SMC Corporation of America
Elite Part Number Search
Search Results "ARJM10-4"

D-M9W 15 + 40 (n 2) 2 105 + 40 (n 4) 2 110 + 40 (n 4) 2 115 + 40 (n 4) 2 n (n = 2, 4, 6, 8 ) (n = 4, 8, 12, 16 ) (n = 4, 8, 12, 16 ) (n = 4, 8, 12, 16 ) 2 (Different surfaces, Same surface) 1 10 80 85 90 D-M9V D-M9WV 10 + 30 (n 2) 2 80 + 30 (n 4) 2 85 + 30 (n 4) 2 90 + 30 (n 4) 2 n (n = 2, 4, 6, 8 ) (n = 4, 8, 12, 16 ) (n = 4, 8, 12, 16 ) (n = 4, 8, 12, 16 ) 2 (Different surfaces,

(mm) Weight (g) (1) D Applicable tubing KGH04-M5 KGH04-01 M5 x 0.8 4 2.4 9 16 4 1 4 KGH04-02 19.5 13.5 14 4 4 8 17 22 8 14 13 4 1 8 10 16 18 5.6 M5 x 0.8 KGH06-M5 KGH06-01 KGH06-02 14 3.4 16 14 4 10 12 14 18.5 22.5 23 10 15 18.5 17 1 8 1 4 6 13.1 10.4 17 3 8 KGH06-03 22 15.5 17 27 21 19 26 19 30 Connection thread 1 8 1 4 3 8 1 8 1 4 KGH08-01 KGH08-02 KGH08-03 KGH10-01 KGH10-02 28

Connector pin numbers PF2W504T--1 PF2W520T--1 PF2W540T--1 PF2W504T--2 PF2W520T--2 PF2W540T--2 4 4 0.5 0.5 4 3 16 16 2 2 40 40 5 5 2 1 Pin no. Pin description 1 DC(+) 2 NC/Analog output 3 DC() 4 OUT 31

76 86 101 151 199 249 Z 75 75 75 85 100 150 198 248 K 29 39 49 59 69 94 119 144 J 40 40 40 50 60 85 118 155 I 10 10 10 10 15 40 55 68 NN 2 2 2 2 3 4 5 7 NA 2 2 2 2 2 4 4 4 H 40 40 40 50 30 35 35 35 KA 125 173 223 G 16 16 16 16 21 26 39 19 HA 40 40 40 50 30 70 70 70 N 4 4 4 4 6 6 6 8 GA 16 16 16 16 51 61 109 159 Model F 35 35 35 40 30 55 65 70 13-/22-MXS16-10 13-/22-MXS16-20 13-/22-MXS16-30

Pin arrangement 1 2 Solid state switch Standard part no. 3 4 4 3 3 For the applicable auto switch model, refer to the table below.

111224 0 V FE 1325 FE FE -22No.EX-OMN0035CN-A (4)EX600-DXF 1 24 V() X0 2 0 0 3 1 4 0 V() X0 1 24 V() X1 2 2 1 3 3 4 0 V() X1 1 24 V() X2 2 4 2 3 5 4 0 V() X2 1 24 V() X3 2 6 3 3 7 4 0 V() X3 1 24 V() X4 2 8 4 3 9 4 0 V() X4 1 24 V(X5 2 10 5 3 11 4 0 V() X5 1 24 V() X6 2 12 6 3 13 4 0 V() X6 1 24 V() X7 2 14 7 3 15 4 0 V() X7 -23No.EX-OMN0035CN-A EX600-DXPF EX600-DXNF 0~7 1 24 V 0~7

Starting the Product . 4-1 4.1 Before Starting . 4-1 4.2 Preparation for Start . 4-2 4.2.1 Power supply . 4-2 4.2.2 Setting of circulating fluid temperature . 4-2 4.3 Preparation of circulating fluid . 4-3 4.4 Starting and Stopping . 4-6 4.4.1 Starting the product . 4-6 4.4.2 Stopping the product . 4-7 4.5 Check items after starting . 4-8 4.6 Adjustment of Circulating Fluid . 4-8 Chapter

checking . 4-4 4.4 Communication sequence . 4-7 4.5 Message configuration . 4-8 4.5.1 Message format . 4-8 4.5.2 Message example . 4-9 4.6 Function codes . 4-10 4.7 LRC . 4-10 4.8 Explanation of function codes . 4-11 4.8.1 Function code03 Reading multiple registers . 4-11 4.8.2 Function code06 Writing registers . 4-12 HRS090 Series HRX-OM-T004 Contents 4.8.3 Function code16 Writing multiple

) 1 9 ( 8 5 . 3 ) 6 0 1 ( 7 1 . 4 ) 7 9 1 ( 6 7 . 7 ) 4 2 ( 4 9 . ) 2 8 3 ( 4 0 . 5 1 ) 4 1 4 ( 0 3 . 6 1 ) 8 2 4 ( 5 8 . 6 1 S I 5 T L A ) 4 7 1 ( 5 8 . 6 ) 0 7 ( 6 7 . 2 ) 6 1 ( 3 6 . ) 7 ( 8 2 . ) 1 9 ( 8 5 . 3 ) 6 0 1 ( 7 1 . 4 ) 7 9 1 ( 6 7 . 7 ) 4 2 ( 4 9 . ) 2 8 3 ( 4 0 . 5 1 ) 4 1 4 ( 0 3 . 6 1 ) 8 2 4 ( 5 8 . 6 1 ) 9 4 4 ( 8 6 . 7 1 9 T L A ) 4 3 2 ( 1 2 . 9 ) 8 0 1 ( 5 2 . 4 )

8 #4 !9 @0 #8 #1 @8 @2 r $0 #6 #5 $2 @6 @7 $5 !5 !0 !6 !2 $3 u $1 #9 y #3 @9 #0 !4 @4 @3 @5 @1 !7 e !1 $4 o i w q t 40 Extension locking (F) #3 @9 #0 !4 @2 #7 !8 #4 #1 !9 #8 @0 @8 #2 r $0 #5 #6 $2 @6 @7 !3 $5 !5 !0 !6 !2 $3 u $1 #9 y !7 e $6 $4 !

VCC13-02(F) 45.9 Rc1/8 pilot (12) port G1/4, Rc1/4 IN(1) port 16.5 15 2 x 6 (for M5 mounting) G1/4, Rc1/4 OUT(2) port 6 22 22 58 6 25 25 50 15 15 G1/4, Rc1/4 RETURN(3) port M5 leakage detection port 30 19 11 23 Part number for sub-base VCC13-S02 02F [Rc1/4] [G1/4] 38.4 Sub-base material is aluminum + hard anodized containing PTFE. 70 0.5 to 2 650 Valve for Water and Chemical Base Fluids

Rc 1/4 G 1/8 G 1/8 G 1/4 G 1/4 NPT 1/8 NPT 1/8 NPT 1/4 NPT 1/4 20 20.5 22 24 Individual -X Technical data Note 1) Refer to page 888 for details about the optional parts (plug bolt).

4 4 18 4 10 14 1/8 1/4 19.5 17 7 12 M A L H Connection threads 8 M5 23 12 5 6 10 10 19.5 (R) 12 14 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 19.5 20 26.5 24.5 31.5 26.5 27.5 26 7 14 14 13 24 23 23 46 (R) Applicable tubing 8 14 18 26 21.5 10 17 29 41 24 19 22 M L A 46 58 25 12 H Connection threads Reference dimension for R threads after installation Male Elbow: KPQL, KPGL Applicable tubing (M5) Effective

checking . 4-4 4.4 Communication sequence . 4-7 4.5 Message configuration . 4-8 4.5.1 Message format . 4-8 4.5.2 Message example . 4-9 4.6 Function codes . 4-10 4.7 LRC . 4-10 4.8 Explanation of function codes . 4-11 4.8.1 Function code03 Reading multiple registers . 4-11 4.8.2 Function code06 Writing registers . 4-12 HRSH Series HRX-OM-Q033 Contents 4.8.3 Function code16 Writing multiple

4-3 4.3.2 Setting and checking . 4-4 4.4 Communication sequence . 4-7 4.5 Message configuration . 4-8 4.5.1 Message format . 4-8 4.5.2 Message example . 4-9 4.6 Function codes . 4-10 4.7 LRC . 4-10 4.8 Explanation of function codes . 4-11 4.8.1 Function code03 Reading multiple registers . 4-11 HRS100/150 Series 1.1 Communication mode and operation method 1-1 HRX-OM-S010 Chapter 1 Read before

V 6E V V V V V V V V V *4 V 8E V V V V V V V V V *4 V 11E V V V V V V V V V *4 V 15E1 V V V V V V V V V *4 V *1 When multiple options are combined, indicate symbols in alphabetical order.

) 1 9 ( 8 5 . 3 ) 6 0 1 ( 7 1 . 4 ) 7 9 1 ( 6 7 . 7 ) 4 2 ( 4 9 . ) 2 8 3 ( 4 0 . 5 1 ) 4 1 4 ( 0 3 . 6 1 ) 8 2 4 ( 5 8 . 6 1 S I 5 T L A ) 4 7 1 ( 5 8 . 6 ) 0 7 ( 6 7 . 2 ) 6 1 ( 3 6 . ) 7 ( 8 2 . ) 1 9 ( 8 5 . 3 ) 6 0 1 ( 7 1 . 4 ) 7 9 1 ( 6 7 . 7 ) 4 2 ( 4 9 . ) 2 8 3 ( 4 0 . 5 1 ) 4 1 4 ( 0 3 . 6 1 ) 8 2 4 ( 5 8 . 6 1 ) 9 4 4 ( 8 6 . 7 1 9 T L A ) 4 3 2 ( 1 2 . 9 ) 8 0 1 ( 5 2 . 4 )

deceleration FE FE = m x a = 4 x 4.9 = 19.6 (N) M1E M1E: Moment Z M1E max (From 4 of graph M1 at 600 mm/s) = 1.45 (NNm) .