3 Chapter 13 Specification for Option T 13 1 Safety instructions . 13 1 13 2 Specifications . 13 1 13 3 Remote operation . 13 1 13 4 How to connect the power supply and signal cable . 13 2 13 5 How to re-start the operation . 13 2 13 6 Electric circuit . 13 3 Chapter 14 Service Record 14 1 Service Record . 14 1 Table of Contents 2 IDX-OM-W025 Air Dryer i Safety Instructions Safety Instructions
CDRBU2W10, 15-S CDRBU2W20, 30-S CRB2 CRBU2 CRB1 2 x S2 2 x S1 2 x S1 MSU 2 x S2 CRJ Rotary actuator CRA1 CRQ2 2 x S1 2 x S1 2 x S1 2 x S1 Rotary actuator MSQ (34.5: Connector type) MSZ A port B port CRQ2X MSQX 2 x R A port B port 2 x R MRQ 1 Auto switch Auto switch 2 5 20.5 (26.5: Connector type) 1.
Horizontal Operation (Load, Lateral offset Lo) Bore size (mm) Allowable load weight (WA) (kg) 6.48 3.6 + 2 (1.6 + Lo) sin Lo: Distance from mounting surface to load center of gravity (cm) 6 15 5 + 2 (1.95 + Lo) sin 45.5 6.5 + 2 (2.4 + Lo) sin 115 8 + 2 (2.8 + Lo) sin 180 9 + 2 (3.1 + Lo) sin 330 11 + 2 (3.95 + Lo) sin 624 13 + 2 (4.75 + Lo) sin 10 15 20 25 Lo: Distance from center of side
(DIN ) 1) 2) 3) 25 No.SFOD-OMT0009CN-B 4.2 (1) (9) (2) (10) (3) (4) (15) (16) (7) (11) (5) (12) (17) (8) (18) (19) (6) (20) (13) (14) 1 PWR LED() ON OFF 2 RUN LED I/O USB 3 USB USB LED USB USB 4 ALM LED 5 USB USB 6 C PWR 2 (+)(-) 7 I/O 1 I/O 40 I/O PLC 8 I/O 2 I/O 40 I/O PLC 9 ENC1 (16 ) 1 10 MOT1 (6 ) 11 ENC2 (16 ) 2 12 MOT2 (6 ) ) (+)1 (+) 1 (+)2 (+)2 (+) 13 CI 1 2 )
O-ring NBR 7 JISB2401 P3 JISB2401 P5 Bracket A 2 Bracket O-ring NBR 8 28 x 25 x 1.5 35 x 31 x 2 2 1 set assembly Bracket B 136312 136412 13 Hex. socket head cap screw 2 How to order (1) When adding n stations to ARM Regulator n pcs.
2.5 3 1.5 2 2 30 35 38 42 8 9 9 13 13 13 15 15 18 24 24 24 42 21 24 24 31 31 31 41 41 50 59.5 59.5 66 96 4.5 5 5 6 6 6 7.5 7.5 9.5 11.5 11.5 13 16 7 8 8 11 11 11 14 14 19 24 24 27 36 0.5 0.5 0.5 0.75 0.75 0.75 1 1 1.25 2 2 2 3 1100 2500 2500 4400 4400 4400 11000 11000 18000 28000 28000 28000 71000 0.05 0.07 0.07 0.16 0.16 0.16 0.3 0.3 0.6 1.05 1.08 1.5 4.5 7 8 8 11 11 11 13.5 13.5 16 20
2.5 3 1.5 2 2 30 35 38 42 21 24 24 31 31 31 41 41 50 59.5 59.5 66 96 4.5 5 5 6 6 6 7.5 7.5 9.5 11.5 11.5 13 16 8 9 9 13 13 13 15 15 18 24 24 24 42 0.5 0.5 0.5 0.75 0.75 0.75 1 1 1.25 2 2 2 3 1100 2500 2500 4400 4400 4400 11000 11000 18000 28000 28000 28000 71000 7 8 8 11 11 11 14 14 19 24 24 27 36 0.05 0.07 0.07 0.16 0.16 0.16 0.3 0.3 0.6 1.05 1.08 1.5 4.5 7 8 8 11 11 11 13.5 13.5 16 20
73.2 1 B 2 B 2 B 2 B 2 B 2 BUS IN 56.6 P 3/5 E 3/5 E PWR B 2 2 A 4 A 4 A 4 A 4 A 4 (For DIN rail mounting) One-touch fitting [PE: Pilot EXH port] [X: External pilot port] 7.5 11.8 Applicable tube O.D.: 4, 5/32" [Communication connector D-sub] BUS OUT BUS 1 P P 1 B 2 B 2 2 2 BUS IN 3/5 E E 3/5 PWR PWR A 4 4 A 4 4 Note 1) These figures show the SS5Y5-12SQA-05D.
2) (n = 2, 4, 6, 8)1 95 + 100 (n 2) (n = 2, 4, 6, 8)1 100 + 100 (n 2) (n = 2, 4, 6, 8)1 105 + 100 (n 2) (n = 2, 4, 6, 8)1 110 + 100 (n 2) (n = 2, 4, 6, 8)1 1 60 65 75 80 85 2 (Different surfaces) 70 75 80 85 2 (Same surface) n (Different surfaces) 70 + 30 (n 2) (n = 2, 4, 6, 8)1 75 + 30 (n 2) (n = 2, 4, 6, 8)1 80 + 30 (n 2) (n = 2, 4, 6, 8)1 85 + 30 (n 2) (n = 2, 4, 6, 8)1 D-A44 n
(n 2) 2 20 + 35 55 + 35 (n 2) (n = 2, 3, 4, 5) D-M9 5 20 CHQ 55 (n = 2, 4, 6) Note 3) (n 2) 2 55 + 35 (n 2) (n = 2, 3, 4, 5) 20 + 35 D-M9W 10 20 55 CHK (n = 2, 4, 6) Note 3) (n 2) 2 60 + 35 (n 2) (n = 2, 3, 4, 5) 25 + 35 D-M9A 10 25 60 CHN (n = 2, 4, 6) Note 3) (n 2) 2 50 + 35 (n 2) (n = 2, 3, 4, 5) 15 + 35 D-A9 5 15 50 CHM CHM (n = 2, 4, 6) Note 3) (n 2) 2 35 + 35 (n 2) (n = 2,
mode 16-13-5 H P Z Hysteresis Hysteresis Hysteresis mode Panel-mounting Peak high display mode Peak low display mode PNP output Proof pressure Protective construction Zero out (Zero ADJ) 16-13-5 16-13-3 16-13-4 0-9 2-wire type pressure switch 16-13-5 16-13-2 10 Glossary of Terms A Absolute pressure The pressure based on the absolute vacuum condition (0 standard).
(Rod cover side) 2 pcs. (Different sides) 2 pcs.
D-A7 D-A80 D-A73C D-A80C 3 2 1 3 2 1 3 2 1 3 2 1 3 2 1 3 2 1 3 2 1 35 10 5 45 10 5 40 15 10 45 5 5 30 5 5 55 15 10 40 15 10 3 (Same side) 3 (Different sides) 2 (Same side) 2 (Different sides) 1 3 (Same side) 3 (Different sides) 2 (Same side) 2 (Different sides) 1 3 (Same side) 3 (Different sides) 2 (Same side) 2 (Different sides) 1 90 55 50 15 10 105 60 60 15 10 105 65 65 15 10 D-C7 D-C80
27 14 16.5 20 26 32 38 50 60 8 10 12 16 20 20 25 30 18 18 20 26 32 32 37 42 12 14 18 25 30 32 40 50 3 3 3 3 3 3 3 3 2 2 2 2 2 2 3 3 13 13 10 10 10 10 12 12 16 16 10 10 10 15 15 15 20 20 26 31 38 47 58 72 89 110 M4 x 0.7 depth 7 M5 x 0.8 depth 7.5 M5 x 0.8 depth 8 M6 x 1.0 depth 12 M8 x 1.25 depth 16 M10 x 1.5 depth 16 M10 x 1.5 depth 22 M12 x 1.75 depth 22 11 10 14 12 17 17 12 13 14 14 20
1/4 1 1/4 to 1 1/2 1 3/4 to 2 2 to 2 1/4 MHS MHC MHT MHY Impact load Clearance MHW -X 3.
CE1 Z + 2 x Stroke ZZ + 2 x Stroke CE2 ML2B I H1 H FZ FY FX FT B1 FD MM B F K AL B2 C2 D H2 HX A Eh8 Bore size (mm) 20 25 32 40 20 0 0.033 26 0 0.033 26 0 0.033 32 0 0.039 8 28 41 75 60 4 7 M8 x 1.25 34 13 5 15.5 8 18 57.5 13 26 30 5 C J G5-S 8 33.5 45 75 60 4 7 M10 x 1.25 40 13 5.5 19.5 10 22 63.5 17 32 37 6 8 37.5 45 75 60 4 7 M10 x 1.25 40 13 5.5 19.5 12 22 68 17 32 37 6 CV 10 46.5
Specifications 13 3.1 Specifications 13 3.2 Parts Description 14 3.3 External Dimensions 15 (1) Screw mounting (JXC917-) 15 (2) DIN rail mounting (JXC918-) 16 3.4 Mounting 17 (1) Mounting 17 (2) Grounding 17 (3) Mounting location 18 4.
3.2 6.5 7 7 15 1 4 NN-M4 X 0.7 thread 8 deep A B 3H9 3 deep +0.025 0 3H9 3 deep +0.025 0 HA GA Cross section AA Cross section BB (mm) Model F 25 25 40 50 38 50 GA 17 12 33 43 43 83 NA 2 2 2 2 4 4 N 4 4 4 4 6 6 HA 20 30 20 28 46 56 KA G 9 12 13 15 20 27 H 28 30 20 28 23 28 NN 2 2 3 3 4 5 I 13 8.5 9.5 10.5 24.5 38.5 J 19.5 29 39 56 60 96 K 23.5 33.5 43.5 53.5 63.5 88.5 Z 48.5 53.5 64.5 82.5
Note 2) Value of FEP tube. Union Elbow: KQG2L 2 x Applicable tube Note 2) Effective area (mm2) Applicable tube O.D.
If the load is divided into the 2 cylinders: The center of gravity of load 1 matches the shaft. The center of gravity of load 2 differs from the shaft. Obtain the moment of inertia of load 1: 2 r12 )1 = m1 Load 1: )1 Load 2: )2 2. Obtain the moment of inertia of load 2. 2 r22 )2 = m2 + m2L 2 3.