drain cock C2SL-36-A With bowl guard C2SL-36C-A C3SL-36-A C4SL-36-A Nylon Drain cock with barb fitting With bowl guard C3SL-36W-A C4SL-36W-A Metal Without drain cock C2SL-2-A C3SL-2-A C4SL-2-A With level gauge C3LL-8-A C4LL-8-A With drain cock C2SL-23-A C3SL-23-A C4SL-23-A With level gauge C3LL-38-A C4LL-38-A *1 The bowl assembly comes with a bowl seal.
Relief type A + Stroke B + Stroke Dimensions (mm) A B GB Bore size 40 63 100 58 48.5 36.5 GB 73 61.5 38 78 66.5 38 Dimensions not listed above are the same as the standard model.
Connector A terminal no. B-1 A-1 B-2 A-2 B-3 A-3 Circuit Cable color Brown Red Orange Yellow Green Blue A A B B COM-A/COM COM-B/ 2 1 6 5 3 4 Cable color Connector D terminal no.
Standard Stroke (mm) Manufacturable stroke range Model Standard strokes CXSJ6 CXSJ10 CXSJ15 CXSJ20, 25, 32 60 to 100 10, 20, 30, 40, 50 80 to 150 10, 20, 30, 40, 50, 75 110 to 150 10, 20, 30, 40, 50, 75, 100 110 to 200 Strokes beyond the standard stroke range are available as a special order.
I.D. 427 TU0425-100-X3 TU0604-100-X3 TU0805-100-X3 TU1065-100-X3 TU1208-100-X3 4 6 8 10 12 2.5 4 5 6.5 8 285 Max. operating pressure 142 0 4 32 70 105 140 10Clean Series Operating temperature F Only available in 20m rolls.
Reset (RES) Keeping RY(n 1)A or RY(n 3)A (RES) ON for 50ms or longer RY(n 1)A RY(n 3)A 1 allows an alarm to be deactivated. Some alarms cannot be deactivated by Reset RY(n 1)A or RY(n 3)A (RES). (Refer to section 10.4.1.) If RY(n 1)A or RY(n 3)A (RES) is turned ON with no alarm occurring, the base circuit will not be shut off.
It is again necessary to connect a contact protection box in order to extend its life. Please contact SMC in this case.
It is again necessary to connect a contact protection box in order to extend its life. Please contact SMC in this case.
L1 From V = 1.4 Va We = W V = 4/100 10 1.4 300 = 168 [N] Me3 = 1/3 We (L2 A) = 1/3 1680.032 = 1.8 [Nm] 3 = Me3/Me3 max = 1.8/7.2 = 0.250 cDynamic moment Examine Me3. Find the load equivalent to impact We. Damper coefficient = 4/100 (urethane damper) Me3 Guide central axis L2 We W A Find the value of Me3 max when V = 1.4 and Va = 420 mm/s from Graph (2). Me1 Examine Me1.
l b --" ,m'i$;:f, 4ra 20 Standard Stroke lmm) 30 40 50 60 75 100 125 175 200 225 250 275 300 350 400 150 Y f r N t * w -l Yw Y Ns a a a a a a a a a a a a a o a a a a a a a a a a a a a a a a a '*?
32 32 41 44 LS 50.3 50.3 62.7 66.2 B 10 10 17.5 17.5 A 22 22 29.5 32.5 LS 40.3 40.3 51.2 54.7 B 5 5 7.5 7.5 A 17 17 19.5 22.5 12 16 20 25 35.3 35.3 41.2 44.7 35 to 100 35 to 100 75 to 200 75 to 300 5 to 30 5 to 30 5 to 50 5 to 50 A + Stroke LS + Stroke CUJ Bore size (mm) L Y X LZ LY LX LT LH LG L1 LD CU 12 16 20 25 4.5 5 5.8 5.8 8 8 9.2 10.7 44 48 62 66 29.5 33.5 42 46 34 38 48 52 2 2 3.2
As a standard, the mesh count for the strainer is 100 mesh. However, the size and shape of foreign objects that occur depends on the operating environment. Check the fluid status and choose an appropriate mesh count. The supply water to a boiler includes materials that create a hard sediment or sludge such as calcium and magnesium.
A A A A A A A (7.5) (12) C4, C6, C8 [4(A), 2(B) port] C4: 4 one-touch fitting C6: 6 one-touch fitting C8: 8 one-touch fitting P = 16 41 23 C10 [1(P) SUP port] C10: 10 one-touch fitting 2 L n Dimensions Formula L1 = 16n + 53, L2 = 16n + 68 n: Station (Maximum 16 stations) 3 4 5 6 7 8 9 10 11 12 13 14 15 16 L1 L2 (L3) (L4) 85 101 117 133 149 165 181 197 213 229 245 261 277 293 309 100 116 132
LECSA1-S3 200 LECSA2-S1 100 LECSA2-S3 200 Model Compatible motor capacity [W] Incremental 17-bit encoder (Resolution: 131072 pulse/rev) Compatible encoder Power voltage [V] Allowable voltage fluctuation [V] Rated current [A] Control power supply voltage [V] Allowable voltage fluctuation [V] Rated current [A] Single phase 100 to 120 VAC (50/60 Hz) Single phase 85 to 132 VAC Single phase 200
Type] Size: 20 Size: 40, 60, 80, 100 A A A A-A r q e w A A-A e r q w Component Parts No.
are assuming a 100 PSI pneumatic system to carry air at a 1 PSI loss per 100 feet.
are assuming a 100 PSI pneumatic system to carry air at a 1 PSI loss per 100 feet.
A large amount of gripping force is provided through the use of a double piston mechanism, while maintaining a compact design. Double-end type oil-impregnated resin bearings with a metal backing are used for all shafts.
slow speed from A to B due to the fixed throttle of the SSC valve.