SMC Corporation of America
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Search Results "ACG40C-N04G1-Z-B"

300 400 500 600 V(mm/s) V (mm/s) V(mm/s) LEFS16 LEFS25 LEFS32 Vertical Transfer 12 50 B B B 20 A 10 A A 40 H W(kg) W(kg) H 8 W(kg) 15 30 6 10 20 4 5 2 10 0 0 0 0 200 400 600 800 1000 1200 0 100 200 300 400 500 600 0 200 400 600 800 1000 1200 V (mm/s) V (mm/s) V(mm/s) LEFS16 LEFS25 LEFS32 50 12 B B 20 B A 10 A 40 H H A W(kg) W(kg) W(kg) 15 8 30 6 10 20 4 5 10 2 0 0 0 0 100 200 300 400 500

(Unit 1) Byte 3 Diagnostic data byte3 Byte 3 Output 16 to 23 Byte 4 Byte 4 Output 24 to 31 Byte 5 Byte 5 Padding data Total 4 bytes Total 6 bytes -82No.EX-OMZ0024 Unit 0 Unit 1 Unit 2 Unit 3 Unit 4 Unit 5 AXA DY#B DY#B DX#B DX#D SEN7 Analogue input Digital output Digital output Digita input Digital input SI unit End plate Valve 4 byte 1 byte 2 byte Input Input Input 1 byte 1

DX#B DY#B DM#E AXA AYA LBB1 SEC3 System Valve 32 Diag. Unit 0 Unit 1 Unit 2 Unit 3 Unit 4 Unit 5 Unit 6 Diag.

Input waveform requirements [A/B quadrature input] Two count channel input (A and B) in quadrature (90nominal phase relationship).

Adjustment: Max. 8.2 6 B port A port 0.5 +0.025 0 3-3H9 long groove depth 2.5 ( A , B , C ) 5g6 0.004 0.012 12h9 0 0.043 4-M4 x 0.7 depth 8 34 0 0.062 42h9 Top ports/MSUA3-SE 36 10 A port B port 2-M3 x 0.5 11 5 Rotary Table High Precision Type Series MSUA These drawings indicate the condition when the B port is pressurized.

C (mm) Proper mounting position Proper mounting position Proper mounting position D-M9 D-M9W D-M9V D-M9WV D-M9 D-M9W D-M9V D-M9WV D-M9 D-M9W D-M9V D-M9WV Model Model Model A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E 16.5 25 4.5 18.5 49 6.5 7.5 38 21 MIW8-8D MIS12

DICOM 1 Failure Note 3) 9 ALM RA1 N OPC 2 12 MBR RA2 Electromagnetic brake interlock 13 DOCOM S/S Y000 PP 23 COM1 Y010 NP 25 10 m or less COM3 15 LA A phase pulse detector (Differential line driver) Y004 CR 5 16 LAR COM2 17 LB B phase pulse detector (Differential line driver) 18 LBR X INP 10 19 LZ Z phase pulse detector (Differential line driver) 20 LZR X Control common RD 11 14 LG X OP 21

Hs A B A B Proper Auto Switch Mounting Position (mm) D-A7H, A80H, A73C, A80C D-F7, F7V, F79F, J79 D-J79C, F7W, F7WV D-J79W, F7BAL, F7BAVL D-A7 D-A80 D-F7NTL D-A79W Bore size (mm) B B A A B A B A 32 3 11 51 43 6 46 5.5 45.5 40 5.5 13.5 49.5 57.5 8.5 52.5 8 52 50 19 11 53.5 61.5 14 56.5 13.5 56 63 22 14 59 67 17 62 16.5 61.5 Auto Switch Mounting Height (mm) D-A7H, A80H D-F7, J79, F7W D-J79W

block (B) 1 Cross recessed round head screw 1 M38L 2 Holding block (A) 1 2 Holding block (A) 1 2 1 Switch block (A) 1 1 Switch block (B) 1 1 Holding block (A) 1 No.

locking) Section B-B Section B-B Section A-A *Above figure show the unlocked state.

Series VS R8b S RUBBER SEAL/METAL SEAL SERIES VSR8/VSS8 2-position Single solenoid (FG-S) (A)(B) 4 2 5 1 3 (EA)(P)(EB) Double solenoid (FG-D) (Metal) (A)(B) 4 2 5 1 3 (EA)(P)(EB) Double solenoid (FG-D) (Rubber) (A)(B) 4 2 5 1 3 (EA)(P)(EB) 3-position Closed center (FHG-D) (A)(B) 4 2 5 1 3 (EA)(P)(EB) Exhaust center (FJG-D) (A)(B) 4 2 5 1 3 (EA)(P)(EB) Pressure center (FIG-D) (A)(B) 4 2 5

Rotational axis B d D I m kgm I = m kgm 8 8 Gear: I a + b I = m kgm IB = I + I + I kgm 12 Substitute the moment of inertia IB for rotation around shaft B with the moment of inertia IA for rotation around shaft A. Gear: I IA = (A/B)IB [A/B: Gear tooth ratio] Find the actual moment of inertia.

Recommended Parameter Values [LEF] LEFS25T6 LEFS32T7 LEFS40T8 Lead symbol H A B H A B H A B Series Lead 20 12 6 24 16 8 30 20 10 Parameter *1,*2 Para. Initial value Recommended value No.

Hs A B A B Proper auto switch mounting position (mm) D-A7H, A80H, A73C, A80C D-F7, F7V, F79F, J79 D-J79C, F7W, F7WV D-J79W, F7BAL, F7BAVL D-A7 D-A80 D-F7NTL D-A79W D-F7LF Bore size (mm) B B A A B A B A B A 32 11 10 50 51 3 43 6 46 5.5 45.5 40 13.5 12.5 56.5 57.5 5.5 49.5 8.5 52.5 8 52 50 18 19 61.5 60.5 11 53.5 14 56.5 13.5 56 63 22 21 67 66 14 59 17 62 16.5 61.5 Auto switch mounting height

Lead Series Lead (Including Pn20E Pn210 symbol pulley ratio) A 12 65536 750 LEY25/LEYG25 B 6 375 LEY25D/LEYG25D C 3 131072 375 A 20 65536 1250 LEY32/LEYG32 B 10 625 LEY63D C 5 131072 625 A 16 1000 LEY B 8 500 LEY32D/LEYG32D C 4 250 65536 A 20 1250 B 10 625 C 5 131072 625 LEY63 5(2.86) L 229376 625 (Pulley ratio 4/7) H 20 1250 LEFS25 A 12 750 B 6 375 H 24 1500 LEFS32 A 16 1000 B 8 500 LEF

Rotational axis B d D I m kgm I = m kgm 8 8 Gear: I a + b I = m kgm IB = I + I + I kgm 12 Substitute the moment of inertia IB for rotation around shaft B with the moment of inertia IA for rotation around shaft A. Gear: I IA = (A/B)IB [A/B: Gear tooth ratio] Find the actual moment of inertia.

JIS B 8370: JIS B 8361: JIS B 9960-1:-((1 :) JIS B 8433-1993: *2) 1 2. 3. 1. 2. 3. 4. -2- LEF Series/ . / *3) *3) 1 1 1 1.5 () -3- 1./ 1.1 (1) -1. No. / 1 1 1 1 I/O (1 ) 1 1 (USB ) 1 -2.

When closed 8.8 When open 22.8 7 Standard Type/Series MHZ2 Finger Position/Options Side Tap Mounting Type [1N1] Through Hole in Opening/Closing Direction [2N2] 4-MM Attachment mounting thread C C B A 4-H Attachment mounting hole S S O O B A Unit: mm Unit: mm Model A 3 4 5 6 Model A 3 4 5 6 B 5.7 7 9 12 C 2 2.5 4 5 MM M2.5 x 0.45 M3 x 0.5 M4 x 0.7 M5 x 0.8 B 5.7 7 9 12 H 2.9 3.4 4.5 5.5 1

AREA A position 2 The AREA signal is output commonly for the ranges set for both the AREA A and AREA B. AREA B Set as AREA 1 AREA 2. position 1 AREA B position 2 48 - Data (Saved data) Data is sent as hexadecimal numbers.