SMC Corporation of America
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an an ju t r t r st en m en en stm m t r st ju ju an ad ad ge le e Ang 5 gl n A B port A port B port A port 90 A 5 n gl ge e an ad t r ju en st m 180 Note) The drawings show the rotation range for the shaft's single flat.

W hen a current of 30m AD C or m ore i s appl i ed, t he over current ci rcui t i s archi ved, Er. 5 i s di spl ayed and t he operat i on st ops.

W hen a current of 30m AD C or m ore i s appl i ed, t he over current ci rcui t i s archi ved, Er. 5 i s di spl ayed and t he operat i on st ops.

MSQ Angle adjustment Range Figure 5 MSZ MSZ CRQ2X MSQX ad a ge ju Cl lt MRQ an st bo oc t r m nd en g k en tm wi in e us 10 10 se t r st on dj a ju an r on ti ot ad iti ta os ge at p ro er y nt io e b C e b n y is e ge n ad w d k an c ju lo t r C st in en g m bo st lt ju b ad M 0 ax 19 im e u ng m ra ro n ta tio Center position adjustment Table 2 R: Clockwise adjustment L: Counterclockwise

ad t ju ju en st st m m m st en en ju t r t r ad an an gle ge ge An 5 5 B port A port B port A port 90 A 5 ng ge le an ad t r ju en st m 180 Note) The drawings show the rotation range for the shaft's single flat.

1 Drain Port 3/4 3/4, 1 D I M E N S I O N S AD S E R I E S A U I T O D R A I N S S Y M B O L S H O W T O O R D E R A U T O D R A I N S E R I E S AD AD402-02 (1/4) PT AD402-03 (3/8) PT AD402-04 (1/2) PT AD600-06 (3/4) PT AD600-10 (1) PT H O W T O O R D E R A U T O D R A I N S E R I E S NAD NAD402-N02 (1/4) NPT NAD402-N03 (3/8) NPT NAD402-N04 (1/2) NPT NAD600-N06 (3/4) NPT NAD600-N10 (1) NPT

ad t ju ju en st st m m m st en en ju t r t r ad an an gle ge ge An 5 5 B port A port B port A port 90 A 5 ng ge le an ad t r ju en st m 180 Note) The drawings show the rotation range for the shaft's single flat.

M N C D 4-O T Q 2-P E B S K L U W AA A I AP R X AB Y + Stroke J V Z + Stroke AC AD 8-AF AE For standard stroke (mm) Bore size (mm) Stroke range (mm) AC E D AF G AE AD AB AA N M F L K B J AP C H I A 20 25 32 40 50 75, 100, 125, 150, 200 M5 x 0.8 depth 10 16.5 92 60 9.5 depth 6 30 75 11 12 45 25 5.5 80 60 55 108 M8 x 1.25 depth 14 25 24 30 99 M6 x 1 depth 12 16.5 113 65 11 depth 8 30 85 13

The table will move to the Target Ad Position according to a trapezoidal movement profile as shown in the diagram on the right, based td ta tc Time [s] on the set speed Vc [mm/s], acceleration Aa [mm/s2] tp and deceleration Ad [mm/s2]. In relative positioning mode the travel distance S [mm] is equal to the Target Position.

The table will move to the Target Ad Position according to a trapezoidal movement profile as shown in the diagram on the right, based td ta tc Time [s] on the set speed Vc [mm/s], acceleration Aa [mm/s2] tp and deceleration Ad [mm/s2]. Refer to the equations below for the acceleration time, constant velocity time and travel distance.

W hen a current of 30m AD C or m ore i s appl i ed, t he over current ci rcui t i s archi ved, Er. 5 i s di spl ayed and t he operat i on st ops.

CBM Standard (AD) Standard (BA) Diagrams seen from the rod side Except with air cushion When the mounting bracket is attached, the conditions placed like below are on a basis. Port and cushion needle are at the same rod/head position. Symbols of port location, cushion needle position and lock position are as the following diagrams.

Body mounting dimension AC AC Window for removal H AD Window for removal H AD Body mounting dimension Body mounting dimension Element Element FH FH (mm) adjustment range A B C D F G H I L M S U V r AC AD AG 1 2 3 4 5 Standard T dimension Port size (Nominal size) T dimension HOW 1/2B (04) 3/4B (06) 1B (08) 1 1/4B (10) 1 1/2B (12) 2B (16) 2 1/2B (20) 3B (24) 215 215 215 265 265 265 325 325

AD refresh time Define the address assignment direction of the EX600 I/O units connected to the Wireless Rmote unit. The address assignment direction is changed by mode 1/mode 2. Be careful about the I/O map. (Refer to the Unit address order of Wireless Base/Remote Module of the Operation Manual for details) Unit address order Mode 1: Assignment to the right from the end plate.

M E N S I O N S AD S E R I E S A U I T O D R A I N S S Y M B O L S H O W T O O R D E R A U T O D R A I N S E R I E S AD AD402-02 (1/4) PT AD402-03 (3/8) PT AD402-04 (1/2) PT AD600-06 (3/4) PT AD600-10 (1) PT H O W T O O R D E R A U T O D R A I N S E R I E S NAD NAD402-N02 (1/4) NPT NAD402-N03 (3/8) NPT NAD402-N04 (1/2) NPT NAD600-N06 (3/4) NPT NAD600-N10 (1) NPT FOR FURTHER TECHNICAL DETAILS

Fo.srorr cycL9 d.6 ad iitomitbntdutyontull True mulli-pu.pose valves. Any porl may be pressurized, back-pressured, or plugged wilhout affecling the spool action. Nomially used as a single inlet 4-way lo conlrol double acting rylindErs.

(Mounting thread) Note) If the fitting attached to the port interferes with the auto switch, please use the extension fitting assembly supplied with the air gripper. 4 x AA thread depth AB (Mounting thread) Prepared hole diameter AC through (Mounting hole) Note) AD depth AE AF depth AG S H When open AS When closed AR When closed AT M T D P B R N G Q F E C A 2 x AH thread depth AJ (Mounting

If the flow of the coolant water in a water cooled aftercooler is stopped or if the fan motor of an air cooled aftercooler is stopped, the high temperature compressed air will flow to the outlet side of the cooling equipment, causing the equipment on the outlet side (such as the AFF, AM, AD, or IDF series) to be damaged or malfunction. 2.

F: Angle adjustment range 5 E: Angle adjustment range 5 E: Angle adjustment range 5 B port Angle adjustment screw A port Clockwise rotation 0 8 0 e Allowable Lateral Load to the Piston Rod End gl 10 n a e nt gl e an m st t en u dj m a m st u ju m i in ad M Using friction fittings makes it easier to mount the load to the piston rod end.

Positioning pin hole Counterclockwise A port 5 Adjustment bolt A 5 22 9 (For counterclockwise rotation end adjustment) .5 e g nt ran Adjustment bolt B (For clockwise rotation end adjustment) e m e st s wi ju ck ad o d cl en B port er Clockwise nt on u 0 Cl o ti ta C ad o se With adjust bolt, internal shock absorber 19 ck ro wi ju wi k c st ge lo s C m e Adjustment angle per rotation of