10 5 5 0 0 500 1500 2000 0 0 100 200 300 400 500 600 1000 Distance (mm) Distance (mm) Air purge: Yes Supply pressure: 0.1 MPa (7 L/min (ANR) per nozzle) Air purge: Yes Supply pressure: 0.05 MPa (3.5 L/min (ANR) per nozzle) 45 25 40 35 20 Discharge time (s) Discharge time (s) 60 Hz 30 15 25 1 Hz/60 Hz 20 1 Hz 10 15 Sensing DC Sensing DC 10 5 5 00 500 1000 1500 2000 00 500 1000 1500 2000 Distance
Work load [kg] Work load [kg] 40 30 Lead 8: LEY32DB Lead 10: LEY32B 30 20 24 19 Lead 16: LEY32DA 20 Lead 20: LEY32A 10 12 9 10 0 200 400 600 800 1000 1400 1200 0 0 200 400 600 800 1000 1200 0 Speed [mm/s] Speed [mm/s] LEY63 (Motor mounting position: Top/Parallel, In-line) 120 Lead 2.86: LEY63L (Top/Parallel type only) 100 Lead 5: LEY63C Work load [kg] 80 Area where the regeneration option
20 to 1000 35 32 70 27 81 108 1/4 1/4 52 20 40 95 17 27 59 13 12 11 M8 x 1.25 7 18 80 63 Up to 1000 20 to 1000 35 32 86 27 101 115 1/4 1/4 64 20 40 102 17 26 67 18 15 11 M10 x 1.25 7 18 99 80 Up to 1000 20 to 1000 40 37 102 32 119 129 1/4 1/4 78 25 52 113 21 30 72 23 17 13 M12 x 1.75 10 22 117 100 Up to 1000 20 to 1000 40 37 116 41 133 140 1/4 1/4 92 30 52 124 21 31 76 25 19 16 M12 x 1.75
B Counter bore depth C T Y HT 2-P (Piping port) L 0 -0.1 22 HP 8 TC X F WP 12.5 19.5 D GW 7 GP QW PW 4-LD Plug 2 x 4-MM Thread depth M Switch rail HS W K Plug CY3RG15 CR HR G G Q + Stroke Z + Stroke CY3RG25, 32, 40 CY3RG20 (mm) Model CY3RG15 CY3RG20 CY3RG25 CY3RG32 CY3RG40 J x E M5 x 0.8 x 7 M6 x 1 x 8 M6 x 1 x 8 M8 x 1.25 x 10 M8 x 1.25 x 10 B 8 9.5 9.5 11 11 HP 11 14.5 20 25 HR 30 36 41
Rubber stopper (P. 8-5-40) Metal stopper (P. 8-5-43) Basic style 2-M5 x 0.8 thread depth 8 Operating port 2-M5 x 0.8 3 11 Max. 12 (Retraction end adjuster) 12 I J 5.5 11 5.5 11 Adjuster at extension end N-M5 x 0.8 thread depth 6 36.5 (Adjuster at extension end) 11 5.5 5H9 depth 5 +0.030 0 Retraction end adjuster 6 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA
500 250 143 1000 500 250 Different from the initial value. *5.
Refer to How to Order Sub-plate Assembly on page 3-5-11. !3 !4 !
Value exceeding the maximum number will lead to a data error. 19 - (ii) Normal response Example 1 Start code 2 ID 0 Controller ID: 1 3 1 4 Function code 0 Function code: 02h 5 2 0 6 Number of bytes in Number of response data bytes = 2 bytes response data 7 2 8 Data 1 0 X contact status Data 9 4 Data 1 = "0 0100" 10 Data 2 8 Data 2 = "1000 1110" 11 E Calculated 12 value Checksum(LRC) 13 Calculated
Note 11) If the product is used at altitude of 1000 m or higher, refer to Operating Environment/Storage Environment (page 210) Item 14 * For altitude of 1000 m or higher. 200 A Thermo-chiller Basic Type HRSE Series Note 1) If the product is used at altitude of 1000 m or higher, refer to Operating Environment/Storage Environment (page 210) Item 14 * For altitude of 1000 m or higher.
(For details, refer to page 4-4-11.) 4-4-6 7 3 Port Pilot Operated Solenoid Valve Rubber Seal Series SYJ300 Construction (A) 2 (A) 2 N.C.
11 95 90 50 100 113 60 89 41 5 25 10 55 20 20 11 12 115 110 60 Mounting type E Bore d2 CK S5 K1 K2 l3 G1 l1 G2 EM G3 CA H6 R1 32 11 10 6.6 38 51 10 21 7 18 26 31 32 8 10 40 11 12 6.6 41 54 10 24 9 22 28 35 36 10 11 50 15 12 9 50 65 12 33 11 30 32 45 45 12 12 63 15 16 9 52 67 14 37 11 35 40 50 50 12 15 80 18 16 11 66 86 18 47 12.5 40 50 60 63 14 15 100 18 20 11 76 96 20 55 13.5 50 60 70
Stroke (mm) Up to 10 Up to 30 Up to 50 Up to 75 Up to 100 Up to 1000 Up to 800 Up to 1000 Up to 1000 Up to 800 Up to 1000 Up to 1000 Max. speed (mm/s) 20 Selection graph (6) (7) (8) (9) (10) (11) (12) 25 32 Caution If the cylinder is horizontally mounted and the plate end does not reach the load's center of gravity, use the formula below to calculate the imaginary stroke l that includes the
Stroke (mm) Up to 10 Up to 30 Up to 50 Up to 75 Up to 100 Up to 1000 Up to 800 Up to 1000 Up to 1000 Up to 800 Up to 1000 Up to 1000 Max. speed (mm/s) 20 Selection graph (6) (7) (8) (9) (10) (11) (12) 25 32 Caution If the cylinder is horizontally mounted and the plate end does not reach the load's center of gravity, use the formula below to calculate the imaginary stroke l that includes the
Without air cushion Foot type/ (L) Bore size (mm) Cushion valve Port LS ZZ 32 40 50 63 80 100 134 138 156 156 184 188 168 176 198 201 240 244 LH LY 4-LD LT (mm) Foot type ZZ + Stroke LS + Stroke X Y X Y LX Bore size (mm) Stroke range X Y LD LH LS LT LX LY LZ ZZ LZ 32 40 50 63 80 100 700 800 1000 1000 1000 1000 9 11 11 14 14 16 22 24 27 27 30 32 7 9 9 12 12 14 30 33 40 45 55 65 128 3.2 3.2
Cylinder speed 1000 mm/sec. Sequencer response time 0.1 sec. Detecting point dispersion Within 100 mm (= 1000 mm/sec. x 0.1 sec.) Take PLC response time into consideration when using.
Cylinder speed 1000 mm/sec. Sequencer response time 0.1 sec. Detecting point dispersion Within 100 mm (= 1000 mm/sec. x 0.1 sec.) Take PLC response time into consideration when using.
30 18 160 43 100 M16 x 2 M33 x 2 42 9 174 240 22 18 28 38 174 45 140 36 140 205 3/4 38 36 40 17 34 20 (mm) Without rod boot With rod boot Bore size (mm) S R T V W H ZZ e f h ZZ l 40 106 7.5 8 37 11 66 188 55 25 92 214 50 112 10 9 43 11 73 207 60 28 99 233 1/4 stroke 63 116 12 10 47 11 80 216 65 30 106 242 80 127 16 13 57 11 90 243 80 32 116 269 100 137 20 16 66 12 100 263 100 35 123 286
Electronic gear numerator *3 PA06 1 32768 Electronic gear denominator *3 PA07 1 2500 1500 750 3000 2000 1000 3750 2500 1250 Feel length multiplication (STM) (Multiplier) PA05 0 0(Less than stroke 1000)/ 0001(Stroke 1000 or more) Home position return type PC02 0 3Stopper type Home position return direction PC03 0001 1 (Motor side) Home position return Speed (rpm) PC04 500 90 150 300 75 113
35 27 11 65 120.5 46.5 20 14 38.5 9 2 12 100 52 120 104.5 1/4 50 15.5 77 75 18 32 to 1000 35 27 11 75 134.5 56.5 20 14 39.5 9 2 12 115 62 135 119.5 1/4 63 16.5 92 90 18 32 to 1000 40 32 13 95 169 72 25 20 45.5 12 4 16 126 63 153 150 1/4 80 19 100 102 22 37 to 1000 40 41 16 114 189 89 30 20 54 14 4 16 150 75 178 170 1/4 100 19 120 116 26 37 Bore size (mm) T N S V GL MM P GF K Q H VA W ZZ
/s Piston speed mm/s 4 Series MY2 Maximum Allowable Moment/Maximum Load Weight Moment/MY2H (Single axis) MY2H/M3 MY2H/M1 MY2H/M2 50 60 50 60 50 60 30 30 30 20 20 20 Moment Nm Moment Nm Moment Nm MY2H40 MY2H40 10 10 10 MY2H40 MY2H25 MY2H25 MY2H25 5 5 5 4 4 4 3 3 3 2 2 2 MY2H16 MY2H16 MY2H16 1 1 1 100 200 300 400500 1000 1500 100 200 300 400500 1000 1500 100 200 300 400500 1000 1500 Piston