Abstract:
An exemplary apparatus for wet processing a substrate includes a wet processing system and a water supplying system. The wet processing system includes a preliminary rinsing device, a final rinsing device, and a conveyor. The preliminary rinsing device includes a first tank and a first spraying system above the first tank. The final rinsing device includes a second tank and a second spraying system above the second tank. The conveyor is configured for conveying a substrate from the preliminary rinsing device to the final rinsing device. The water supplying system includes a supply pipe configured for supplying water to the second spraying system, a connecting system communicating the second tank and the first spraying system, and a drain pipe communicating with the first tank.
Abstract:
A method for manufacturing printed circuit board includes steps below. A first electrically conductive layer including a first surface and a second surface at an opposite side thereof to the first surface is provided. A number of first traces directly formed on the second surface. A first insulating layer is formed on the second surface of the first electrically conductive layer and the surface of the first traces. The electrically conductive layer is etched to form a number of second traces, the second traces superpose the first traces, the first traces and the second traces constitute a circuit pattern.
Abstract:
An electroplating method includes steps of: providing a substrate having a first portion and a second portion connected to the first portion; forming a metallic layer on a surface of the second portion; immersing the first portion of the substrate in an electrolyte solution, applying a current to the metallic layer to electroplate the first portion of the substrate with a metal layer; and moving the substrate in a direction away from the electrolyte solution during electroplating the first portion of the substrate. The method can improve a uniformity of the obtained plating layer.
Abstract:
An apparatus for cutting foil strip from a spool includes a holding device, a pulling unit, a cutting unit, a brake unit, a detection unit, and a controller. The supporting is configured for receiving the spool. The pulling unit, the cutting unit, the brake unit are fixed on the holding device. The pulling unit is configured for pulling the foil apart from the spool to the cutting unit. The cutting unit is configured for cutting the foil into pieces. The brake unit is mechanically coupled to the reel and configured for applying a resistance to the spool. The detection unit is mechanically connected with to the reel and configured for sensing the rotation number of the spool. The controller is electronically connected to the sensor and the brake unit and configured for controlling the resistance the brake unit applying to the spool according signal of the detection unit.
Abstract:
A flexible base includes a main region configured for forming flexible printed circuit board units; and two conveying regions respectively arranged on two sides of the main region. Each of the conveying regions includes an insulating substrate, a plurality of sprocket holes, and a patterned supporting layer. The sprocket holes are defined along a lengthwise direction of the insulating substrate. The patterned supporting layer is formed on the insulating substrate. The patterned supporting layer extends from an edge of each sprocket hole towards a periphery region of the corresponding sprocket.
Abstract:
In one embodiment, a holder for holding a flexible printed circuit board includes a main body and at least one securing member. The main body includes a hook portion and a holding member, wherein one of the securing member and the holding member comprises at least one magnet, and the other comprises at least one magnetic portion, at least one magnet or combination thereof such that the securing member capable of being magnetically attached to the holding member.
Abstract:
A method for manufacturing a hollowed printed circuit board includes steps of: providing an electrically conductive layer; laminating a first dielectric layer having a first through opening defined therein on a first surface of the electrically conductive layer; forming a protecting layer on the first surface of the electrically conductive layer in the first opening; creating an electrically conductive pattern in the conductive layer; removing the protecting layer; and laminating a second dielectric layer having a second through opening defined therein on an opposite second surface of the electrically conductive layer in a manner that the first through opening is aligned with the second through opening, thereby a portion of the electrically conductive layer is exposed to exterior through the first through opening and the second through opening.
Abstract:
An exemplary visual inspection apparatus for a flexible printed circuit board includes a frame, an inspection station, a control system, a roller system and a power system. The inspection station is disposed on the frame. The inspection station has an inspection surface for placing the flexible printed circuit board thereon for visual inspection. The roller system includes a first roller for unwinding a flexible printed circuit board therefrom and a second roller for winding up the flexible printed circuit board therearound. The power system includes a driving device and a braking device. The driving device includes a torque motor engaging with the second roller to drive the second roller to roll. The braking device includes a detent engaging with the first roller to stop rolling of the first roller. The control system electrically connects to the power system for controlling the power system.
Abstract:
An apparatus (100) for spraying an etchant solution on a preformed printed circuit board (30) includes a number of feed pipes (40) for supplying the etchant solution and a number of nozzles (45) mounted on the feed pipes. Each of the feed pipes has a middle portion (402) and two end portions (401). The middle portions of the feed pipes are located on a first plane and the end portions of the feed pipes are located on a second plane parallel to the first plane. The number of nozzles are mounted on the middle portion and the two end portions of each feed pipe. The number of nozzles are in fluid communication with the feed pipes.
Abstract:
An exemplary film hole forming apparatus (400) includes a chemical etching system (410) and a driving system (420). The driving system includes a transmission belt, which passes through the chemical etching system. A material of the transmission belt is polytetrafluoroethylene, polytetrafluoroethylene-containing material, polyvinylidene fluoride, metal, or metal-sandwiched composite. An exemplary method for forming film holes includes the following steps: providing a flexible printed circuit board (300) to be etched, with copper holes (321) pre-formed thereat and the copper holes exposing a base film (310) at corresponding positions; and transporting the flexible printed circuit board into a chemical etching system by a transmission belt to form film holes in the base film.