G P G P t = 1 mm x 2 t = 0.5 mm x 2 (21) (6) 3 3 MK t = 1 mm x 2 t = 0.5 mm x 2 CKQ CLKQ (66) 330.05 330.05 CK1 38 With shims (Clamping height: HIGH type) With shims (Clamping height: LOW type) CLK2 33 33 (66) 72 120 38 C W W K 120 SR SR 65 (Guide tube O.D.)
Applicable solenoid valves: Series SYJ314, SYJ314M, SYJ324, SYJ324M (SYJ300 3 port valve) (SYJ300 3 port valve) Plug (VJ3000-33-1) Plug (VJ3000-33-1) Seal the unused R port at the end the manifold. Seal the unused R port at the end the manifold.
Z Y X S NN NB NA MM LZ LY LX LT LH LC LA H F D C B A Bore size (mm) 10 16 90 [91] 7 5 46 M8 x 1 9.5 12.5 M4 x 0.7 32 16.5 24 1.6 9 4.5 38 28 8 4 14 12 15 91 [92] 9 6 47 M10 x 1 9.5 12.5 M5 x 0.8 42 25 33 2.3 14 5.5 46 28 8 5 20 18 15 Rod Side Flange Style (F) CVJ5F Rod extended/retracted when energized M5 x 0.8 M5 x 0.8 53.5 [54.5] M5 x 0.8 Manual override 28 [34.5] Width across flats B1
Z Y X S NN NB NA MM LZ LY LX LT LH LC LA H F D C B A Bore size (mm) 10 16 90 [91] 7 5 46 M8 x 1 9.5 12.5 M4 x 0.7 32 16.5 24 1.6 9 4.5 38 28 8 4 14 12 15 91 [92] 9 6 47 M10 x 1 9.5 12.5 M5 x 0.8 42 25 33 2.3 14 5.5 46 28 8 5 20 18 15 Rod Side Flange Style (F) CVJ5F Rod extended/retracted when energized M5 x 0.8 M5 x 0.8 53.5 [54.5] M5 x 0.8 Manual override 28 [34.5] Width across flats B1
(2/4) Alarm operations Alarm threshold and others A.RUN P.RUN A.STP Code Alarm name OFF Display Default setting Settable range Display Set temperature 1.0oC (33.8 o F) (-)5 1.034.0 oC (33.893.2 o F) Monitoring method Circulating fluid drop 0 03 AL04 discharge temp.
unit (F) E P F Model ZX100 K6 Circuit diagram (Circuits other than those with vacuum switch are shown as below.)
Operating pressure: 0.4 MPa Model Selection Illustration When gripping a workpiece as in the figure to the left and with the following definitions, F: Gripping force (N) : Coefficient of friction between attachments and workpiece m: Workpiece mass (kg) g: Gravitational acceleration (= 9.8 m/s2) mg: Workpiece weight (N) F F the conditions under which the workpiece will not drop are mg F F
Operating pressure: 0.4 MPa Model Selection Illustration When gripping a workpiece as in the figure to the left and with the following definitions, F: Gripping force (N) : Coefficient of friction between attachments and workpiece m: Workpiece mass (kg) g: Gravitational acceleration (= 9.8 m/s2) mg: Workpiece weight (N) F F the conditions under which the workpiece will not drop are mg F F
How to Order CL MLGC Number of auto switches Standard L 100 200 F JN CL1 CNA 2 3 1 n 3 S n CB L 100 200 F JN A33 CDL1 With auto switch CV/MVG Air cylinder with auto switch Auto switch CXW Without auto switch (Built-in magnet) Lock-up Cylinder Refer to table below for auto switch model.
CL How to Order MLG CNA Standard L 100 200 F JN CL1 CNG MNB A33 L L 100 200 F JN CDL1 With auto switch CNS Lead wire length Air cylinder with auto switch 0.5m 3m 5m Nil L Z CLS Lock-up Cylinder Mounting CB Auto switch type Single clevis Double clevis Centre trunnion B L F G C D T Basic Foot Front flange Rear flange Select an applicable auto switch model from the table below CV/MVG Cylinder
8.5 13 12.7 2-2.6 (For manifold mounting) 28.1 [35.1] (Light/Surge voltage suppressor) 2-2.6 (For mounting) + 14.5 3 23 20 2.3 55.6 [57.8] 12.7 28.1 [35.1] 8 9 M5 x 0.8 (P, R port) 23 7 (Bracket) R P 11 11.5 1.4 (PE port) L plug connector (L): SYJ52-L-M5 (-F) M plug connector (M): SYJ52-M-M5 (-F) DIN terminal (D): SYJ52-D-M5 (-F) M8 connector (MO): SYJ52-WO-M5 (-F) Applicable cable O.D.
Refer to the Specific Product Precautions. 22 24 Z ZZ G (NN 1) x H H 13 13 6.5 6.5 A B 3.2 6.5 7 7 15 1 4 3H9 depth 3 +0.025 0 NN x M4 x 0.7 thread depth 8 B A 3H9 depth 3 +0.025 0 HA GA Section AA Section BB (mm) F 25 25 40 50 38 50 N 4 4 4 4 6 6 G 9 12 13 15 20 27 H 28 30 20 28 23 28 NN 2 2 3 3 4 5 GA 17 12 33 43 43 83 HA 20 30 20 28 46 56 I 13 8.5 9.5 10.5 24.5 38.5 J 19.5 29 39 56 60
Note) Applicable model (mm) E G LE-D-3-1 LE-D-3-2 LE-D-3-3 A B E 20 25 30 F 6.7 8.3 12 D 33 40 49 LES8D LES16D LES25D 45 60 81 57.6 74 99 4.5 5.5 6.6 G F B A D Note) Model numbers for 1 side holder. 23 Electric Slide Table/High Rigidity Type Series LESH Model Selection 1 Step Motor (Servo/24 VDC) Servo Motor (24 VDC) Selection Procedure For the compact type LES series, refer to page 1.
49 LS LS 89.2 23 33 79.2 89.2 10 to 50 75, 100 33 49 32 Rod end nut 38.5 Front flange type: CLQF32 54.2 48 34 8 4-5.5 65 56 17 32 B + Stroke A + Stroke Front flange type (mm) Stroke range Without auto switch With auto switch Bore size (mm) A B A B 82 23 33 72 82 10 to 50 75, 100 33 32 Rod end nut 38.5 Rear flange type: CLQG32 54.2 48 34 7 32 B + Stroke 8 A + Stroke 4-5.5 65 56 Rear flange
Body size Port size M5 M5 x 0.8 U10/32 10-32UNF 1 M5 x 0.8 10-32UNF AS 2 0 F A 1 1 M5 06 G Body size 1 AS 2 0 S F A 1 2 01 06 G Body size 2/3/4 Body size Made to Order Refer to page 678 for details. 2 1/8, 1/4 3 3/8 4 1/2 Push-lock type Type 2 Elbow 3 Universal Seal method Nil Without sealant S With sealant Note) Face seal method is used for the G thread type.
MXS20L-10 MXS20L-20 MXS20L-30 MXS20L-40 MXS20L-50 MXS20L-75 MXS20L-100 MXS20L-125 MXS20L-150 169 223 275 3.11-33 Series MXS Dimensions MXS 25L/Symmetric style ZZ Z Basic style 62 0.5 55 15 M 4.5 (With stroke adjuster at retraction end) 2-M8 X 1.25 thread 15 deep 6H9 6 deep +0.030 0 N -1 X F 2 30 6H9 6 deep +0.030 0 6-M6 X 1 thread 10 deep 31 F (With stroke adjuster at extension end) FF 38
the workpiece will not drop are F F mg 2 x F > mg Number of fingers Gripping force at least 10 to 20 times the workpiece weight The 10 to 20 times or more of the workpiece weight recommended by SMC is calculated with a safety margin of a = 4, which allows for impacts that occur during normal transportation, etc. and therefore, When = 0.2 When = 0.1 mg F > 2 x mg F = x 4 2 x 0.2 mg F =
the workpiece will not drop are F F mg 2 x F > mg Number of fingers Gripping force at least 10 to 20 times the workpiece weight The 10 to 20 times or more of the workpiece weight recommended by SMC is calculated with a safety margin of a = 4, which allows for impacts that occur during normal transportation, etc. and therefore, When = 0.2 When = 0.1 mg F > 2 x mg F = x 4 2 x 0.2 mg F =