摘要:
This application provides an electronic device. The electronic device includes a housing and a display screen. The display screen is disposed on the housing. The electronic device further includes a carrier board and a flexible flat cable. The carrier board is loaded with a device. The carrier board and the flexible flat cable are disposed between the housing and the display screen, and the flexible flat cable is soldered to the carrier board. In this application, an existing connector may be canceled in a connection manner in which the flexible flat cable is soldered to the carrier board, so that a distance between the housing and the display screen may be reduced from a sum of a thickness of the carrier board and a height of the connector to a sum of the thickness of the carrier board and a height of the device on the carrier board. This facilitates implementation of a thin design of the electronic device. In addition, canceling the connector may save large under-screen space, so that a layout and optimization of devices and lines are facilitated.
摘要:
A wire harness for which an exterior member can be maintained in a desired shape is provided. A flexible, tubular corrugated tube (16) which covers electric wires (18) and a route keeping tape (17) which is more difficult to extend or buckle in the widthwise direction than the corrugated tube (16) are included, and the route keeping tape (17) is wound helically around a bent part (20), which is formed by bending the corrugated tube (16), along the longitudinal direction.
摘要:
A flexible conductive material and a cable using the same, being resistant to one million times or more of dynamic driving and particularly suitable for wiring robots or automobiles. An average crystal grain size of crystal grains 20 forming a metal texture of a base material is 2 µm or less, in which the crystal grains 20 being 1 µm or less are included at least 20% or more in a cross sectional ratio. Also, it is preferable to include 0.1 mass% to 20 mass% of nanoparticles 22.
摘要:
Exemplary methods for manufacturing a wire and resultant wires are disclosed herein. The method includes extruding a receptor cross-linkable polymer that is substantially free of curing agent about a conductive core and extruding a donor polymer in association with a curing agent. The method includes disposing the donor polymer about the receptor polymer and conductive core to create a multi-layer wire pre-product. The method also includes heat curing a multi-layer wire pre-product to form a wire.