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Question #: 435

Question: HOW MANY STEPS PER INCH?

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:


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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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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1����%2527%2522

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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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1����%2527%2522

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@@HJ5oY

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Respond:

Other Possible Solutions to this Question

  • 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

    Additional Information:


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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' --

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

  • HOW DO DETERMINE THE STEPS PER INCH

    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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    HOW DO DETERMINE THE STEPS PER INCH

  • WHAT IS THE FORMULA TO DETERMINE STEPS PER INCH OR RESOLUTION FOR EACH AXIS?

    The formula and calculation is a starting point to get into the area of steps per inch. You will then need to use the mach3 calibration utility to get the exact steps per inch.

    Formula:
    step per inch = (motor steps * microstepping) / (travel at one turn of the motor in inches)
    if microstepping is set at 16 (1/16 on the driver) then and you are using a sprocket and chain with a pitch of .25 inches and 12 teeth on the drive sprocket
    = (200 * 16) / (12 * .25)
    = 3200 / 3
    = 1066.666 steps per inch

    For lead screw that has a travel of .5 inches at one turn like the 5 start 1/2 inch lead screw and using 4 microsteps per step (1/4):
    = (200 * 4) / (.5)
    = 800 / .5
    = 1600 steps per inch

    Remember to use the mach3 calibration wizard and double check the driver microstep setting.

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    WHAT IS THE FORMULA TO DETERMINE STEPS PER INCH OR RESOLUTION FOR EACH AXIS?

  • WHAT DO I SET FOR MY STEPS PER?

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

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    WHAT DO I SET FOR MY STEPS PER?

  • HOW MANY AXES CAN MACH 3 CONTROL?

    Mach 3 CNC software can do the following:

    Converts a standard PC to a fully featured, 6-axis CNC controller
    Allows direct import of DXF, BMP, JPG, and HPGL files through LazyCam
    Visual Gcode display
    Generates Gcode via LazyCam or Wizards
    Fully customizable interface
    Customizable M-Codes and Macros using VBscript

    SET:

    Spindle Speed control
    Multiple relay control
    Manual pulse generation
    Video display of machine
    Touch screen ability
    Full screen eligibility

    EQUIPMENT:

    Lathes
    Mills
    Routers
    Lasers
    Plasma
    Engravers
    Gear cutting

    Additional Information:
    how to wire relay with mach board. I have mach interface board with one relay

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    HOW MANY AXES CAN MACH 3 CONTROL?

  • HOW MANY SIDES DOES A TRIANGLE HAVE?

    The triangle has three (3) sides. The triangle is a polygon that contains three sides and three inner angles and three vertices.

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    But if a triangle have a front and back side wouldn't the triangle have 5 sides

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    Interesting slant (pun). A triangle would have 5 sides if the triangle had a thickness and became an object. A triangle drawn on paper with three lines would still only have three sides. A triangle is a primitive form of geometry (polygon) that can only have three sides in its simplest form. If you add complexity to the triangle with a thickness and count two more sides, then it really isn't the simplest form of the triangle anymore and it becomes another geometrical 3D primitive like a triangular prism.

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    A triangle has multiply answers for number of sides but is made up of 3 lines.. this is because when connecting the 3rd line to form the shape you create an "inside". so you could say a triangle has 2 sides, an "outside" and "inside" or you could say 4 sides, an "inside" and 3 "outside facings" or 6 sides 3 "outside facings" and 3 "inside facings". none of these answers are incorrect technically. the important thing is that a triangle is made up of 3 inner angles adding upto 180 degree's.

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    A triangle has 6 sides, there are 3 straight edges in AND out side of a triangle.

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    I am fairly sure that a triangle has 12 sides (3 insides and 3 outsides on each side).

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    HOW MANY SIDES DOES A TRIANGLE HAVE?

  • HOW MANY STRINGS DOES A VIOLIN HAVE?

    The violin has four strings.

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    3

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    HOW MANY STRINGS DOES A VIOLIN HAVE?

  • HOW DO CNC MACHINES WORK?

    A CNC machine takes codes from a computer and converts the code using software into electrical signals. The signals from the computer are then used to control motors. Since the motors can turn very small amounts the machine is able to move in highly precise movements over and over again.

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    HOW DO CNC MACHINES WORK?

  • HOW SERIOUS THE FLU?

    Influenza is the most frequent cause of death from a vaccine-preventable disease in the United States. From 1990 through 1999, an average of approximately 36,000 influenza-associated pulmonary and circulatory deaths occurred during each influenza season. In addition to fatalities, seasonal influenza is also responsible for more than 200,000 hospitalizations per year. Rates of infection from seasonal influenza are highest among children, but the risks for complications, hospitalizations, and deaths are higher among adults ages 65 and older, children younger than 5 years, and people of any age who have medical conditions that place them at increased risk for complications from influenza.

    A novel H1N1 virus was first detected in March of 2009 and quickly spread to pandemic levels. In the U.S., it is estimated that approximately 43-89 million persons became ill with 2009 pandemic H1N1 from April 2009 to April 2010. The virus also resulted in significant hospitalizations and deaths among children, adults 19-65 years, obese persons, and pregnant and post-partum women.

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    HOW SERIOUS THE FLU?

  • HOW CAN COOL THE LASER TUBE?

    Cooling is not as tricky as you might think. There is 3 ways to approach this, only 2 really matter for a low scale 40w setup. First one is the cheapest and easiest. The higher the temp of water the worse your performance will be, from what I understand anything in the 30C range is about the most tolerable it gets. Lower is better. But not frozen...from what I've been told a very experienced cutter, he found 8C was the highest power he achieved.

    1. Use a 5 Gallon resovoir system which gives you a fairly large space of water to heat up before you need to tend to it. Add about a cup of anti-freeze to the mix of DISTILLED water. You don't want ANY minerals in the water that might build up in your system. The anti-freeze works to keep algae and other ickies from growing in your water.

    2. Use a smaller resovoir system (or even closed loop) and install 1 or more radiators found in CPU cooling systems with 120mm fans attached. This will continously cool your water system to ambient room temperatures, but with a tiny resovoir it will be difficult to add things like ice-packs to drop the temps if the ambient is quite hot.

    3. Using an industrial coolant system. Overkill and unless your cutting A LOT, this is a very expensive option to take. You can also explore the idea of Peltier cooling but it is extremely expensive electricity/BTU wise compared to an industrial cooler.

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    HOW CAN COOL THE LASER TUBE?

  • 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.

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    HOW DO I CALIBRATE IN MACH3?

  • HOW LONG DOES THE TUBE LAST?

    The average lifespan of a tube is 1000-1500 hours IF ran at a max of 16mA for most of it's life. It's life will go down if you run constantly at it's max rating.

    CO2 laser tubes also have a shelf life. So make sure to only buy a replacement tube close to when you plan to install it, keeping it on a shelf for the future will only compromise it's life span.

    To measure your amperage going through your system. You go from the negative line of the tube and run it THROUGH your multimeter/ammeter and back out to the laser PSU. This will give you your amp usage. It will not hurt your multimeter either. Just be sure your connections are very snug since 20,000V is liable to arc very easily if a connection comes loose.

    Additional Information:
    what is life span of CO2 generator in videojet laser coding machineVJ3320

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    HOW LONG DOES THE TUBE LAST?

  • HOW LONG FOR ME TO BUILD IT?

    The length of time it will take to build a CNC machine kit is not an easy answer. There may be a wide array of circumstances that limit a persons abilities to build the cnc machine kit in an efficient timeframe; however, if you have moderate dexterity and moderately mechanically inclined, you should have no problem building one of our machines within one weekend if the project has very little downtime.

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    HOW LONG FOR ME TO BUILD IT?

  • HOW DEEP CAN CUT IN ONE PASS?

    If you use the 2.2kW spindle, it can cut at 3/4 inch or 19 mm deep with at least a 1/4" cutting diameter single flute end mill. You will get better results with larger diameter end mills, but that is the worst case scenario. I still recommend doing a finishing pass on the edge to make sure everything is perfect.

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    HOW DEEP CAN CUT IN ONE PASS?

  • HOW LONG DOES IT TAKE TO SHIP

    Unfortunately I am not able to give an estimate of shipping time. This is because there are multiple shipping options, Some of them cost more than others, but ensure the package arrives in a certain number of days. Others do not give a number of days, and many factors could change the length of shipping time, such as weather, or busy season. It would be best to choose an option you are comfortable with the price of, and then Google search the typical times it takes for that option to get to you, or call the shipping company and request that estimated time from them.

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    HOW LONG DOES IT TAKE TO SHIP

  • HOW DO I SET THE DIP SWITCHES?

    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

    Additional Information:

    Click the link to add information to this solution:
    HOW DO I SET THE DIP SWITCHES?

  • HOW DO I CALIBRATE MY MACHINE?

    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.

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    HOW DO I CALIBRATE MY MACHINE?

  • HOW CAN ENHANCE THE BLACKTOOTH?

    Temperature probe monitor. Very valuable. This keeps you up to date on your coolant temperature levels.

    Voltage meter. This will tell you the exact level of voltage/power you are running telling the laser to run at instead of an arbitrary mark on a drawn wheel around your POT.

    Ammeter sensitive to 1mA. This will be sure your not over driving your tube and reducing it's life significantly.

    Hour meter. This will tell you exactly how long your system has been 'on' giving you a more accurate bead on the length of your tubes life.

    Exhaust fan upgrade. The current fan included is 100CFM. You can buy 120mm fans that push 250CFM and I have included a guide on how to go about doing this here. http://buildyourtools.com/phpBB3/viewto ... 8cdd1802bf

    To push the exhaust fan even further, if you have the room/power, I would highly recommend investing in a 600+ CFM "Dust Collector" system. 250CFM is still not suffice to draw all the smoke that can come off of 3mm or 1/8 MDF cutting job.

    A cutting surface. I bought myself a aluminum 'egg crate' mesh from my local HVAC company. They are used a cover for fluorescent lights and work great for low impact cutting surface. They come in 4'x8' sheets and are easily cut to fit. The other side is if you can find a steel honeycomb cutting bed to fit. These can be quite costly or fairly affordable depending where you are looking. The benefit of a steel honeycomb is you can use high power magnets to hold material down.

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    HOW CAN ENHANCE THE BLACKTOOTH?

  • BLACKTOE REQUIRED HOW MUCH CABLE

    The motor cables for the blackToe are as follows:

    Total 30 feet

    X - 9
    Y - 10
    Z - 11

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    BLACKTOE REQUIRED HOW MUCH CABLE

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