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The unit is designed for automatic loading of unpopulated PCB's onto the line using suction cups. The top PCB is lifted from stack and lowered onto belt segment.
The unit provides automatic magazine change-over for continuous AOI/SPI system loading and unloading. Boards out/in at the same side of AOI/SPI, and board is sent out from magazine to AOI/SPI system and back to same slot……
The PCB's are collected from upstream machine using attached conveyor and pushed into the magazine.
The unit provides automatic magazine change-over for continuous line unloading. PCB's are collected from an upstream pusher conveyor and pushed into the magazine. Full magazines are offl oaded at an ergonomic low level.
The single magazine buffer can be used as a mid-line loader or unloader, as a LIFO buffer or as a reject buffer.
The PCB's are collected from upstream machine onto a shuttle conveyor and pushed into designated magazine. Shuttle conveyor moves sideways between upstream machine and magazines.
This unit allows buffering of PCB's in LIFO mode. It uses belt segments to hold the PCB over its complete lenght. When adding or extracting a PCB to/from the buffer a drive mechanism engages with the belt segment to smoo……
This unit allows buffering of PCB's in FIFO, LIFO, Pass-through- mode. It uses belt segments to hold the PCB over its complete lenght. When adding or extracting a PCB to/from the buffer a drive mechanism engages with the……
The NG OK vertical buffer is designed to buffer NG and OK board after inspection machine (AOI/SPI) and pass a OK board to next process. NG board will go to the upper conveyor for visual check.
This unit is used to invert/flip PCB's (180°) for 'double-sided' process.
The shuttle conveyor is used for transporting boards from one line into two lines or vice versa. The orientation of the board is not changed during traversing.
This unit can remove glass fiber, dust particles, etc. on top surface of PCB before solder paste printing, and improve production yield. Especially suitable for PCB which is mounted extremely small components.