SMC Corporation of America
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D 3 Set the test operation select switch to the Up Position, when performing the test operation mode by using set up software (MR ConfiguratorTM) E 2 F 1 0 (Note) This table indicates the status when the switch is set to "Down".

The recommended the parameter for each actuator . 37 6.1 The recommended value of the parameter [LEF] . 37 6.2 The recommended value of the parameter [LEJ] . 38 6.3 The recommended value of the parameter [LEY] . 39 7.

OK OK NG OK OK 17 4-2 W (N) WeN) () V m/s) () Va (m/s) L (m) M (Nm) E (J) g (m/s) (9.8m/ ) (N) W1 (Nm) V=1.4Va MFL F (V=0.) 1 L <> W1.VaW10 M2F2L2 F2 M= WeL =5VaWL 3 2 L W2 M3F3L3 F3 an= F Fmax 3 L F W4 Fmax : () W Ek= W V 2g (V=0.

AS Series Speed Controller with One-touch Fittings In-line Type RoHS AS-F AS-F TMH ASD AS AS-FE KE AS-FG 4 types of mounting variations 4 types of mounting variations AS-FP AS-FM DIN rail mounting DIN rail mounting Direct mounting Direct mounting AS-D AS-T L-bracket mounting L-bracket mounting ASP Holder mounting Holder mounting ASN AQ DIN rail mounting bracket ASV AK Holder for speed controller

F Thread type Rc G NPT NPTF Nil F N T Option Part No. Description Part no.

H I K L M N OA OB Q RA RB T 20 25 43 37 10 10 36 5.5 M6 x 1.0 43 8 6 22 4.5 M5 x 0.8 7.5 13 10 5 0.8 45 39 10 12 40 5.5 M6 x 1.0 48 10 6 26 4.5 M5 x 0.8 7.5 13 10 5 0.8 6 Series C55 Dimensions 32 to 63 2-G1/8 Port size Auto switch Z Q F 2 x 4-OB counterbore RB H thread effective depth C J E I 4-N through T D M Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080

) A (Table traveling distance) 36 L 7 7 27 40 40 33 (40) 21.7 20 n x 3.5 Vacuum port M5 x 0.8 x 5 34 B D x 100 (= E) 100 F Dimensions [mm] Model L A B n D E F 11-LEFG16-S-50 144 57 130 4 15 11-LEFG16-S-100 194 107 180 11-LEFG16-S-150 244 157 230 11-LEFG16-S-200 294 207 280 6 2 200 11-LEFG16-S-250 344 257 330 11-LEFG16-S-300 394 307 380 8 3 300 11-LEFG16-S-350 444 357 430 11-LEFG16-S-400

Actuator effective torque STa (S is 10 times or more) (Example) (Example) F: Pressing force (N) Friction coefficient Accelerating torque calculation Ta = I (Nm) Static torque calculation Weight m F = mg Ts = F x l (Nm) I : Moment of inertia Static torque calculation Movement Refer to page 11.

Actuator effective torque STa (S is 10 times or more) (Example) (Example) F: Pressing force (N) Friction coefficient Accelerating torque calculation Ta = I (Nm) Static torque calculation Weight m F = mg Ts = F x l (Nm) I : Moment of inertia Static torque calculation Movement Refer to page 11.

MY1W25 MY1W32 MY1W40 MY1W50 MY1W63 F 4 4 6 6 6 6 6 T 6 6 7 12 12 15 15 EA 7 10 12 14 17 20 26 W 58 58 70 88 104 128 152 Shock absorber unit model RB0806 RB0806 RB1007 RB1412 RB1412 RB2015 RB2015 8 Series MY1W Side Supports Side support A MY-SA 2-G 2-H E E F A B C D Side support B MY-SB 2-J 2-H C D A B J M4 x 0.7 M5 x 0.8 M6 x 1 M8 x 1.25 C 15 25 35 45 E 4.9 6.4 8 11.7 F 3 4 5 6 H 3.4 4.5

37 10 14 18 18 22 26 With rod boot (mm) f l 901 to 1000 h Bore size (mm) e 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 501 to 600 601 to 700 701 to 800 801 to 900 901 to 1000 801 to 900 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 501 to 600 601 to 700 701 to 800 32 40 50 63 80 100 73 37.5 50 75 100 125 86 98 111 136 161 186 36 23

AS-F (Hexagon width across flats) (Hexagon width across flats) AS22 1FE-01-04SK 12.7 27.5 20.4 4 9.3 26 TMH AS22 1FE-01-06SK 13.5 27.5 20.4 13.4 6 11.6 27 12 12 R 1/8 44.9 49.9 48 53 14.2 AS22 1FE-01-08SK 18.5 32.4 25.3 8 15.2 29 ASD AS22 1FE-01-10SK 21 40.2 33.1 14.1 10 18.5 31 Applicable tubing O.D. d AS22 1FE-02-04SK 16 34.4 25.2 4 10.4 36 AS AS22 1FE-02-06SK 17 34.4 25.2 17.7 6 12.8 37

Set range is AL.01 to AL.51. to Communication mode Setting and checking 37. Press the [SEL] key once. The set screen of communication mode is displayed on the digital display. PV SV 38. Select communication modeDIOfrom the table below with [] key or [] key, and confirm by pressing SEL.

Unused bit is fixed to 0. 4.10 Register Map HRSH Series 4-20 HRX-OM-R028 Chapter 4 MODBUS communication function 4.10.5 Circulating fluid set temperature The circulating fluid set temperature can be set by specifying the circulating fluid set temperature with the selected temperature unit (C or F) during SERIAL mode.

RWwn+18 (LEC)7.1 RWwn [bit0-7]1 (LEC) (RWrn+8[bit 8])1 INP(Rx8B)1 INP (LEC*6)6.3 IO RWwn [bit0-7]0(RWrn+8[bit 8])0 () INP 31 - 11.4 (LEC) IO No (LEC*6) IO IO (LEC) RWwn [bit8-F]0 RWwn+18 (LEC)7.1 RWwn [bit0-7](063) RWwn [bit8-7](LEC) (RWrn+8[bit 8])1 RWwn [bit8-F]0(RWrn+8[bit 8])0 32 - 12. 12.1 [IN] () IO ID No Rx00Rx2F Modbus Rx30Rx7F Rx80 OUT0 Rx81 OUT1 Rx82 OUT2 Rx83 OUT3

OO PP QQ RR SS TT UU VV Model Applicable gasket ML1C25 ML1C32 ML1C40 10 14 37 24 8 27 20 8 C11.2 16.5 18 46 30 12 32 22 8 C11.2 17 23.5 12.5 10 53 40 34 26 C14 A B C D E F G H I J K L M N O P Q R S T U V W Y Z Model ML1C25 ML1C32 ML1C40 274 260 137 140 88 108 87 85.5 60 74 97 100 42.5 26 34 206 28 24 5.6 9 5.5 M5 x 0.8 8.5 M6 x 1 9.5 11 M8 x 1.25 322 306 161 160 108 131 101 99.5 64 92 118

(Fluid: Dry air) Analog output: 3% F.S. 1% F .S. (PF2A7 0) 2% F .S. (PF2A7 1) 1% F.S. (Fluid: Dry air) Monitor unit 1% F.S. 1% F.S. (Fluid: Dry air) Monitor unit Monitor unit Monitor unit 0.1% F.S. 1% F.S. 0.1% F.S. 0.1% F.S. 0.1% F.S. (Fluid: Dry air) Analog output: 5% F.S. Analog output: 0.5% F.S.

M L K J H F E D C B A N 69 (76) 77 (84) 87 (97) Q N 61 69 79 Q N 61 (68) 69 (76) 79 (89) N 61 (68) 69 (76) 79 (89) Normally open Normally closed VXD2142 , 30 30 35 59 59 62 57 74 81 34 51 58 29 37 43 34 43 47 20 20 23 92 92 95 104 (116) 26 44 59 66 28 35 40 3 8 8 14 23 39 47 47 48 39 65 78 86 42 46 56 52 56 66 63 80 90 3 8 1 2 32.5 118 (136) 17.5 23 39 45.5 3 4 VXD2150 VXD2260 1 VXD2152 VXD2262

-A () 3 m 100 g ZS-37-B (L ) 3 m 100 g ZS-29-T 4 (312 ) 40 g -11No.PF-OMO0007CN (IN ) 1 DC(+) 2 OUT2 3 DC(-) (OUT ) 4 OUT1 INOUT (UP) (SET) (DOWN) LED (OUT1) (OUT2) (OUT1) LED (OUT1) OUT1 ON (OUT2) OUT2 ON (UP) ON/OFF (SET) (DOWN) ON/OFF -12No.PF-OMO0007CN D Digit /1 digit/5 L/min 3 digits (35=)15 L/min F F.S.