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JUKI pick and place machine

  • JUKI KE-2070High-speed flexible chip shooter

    JUKI KE-2070High-speed flexible chip shooter

    (1)*Placement head-multi-nozzle laser head(6 nozzles)

    (2)*Placement rate(max)-18,300 cph laser centering (IPC 9850)-4,600 cph vision centering with MNVC (optical)

    (3)*Component range-01005 – 33.5 x 33.5mm

    (4)*Component height(max)-12mm

    (5)*Placement accuracy-±50μm (Cpk ≥ 1)laser centering

    (6)*Board dimension(max)-800 x 460 mm(with long option)

  • JUKI High-Speed Flexible Pick and Place Machine KE-3020VA

    JUKI High-Speed Flexible Pick and Place Machine KE-3020VA

    (1)From 0402(01005) to 74mm square components or 50x150mm

    (2)KE-3020VA

    One multi-nozzle laser head (6 nozzles) plus

    one IC head with CDS sensor (1 nozzle)

    (3)The use of electronic double tape feeders enables mounting of a maximum of 160 component types

    (4)MNVC is standard

    (5)High-speed on-the-fly vision centering

    (When using both high-resolution camera and MNVC)

    (6)High speed feeding of tray components (Option)

    (7)Longer sized PWB in X axis(option)

    (8)PoP placement(option)

  • JUKI SMT RS-1R pick and place machine fast Smart Modular Mounter

    JUKI SMT RS-1R pick and place machine fast Smart Modular Mounter

    JUKI automation system JUKI SMT pick and place machine, PCB chip shooter, SMT chip mounter, SMD placement, SMT pick & place machine, compact modular chip mounter, multi-functional pick n place machine, high speed LED SMT pick and place machine manufacturer, for SMT smart factory.

  • JUKI High-Speed Compact Modular Mounter RX-8

    JUKI High-Speed Compact Modular Mounter RX-8

    Efficient production in made possible via upstream data sharing to square bad mark propagation,

    component supply management while showing real-time status of the production line.

    Communicates and shares information with other equipment

    Bad mark information of the circuit detected by the inspection machine or a machine upstream of the line can be

    propagated to the RX-8 in order to reduce the bad mark recognition timed and imporve productivity.