3 q e w t !2 !4 !3 e !0 q o Spring acting/Spring return/With auto switch (Built-in magnet) Single acting/Spring extend/With auto switch (Built-in magnet) 12, 16 !2 t w !4 y i !1 !3 e !0 q o t w !0 r q o i !1 !3 e 20, 25 w t !2 !4 !1 !3 e !0 q o w t !0 r o q !1 !3 e Component Parts Rod end nut No.
C D 15 (mm) Auto switch model A D-F9 B C D D-A9 D-F9 D-A9 D-F9 D-A9 D-F9 Bore size (mm) 17.5 15 D-A9 21.5 76.5 72.5 56.5 60.5 Note) Auto switches cannot be installed in Area C in the case of 15. 25, 32 (mm) A D-Y5 D-Y7 D-Y7W B C D Auto switch model D-Y5 D-Y7 D-Y7W D-Y5 D-Y7 D-Y7W D-Y5 D-Y7 D-Y7W D-Z7 D-Z8 D-Z7 D-Z8 D-Z7 D-Z8 D-Z7 D-Z8 Bore size (mm) 25 22 101 103 47 47 78 78 22 32 30.5
, NPT, G) Width across flats KA J DL DL RF MO DL MM HR E D E HN Air-hydro CA2H Air-hydro CA2WH Auto switch Made to order Precautions H1 AL Width across flats B1 Width across flats of hexagon hole WB 2-cushion valve A N F K N B C M H S + Stroke ZZ + Stroke With rod boot e 9 l f h + l ZZ + l + Stroke (mm) HN Stroke range Bore size (mm) B C (MAX) P A AL B1 D DL E F G H H1 HR J K KA M MM MO N
4-counter bore B T T 4-J x E 0 -0.1 L Cylinder tube outer circumference: TC Hard chrome plated + special treatment WP X F GW GP 4-LD D QW PW 2 x 4-MM thread depth M W K G G Q + Stroke Z + Stroke (mm) Model B C CB D F G GP GW H HA HC HP HB HT K J x E A 10.5 181. 16.6 181. 5 33 31.5 32 30 171. 31 171. 2 4.2 171. 14 M5 x 0.8 x 7 12-CY3R15 19.5 19.5 21.6 191. 6 39 37.5 39 36 211. 38 241. 3 5.2
Determination of load's kinetic energy (E) E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 1548.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 1548.)
Applicable cable O.D.: 3.5 to 7 (Reference) 0.5 mm2 2 core and 3 core wires equivalent to JIS C 3306.
Note 3) A particulate generation test has been conducted in a vacuum environment of 10-Pa. a t e l u g c 2 Stainless steel linear guide & low particulate generation vacuum grease e i t n r a e p r a 0.0 10 0 20 10 w t i o o n L Operation cycles a t e l u g c e 1 i t n r a e Particulate generation from the linear guide unit has been reduced with the use of a stainless steel linear guide and
Note 3) A particulate generation test has been conducted in a vacuum environment of 10-Pa. a t e l u g c 2 Stainless steel linear guide & low particulate generation vacuum grease e i t n r a e p r a 0.0 10 0 20 10 w t i o o n L Operation cycles a t e l u g c e 1 i t n r a e Particulate generation from the linear guide unit has been reduced with the use of a stainless steel linear guide and
Note 3) A particulate generation test has been conducted in a vacuum environment of 105 Pa. a t e l u g c Stainless steel linear guide & low particulate generation vacuum grease e i 2 t n r a e p r a 0.0 10 0 20 10 w t i o o n L Operation cycles a t e l u g c e i t n 1 r a e Particulate generation from the linear guide unit has been reduced with the use of a stainless steel linear guide and
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Leakage test result a t e l u g c Stainless steel linear guide & low particulate generation vacuum grease e i 2 t n r a e CX p r a 0.0 10 0 20 10 w 10-10 0 5 10 t i o o n L DTime [min] Operation cycles -X e e a a l l k k a t e l u w w g a a c 2 e i o
10VA 5W AC1500V1 AC500V 1 DC500V50 0+50 3585RH 1500V600V Hz 2 10G XYZ 3 250g 6 6 6 6 6 6 6 6-1 1 1 1 (DC12V60mA) B A G N D A B COM RS COM COM 12V G N D A B COM OUT1 AC100V OUT2 COM COM OUT3 COM DC24V GND AC100V (C E U 1) (C E U 1-D ) CEU1 +12V + 12V 1 A 680 CO M +12V + 12V 1 B 680 COM +12V D C 1 2 V60 m A GND RS COM FG AC100V 6 6 6 6-3 3 3 3 1C E U 1 CE1-R**
C: Contents revised in several place. D: Contents are added. E: Modified errors in text. F: Modified errors in text. G: Contents revised in several places. [September 2016] H: Contents revised in several places.
C A D Model D C Model D C Mounting bolt (mm) Mounting bolt (mm) M18 x 125 l M18 x 135 l 125 135 C (D) Q2B18010DC C (D) Q2B20010DC M18 x 135 l M18 x 145 l 135 145 C (D) Q2B18020DC C (D) Q2B20020DC M18 x 145 l M18 x 155 l 145 155 C (D) Q2B18030DC C (D) Q2B20030DC M18 x 155 l M18 x 165 l 36 155 39 165 C (D) Q2B18040DC C (D) Q2B20040DC M18 x 165 l M18 x 175 l 165 175 C (D) Q2B18050DC C (D) Q2B20050DC
(c) COM A byte (d+3) byte (b+2) Word(c+1) COM B byte (d+5) byte (b+4) Word(c+2) COM C byte (d+7) byte (b+6) Word(c+3) COM D : : (c, d=0 to) NOTE Read carefully the user manual of PLC which is used as a master.
Determination of loads kinetic energy (E) bore size Determination of bore size Review of larger bore size E Es E Es E = m E 2 a ( ) 2 (Refer to page 29) 1000 P Ps P Ps Determination of pressure for intermediate stop (p) (Refer to page 29) Review of larger bore size and operating pressure Model determination 1 Magnetically Coupled Rodless Cylinder Low Profile Guide Type Series CY1F Types
E: Emitter C: Collector B: Base B: Base Load Electrical appliance connected to the output, e.g. relay, solenoid, etc. E: Emitter C: Collector Fig.2 NPN type Fig.3 PNP type Operating humidity range Humidity range for proper operation of equipment. Load current Current flow through the electrical appliance once the output is energized.
: Push locking slotted style R port P/E port Pilot valve exhaust is centralized to main valve.
GC GA XAH7 depth XL 2-Rc P PB A + Stroke E B + Stroke FA FB C + Stroke PA + Stroke GB Q G J K IE S XAH7 depth XL (mm) MLGPM, MLGPL common dimensions Standard stroke (mm) Bore size (mm) B C DA FA FB G GA GB GC H HA IA IB IC ID IE 14 11 100 44 16 12 44 54 10 120 M6 34 52 14 4 14 40 25, 50, 75 100, 125, 150, 175 200, 250, 300, 350 12 13 107 44 20 16 47 64 148 M8 35 64 19 50 11 7 14 115 49 20
A A A A A A 10 Formic acid (25%, Room temperature) C C C C B D 11 Organic solvent Citric acid A B C C D A 12 Acetic acid (10%, Room temperature) B B A A C C 13 Lactic acid (5%, 20C) A B A B D A 14 Linseed oil A C C B A A 15 Polassium chloride A A A A C B 16 Calcium chloride A A A A A B 17 Other (oil, gas, etc.)