Abstract:
A stowable rear seat, wherein a seat back section comprises: a seat back body stood in a floor surface so as to tilt freely; a seat back locking mechanism that locks the tilting of the seat back body; and a swinging member that swings in the forward/backward direction in conjunction with the tilting movement of the seat back body when the lock of the seat back locking mechanism is released and the seat back body tilts. The seat cushion section of the stowable rear seat comprises: a seat cushion body freely housed in the underfoot floor surface and arranged horizontally in the floor surface in front of the seat back body, and a seat cushion locking mechanism that locks the seat cushion body in a horizontal state on the floor surface.
Abstract:
A stowable rear seat includes a seat back unit; and a seat cushion unit. The seat back unit includes a tiltable seat back erected on a floor surface; a seat back locking mechanism for locking a tilt of the seat back; and a rocking member rocking in cooperation with a tilting operation of the seat back after unlocking the seat back locking mechanism. The seat cushion unit includes a seat cushion horizontally placed on the floor surface in front of the seat back, the seat cushion being foldable on a foot floor surface at a lower position than the floor surface; a lock shaft provided at a back end of the seat cushion; and a seat cushion locking mechanism provided in the floor surface, the seat cushion locking mechanism engaging with the lock shaft to lock a horizontal state of the seat cushion on the floor surface.
Abstract:
There is provided a laminated body comprising a first resin layer consisting of a first fibrous base material and a resin and a second resin layer consisting of a second fibrous base material and a resin, wherein the first resin layer and the second resin layer are disposed such that the first resin layer and the second resin layer are at least partly positioned in separate regions separated by the center line in a thickness direction of the laminated body; wherein at least one of the first fibrous base material and the second fibrous base material has a bowing region where a bowing region is a region in which a smaller warp/weft crossing angle is less than 90° in the fibrous base material; and wherein in the bowing region, an angle formed by a warp of the first fibrous base material and a warp of the second fibrous base material and an angle formed by a weft of the first fibrous base material and a weft of the second fibrous base material, whichever is larger, is 2° or less.
Abstract:
A stowable rear seat, wherein a seat back section comprises: a seat back body stood in a floor surface so as to tilt freely; a seat back locking mechanism that locks the tilting of the seat back body; and a swinging member that swings in the forward/backward direction in conjunction with the tilting movement of the seat back body when the lock of the seat back locking mechanism is released and the seat back body tilts. The seat cushion section of the stowable rear seat comprises: a seat cushion body freely housed in the underfoot floor surface and arranged horizontally in the floor surface in front of the seat back body, and a seat cushion locking mechanism that locks the seat cushion body in a horizontal state on the floor surface.
Abstract:
A substrate (3) has a build-up layer in which insulating layers containing a resin and conductor interconnect layers (312) are alternately laminated and the conductor interconnect layers (312) are mutually connected through the conductor layer formed in a via-hole of the insulating layer. A conductor interconnect layer (312D) arranged on the outermost surface side of a substrate among the conductor interconnect layers (312) has a plurality of signal lines (312D1) formed in a signal line arrangement area (A) and extended in a predetermined direction. When αsig-x represents a coefficient of thermal expansion in a direction substantially parallel to the signal lines (312D1) in the signal line arrangement area (A) having the signal lines (312D1) as determined by a laser speckle method and αsig-y represents a coefficient of thermal expansion in a direction substantially orthogonal to the signal lines as determined by a laser speckle method, a dependence rate in the signal line direction of a coefficient of thermal expansion represented by the following equation is 25 or less. Dependence rate in the signal line direction of the coefficient of thermal expansion=(|αsig-y−αsig-x|/αsig-x)×100.
Abstract:
A stowable rear seat includes a seat back unit; and a seat cushion unit. The seat back unit includes a tiltable seat back erected on a floor surface; a seat back locking mechanism for locking a tilt of the seat back; and a rocking member rocking in cooperation with a tilting operation of the seat back after unlocking the seat back locking mechanism. The seat cushion unit includes a seat cushion horizontally placed on the floor surface in front of the seat back, the seat cushion being foldable on a foot floor surface at a lower position than the floor surface; a lock shaft provided at a back end of the seat cushion; and a seat cushion locking mechanism provided in the floor surface, the seat cushion locking mechanism engaging with the lock shaft to lock a horizontal state of the seat cushion on the floor surface.
Abstract:
A method for manufacturing a base material having a gold-plated metal fine pattern is disclosed, comprising the steps of preparing a base material having a supporting surface made of a resin; forming a primer resin layer having surface roughness of 0.5 μm or less on the supporting surface, and forming a metal fine pattern thereon by an SAP process to obtain a base material having a metal fine pattern; and applying a gold-plating treatment to at least one part of a surface of the metal fine pattern; wherein the base material having a metal fine pattern is subjected to a palladium removal treatment in an optional stage before carrying out the gold-plating treatment.
Abstract:
The present invention is to provide a printed wiring board having a fine wiring formed on a resin base material by the semi-additive method, and is also to provide an electroless copper plating method capable of producing the printed wiring board, a method for producing a printed wiring board using the electroless copper plating method, a printed wiring board produced by the production method, and a semiconductor device provided with the printed wiring board. An electroless copper plating method comprising the step of performing acid treatment before an electroless copper plating step including cleaner, providing palladium catalyst, palladium reduction, and electroless copper plating process, a method for producing a printed wiring board using the electroless copper plating method, a printed wiring board produced by the method for producing the printed wiring board, and a semiconductor device provided with the printed wiring board.
Abstract:
A flip-chip semiconductor package and method of manufacture thereof, the flip-chip semiconductor being highly reliable due to suppression of cracking. The flip-chip semiconductor package is formed by flip-chip bonding of a semiconductor chip-connecting electrode surface of a circuit board 1 and an electrode surface of a semiconductor chip 2, dispensing of an encapsulation resin 4 between the circuit board 1 and the semiconductor chip 2, and formation of fillet 4b by providing the encapsulation resin 4 on peripheral side portions of the semiconductor chip, the fillet 4b having inclined surfaces extending from upper edges 2a of the peripheral side portions of the semiconductor chip 2 outward toward the circuit board, wherein the angle of inclination formed between the inclined surfaces and the peripheral side portions of the semiconductor chip 2 is 50 degrees or less in the vicinity of the upper edges of the peripheral side portions 2a of the semiconductor chip.
Abstract:
There is provided a laminated body comprising a first resin layer consisting of a first fibrous base material and a resin and a second resin layer consisting of a second fibrous base material and a resin, wherein the first resin layer and the second resin layer are disposed such that the first resin layer and the second resin layer are at least partly positioned in separate regions separated by the center line in a thickness direction of the laminated body; wherein at least one of the first fibrous base material and the second fibrous base material has a bowing region where a bowing region is a region in which a smaller warp/weft crossing angle is less than 90° in the fibrous base material; and wherein in the bowing region, an angle formed by a warp of the first fibrous base material and a warp of the second fibrous base material and an angle formed by a weft of the first fibrous base material and a weft of the second fibrous base material, whichever is larger, is 2° or less.