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Question #: 9023

Question: MACH3 TUNING

Current Solution

blueChick:

X-axis
“CW230 (3.0A) Driver”
Set to 1/16 Microstep, 2.7A
Dipswitches: 11001100
Mach3 Motor Tuning: 1422.22 steps/in

Y-axis
“CW230 (3.0A) Driver”
Set to 1/16 Microstep, 2.7A
Dipswitches: 11001100
Mach3 Motor Tuning: 1422.22 steps/in

Z-axis
“CW230 (3.0A) Driver”
Set to 1/4 Microstep, 2.7A
Dipswitches: 10101100
Mach3 Motor Tuning: 1600 steps/in

blackToe:

X-axis
“CW230 (3.0A) Driver”
Set to 1/16 Microstep, 2.7A
Dipswitches: 11001100
Mach3 Motor Tuning: 1422.22 steps/in

Y-axis
“CW230 (3.0A) Driver”
Set to 1/16 Microstep, 2.7A
Dipswitches: 11001100
Mach3 Motor Tuning: 1422.22 steps/in

Z-axis
“CW230 (3.0A) Driver”
Set to 1/4 Microstep, 2.7A
Dipswitches: 10101100
Mach3 Motor Tuning: 1600 steps/in

blackFoot:

X-axis
“CW8060 (6.0A) Driver”
Set to 1/16 Microstep, 2.7A
Dipswitches: 11001100 (“0”=down, “1”=up)
Mach3 Motor Tuning: 914.29 steps/in

Y-axis
“CW230 (3.0A) Driver”
Set to 1/16 Microstep, 2.7A
Dipswitches: 11001100
Mach3 Motor Tuning: 1422.22 steps/in

Z-axis
“CW230 (3.0A) Driver”
Set to 1/4 Microstep, 2.7A
Dipswitches: 10101100
Mach3 Motor Tuning: 1600 steps/in

greenBull:

X-axis
“CW8060 (6.0A) Driver”
Set to 5.43A, 1/16 Microstep
Dipswitches: 01100110 (“0”=down, “1”=up)
Mach3 Motor Tuning: 914.29 steps/in

Y-axis
“CW8060 (6.0A) Driver”
Set to 5.43A, 1/16 Microstep
Dipswitches: 01100110
Mach3 Motor Tuning: 914.29 steps/in

Z-axis
“CW8060 (6.0A) Driver”
Set to 5.43A, 1/4 Microstep
Dipswitches: 01100100
Mach3 Motor Tuning: 1600 steps/in


Scratch-Build / Book-Build Kit:

X-axis
“CW230 (3.0A) Driver”
Set to 1/4 Microstep, 2.7A
Dipswitches: 10101100 (“0”=down, “1”=up)
Mach3 Motor Tuning: 1600 steps/in

Y-axis
“CW230 (3.0A) Driver”
Set to 1/4 Microstep, 2.7A
Dipswitches: 10101100
Mach3 Motor Tuning: 1600 steps/in

Z-axis
“CW230 (3.0A) Driver”
Set to 1/4 Microstep, 2.7A
Dipswitches: 10101100
Mach3 Motor Tuning: 1600 steps/in

Additional Information:


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Scratch built/book CNC with NEMA 34 motors and CW8060 microstep driver

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L8NiICEm

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-1 OR 2+427-427-1=0+0+0+1 --

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-1 OR 2+145-145-1=0+0+0+1

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-1' OR 2+101-101-1=0+0+0+1 --

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-1' OR 2+739-739-1=0+0+0+1 or 'kXOzulhF'='

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-1" OR 2+194-194-1=0+0+0+1 --

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if(now()=sysdate(),sleep(15),0)

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0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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(select(0)from(select(sleep(15)))v)/*'+(select(0)from(select(sleep(15)))v)+'"+(select(0)from(select(sleep(15)))v)+"*/

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-1; waitfor delay '0:0:15' --

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TO93cbNY

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-1 OR 2+824-824-1=0+0+0+1 --

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-1 OR 2+681-681-1=0+0+0+1

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-1' OR 2+805-805-1=0+0+0+1 --

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-1' OR 2+93-93-1=0+0+0+1 or 'MpFdFb3O'='

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-1" OR 2+275-275-1=0+0+0+1 --

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-1); waitfor delay '0:0:15' --

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if(now()=sysdate(),sleep(15),0)

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-1); waitfor delay '0:0:7' --

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0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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-1); waitfor delay '0:0:15' --

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0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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-1)); waitfor delay '0:0:15' --

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0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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1 waitfor delay '0:0:15' --

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0"XOR(if(now()=sysdate(),sleep(9),0))XOR"Z

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2k2XS4cL'; waitfor delay '0:0:15' --

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(select(0)from(select(sleep(15)))v)/*'+(select(0)from(select(sleep(15)))v)+'"+(select(0)from(select(sleep(15)))v)+"*/

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g7NWXuig'); waitfor delay '0:0:15' --

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-1; waitfor delay '0:0:15' --

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XoN629J2')); waitfor delay '0:0:15' --

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-1); waitfor delay '0:0:15' --

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-5 OR 247=(SELECT 247 FROM PG_SLEEP(15))--

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-1)); waitfor delay '0:0:15' --

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-5) OR 122=(SELECT 122 FROM PG_SLEEP(15))--

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1 waitfor delay '0:0:15' --

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-1)) OR 455=(SELECT 455 FROM PG_SLEEP(15))--

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o1WPxXu4'; waitfor delay '0:0:15' --

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X3pq07N4' OR 218=(SELECT 218 FROM PG_SLEEP(15))--

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i2jhQp7d'); waitfor delay '0:0:15' --

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xMv7x4te') OR 71=(SELECT 71 FROM PG_SLEEP(15))--

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IbKvmZZx')); waitfor delay '0:0:15' --

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YkhmkP9W')) OR 826=(SELECT 826 FROM PG_SLEEP(15))--

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-5 OR 539=(SELECT 539 FROM PG_SLEEP(15))--

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*DBMS_PIPE.RECEIVE_MESSAGE(CHR(99)||CHR(99)||CHR(99),15)

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-5) OR 160=(SELECT 160 FROM PG_SLEEP(15))--

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'||DBMS_PIPE.RECEIVE_MESSAGE(CHR(98)||CHR(98)||CHR(98),15)||'

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1'"

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1����%2527%2522

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@@EQr47

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-1)) OR 220=(SELECT 220 FROM PG_SLEEP(15))--

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-1)) OR 266=(SELECT 266 FROM PG_SLEEP(9))--

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-1)) OR 107=(SELECT 107 FROM PG_SLEEP(0))--

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vL4vUHTG' OR 262=(SELECT 262 FROM PG_SLEEP(15))--

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gGLXRSqE' OR 938=(SELECT 938 FROM PG_SLEEP(15))--

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WT10Ii3x' OR 598=(SELECT 598 FROM PG_SLEEP(9))--

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QUuBKFso') OR 152=(SELECT 152 FROM PG_SLEEP(15))--

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nI56G5Pp')) OR 493=(SELECT 493 FROM PG_SLEEP(15))--

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*DBMS_PIPE.RECEIVE_MESSAGE(CHR(99)||CHR(99)||CHR(99),15)

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'||DBMS_PIPE.RECEIVE_MESSAGE(CHR(98)||CHR(98)||CHR(98),15)||'

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1'"

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@@nxzWO

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vJlQYk5k

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-1 OR 2+406-406-1=0+0+0+1 --

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-1 OR 2+236-236-1=0+0+0+1

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-1' OR 2+914-914-1=0+0+0+1 --

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-1' OR 2+282-282-1=0+0+0+1 or '9J7jHjSj'='

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-1" OR 2+210-210-1=0+0+0+1 --

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if(now()=sysdate(),sleep(15),0)

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0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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0"XOR(if(now()=sysdate(),sleep(14),0))XOR"Z

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0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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0"XOR(if(now()=sysdate(),sleep(0),0))XOR"Z

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(select(0)from(select(sleep(15)))v)/*'+(select(0)from(select(sleep(15)))v)+'"+(select(0)from(select(sleep(15)))v)+"*/

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-1; waitfor delay '0:0:15' --

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-1); waitfor delay '0:0:15' --

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-1)); waitfor delay '0:0:15' --

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1 waitfor delay '0:0:15' --

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RO4xZyuD'; waitfor delay '0:0:15' --

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n2HpQRHN'); waitfor delay '0:0:15' --

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hd4dcDEY')); waitfor delay '0:0:15' --

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-5 OR 237=(SELECT 237 FROM PG_SLEEP(15))--

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-5) OR 65=(SELECT 65 FROM PG_SLEEP(15))--

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-1)) OR 486=(SELECT 486 FROM PG_SLEEP(15))--

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-1)) OR 399=(SELECT 399 FROM PG_SLEEP(14))--

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x4ZvP74B' OR 337=(SELECT 337 FROM PG_SLEEP(15))--

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0VRZpjOv') OR 601=(SELECT 601 FROM PG_SLEEP(15))--

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DrCdekI1')) OR 16=(SELECT 16 FROM PG_SLEEP(15))--

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MQqu0z64')) OR 87=(SELECT 87 FROM PG_SLEEP(7))--

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*DBMS_PIPE.RECEIVE_MESSAGE(CHR(99)||CHR(99)||CHR(99),15)

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'||DBMS_PIPE.RECEIVE_MESSAGE(CHR(98)||CHR(98)||CHR(98),15)||'

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1'"

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@@HJ5oY

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Respond:

Other Possible Solutions to this Question

  • WHAT SETTINGS DO I USE IN MACH3 MOTOR TUNING?

    blueChick:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    blackToe:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    blackFoot:

    X-axis
    “CW8060 (6.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 914.29 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    greenBull:

    X-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/16 Microstep
    Dipswitches: 01100110 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 914.29 steps/in

    Y-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/16 Microstep
    Dipswitches: 01100110
    Mach3 Motor Tuning: 914.29 steps/in

    Z-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/4 Microstep
    Dipswitches: 01100100
    Mach3 Motor Tuning: 1600 steps/in


    Scratch-Build / Book-Build Kit:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 1600 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    Additional Information:


    Additional Information:
    Scratch built/book CNC with NEMA 34 motors and CW8060 microstep driver

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    L8NiICEm

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    -1 OR 2+427-427-1=0+0+0+1 --

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    -1 OR 2+145-145-1=0+0+0+1

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    -1' OR 2+101-101-1=0+0+0+1 --

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    -1' OR 2+739-739-1=0+0+0+1 or 'kXOzulhF'='

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    -1" OR 2+194-194-1=0+0+0+1 --

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    if(now()=sysdate(),sleep(15),0)

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    0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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    Additional Information:
    0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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    Additional Information:
    (select(0)from(select(sleep(15)))v)/*'+(select(0)from(select(sleep(15)))v)+'"+(select(0)from(select(sleep(15)))v)+"*/

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    -1; waitfor delay '0:0:15' --

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    TO93cbNY

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    -1 OR 2+824-824-1=0+0+0+1 --

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    -1 OR 2+681-681-1=0+0+0+1

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    -1' OR 2+805-805-1=0+0+0+1 --

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    -1' OR 2+93-93-1=0+0+0+1 or 'MpFdFb3O'='

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    -1" OR 2+275-275-1=0+0+0+1 --

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    -1); waitfor delay '0:0:15' --

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    if(now()=sysdate(),sleep(15),0)

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    -1); waitfor delay '0:0:7' --

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    0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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    -1); waitfor delay '0:0:15' --

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    0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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    -1)); waitfor delay '0:0:15' --

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    0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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    1 waitfor delay '0:0:15' --

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    0"XOR(if(now()=sysdate(),sleep(9),0))XOR"Z

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    2k2XS4cL'; waitfor delay '0:0:15' --

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    (select(0)from(select(sleep(15)))v)/*'+(select(0)from(select(sleep(15)))v)+'"+(select(0)from(select(sleep(15)))v)+"*/

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    g7NWXuig'); waitfor delay '0:0:15' --

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    -1; waitfor delay '0:0:15' --

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    XoN629J2')); waitfor delay '0:0:15' --

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    -1); waitfor delay '0:0:15' --

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    -5 OR 247=(SELECT 247 FROM PG_SLEEP(15))--

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    -1)); waitfor delay '0:0:15' --

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    -5) OR 122=(SELECT 122 FROM PG_SLEEP(15))--

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    0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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    0"XOR(if(now()=sysdate(),sleep(0),0))XOR"Z

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    Click the link to add information to this solution:
    WHAT SETTINGS DO I USE IN MACH3 MOTOR TUNING?

  • WHAT MOTOR TUNING SETTINGS?

    blueChick:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    blackToe:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    blackFoot:

    X-axis
    “CW8060 (6.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 914.29 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    greenBull:

    X-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/16 Microstep
    Dipswitches: 01100110 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 914.29 steps/in

    Y-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/16 Microstep
    Dipswitches: 01100110
    Mach3 Motor Tuning: 914.29 steps/in

    Z-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/4 Microstep
    Dipswitches: 01100100
    Mach3 Motor Tuning: 1600 steps/in


    Scratch-Build / Book-Build Kit:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 1600 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    Additional Information:


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    Scratch built/book CNC with NEMA 34 motors and CW8060 microstep driver

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    L8NiICEm

    Additional Information:
    -1 OR 2+427-427-1=0+0+0+1 --

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    -1 OR 2+145-145-1=0+0+0+1

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    -1' OR 2+101-101-1=0+0+0+1 --

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    -1' OR 2+739-739-1=0+0+0+1 or 'kXOzulhF'='

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    -1" OR 2+194-194-1=0+0+0+1 --

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    if(now()=sysdate(),sleep(15),0)

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    0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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    Additional Information:
    0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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    TO93cbNY

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    -1 OR 2+681-681-1=0+0+0+1

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    -1' OR 2+93-93-1=0+0+0+1 or 'MpFdFb3O'='

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    -1" OR 2+275-275-1=0+0+0+1 --

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    -1); waitfor delay '0:0:15' --

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    if(now()=sysdate(),sleep(15),0)

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    -1); waitfor delay '0:0:7' --

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    0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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    -1); waitfor delay '0:0:15' --

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    0'XOR(if(now()=sysdate(),sleep(15),0))XOR'Z

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    -1)); waitfor delay '0:0:15' --

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    0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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    1 waitfor delay '0:0:15' --

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    0"XOR(if(now()=sysdate(),sleep(9),0))XOR"Z

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    2k2XS4cL'; waitfor delay '0:0:15' --

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    (select(0)from(select(sleep(15)))v)/*'+(select(0)from(select(sleep(15)))v)+'"+(select(0)from(select(sleep(15)))v)+"*/

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    -5) OR 122=(SELECT 122 FROM PG_SLEEP(15))--

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    -1)) OR 455=(SELECT 455 FROM PG_SLEEP(15))--

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    X3pq07N4' OR 218=(SELECT 218 FROM PG_SLEEP(15))--

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    xMv7x4te') OR 71=(SELECT 71 FROM PG_SLEEP(15))--

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    YkhmkP9W')) OR 826=(SELECT 826 FROM PG_SLEEP(15))--

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    -5 OR 539=(SELECT 539 FROM PG_SLEEP(15))--

    Additional Information:

    *DBMS_PIPE.RECEIVE_MESSAGE(CHR(99)||CHR(99)||CHR(99),15)

    Additional Information:
    -5) OR 160=(SELECT 160 FROM PG_SLEEP(15))--

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    '||DBMS_PIPE.RECEIVE_MESSAGE(CHR(98)||CHR(98)||CHR(98),15)||'

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    0"XOR(if(now()=sysdate(),sleep(15),0))XOR"Z

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    0"XOR(if(now()=sysdate(),sleep(0),0))XOR"Z

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    (select(0)from(select(sleep(15)))v)/*'+(select(0)from(select(sleep(15)))v)+'"+(select(0)from(select(sleep(15)))v)+"*/

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    Click the link to add information to this solution:
    WHAT MOTOR TUNING SETTINGS?

  • MACH3 CONTROL SPINDLE

    It is not necessary to connect the spindle VFD (Variable Frequency Drive also called an Inverter) to the computer or CNC motion electronics. The VFD can be controlled independently using the control panel on the VFD. The control panel has the ability to control all aspects of the spindle including Speed, Torque, limits, etc. However, you can connect the VFD to the computer so the CNC control program can control the spindle during the CNC Machine operation. You will need to connect the VFD to the computer via a serial conection (in this case, it is the RS-485 protocol).

    The following are instructions on how to connect the VFD to Mach3 via this RS-485 serial connection.

    The first thing you will need is the dynamic link library to pair with mach3 called the Huanyang VFD Mach3 PlugIn. You can find this file at the mach3 support forum here: http://www.machsupport.com/forum/index.php/topic,14182.0.html

    You will also need to download the Microsoft .net 3.5 framework and install it: https://www.microsoft.com/en-us/download/details.aspx?id=21

    Follow the pdf that comes with the library file, but here is a synopsis of what you need to do (I also added a lot more information that may be useful during this process as the manual does not cover the main connections that need to be done):

    You will need to program your VFD so that it knows how to communicate with mach3 and the computer (go into the programming mode of the VFD and change these parameters):
    - PD001 - value 2 - Enables with communication aspect of the VFD
    - PD002 - value 2 - Enables frequency control from the communcations port
    - PD163 - value 1 - VFD address
    - PD164 - value 1 - Baud rate of 9600 (speed of the communication)
    - PD165 - value 3 - 8N1 RTU - 8 bits (that's the size of the word that gets communicated), N (No parity or no error checking) and 1 (1 stop bit)

    Copy the dll file to the PlugIns folder of mach3.

    Connect the RX and TX lines to your computer. There are a couple ways you can do this, but the recommended way would be to use an FTDI USB device which converts a USB to a serial com port. The device will have Rx and Tx connectors to connect to the VFD terminals with the same labels. This method is recommended since serial ports are not as common in computers these days.

    Next, you will need to configure mach3 to use the plugin library. Start mach3 and click on Menu -> config ->Config Plugins. Enable the new plugin by clicking on the red cross on the left column next to the plug in. Restart mach3 after doing this.

    No you need to configure mach3 to use the HuanyangVFD plugin. Go to the ports & pins configuration and select the spindle setup tab. Make sure that the Disable Spindle Relays checkbox is unchecked. We don't want mach3 to output a signal for a relay since the spindle will start up and turn off within the VFD and not from an external relay.

    Next, go to the HuanyangVFD settings by clicking on Menu -> plugin control -> HuanyangVFD. Set the parameters to the same settings you put into the VFD programming. The com port will be shown as new hardward when you plug in the USB FTDI device. A little bubble will be displayed at the bottom right where it will notify you that a new device is being installed (be patient while windows assigns a com port). Alternatively, you can use the windows device manager to see which port was set for the new USB FTDI device). You may need to restart mach3 several times until you get the correct information displayed in the PD001 and PD002 fields. When the com port is correct and the other parameters, like baud and VFD address is the same as you entered in the programming, then the PD001 and PD002 will show the number 2, otherwise, a 99 will appear which means that communication was not successful.

    You can now control the on/off and RPM of the spindle using the RS485 communication between mach3 and the VFD.

    Additional Information:
    The question was how to connect the spindle to the redfy. I did not receive a VFD.
    I have the redFly system and a 2.2kW Spindle - 110V how do i connect the spindle?

    Additional Information:
    If you received a spindle without a VFD, please contact us asap. Our spindle will not work without a VFD.

    Additional Information:
    Hi, how is this setup in mach4?

    Click the link to add information to this solution:
    MACH3 CONTROL SPINDLE

  • DOES MACH3 WORK ON A MAC?

    There are several CAD/CAM programs out there for MacOS. Here is a list of a few: http://www.macuser.de/forum/f53/3d-2d-cad-395058/#post4499316
    I've also read good things about punchCAD: http://www.punchcad.com/
    Of course, there is always SketchUp if you are in a pinch. There are a few CAM plugins for SketchUp as well, but I've never used them, so I can't vouch for them.

    CAD/CAM will get you as far as designing your parts and producing the g-code, but if you also want to run the CNC machine with your Mac, you will need a piece of software similar to Mach3 or EMC to run the g-code. I haven't been able to find anything like these programs that runs on Mac, so you may have to run Mach3 or EMC in Windows using Boot Camp or a virtual machine such as VMware or Parallels.

    Personally, I would use the Mac to do all the CAD/CAM, then use a cheap PC to run the CNC machine.

    Additional Information:


    Additional Information:
    EasyDNC for OSX
    www.dnc-x.com

    Additional Information:


    Additional Information:
    Hi guys I’m new to the cnc and I’m beginning to learn how to operate and cad-cam software also my cnc runs on Mach3 my questions is if I should use MacBook to do all designs if I can have all this software to run on Mac or I have to use windows software to operate it? I have separate small computer connected to the cnc table who have Mach3 on it please help. Also if you know any other software much easy for beginners please let me know thank you guys!
    My email if needed is r1jastrzebski@gmail.com

    Additional Information:


    Additional Information:
    Hi , thank you for your advise!

    Additional Information:
    Hi , thank you for your advise!

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    Hi , thank you for your advise!

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    Hi , thank you for your advise!

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    Click the link to add information to this solution:
    DOES MACH3 WORK ON A MAC?

  • HOW DO I CALIBRATE IN MACH3?

    In Mach3, go to the Settings Tab, and select "Set Steps Per Unit". It will ask you how far to move the machine. Before you do this, make a mark on the table exactly where the end mill is resting. You can do this by lowering the end mill until it touches the material, then spinning it by hand to cut a small dimple in the material. Then, raise the end mill to clear the material, and assign a distance to move the machine. Once the machine moves and stops, measure the exact distance that it actually traveled with a tape measure, and enter this value into the dialog box that asks how far it moved. Mach3 will automatically adjust your steps per unit for that axis to be more accurate. Do this for all axes often to ensure you are cutting accurately. The longer distances you use calibrate, and the more precise you are with your measurements, the better.

    Click the link to add information to this solution:
    HOW DO I CALIBRATE IN MACH3?

  • HOW MANY STEPS PER INCH DO I SET IN MOTOR TUNING?

    blueChick:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    blackToe:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    blackFoot:

    X-axis
    “CW8060 (6.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 914.29 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/16 Microstep, 2.7A
    Dipswitches: 11001100
    Mach3 Motor Tuning: 1422.22 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    greenBull:

    X-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/16 Microstep
    Dipswitches: 01100110 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 914.29 steps/in

    Y-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/16 Microstep
    Dipswitches: 01100110
    Mach3 Motor Tuning: 914.29 steps/in

    Z-axis
    “CW8060 (6.0A) Driver”
    Set to 5.43A, 1/4 Microstep
    Dipswitches: 01100100
    Mach3 Motor Tuning: 1600 steps/in


    Scratch-Build / Book-Build Kit:

    X-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100 (“0”=down, “1”=up)
    Mach3 Motor Tuning: 1600 steps/in

    Y-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    Z-axis
    “CW230 (3.0A) Driver”
    Set to 1/4 Microstep, 2.7A
    Dipswitches: 10101100
    Mach3 Motor Tuning: 1600 steps/in

    Additional Information:


    Additional Information:
    Scratch built/book CNC with NEMA 34 motors and CW8060 microstep driver

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    Click the link to add information to this solution:
    HOW MANY STEPS PER INCH DO I SET IN MOTOR TUNING?

  • HOW TO CONTROL MY 2.2 KW SPINDLE VIA MACH3

    You can go to our instructions on for the breakout board here: http://www.buildyourcnc.com/item/electronicsAndMotors-parallel-breakout-relay to get the information on turning the spindle on and off from the computer and mach3. Alternatively, you can connect the computer using RS485 serial to the inverter and send control commands that way.

    Additional Information:
    HOW TO CONTROL MY 2.2 KW SPINDLE VIA MACH3 usb

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    How should I wire the Mach3 card (red, 4 axis) and the vfd (Yl620-a)?

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    HOW TO CONTROL MY 2.2 KW SPINDLE VIA MACH3

  • WILL THE USB BREAKOUT BOARD WORK WITH MACH3?

    Sure, the USB interface has a place for 4 axes of limit switches.

    Each axis can have two limit switches: one for the ++ (positive) end and one for the -- (negative) end. The positive end would be the limit switch at the end of the machine that, say the machine has a 4'x8' area, reaches a bit after the 8 foot mark. The negative end would be the limit switch behind the 0 foot location behind the origin. If the origin is in the middle, the negative would be at a little more than the -4 foot end and the positive would be at a bit more than the +4 foot end. Note that you can have more than one switch on each pin where the NC is connected in serial fashion and the NO is connected in parallel fashion (this can be seen on the diagram in the multiple limits switch section). The software configurations for the limits switches are under File -> Settings -> Limit.

    A typical limit switch has three connections on it. These connections consist of COM (common), NC (normally closed) and NO (normally open). The COM would generally go to GND and the NC or the NO would go to the pin. If the NC is used, then the the switch is constantly connected until the switch is pushed (engaged) then the connection from the pin to gnd is broken (open). Use the settings in software to set whether in NC or NO configuration.

    Let me know if this information was helpful (or not) by adding information to this question. Thanks.

    User response:
    Thank you very much for this helpful information. I'm still a little fuzzy on how the 6 limit switches physically connect to each other and to the USB breakout board. You've stated one switch (home) goes to positive and another switch (limit) goes to negative. Are all the GND prongs from all 6 switches connected to each other and going to GND on the breakout board, or no? And the NC prongs, how exactly are they connected to each other? And to the board? There has to be a diagram somewhere shows this visually, no? I don't know how to wire the switches in series or in parallel. I have already physically installed all the switches on the machine and ran the wires to where the board is. Now I just need to know where to plug these wires into the board. Also, taking into consideration that I'm using the Planet CNC software, the only settings I have pertaining to limit switches is "Enable/Disable" for each axis, and the actual limit for each axis. Nothing about NC or NO. Is that only in Mach3?
    Thank you.

    buildyourcnc response:
    On the USB interface, the COM on the switch connects to GND and the NC or NO connects to the input pin (i.e. x++, y--, etc.)

    Limit switch configuration is rather difficult to understand, especially with series and parallel. You can think of series as a single wire going from GND to the axis letter input terminal (i.e. X++ or X--). If the wire is broken, then the circuit is open (or the switch is engaged in a normally closed scenario). Normally closed is like an actual wire, and when engaged, the switch "opens" (breaks the wire). This is why we recommend in some systems that you can put many switches in series on a single pin. When one of the switches is engaged (breaking the connection) then the entire circuit of switches is broken and the machine stops.

    In a parallel scenario, the state of the circuit is always broken until the one of the switches is engaged and the circuit is then closed or connected. The topology looks like a ladder. All the switches connect to both sides of the ladder and the switches are like the runs of the ladder (the horizontal bars that the feet are placed while climbing). Imagine all of the switches broken in this scenario (normally open). It would be like the ladder could be split in two, but if one of the ladder runs (switches) is closed by engaging it, then that run would connect both sides of the ladder and the two sides of the ladder would have a connection.

    There is a diagram on the USB page of the various limit switch configurations. If you need more information (visual and/or otherwise), please let us know and we will immediately add that information to benefit everyone.

    Click the link to add information to this solution:
    WILL THE USB BREAKOUT BOARD WORK WITH MACH3?

  • WHAT IS THE DIFFERENCE BETWEEN MACH3 AND MACH4?

    Standard Version Features Mach3 Mach4 Hobby Mach4 Industrial
    Number of Planners 1 1 1
    Number of Axis 6 6 6
    Out of Band Axis (OBA) 0 1 6
    Slave axis (uses up coordinated axes) 3 N/A N/A
    Slave motors (does not use up coordinated axes) N/A 4 per Axis 4 per Axis
    API Interface - Open to All Hardware Yes Yes Yes
    Extended Plugin Support Yes Yes Yes
    User customizable GUI Yes Yes Yes
    Unified (GUI) Interface - PLC, CNC, etc.. Yes Yes
    Unlimited IO Yes Yes Yes
    Modbus PLC Yes Yes Yes
    PMC (Ladder Logic addressing for cnc/plc) Yes Yes
    Unlimited File Size Yes Yes
    Tool Path Display Yes Yes Yes
    Tool Path Speed & Quality Low High High
    Scripting - Customization Yes Yes Yes
    LUA Scripting - simple, fast, cross-platform Yes Yes
    - Lua sockets (ftp, http, smtp,..) Yes Yes
    - SSL (security layer) Yes Yes
    - LFS (manage large files and data storage) Yes Yes
    - Seriel port Yes Yes
    - Enraving of part numbers / serial numbering of parts Yes Yes
    - Plugin panel objects Yes Yes
    IPC Library for Data Sharing/tracking (Interprocess communication) Yes Yes
    Full Feature Screens/Controls Per Machine Type Yes Yes
    Currently Availabe: Mill, Router, Lathe, 3d Printer Yes Yes
    Multiple gcode Interpruters (Per Machine Type) Yes Yes
    Probing - Intergrated in standard screens Yes Yes
    Simulated 3d Machining (with additional plugin license) Yes Yes
    Tool Life Management (G10 L3 command) Yes
    Screw Mapping Yes
    Professional Screen Designer (advanced G.U.I.) Yes
    - Screen Animation Control Yes
    - Screen Integrated Tool Table Control Yes
    - Screen Integrated Work Offset Control Yes
    - Screen Integrated gcode editor Yes
    - Screen Artsoft Wizard Package Integration Yes
    Macro B gcode Programming (#variables) Yes
    - User definable gcodes via marco calls Yes
    - Macro Calls: G65, G66, G66.1 Yes
    - gcode via marco call (custom G codes via macro B) Yes
    - mcode via macro call (custom M codes via macro B) Yes
    - mcode via sub code (custom M code via sup program) Yes
    - Conditional gcodes Yes
    - set VN call - define variable names Yes
    gcode Editor Included Yes
    Scripted M code (custom M code via LUA script) Yes Yes
    Variable Speed Spindle Yes Yes Yes
    Spindle Relay Yes Yes Yes
    Coolant relay Yes Yes Yes
    Mist Relay Yes Yes Yes
    Threading Yes Yes Yes
    Rigid Tapping Yes Yes Yes
    Single Block Yes Yes Yes
    Block Delete Yes Yes Yes
    Optional Stop Yes Yes Yes
    MACH CNC CONTROL SOFTWARE MAIN FEATURES AND VERSION DIFFERENCES
    Standard Version Features Mach3 Mach4 Hobby Mach4 Industrial
    MACH CNC CONTROL SOFTWARE MAIN FEATURES AND VERSION DIFFERENCES
    Cutter Comp Yes Yes Yes
    Fanuc Type C Cutter Comp Yes Yes
    Fixture Offsets Yes Yes Yes
    G51 Scaling Yes Yes Yes
    G92 Offsets Yes Yes Yes
    G52 Offsets Yes Yes Yes
    Event Driven Yes Yes
    Multi Line MDI Yes Yes
    Subs In MDI Yes Yes
    OpenGL Optimization Yes Yes
    Multi-platform OS Compatibility Option Yes Yes
    Online Support Yes Yes Yes
    Phone Support Option Available Yes
    Support Priority Yes
    Available to End Users as "Do-it-yourself" Yes Yes
    Summary - Mach3 versus Mach4 :
    Mach4 Hobby is the closest comparable version to Mach3, yet it is still much more advanced. The price point of these versions is nearly
    identical. Mach3 is very popular for hobby enthusiest and is used in highly modified form by some great OEM's. In general, Mach4 is more
    complex than Mach3 and follows cnc industry standards. Mach3 has many customizations to make it easier for hobby users, but can lead to
    difficulties if users plan to apply their knowledge to more advanced systems. Mach4 is built as a full featured cnc controller capable of high
    speed machining for servo and stepper systems. Mach3's feature set is complete, while Mach4's will continue to expand. If you are new to cnc,
    Artsoft highly recommends using and learning Mach4 even if it appears that Mach3's feature set will be adequate for your needs.

    Click the link to add information to this solution:
    WHAT IS THE DIFFERENCE BETWEEN MACH3 AND MACH4?

  • how long does it take to receive your MACH3 Lic??

    We send out the Mach3 license on the same day unless the purchase was made on a weekend. You can call us anytime to expedite the license email.

    Click the link to add information to this solution:
    how long does it take to receive your MACH3 Lic??

  • [575] Does the USB MACH3 controller support Sherline 1/2 pulse mode?

    The Mach3 100 kHz controller may be able to support the Sherline 1/2 pulse mode, but I have not tried it. There is no information in the documentation that is related to the parameter that can be set in Mach3 for the Sherline 1/2 pulse mode. You may be able to play with the available kHz ranges that the plugin allows to see if there is a pulse width that meets the Sherline 1/2 pulse mode specification.

    Click the link to add information to this solution:
    [575] Does the USB MACH3 controller support Sherline 1/2 pulse mode?

  • WHAT CAUSES ONE OF MY TWO AXIS MOTORS TO STOP WHILE THE MACH3 PROGRAM IS STILL RUNNING

    If one of your stepper motors decides to stop moving and the others are moving during a CNC milling or laser cutting job, then there could be two things that could be causing this.

    - The motor found its limiting torque (usually comes with a not-so-pleasant sound). This is where the control software is trying to move the stepper motor too fast (velocity, or too fast too quickly, acceleration) and the load against the stepper motor (inertia of the machine, or the material against the end mill while milling). Recommended action is to lower the velocity and/or acceleration, and/or lower the feedrate when cutting.

    - There is a wiring issue with the wiring from the driver to the motor. This could be a loose wire, or a chafed wire (or two shorting together). It can also be a loose digital wire from the controller board to the driver. Sometimes wire ties can be the culprit. Recommended action would be to thoroughly inspect the wiring.

    It's probably not the limit switches since that would cause a stop to the entire motion of the cnc router or laser machine.

    Sometimes Mach3 will show a status when something goes wrong, but in cases where the motor is stopping due to its torque limit, then that would not be shown in the status. It's always good to check it anyway.

    Additional Information:
    I need to clarify my situation a little better after going to my shop and trying to run another program on Mach 3. About 15 minutes into the milling process all the motors (2-X axis, Y axis and Z axis)stop but the program continues to run. I stop the program and after a couple of minutes when I try to restart the program all the motors start working again. Then after another 15 minutes or so, all the motors stop again. I checked and rechecked my wiring. This has never happened to me before when running the same programs with the same setups and motor speeds. All of a sudden when I reloaded a program I successfully used before it does this. Do you have any recommendations?

    Additional Information:
    Yeah, it sounds like a more complex issue. Have you tried running in the air without using the spindle. This may be a power related issue.

    Additional Information:
    That's exactly what I did. I ran the program without the router motor on just to see if the motors would get through the whole program but they stopped working after about fifteen minutes and then I was able to start them again after about 3 or 4 minutes. I never had this problem before so you can imagine my frustration especially after ruining a couple of projects on expensive material.

    Additional Information:
    Sure. I can completely understand. Try this: disconnect all but one of the driver from power and digital connection and do the air run. Repeat this for each driver and note your findings. This will rule out the drivers causing a power failure.

    Also, is your stepper motors and drivers on a separate power circuit from the computer?

    Additional Information:
    I will try disconnecting each driver and digital connection, which will be a real pain because it will be hard to access.

    All the stepper motors, drivers and computer are plugged into the same power strip.

    Additional Information:
    Ok, so there is no power failure going on, but I believe it is necessary to test each stepper motor and driver pair individually. Hopefully that will lead to a conclusion.

    Additional Information:
    It will take a little time but I will do it and report back on my findings.

    Additional Information:
    Curious, what machine is exhibiting this problem?

    Additional Information:
    I purchased a BYCNC kit back in 2009 with an approximate cutting area of 2' X 4'. I later changed out the Z-Axis Motor and controller for a larger one and have two X-axis motors and controllers. In 2010 I rebuilt the machine out of birch plywood instead of the particle board that the kit supplied. I sent Patrick pictures to him. The machine never gave me a problem till now.

    Additional Information:
    Thanks for the update. This is Patrick by the way. I answer pretty much all of the Customer Service questions. That machine has given quite a good history.

    Additional Information:
    I love the machine and made a number of samples of my work for my e-commerce site, but I can't start selling product until I know this problem is solved because I will not be able to fulfill orders. I finally got all the electronics out of its enclosed protected area near the machine so that I test each controller as you recommended. I hope the problem can be rectified. Will let you know.

    Additional Information:
    Thanks.

    Additional Information:
    I tested each stepper motor and driver pair individually and they worked so what might be the next step?

    Additional Information:
    Did each stepper motor driver pair work for the full +15 minutes?

    Additional Information:
    Yes, I had them in operation for over 30 minutes.

    Additional Information:
    Ok, well it’s good that the motors and driver are ok. We are now down to the power supply and the breakout board as possible causes for the stop. I have a feeling it may be the power supply where with all three drivers drawing current and the power supply maybe getting too hot. Is the fan in the power supply working? You can also test to see if there is 36 volts on the power supply voltage output (V+ and V-).

    Regarding the breakout board, if you have an oscilloscope, you can test if the driver pulses are outputting, but I would consider this as a last resort after you determine if there is a problem with the power supply.

    Additional Information:
    I tested the power supply with a voltmeter and each output was registering 39-40 volts. I think the problem may be the g-code. I am using V-Carve pro to do design and output to Mach 3 Mill g-code. When I studied the g-code lines I noticed that further into the program the z-axis g-code stopped zeroing out to move to the next part of the carving. In other words both the x and y keep moving and the z just stopped working because there was g-code missing. I think something is missing when the design was converted to g-code. I noticed that when I ran a simpler project it worked without problems so I need to investigate this further.

    Additional Information:
    New Update, Its not the g-code. I started to run the long program and everything was working fine until about 45 minutes into it, all the motors stopped working (but the program was still running) and there was a high pitched hum. When I put my hands on the motors they were all trying to move but it seemed they were all stalled. I turned the power off, gave it a minute and when I turned it back on I was able to move the motors again. Could this be a power supply problem?

    Additional Information:
    It does sound more and more like a power supply problem. Did you test the power supply after the motors stopped?

    Additional Information:
    No, I did not. What should I be looking for.

    Additional Information:
    It’s good that you know the voltage during normal operation, so you have a base understood. If the power supply is the problem, the voltage will be reduced or non existent when measured after the problem.

    Additional Information:
    Also, check to see if the fan is running on the power supply when the motors stop. That may (not absolutely) be an indication.

    Additional Information:
    I'll run another test, check the voltage and fan when the problem occurs and let you know. Thanks for hanging in there with me as we try to resolve the problem.

    Additional Information:
    It’s my pleasure. This service is rarely used and is faster then email. Odd nobody uses it. Any recommendations you can give would be great. No problem using this FAQ to pose ideas as this resolution will be cleaned up later.

    Additional Information:
    It might be that people do not realize you can communicate through the sight like this because they are so used to e-mail and texting. You may want to explain this feature in the customer service section.

    I ran the program this morning and it did not take long before the motors stopped. While operating the voltages for all three motors was 46 volts, when the motors stalled (and again there was a high pitch hum) the voltage went up to 60 volts and the fan on the power supply was operating.

    Additional Information:
    So, the driver work individually, but not all together. There is a high pitch sound when the motors fail. You have noted 60 volts from the power supply and the supply fan remains on. This is a difficult issue to resolve, but it seems to me that your power supply may be bad. The 60v measurement tells me that the current dropped and ohms law tells us that is current drops, volts will rise if the resistance stays the same.

    Additional Information:
    As one last test I am going to test each driver again and let them go through the entire program because it seems that the failure can occur at the beginning or towards the end of the program. When I originally tested ach driver I let them run for about a half an hour and the program takes over an hour to run completely. I just want to make sure that it is not the drivers. I will report back when I finished but as you noted it may be the power supply but I want to make sure.

    Additional Information:
    That’s a great idea.

    Additional Information:
    I just ran the x-axis through the whole program and there was no problem especially since I have two NEMA 23 motors moving that axis. Before I check the Y and Z could having a NEMA 34 on the Z axis with appropriate controller be a problem. I used the larger motor on the z axis because the router I am using is a large 1 1/2 hp. I've run this program in the past with this set-up and have not had a problem.

    Additional Information:
    Having a, say 3.0 amp driver, driving a stepper motor that typically requires a 6 amp driver would not seem to be an issue since the driver is limiting the current draw, but the driver may not be able to handle larger coil and back EMF with the protection on the 3.0 amp driver. With that said, I don’t believe that is the issue in this case.

    Additional Information:
    I don't either because I was able to run this and other complicated programs with this set-up in the past. I will let you know on the y and z axis.

    Additional Information:
    Thanks

    Additional Information:
    I ran the Y axis and z axis separately through the entire program and there was no stopping or problem. I guess the culprit is the power supply and I'll order a new one and hope that resolves the problem.

    Additional Information:
    Yes, that is the most probable cause. Please keep me informed. Thanks!

    Additional Information:
    Received and installed the new power supply. I ran the program with the router on and it worked flawlessly. The program runs for an hour and a half and I did not have a single problem. I guess it was the power supply but I was glad to go through all the diagnostics we discussed before replacing it. I hope this power supply lasts a lot longer than the last one. Thanks much for hanging in there with me and coming up with the solution.

    Additional Information:
    It’s my absolute pleasure and I am so happy to hear that the power supply replacement solved the problem.

    Additional Information:


    Additional Information:
    Y axis stop working X & Z work fine Y axis has two motors have check wiring & connections new breakout board still the same port & Pin set OK dont no were to go next David

    Additional Information:


    Additional Information:
    my cnc plasma cutter will run out the program when cutting. what is the cause?

    Additional Information:
    The cnc plasma question shod be a separate question. Can you pise that question by clicking the customer service live menu button at the top? Thanks.

    Click the link to add information to this solution:
    WHAT CAUSES ONE OF MY TWO AXIS MOTORS TO STOP WHILE THE MACH3 PROGRAM IS STILL RUNNING

  • HOW DO I WIRE THE 4TH AXIS THAT YOU SELL. I HAVE MACH3 SOFTWARE. NO INSTRUCTIONS ON YOUR SITE

    The motor that is attached to the 4th axis is wired as follows:

    The motor should have red, green yellow and blue wires coming form the motor. The red and green are paired as one coil and the yellow and blue is paired as the other coil. You can wire the motor to a 3.0 amp driver with red to A+, green to A-, Yellow to B+ and Blue to B-

    Click the link to add information to this solution:
    HOW DO I WIRE THE 4TH AXIS THAT YOU SELL. I HAVE MACH3 SOFTWARE. NO INSTRUCTIONS ON YOUR SITE

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