SMC Corporation of America
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Search Results "CCVS23-0-S"

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+ Stroke B RR Z + Stroke ZZ + Stroke With rod boot 75 l 15 40 h + l Z1 + l + Stroke ZZ1 + l + Stroke (mm) Bore size (mm) Stroke range (mm) 125 140 160 A AL B BA BB BC BY BZ C CDH10 CT CX CZ D GA GB GC 0 0.2 0 0.2 0 0.2 + 0.3 + 0.1 + 0.3 + 0.1 + 0.3 + 0.1 + 0.084 0 + 0.084 0 + 0.100 0 50 47 145 75 18 110 136 115 25 17 32 64 36 16 107 58 to 1000 50 47 161 78 18 2 110 146 128 28 17 36 72

P & S P A 0 1 1 3 43 y. qB siB s/B s/g 9a SP & SPA 0114 54 B B B B sP & sPA 0115 45 S s I 2 MTNG HOLES .FOOTPRINT' CLASS 1 SUB.PLATE MOUNTED 'SWAY VATVES '49 i.'8 (?

S. O R LESS H YSTERESI S 0. 5% F. S. O R LESS PREPEATABI LI TY 0. 5% F. S. O R LESS SEN SI TI VI TY 0. 2% F. S.

6 e Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com q #5 #4 $9 $1 $0 ^1 ^0 $7 $8 ^0 !2 #2 @4 !3 %0 %1 %2 !0 @2 ^3 @1 #3 ^6 $6 %3 @6 $5 ^2 %5 %6 @5 $4 ^0 $3 #1 ^5 %7 @8 $2 o %8 ^7 #0 %9 ML2BS %4 ^4 !

6 e q #5 #4 $9 $1 $0 ^1 ^0 $7 $8 ^0 !2 #2 @4 !3 %0 %1 %2 !0 @2 ^3 @1 #3 ^6 $6 %3 @6 $5 ^2 %5 %6 @5 $4 ^0 $3 #1 ^5 %7 @8 $2 o %8 ^7 #0 %9 ML2BS %4 ^4 !

CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing

CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing

+0.058 0 +0.058 0 +0.070 0 +0.070 0 A clevis pin and snap ring are packed with the double clevis style.

+ Stroke N 52 2 x Speed controller valve Top width across flats 3 20 17 30 45 W 10 45 14 11.5 3 M16 x 1.5 45 Hs 30 IA IB 40 35 20 38 Width across flats 17 4 x M6 Thread depth 12 F R15 0.050 d90.093 +0.027 H8 0 Shaft: 12 Hole: 12 97 78 + Stroke 190 + Stroke Clevis width CKG1A: 16.5 CKG1B: 19.5 CKG1C: 12.5 Unit: mm +0.3 0 +0.4 0 +0.5 0 Symbol F IA IB N S W Hs Bore size 40 50 63 45.5 5 53 52

0 Transfer speed [m/min] = 0.1 0.5 0.4 CE2 Graph (3) Graph (4) Bore size 20, 32/ = 0 Bore size 20, 32/ = 0.1 0.3 ML2B 0.2 0.1 C J G5-S 80 80 1000 2000 3000 4000 0 5000 Lateral load F [N] 32 CV 70 70 MVGQ 60 60 CC 50 50 32 RB 40 40 30 30 J 20 20 20 D20 10 10 -X 200 0 10 20 30 40 10 20 30 40 Transfer speed [m/min] = 0 Transfer speed [m/min] = 0.1 Data 10-9-13 13 Series RSH/RS1H Specific

load F [N] 500 500 50 400 400 RZQ RS1H50, 63, 80 300 300 1.0 RS1H80 MI W S RS1H50 200 200 RS1H63 0.9 Operating pressure P [MPa] 0.8 100 100 CEP1 0.7 10 20 30 40 10 20 30 40 0 0 0.6 CE1 Transfer speed [m/min] = 0 Transfer speed [m/min] = 0.1 0.5 0.4 CE2 Graph (3) Graph (4) Bore size 20, 32/ = 0 Bore size 20, 32/ = 0.1 0.3 ML2B 0.2 0.1 C J G5-S 80 80 1000 2000 3000 4000 0 5000 Lateral

Built-in magnet for auto-switches CE1 CE2 Maximum Driving Speed of Cylinders ML2B 1000 1000 900 900 C J G5-S Load factor: 10% Load factor: 50% 800 800 Cylinder speed (mm/s) Cylinder speed (mm/s) 700 700 600 600 CV 500 500 400 400 MVGQ 300 300 200 200 CC 100 100 0 0 12 16 20 25 32 40 50 63 80 100 RB SYJ3000 VZ3000 VZ5000 VF3000 Bore size (mm) J Series Variations DDetailed specifications

line G D 0 V 24 V G D 0 V 24 V G D 0 V 24 V G D 0 V 24 V Black White Brown Blue Crimp connector SL-J1A Main transmission line Transmission line 24 V 0 V Power supply { 24 V 0 V Power supply { 24 V 0 V D G D G 24 V 0 V 24 V 0 V D G D G 24 V 0 V The above is the example of using dedicated S-LINK flat ribbon cable SL-RCM00. 24 V 0 V Power supply { 24 V 0 V Power supply { DG DG 1-3-35 36 Series

Configuration One thermo-chiller for one master. 2 2 R D R D 3 3 S D S D 5 5 S G S G Master This product Fig. 3-13 Connection of RS-232C HRS Series 3.3 Installation 3-25 HRX-OM-W032 Chapter 3 Transport and Setting Up 3.4 Piping Piping port size Connect piping firmly. Incorrect piping might cause leakage of supplied or drained fluid and wet surrounding area and facility.

Example operation of electric conductivity control Target electrical conductivity value : 25.0 [S / cm] Electrical conductivity control hysteresis : 5.0 [S / cm] Electric conductivity [S/cm] 30 25 Target electrical conductivity value 20 Electric conductivity 10 Solenoid valve : Open 0 Solenoid valve : Close Elapsed time Fig.5-7 Example of electrical conductivity control 5.4 Description of

Left adjustment bolt Right adjustment bolt Concentrated piping on left Concentrated piping on right 1 mm to 0 mm 1 mm to 0 mm Both sides standard type 25 mm to 0 mm 1 mm to 0 mm AL type 1 mm to 0 mm 25 mm to 0 mm Piping port Piping port AR type 25 mm to 0 mm 25 mm to 0 mm A type 1542 Weight reduced by 50% Weight reduced by 50% Lightweight Lightweight Weight kg 15 25 10 Series CY1F CY1H MY2H

Piping bore Piping bore Piping bore Cylinder driving speed (mm/s) Cylinder driving speed (mm/s) Cylinder driving speed (mm/s) MI W S CEP1 CE1 CE2 No load No load Load ratio Load ratio ML2B C J G5-S Bore size (mm) Bore size (mm) Bore size (mm) CCVL10/11/12/13 4.

# 0 0 P R [CR] No. 1 0 0 0 0 0 1 1 # 0 0 P W [CR] No. 1 0 0 0 0 0 1 1 # 0 0 P W [CR] No. ):0,1,2,3,4 30 - # 0 0 F R [CR] No. # 0 0 F R [CR] No. + 0 1 2 3 4 5 # 0 0 F W [CR] No. + 0 1 2 3 4 5 # 0 0 F W [CR] No. 31 - # 0 0 S R [CR] No. # 0 0 S R [CR] No. 0 0 1 : 0.1(s) # 0 0 S W [CR] No. 0 0 1 : 0.1(s) # 0 0 S W [CR] No. )1 (0.1 )0 32 - # 0 0 O R [CR] No. # 0 0 O R [CR] No. 0