20 CY 15 10 MG 0.1 10 CX 0.1 6 6 D-X 0.03 5 5 10 20 30 40 50 100 10 20 30 40 50 100 20Overhang L (mm) Overhang L (mm) Graph (4) V = Up to 800 mm/s (Up to 700 mm/s for 15, 20) Data CXSJM CXSJL Graph (3) V = Up to 600 mm/s CXSJM CXSJL 20 32 0.5 25 1 15 20 0.5 15 Weight m (kg) 10 0.1 10 0.1 6 6 10 20 30 40 50 100 5 10 20 30 40 50 100 5 Overhang L (mm) Overhang L (mm) Note) V = 700 mm/s for 15
10 to 32 Graph (3) V = 200 mm/s Graph (4) V = 400 mm/s 4 20 3 10 32 5 25 1 Weight m (kg) Weight m (kg) 32 20 25 0.5 1 20 15 0.5 15 10 CXSM CXSL CXSM CXSL 10 5 0.1 5 0.1 10 20 30 40 50 100 10 20 30 40 50 100 Overhang l (mm) Overhang l (mm) Graph (5) V = 600 mm/s Graph (6) V = 700 mm/s (800 mm/s for 10) 2 0.6 20 32 25 0.4 1 15 20 Weight m (kg) Weight m (kg) 0.5 15 0.2 10 10 CXSM CXSL CXSM
(10V/10pulse) CCW CCW 10[V] 10[V] 10[pulse] 10[pulse] 0 0 10[pulse] 10[pulse] 10[V] 10[V] CW CW A (124) (10V/1Mpulse) B (124) (10V/10Mpulse) CCW CCW 10[V] 10[V] 1M[pulse] 10M[pulse] 0 0 1M[pulse] 10M[pulse] 10[V] 10[V] CW CW 5 25 5 C (124) (10V/100Mpulse) D (3) CCW 10[V] 8[V] 100M[pulse] 0 100M[pulse] 400[V] 0 10[V] CW E 2(45) CCW 8[V] 0 8[V] CW 1. 2. () 3. 400V8V/800V 4. 5.
Pad diameter (mm) 10 10 Vacuum entry port (Refer to Table (1) for applications.)
200 10 125 15 15 + 55(n-2)/2 n = 2, 4, 6, 8 20 20 + 55(n-2)/2 n = 2, 4, 6, 8 20 20 20 + 55(n-2)/2 n = 2, 4, 6, 8 25 25 + 55(n-2)/2 n = 2, 4, 6, 8 10 100 35 100 + 100(n-2) n = 2, 3, 4, 5 35 + 30(n-2) n = 2, 3, 4, 5 10 55 35 55 + 55(n-2) n = 2, 3, 4, 5 35 + 30(n-2) n = 2, 3, 4, 5 10 10 + 40(n-2)/2 n = 2, 4, 6, 8 10 10 + 40(n-2)/2 n = 2, 4, 6, 8 10 10 + 30(n-2)/2 n = 2, 4, 6, 8 15 10 + 45(n
70 0.01 2 40 6000 100 40 0.1 3 90 1000 20 1 4 10 +3 5 5 10 +7 6 0 < Cp 5 +10 7 5 < Cp 10 Cw 0.5 8 0.5 < Cw 5 9 5 < Cw 10 x Cp > 10 Cw > 10 > 5 [How to Perform a Test to Check the Performance] ISO 12500, which sets out the test method to be used in order to check the filter performance for each of the three kinds of contaminants, is indicated below.
14 8 10 14 12 14 4 10 19 6 12 20 13 21 26 36 38 65 4 4 4 18 10.4 20.7 D1 10 L2 A D2 8 H 6 10 10 19.5 12.8 22.8 Connection threads 10 (R) 8 (R) 15.2 18 26 21.5 12 26.3 Applicable tubing 10 18.5 29 41 24 29.4 M L1 17 17 12 20.9 46 58 25 31.4 22 D1 Reference dimension for R threads after installation Note 1) D1 indicates the maximum diameter.
14 14 14 11.5 12 13.5 14.5 12 12.5 14.5 15 10 10 11.5 11.5 12 The auto switches listed below cannot be mounted on 63.
Metric size 3.2 4 6 8 10 3.2 4 6 8 10 6 8 10 12 10 12 16 Tubing O.D.
.Communication setting screen 36.Contact output 46 Setting screen 10.
79 16 24 32 40 47 55 12 113 23 34 45 57 68 79 16 201 40 60 80 101 121 141 Standard Stroke Weight With Shock Absorber (g) (mm) Body weight Additional weight of magnet and rail Model MXP6-5 MXP6-10 MXP10-10 MXP10-20 MXP12-15 MXP12-25 MXP16-20 MXP16-30 Model Standard stroke 80 105 130 210 210 320 640 830 10 10 13 20 17 23 20 23 MXP6 5, 10 MXP10 10, 20 MXP12 15, 25 MXP16 20, 30 Shock Absorber
Green LED lights up Indicator light Lead wires Oilproof vinyl heavyduty cord, 0.11" (2.7mm), 20" (0.5m) 2.3x 10-4in2 (0.15mm2) x 3 cores (Brown, Black, Blue) 2.8x 10-4in2 (0.18mm2) x 2 cores (Brown, Blue) Note 1) Refer to page 50 for auto switch common specifications. Note 2) Refer to page 50 for lead wire lengths.
Enable Generates an error. 1 Unit Disable Does not generate an error. -10..10 V -5..5 V -20..20 mA 0..10 V 2 Analogue input range Sets the analogue input device range. Selects the analogue input range. -10..10 V Channel 0..5 V 1..5 V 0..20 mA 4..20 mA Offset binary Offset binary.
5 $0 @8 #7 #6 $1 F G Area G (10) Enlarged view F 10, 15 w u i o !1 #2 q !3 r y e @6 @5 @3 $1 #0 @7 #1 10 Component Parts Note No. Description Material No.
0 10 20 30 40 50 60 50 60 40 30 20 10 0 10 20 30 Atmospheric pressure dew point ( C) 14-19-10 7 Membrane Air Dryer Series IDG Calculation of inlet air flow rate Q1, and confirmation of compressed air supply capacity.
48 48 (63) 0 (10) 40 D-M9, D-M9V 10 (17) 0 0 54 59 (66) 48 58 (65) 5 (12) D-F9W, D-F9WV 10 (17) 0 0 54 59 (66) 48 58 (65) 5 (12) ( ): Denotes the values of D-A9V, D-M9V and D-F9WV.
Outlet air atmospheric pressure dew point C P1 = 0.5MPa P1 = 0.5MPa 10 10 20 20 P1 = 0.7MPa P1 = 0.7MPa 30 30 40 40 0 40 80 120 160 20 40 60 80 0 Outlet air flow rate l/min (ANR) Outlet air flow rate l/min (ANR) IDG20 IDG30 P1 = 0.3MPa P1 = 0.3MPa 0 0 Outlet air atmospheric pressure dew point C Outlet air atmospheric pressure dew point C P1 = 0.5MPa 10 P1 = 0.5MPa 10 P1 = 0.7MPa 20 20 P1
9 10 D8 10 9 10 D-B5/B64 13 13 14 14 D-B59W -X 4 4 4.5 5 D-H7/H7W/ D-H7NF/H7BAL HS HS HS HS HS 20 2024.5 27 62 72 27.5 7 8.5 9 10 D-H7C 25 27 29.5 64.5 74.5 30 8 9 9 9 D-A3/D-A44 9 10 9 10 Data 4 4 4.5 5 D-G39/D-K39 D-G5NTL Since this is a guideline including hysteresis, not meant to be guaranteed.
8 16 10 12 12 8 10 10 41 5 8 31 25 to 300 15.5 25 22 17 32 12 10 16 10 12 12 8 10 10 46 6 8 34 25 to 400 19.5 32 24 22 38 16 14 19 11 13 13 8 10 10 53 8 9 40 25 to 500 21 40 24 24 41 18 16 21 12 17 17 11 16 16 54 10 11 48 25 to 500 21 (mm) Bore size (mm) K NN P S T V W ZZ MM NB IA NA -0.020 -0.053 -0.020 -0.053 -0.025 -0.064 -0.025 -0.064 20 5 M22 x 1.5 1/8 81 9.5 4.5 6.5 138 M8 x 1.25 15