when load is applied at "F" Table displacement due to yaw moment load Displacement at "A" when load is applied at "F" Table displacement due to roll moment load Displacement at "A" when load is applied at "F" A A F F A F L L L 6 6 6 L = 80mm L = 80mm L = 80mm MXP 6-5 MXPJ6-5 MXP 6-10 MXPJ6-10 MXP 6-5 MXPJ6-5 MXP 6-10 MXPJ6-10 MXP 6-5 MXPJ6-5 MXP 6-10 MXPJ6-10 0.05 0.05 0.06 0.04 Table displacement
Mounting Position (mm) D-C7 D-C80 D-C73C D-C80C A D-H7 D-H7C D-H7W D-H7NF Auto switch model D-A9 D-M9 D-M9W D-B59W D-B5 D-B64 D-G5NTL Bore size (mm) A A B B A B A B A B B A B 20 25 32 40 10.5 9.5 6 4 3 6 5 2.5 1.5 1 0 6.5 5.5 7 10.5 9.5 6 4 3 6 5 2.5 1.5 1 0 6.5 5.5 7 11.5 10.5 7 5 4 7 6 3.5 2.5 2 1 7.5 6.5 8 17.5 15.5 12 10 9 12 11 8.5 7.5 7 6 13.5 11.5 13 Note) Adjust the auto switch after
Semi-standard: 6J Semi-standard: 6 Piping port thread ty pe Piping port thread ty pe (9) Part No. (9) Part No. Rc C3SF-6J-A G C3SFF-6J-A Rc G C3SF-6-A NPT C3SFN-6J(Z)-A NPT C3SF-6(Z)-A Option symbol Semi-standard symbol W 6W Semi-standard: W Piping port thread ty pe (9) Part No. Rc G NPT C3SF-W(Z)-D C3SF-W-D Appearance and part No.
Semi-standard: 6J Semi-standard: 6 Piping port thread ty pe Piping port thread ty pe (9) Part No. (9) Part No. Rc C3SF-6J-A G C3SFF-6J-A Rc G C3SF-6-A NPT C3SFN-6J(Z)-A NPT C3SF-6(Z)-A Option symbol Semi-standard symbol W 6W Semi-standard: W Piping port thread ty pe (9) Part No. Rc G NPT C3SF-W(Z)-D C3SF-W-D Appearance and part No.
30 Sensitivity current mA 30 Rated operating current 50/60 Hz A 14/17 Rated power consumption 50/60 Hz kW(kVA) 4.3/5.3 (4.9/5.8) Communication function Contact input/output, Serial communication (RS-485) Noise level*7 dB(A) 65 Accessories*8 Operation Manual (for installation/operation) 2 copies (English 1 pc.
F A A Lr MXF8 Lr = 20 mm 0.08 0.04 0.03 MXF8-30 Table displacement amount (mm) Table displacement amount (mm) Table displacement amount (mm) MXF8-30 0.06 MXF8-10 MXF8-20 MXF8-30 0.03 0.02 MXF8-20 0.04 0.02 MXF8-20 MXF8-10 0.01 0.02 0.01 MXF8-10 0 0 0 10 20 30 40 10 20 30 10 20 30 40 Load (N) Load (N) Load (N) MXF12 Lr = 30 mm 0.10 0.08 MXF12-50 0.06 Table displacement amount (mm) Table displacement
1 2 Holding block (A) 1 2 1 Switch block (A) 1 1 Switch block (B) 1 1 Holding block (A) 1 No.
Symbol A R P Symbol 2 Body class 2 Orifice dia. LVQ Metric sizes 4 04 06 4 6 N.C.
A B C D E F G H LAT3-10 10 49 4 60 50 4 10.5 LAT3-20 20 69 6 25 90 80 14 20.5 LAT3-30 30 89 6 25 120 110 24 30.5 13 - LAT3-50 Note 1) Refer to Mounting screw specifications and tightening torques in section 4.3 Mounting (P.24). Note 2) The length of the part of the dowel pin inserted into the positioning hole should be shorter than the specified depth.
IDX-OM-W025-A PRODUCT NAME Refrigerated Air Dryer MODEL / Series IDF22E-20(-A,C,K,L,M,R,T) IDF22E-30(-A,C,K,L,M,R,T) IDF37E-20(-A,C,K,L,M,R,T) IDF37E-30(-A,C,K,L,M,R,T) IDF55E-30(-A,C,L,M,R,T) IDF75E-30(-A,C,L,M,R,T) Please read this manual prior of using the air dryer. Keep the manual readily available for reference. To Customers Thanks for purchasing SMC Refrigerated Air Dryer.
B-1 A-1 B-2 A-2 B-3 A-3 Cable color Signal Nil 2 1 6 5 3 4 A A B B COM-A/COM COM-B/ Brown Red Orange Yellow Green Blue S Standard cable Cable color Connector D terminal no. Shield 12 13 7 6 9 8 3 Brown Black Red Black Orange Black Vcc GND A A B B B-4 A-4 B-5 A-5 B-6 A-6 Connector B terminal no.
Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 37 (mm) r2 = 2.7) A part z1 m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Calculation of weight m1 = a x b x c x Specific gravity Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} X 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10
Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 37 (mm) r2 = 2.7) A part z1 m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Calculation of weight m1 = a x b x c x Specific gravity Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} X 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10
30 30 30 30 30 45 55 68 58 67 73 21 26 32 23.5 28 34.5 46 55 66 59 71 82 34.5 40 46.5 Stroke range Bore size (mm) N NB P S XA XL Y WL WM ZZ M MA MB MC MM 40 50 63 Up to 1000 Up to 1000 Up to 1000 44 50 56 74 83 89 1/4 1/4 1/4 168 183 204 12 16 16 6 6 6 9.5 12.5 15 42 42 52 16 16 16 4 5 5 12 15 15 M6 x 1.0 M8 x 1.25 M8 x 1.25 10 14 14 208 228 254 39 42 52 8-25-17 17 Series MGZ With Mounting
Cooling Capacity HRS100-A -20/40(50 Hz) HRS100-A -20/40(60 Hz) 14 14 12 12 Ambient temperature 90F (32C) Cooling capacity [kW] Cooling capacity [kW] 10 10 Ambient temperature 90F (32C) Ambient temperature 104F (40C) Ambient temperature 104F (40C) 8 8 6 6 4 4 Ambient temperature 113F (45C) Ambient temperature 113F (45C) 2 2 0 0 41 [5] 50 [10] 59 [15] 68 [20] 77 [25] 86 [30] 95 [35] 41 [5]
When using a stopper cylinder for intermediate stopping of a load connected directly to a cylinder, etc. The operating ranges shown in this catalog apply only for stopping of a pallet on a conveyor. When using a stopper cylinder to stop a load connected directly to a cylinder, etc., the cylinder thrust will become a lateral load.
0 i @3 o @4 @8 @7 u @2 r y RE A B REC !9 #0 w #1 #0 t q e @9 #1 @1 !9 t @5 @6 @1 #0 q !1 w#1 #0 @2 @9 #1 @1 CX CY 40 to 63 MQQ M @0 @4 @8 i u o @3 !1 #1 #2 @8@4 !2 @7 !3 #3 r !4 e !6 @6 RHC MK(2) #7 #6 !5 RS Q G RS H A !9 @5 t @6 y #0 w @1 #0 #5 !7 #4 q @9@2 !8 #1 #2 !7 #5 #4 @1 RZQ MI W S CEP1 Component Parts CE1 No. No.
-A-10, HRSE018-A-10) 8.5.2 HRSE012/018/024-A-20/23 0.14 14 0.12 12 Circulating fluid pressure [MPa] Outlet : 60Hz 10 0.10 Pump head [m] 8 0.08 Outlet : 50Hz 0.06 6 0.04 4 Available area Return port 0.02 2 0.00 0 2 4 6 8 10 12 14 16 Circulating fluid flow [L/min] Fig. 8.5-2 Pump capacity (HRSE012-A-20/23, HRSE018-A-20/23, HRSE024-A-20/23) HRSE Series Product Warranty 8-9 HRX-OM-R039 Chapter
Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 2.7) A part z1 r1 = 37 (mm) Calculation of weight m1 = a x b x c x Specific gravity m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Moment of inertia around Z1 axis Z1 = {m1(a2 + b2)/12} X 10-6 z1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) A = 0.8 x 10-6 + 0.006 x 372 x 10-6