Parallel I/O Connector: CN5 Wiring diagram LECP6Nll-l (NPN) LECP6Pll-l (PNP) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 COM+ COM+ A1 COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 B2
LECP6Pll-l (PNP) Wiring diagram LECP6Nll-l (NPN) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 COM+ COM+ A1 COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 B2 B2 OUT1 OUT1 B3 B3 OUT2 OUT2
LECA6 LECP6 LEC-G LECP1 LECPA Parallel I/O Connector: CN5 Wiring diagram LEC6N(NPN) LEC6P(PNP) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load
Step Motor (Servo/24 VDC) Wiring diagram LECP6N(NPN) LECP6P(PNP) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 Load Load B2 B2
Wiring diagram LECl6Nll-l (NPN) LECl6Pll-l (PNP) CN5 24 VDC for I/O signal 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ A2 A2 COM COM A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 B2 B2 OUT1 OUT1 B3 B3 OUT2 OUT2 B4 B4 OUT3 OUT3 B5 B5 OUT4
Parallel I/O Connector: CN5 Wiring diagram LEC;6N;;-; (NPN) LEC;6P;;-; (PNP) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 Load
Parallel I/O Connector: CN5 Wiring diagram LEC6N(NPN) LEC6P(PNP) Power supply 24 VDC for I/O signal CN5 Power supply 24 VDC for I/O signal CN5 A1 A1 COM+ COM+ COM COM A2 A2 A3 A3 IN0 IN0 A4 A4 IN1 IN1 A5 A5 IN2 IN2 A6 A6 IN3 IN3 A7 A7 IN4 IN4 A8 A8 IN5 IN5 A9 A9 SETUP SETUP A10 A10 HOLD HOLD A11 A11 DRIVE DRIVE A12 A12 RESET RESET A13 A13 SVON SVON Load Load B1 B1 OUT0 OUT0 Load Load B2 B2
OT0006 General-purpose input 6 A12 41 20 Flange-side connector connection OT0007 General-purpose input 7 B13 17 OT0008 General-purpose input 8 A13 42 Connecting the I/O cable to the robot base connector 0V 024VU B16 31 Connecting I/O cables to general-purpose I/O terminal blocks 0V 024VU A16 I/O cable 30 - 5-4.YASKAWA Plug & Play Kit The YASKAWA Plug & Play Kit allows you to easily connect
Load at the end of lever arm = m a2 = m1 + m2a22 + k a12 12 3 Dk = m2 2r2 5 -X 387 MK Series Design/Selection Caution 1.
axis: Vertical to the bar and through the center of gravity tThin rectangular plate Position of rotary axis: Through the center of gravity and vertical to the plate (Same as also thick rectangular plate) I = m a2+b2 12 I = m a2 12 eThin rectangular plate Position of rotary axis: Parallel to side b and through the center of gravity yLoad at the end of lever arm I = m1 + m2 a22 + K a12
Thin rectangular plate (Rectangular parallelopiped) Position of rotational axis: Vertical to the plate and through the end = m1 + m2 a12 3 a22 = m1 + m2 4a12 + b2 4a22 + b2 3 12 12 2. Thin shaft Position of rotational axis: Perpendicular to the shaft through the center of gravity 5.
0Gear transmission oLoad at lever end Number of teeth = a = m1 a12 1. Find the inertial moment B for the rotation of shaft (B). 3 + m2 a22 + K (Example) When shape of m2 is a sphere, refer to 7, and K = m2 2r2 2.
Symbol: A12 The short shaft can be further shortened by machining a double-sided chamfer onto it. CRJ (If altering the standard chamfer and shortening the shaft are not required, indicate for both the L1 and X dimensions.) Since L1 is a standard chamfer, dimension E1 is 0.5 mm or more.
Symbol: A12 The short shaft can be further shortened by machining a double-sided chamfer onto it. CRJ (If altering the standard chamfer and shortening the shaft are not required, indicate for both the L1 and X dimensions.) Since L1 is a standard chamfer, dimension E1 is 0.5 mm or more.
Applicable shaft type: W (mm) L2 Y Size (mm) 10 X L1 3 to 8 5(8Y) to (Y1) Size 10 15 3 to 14 9(14X) to (X1) 3 to 9 6(9Y) to (Y1.5) Y = L1= 15 20 5.5 to 18 10(18X) to (X1.5) 3 to 10 7(10Y) to (Y1.5) L2 = 20 30 10(20X) to (X1.5) 7 to 20 5 to 13 8( 13Y) to (Y2) X= 30 40 7 to 22 10(22X) to (X1.5) 7 to 15 9( 15Y) to (Y4.5) Free-Mounting Type CRBU2 CRB2 Symbol: A11 Symbol: A12 The long shaft can
Load at lever end DNumber of teeth = a 20= m1 a12 1. Find the inertial moment B for the rotation of shaft (B). 3 + m2 a22 + K (Example) When shape of m2 is a sphere, refer to 7, and K = m2 2r2 2.
Symbol: A12 The short shaft can be further shortened by machining a double-sided chamfer onto it.
Symbol: A12 The short shaft can be further shortened by machining a double-sided chamfer onto it.
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com H Symbol: A4 Symbol: A5 Symbol: A6 Symbol: A7 MB 30 RD RD B AL MM AL MM MB1 CA2 H L L W 30 H 30 H 30 H CS1 Symbol: A8 Symbol: A9 Symbol: A10 Symbol: A11 WA C C0.5 file chamfer C76 AL B MM R sphere TP R sphere C85 DC 30 C95 H W1 T H H H Symbol: A12 Symbol
LECP,LECA LECPA Input pin Input pin0 Input pin0 A3 7 Input pin1 A4 8 keykey Input pin1 Input pin2 A5 9 Input pin3 A6 10 Input pin4 A7 Input pin5 A8 Input pin6 A9 11 Input pin7 A10 Last input pin Input pin8 A11 Input pin9 A12 Input pin10 A13 (7) Normal mode Alarm It is possible to check and reset the current alarms and also possible to check the past alarms. (7-1) Alarm selecting screen