SMC Corporation of America
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Contents Data Set of nos. above @8, @9, #0, #1, #2, #3, #4 REAL10-PS 15 REAL15-PS 10-2-43 43 Series REAL Construction: 20 to 40 @3 !7 #3 !6 @8 #1 !0 !2 !9 u o i @7 @9 @5 @6 @4 e y r !3 q #0 !1 w @0 !8 t !4 !5 @2 @1 #2 #4 #5 #7 #6 #8 Component Parts No. Description Cylinder tube No.

Maximum load weight W 1 = W/Wmax = 1/9 = 0.111 L2 CE1 Examine W. CE2 L1 ML2B 2. Static moment M2 = WL1 = 10 x 0.2 = 2 [Nm] 2 = M2/M2max = 2/16 = 0.125 W = 1 [kg] = 10 [N] W C J G5-S Examine M2. Since M1 & M3 are not generated, investigation is unnecessary.

From the formula on the front matter 18, the average suction flow rate Q1 is as follows: Q1 = (1/2 to 1/3) x Ejectors max. suction flow rate = (1/2 to 1/3) x 5 = 2.5 to 1.7 L/min (2) Next, find the maximum flow rate Q2 of the piping. The conductance C is 0.22 from the Selection Graph (3).

From the formula on the front matter 18, the average suction flow rate Q1 is as follows: Q1 = (1/2 to 1/3) x Ejectors max. suction flow rate = (1/2 to 1/3) x 5 = 2.5 to 1.7 L/min (2) Next, find the maximum flow rate Q2 of the piping. The conductance C is 0.22 from the Selection Graph (3).

From the formula on the front matter 18, the average suction flow rate Q1 is as follows: Q1 = (1/2 to 1/3) x Ejectors max. suction flow rate = (1/2 to 1/3) x 5 = 2.5 to 1.7 L/min (2) Next, find the maximum flow rate Q2 of the piping. The conductance C is 0.22 from the Selection Graph (3).

From the formula on the front matter 18, the average suction flow rate Q1 is as follows: Q1 = (1/2 to 1/3) x Ejectors max. suction flow rate = (1/2 to 1/3) x 5 = 2.5 to 1.7 L/min (2) Next, find the maximum flow rate Q2 of the piping. The conductance C is 0.22 from the Selection Graph (3).

Table 9-5 Compliance EMC Directive 2014/30/EU CE Marking Machinery Directive 2006/42/EC NRTL *1 E112803(UL61010-1) 1: Option Z is not applicable. HRS Series 9.7 Required facility water flow (For water-cooled type) 9-9 HRX-OM-W038 Chapter 9 Documents 9.9 Sample DoC. Sample DoC.

9 #8!0!2!6 @4 @1 @8 MX MTS MY #0 #1 $1 w @9 i #2 !1 o q u r y e @6 @5 @3 @7 CY CY1L10 to 40 @2 $0 #9 @0$0 t !9 #5$2 #8 !2 !0 !6!7@4 @1 !8 !4 !

(Rotary actuator with a rotation of 270 is used.) The stopper ring is mounted on 120 counterclockwise from the standard position shown in Fig. 1-2 in Example 1.

Measures . 1-6 1.5.1 Safety Instructions for Use . 1-6 1.5.2 Personal Protective Equipment . 1-7 1.6 Emergency Measures. 1-8 1.7 Waste disposal . 1-9 1.7.1 Disposal of refrigerant and compressor oil. 1-9 1.7.2 Disposal of product . 1-9 1.8 Material Safety Data Sheet (MSDS) . 1-9 Chapter 2 Name and Function of Parts . 2-1 2.1 Part number of product . 2-1 2.2 Name and Function of Parts . 2

Measures . 1-6 1.5.1 Safety Instructions for Use . 1-6 1.5.2 Personal Protective Equipment . 1-7 1.6 Emergency Measures. 1-8 1.7 Waste disposal . 1-9 1.7.1 Disposal of refrigerant and compressor oil. 1-9 1.7.2 Disposal of product . 1-9 1.8 Material Safety Data Sheet (MSDS) . 1-9 Chapter 2 Name and Function of Parts . 2-1 2.1 Part number of product . 2-1 2.2 Name and Function of Parts . 2

Single clevis style (1) If a rod boot is installed with being twisted when installing a cylinder, it will cause a rod boot to fail during operation. (3) Double clevis style (1) Head side trunnion style (1) (2) Rod side trunnion style (1) (2) Note 1) Mounting nut is not equipped with single clevis style and double clevis style.

TROUBLESHOOTING 8 1 to 8 -13 8.1 Alarms and warning list . 8 2 8.2 Troubleshooting at power on . 8 3 8.3 Remedies for alarms . 8 4 8.4 Remedies for warnings . 8 -12 9. OUTLINE DRAWINGS 9 1 to 9 5 9.1 Driver . 9 2 9.2 Connector . 9 4 10.

SI unit output and coil numbering 1> 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 SI unit output no. SI unit output no.

CV/MVG (mm) BN 80 90 90 Bore A 18 22 22 24 AL 15.5 19.5 19.5 21 B1 13 17 17 22 BC 38 45 45 52 BP 1/8 1/8 1/8 1/8 BQ BZ 57.5 69 69 76 CD 9 9 9 10 CX 10 10 10 15 D 8 10 12 14 F 13 13 13 16 GA 73.5 83.5 83.5 90.5 GC 8 9 9 8 GD 55 64.5 64.5 70 GK 3.5 4 4 4 GL 6 9 9 11 GQ 4 7 7 8 Stroke range to 300 to 300 to 300 to 300 GB 0.033 0 E CXW 1/8 1/8 1/8 1/8 20 25 32 40 20 26 26 32 0.039 0 0.033 0

Porting specifications 04 1/2 Note) For bottom ported, port size is 1/2.

Instructions for Use . 1-6 1.5.2 Personal Protective Equipment . 1-7 1.6 Emergency Measures. 1-8 1.7 Waste disposal . 1-9 1.7.1 Disposal of refrigerant and compressor oil. 1-9 1.7.2 Disposal of product . 1-9 1.8 Material Safety Data Sheet (MSDS) . 1-9 Chapter 2 Name and Function of Parts . 2-1 2.1 Part number of product . 2-1 2.2 Name and Function of Parts . 2-2 2.3 Function of Parts . 2