SMC Corporation of America
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O Connector: CN4 When you connect a PLC, etc., to the CN4 parallel I/O connector, use the I/O cable (LEC-CK4-).

14 41 10.5 20 25.6 30 20 12.8 14 IY-G03SUS +0.5 +0.3 +0.058 0 +0.070 0 10 10 18 18 I-G04SUS Y-G04SUS 40 40 M14 x 1.5 42 14 22 30 M14 x 1.5 12 14 42 16 22 41.6 30 36 12 14 IY-G04SUS +0.5 +0.3 +0.5 +0.3 14 14 22 22 I-G05SUS Y-G05SUS 50, 63 50,63 M18 x 1.5 56 18 28 40 M18 x 1.5 16 20 56 20 25 50.6 40 44 16 20 IY-G05SUS +0.070 0 18 18 28 28 I-G08SUS Y-G08SUS 80 80 M22 x 1.5 71 21 38 50 M22 x

Description q w e r t y u i o !0 !1 !2 !3 !4 !5 !6 !7 !8 !9 @0 @1 @2 @3 @4 @5 No. Description q w e r t y u i o !0 !1 !2 !3 !4 !5 !6 !7 !8 !

Screw-in Piping M5 X 0.8 Relieving port size 50 to 500mm/s Piston speed Mounting Basic, Axial foot, Front flange, Rear flange *Auto switch attachable Dimensions REC B/Basic H2 2-Rc(PT)P Width across flats B2 2-NN G G H1 Width across flats B1 Relieving port M5 X 0.8 Standard port I Relieving port 2-Eh8 D MM AL K A N N F lNA S+Stroke H F ZZ+Stroke (mm) A AL B1 B2 D E F G H H1 H2 I K MM N NA

CEP1 CE1 Head side trunnion style: RECT CE2 Width across flats B2 H2 TDe9 0.025 0.061 ML2B 2-NN 2-RcP Width across flats B1 G G Standard port Plugged (M5 x 0.8) Standard port H1 C J G5-S I CV 2-Eh8 TY D MVGQ MM AL NA TT CC K A TX TZ N N F S + Stroke H RB 40 Z + Stroke ZZ + Stroke J D(mm) 32 -X H1 H2 I K MM A AL B1 D F G H B2 E Bore (mm) Stroke range 0 0.033 0 0.033 0 0.033 0 0.039 20 M8 x

RR1 RR1 E1 L1 MM NDH10 NX A U1 A1 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com +0.058 0 +0.058 0 +0.058 0 0.2 0.4 0.2 0.4 0.3 0.5 0.4 0.2 0.4 0.2 0.5 0.3 +0.058 0 +0.058 0 +0.058 0 16 20 22 I-G02 I-G03 I-G04 16 34 41 42 25 30 30 M8 x 1.25 10.3 12.8 12 11.5 14 14

LED EX245-LA1/LB1 LED LED . 9-15 4 (C/Q) LED No.0,2,4,6 LED Port deactivated (L+) (ON/OFF1Hz) IO-Link IO-Link (ON/OFF2Hz) IO-Link Device IO-Link (L+C/Q) OFF Digital input ON (L+) OFF Digital output ON (L+C/Q) . 9-16 2 (I/Q) LED No.1,3,5,7 (EX245-LA1A) LED status Description I/Q OFF Digital input (I/Q) I/Q ON . 9-17 2 (P24) LED No.1,3,5,7 (EX245-LB1B) LED status Description

PROFIsafe monitoring time Monitoring time for safety-related communication between the safe controller (F-CPU) and safe I/O device (F-I/O device). This time is parameterized in the F_WD_Time F-Parameter.

Find the moment of inertia I for the rotation of shaft (B). B r 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teeth =b 5. Solid sphere Position of rotational axis: Through the center of diameter r 2 2 r I = m5 27 - Kinetic energy Table 9 shows the allowable kinetic energy of the rotary table.

Find the moment of inertia I for the rotation of shaft (B). B r 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teethb 5. Solid sphere Position of rotational axis: Through the center of diameter r 2 2 r I = m5 29 - Kinetic energy Table 10 shows the allowable kinetic energy of the rotary table.

Find the moment of inertia I for the rotation of shaft (B). r B 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teeth = b 5. Solid sphere Position of rotational axis: Through the center of diameter r 2 2 r I = m5 -27- Kinetic energy Table shows the allowable kinetic energy of the rotary actuator.

Part name Qty (1) Electric Actuator / LEF Series 1 (2) Driver / LECS Series 1(in case with driver) (3) Motor cable Pre-installed (1) (in case with cable) (4) Encoder cable (5) Lock cable (6) I/O Connector 1(in case with I/O connector) LECSA(Pulse input / Positioning) (2) Driver (3) Motor cable (4) Encoder cable (5) Lock cable DC24V Host controller, etc (6) I/O Connector (1) Electric Actuator

Part name Qty (1) Electric Actuator / LEJ Series 1 (2) Driver / LECS Series 1(in case with driver) (3) Motor cable Pre-installed (1) (in case with cable) (4) Encoder cable (5) Lock cable (6) I/O Connector 1(in case with I/O connector) LECSA(Pulse input / Positioning) (2) Driver (3) Motor cable (4) Encoder cable (5) Lock cable DC24V Host controller, etc (1) Electric actuator (6) I/O connector

Find the moment of inertia I for the rotation of shaft (B). B 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teeth=b 5. Solid sphere Position of rotational axis: Through the center of diameter 2 2 r I = m5 27 - Kinetic energy Table (9) shows the allowable kinetic energy of the rotary actuator. The end angular speed is obtained by: Table 9.

Bore (mm) 125 140 160 180 200 250 300 H A H1 L1 H A I type single knuckle Y type double knuckle 125 65 125 140 160 180 / 200 250 300 100 156.5 I-12 Y-12 125 3.5 65 50 110 105 161.5 I-14 Y-14 140 3.5 76 50 110 110 170.5 I-16 Y-16 155 3.5 83 56 120 125 193.5 I-18, I-20 Y-18, Y-20 160 3.5 88 63 135 160 245.5 I-25 Y-25 195 3.5 106 71 160 175 266.5 I-30 Y-30 210 3.5 115 80 175 Accessory SCS1

PRODUCT FEATURES S E R I E S I P 6 0 0 0 / I P 6 1 0 0 I HIGH PERFORMANCE POSITIONER Cross section of the exhaust system. I RESISTANT TO HOSTILE ENVIRONMENTS Employs the combination of the check valve and the labyrinth effect. I EXCEPTIONAL SHOCK AND VIBRATION PERFORMANCE EXH.