a connection side surface (31) for connecting the center conductor (12). The distal end surface (11) of the coaxial cable (1) and the connection side surface (31) of the substrate (3) are arranged so as to face each other. The conductive film (21) formed on the center conductor (12) and the center conductor connecting electrode (311) are connected by a conductive material.
Abstract:
There is provided a stacked mounting structure in which, it is possible to realize a narrowing of pitch and to secure a height which enables to mount components to be mounted, and a method of manufacturing stacked mounting structure. The stacked mounting structure includes a plurality of members provided with a mounting area which is necessary for installing and operating components to be mounted on at least one principal surface, and an area for connections for signal transfer for operating the components to be mounted, and an electroconductive member which is disposed on the area for connections between the mutually facing members, and a cross section of the electroconductive member is same as or smaller than the area for connections, and an end portion of the electroconductive member is extended from a principal surface of one member up to a principal surface of the other member, and a height of the electroconductive member regulates a distance of the mounting area.