QS Technology F86 Installation Manual

Milling controller
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Summary of Contents for QS Technology F86

  • Page 2: Table Of Contents

    F86 Milling Controller Installation manual CONTENT PART 1 – OVERVIEW OF CONTROLLER ....................3 1.1 INSTALLATION DIAGRAM…………………………………………………………………………………………………………………… 3 PART 2 – OVERVIEW CONNECTION .....................5 2.1 CONNECTION DIAGRAM……………………………………………………………………………………………………………………. 6 2.2 INPUT LOW DIAGRAM……………………………………………………………………………………………………………………… 12 2.3 HIGH INPUT DIAGRAM…………………………………………………………………………………………………………………….. 13 2.4 LOW OUTPUT DIAGRAM………………………………………………………………………………………………………………….. 14 2.5 CONNECTION DIAGRAM PULSE CONTROL, DIRECTION Z PHASE FROM SERVO…………………………………..15...
  • Page 3: Part 1 - Overview Of Controller

    F86 Milling Controller Installation manual PART 1 P a g e Modified: 25-04-2024...
  • Page 4: Installation Diagram

    F86 Milling Controller Installation manual 1.1 INSTALLATION DIAGRAM P a g e Modified: 25-04-2024...
  • Page 5: Part 2 - Overview Connection

    F86 Milling Controller Installation manual PART 2 P a g e Modified: 25-04-2024...
  • Page 6: Connection Diagram

    F86 Milling Controller Installation manual 2.1 CONNECTION DIAGRAM PORT TABLE PORT PINS DESCRIPTION CR2032 battery for data backup. When the battery is out, the controller will not able to save the data of RAM: User parameter, OFFSET value, Position and on the screen will display “Battery Alarm”.
  • Page 7 F86 Milling Controller Installation manual Included: D+ : Differential non-reversible signal D- : Reverse differential signal FG : Connect to shield wire Included: (P7-) và (P7+) is a pair of differental signal. (P7-) reverse differential signal pin (PUL-) of axis 7 combie with (PUL+) to broadcast pulse signal to control Driver and Servo DA.V...
  • Page 8 F86 Milling Controller Installation manual USB 2.0 port Connect with operation keyboard Control Servo Motor of axis 1: Z1- : Input pins of reverse differential signal from Z phase encoder. Z1+ : Input pins of differential non- reversible signal from Z phase.
  • Page 9 F86 Milling Controller Installation manual to broadcast pulse signal to control Driver and Servo motor. P2+ : Output pin of differential non- reversible signal of axis 2, combie with (PUL-) to broadcast pulse signal to control Driver and Servo motor.
  • Page 10 F86 Milling Controller Installation manual P4- : Output pins of reverse differential signal (PUL-) of axis 4, combie with (PUL+) to broadcast pulse signal to control Driver and Servo motor. P4+ : Output pin of differential non- reversible signal of axis 4, combie with (PUL-) to broadcast pulse signal to control Driver and Servo motor.
  • Page 11 F86 Milling Controller Installation manual P6- : Output pins of reverse differential signal (PUL-) of axis 6, combie with (PUL+) to broadcast pulse signal to control Driver and Servo motor. P6+ : Output pin of differential non- reversible signal of axis 6, combie with (PUL-) to broadcast pulse signal to control Driver and Servo motor.
  • Page 12: Input Low Diagram

    F86 Milling Controller Installation manual 2.2 INPUT LOW DIAGRAM CN16 CN17 CN18 12 | P a g e Modified: 25-04-2024...
  • Page 13: High Input Diagram

    F86 Milling Controller Installation manual 2.3 HIGH INPUT DIAGRAM CN16 CN17 CN18 13 | P a g e Modified: 25-04-2024...
  • Page 14: Low Output Diagram

    F86 Milling Controller Installation manual 2.4 LOW OUTPUT DIAGRAM 14 | P a g e Modified: 25-04-2024...
  • Page 15: Connection Diagram Pulse Control, Direction Z Phase From Servo

    F86 Milling Controller Installation manual 2.5 CONNECTION DIAGRAM PULSE CONTROL, DIRECTION Z PHASE FROM SERVO 15 | P a g e Modified: 25-04-2024...
  • Page 16 F86 Milling Controller Installation manual 16 | P a g e Modified: 25-04-2024...
  • Page 17 F86 Milling Controller Installation manual 17 | P a g e Modified: 25-04-2024...
  • Page 18 F86 Milling Controller Installation manual NOTE: Symbol of differential: The circle is correspond to the reversal signal and were specified by “ – “ symbol. The straight line is correspond to the non-reversible singal and were spedified by “ + “ symbol.
  • Page 19: Inverter Wiring Diagram For Pulse, Analog Input

    F86 Milling Controller Installation manual 2.6 INVERTER WIRING DIAGRAM FOR PULSE, ANALOG INPUT NOTE: The pulse output for the inverter is independent of the analog output. Analog output (0-10V) and (4-20mA) was controlled simultaneously and not seperated. 19 | P a g e...
  • Page 20: Handwheel Wiring Diagram

    F86 Milling Controller Installation manual 2.6 HANDWHEEL WIRING DIAGRAM 2.6.1 USE FOR DIFFERENTIAL OUTPUT SIGNAL OF 4 AXIS HANDWHEEL 20 | P a g e Modified: 25-04-2024...
  • Page 21: Use For Npn Output Signal Of 4 Axis Handwheel

    F86 Milling Controller Installation manual 2.6.2 USE FOR NPN OUTPUT SIGNAL OF 4 AXIS HANDWHEEL 21 | P a g e Modified: 25-04-2024...
  • Page 22: Use For Pnp Output Signal Of 4 Axis Handwheel

    F86 Milling Controller Installation manual 2.6.3 USE FOR PNP OUTPUT SIGNAL OF 4 AXIS HANDWHEEL 22 | P a g e Modified: 25-04-2024...
  • Page 23: Use For Differential Ouput Signal Of 6 Axis Handwheel

    F86 Milling Controller Installation manual 2.6.4 USE FOR DIFFERENTIAL OUPUT SIGNAL OF 6 AXIS HANDWHEEL 23 | P a g e Modified: 25-04-2024...
  • Page 24: Use For Npn Output Signal Of 6 Axis Handwheel

    F86 Milling Controller Installation manual 2.6.5 USE FOR NPN OUTPUT SIGNAL OF 6 AXIS HANDWHEEL 24 | P a g e Modified: 25-04-2024...
  • Page 25: Use For Pnp Output Signal Of 6 Axis Handwheel

    F86 Milling Controller Installation manual 2.6.6 USE FOR PNP OUTPUT SIGNAL OF 6 AXIS HANDWHEEL 25 | P a g e Modified: 25-04-2024...
  • Page 26: Rs485, I/O-Link

    F86 Milling Controller Installation manual 2.7 RS485, I/O-LINK Connection diagram from the controller to I/O_LINK_32_V1.1_0722 board. CN10, CN11 IO_LINK_32_v1.1_0722 CONTROLLER Serial connection diagram from I/O_LINK_32_V1.1_0722 board to another board. CN10, CN11 IO_LINK_32_v1.1_0722 IO_LINK_DEVICE 2.8 POWER CONNECTION CONTROLLER 24 V 26 |...

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