10 ISO Class 8 10 10 0 L/min (ANR) ISO Class 7 ISO Class 7 10 10 Particle concentration [particles/m3] Particle concentration [particles/m3] ISO Class 6 ISO Class 6 10 10 0 L/min (ANR) 50 L/min (ANR) ISO Class 5 ISO Class 5 10 10 1000 1000 20 L/min (ANR) ISO Class 4 ISO Class 4 100 100 70 L/min (ANR) 30 L/min (ANR) 10 10 1 1 0 0.1 0.2 0.3 0.4 0.5 0.6 0 0.1 0.2 0.3 0.4 0.5 0.6 Particle diameter
40 20 30 Load weight m (kg) Load weight m (kg) 32 2 3 4 5 25 20 16 10 5 4 16 2 3 1 1 0.2 0.3 0.4 0.5 0.5 0.2 0.3 0.4 0.1 10 100 0.1 10 100 20 30 40 200 50 50 200 20 30 40 Eccentric distance l (mm) Eccentric distance l (mm) Over 50 stroke Over 100 stroke P=0.5MPa 100 80 63 P=0.5MPa 20 100 25 50 Load weight m (kg) 10 Load weight m (kg) 40 32 20 5 25 4 10 16 20 3 16 2 1 10 100 1 10 100 200
PILOT INDICATORS Thes brasa plugs when placed into the N" pilot Ports of an "A or B" style NVSA allow you to know it and yrhen pressure is in the Pilot cavity, You have an option ol either a r6d or green rlsing pin onyourindicalof, g A B o 0.39 (10) 0.16 (4) 0.67 07) 0.12 (3) 0.14 (3.5) 0.39 00) HOW TO OROER PART NO.
As a guide, an acceptable tightening level is reached by tightening the screw an additional 90 degrees (1/4 turn) from the point at which the screw is snug. (Refer to Figure 3.)
The following procedures are an example of how a test may be performed. It is intended as an overview and not as an all inclusive description. 1) Rotate the adjustment wheel counterclockwise (DECR) completely to relieve spring force.
8 15 13 3.5 1.5 5.5 200 200 10 107.0 108.0 107.5 108.0 154 164 12.5 10.5 17.5 15.5 6 4 8
In case of an emergency, please turn it off.
5 20 10 5 (Pulley ratio 4/7) ratio) Parameter *1,*2 Para.
MI-A0801-10 MI-A0801-20 MI-A1201-10 MI-A1201-20 MI-A1201-30 MI-A2001-10 MI-A2001-20 MI-A2001-30 MI-A2501-30 MI-A2501-50 MI-A3201-30 MI-A3201-50 MI-A0802-10 MI-A0802-20 MI-A1202-10 MI-A1202-20 MI-A1202-30 MI-A2002-10 MI-A2002-20 MI-A2002-30 MI-A2502-30 MI-A2502-50 MI-A3202-30 MI-A3202-50 MI-A0803-10 MI-A0803-20 MI-A1203-10 MI-A1203-20 MI-A1203-30 MI-A2003-10 MI-A2003-20 MI-A2003-30 MI-A2503
MI-A0801-10 MI-A0801-20 MI-A1201-10 MI-A1201-20 MI-A1201-30 MI-A2001-10 MI-A2001-20 MI-A2001-30 MI-A2501-30 MI-A2501-50 MI-A3201-30 MI-A3201-50 MI-A0802-10 MI-A0802-20 MI-A1202-10 MI-A1202-20 MI-A1202-30 MI-A2002-10 MI-A2002-20 MI-A2002-30 MI-A2502-30 MI-A2502-50 MI-A3202-30 MI-A3202-50 MI-A0803-10 MI-A0803-20 MI-A1203-10 MI-A1203-20 MI-A1203-30 MI-A2003-10 MI-A2003-20 MI-A2003-30 MI-A2503
) 0.6 0.7 Critical pressure 0.65 [658] (158) 0.5 0.6 0.55 Sonic [656] (151) 0.5 0.4 0.45 [654] (143) 0.4 0.3 0.35 0.3 [650] (133) 0.2 0.25 0.2 [646] (120) 0.15 0.1 0.1 0.05 2 2 2 2 3 2 3 2 3 2 03 04 VX211 VX22 VX23 VX2 4 VX2 50 VX2 60-02 VX2 602 10 15 5 3 5 10 15 20 25 30 4.5 10 15 20 30 40 50 60 3 2 6 30 60 8 25 35 10 20 40 10 35 Flow rate Q kg/h Figures inside [ ] indicate the saturated
-4 P211070-10 15 P611090-1 P811020-3 P811020-4 P211090-10 20 P611060-1 P611060-8 P811030-3 P811030-4 P211060-10 30 P611080-1 P811040-3 P811040-4 P211080-10 40 P611010-1 P611010-8 P611010-9 P811050-3 P811050-4 P211010-10 *1.
NAM250-N03D 38 172 76 10 NAM350-N04D 12 204 90 10 S Y M B O L S NAM450-N06D 34 225 106 10 NAM550-N10D 1" 259 122 10 NAM650-N14D 112" 361 160 10 NAM850-N14D 2" 473 220 10 Manual and Autodrain types are same overall dimensions.
to 40 Parallel style MHZL2 10 to 25 Wide type MHL2 10 to 40 Parallel style MHS2 (2 fingers) 32 to 63 Auto switch mounting screw Parallel style MHS3 (3 fingers)/MHS(L)3 32 to 63 Parallel style MHS4 (4 fingers) 32 to 63 Auto switch Angular style MHC2 10 to 25 1.
A cabtire cable with an O.D. 6 to 12 mm is applicable. Tighten each part with an appropriate tightening torque shown below.
Be SURE you understand the location and function of the ports BEFORE connecting the MPC to an airline and an application device. VERIFY that these lines are properly connected BEFORE enabling pneumatic pressure and BEFORE powering the MPC. 16 - IN20267 Power 8.3. Figure 8-2 MPC Power Cable Pin Connections Table 8-3 MPC Power Pinout Power in is 24 48 VDC +10% @ ~ 7Watts max 8.3.1.
When stopping at an intermediate point, this cylinder first moves the piston past the intermediate point and then returns it. Confirm this distance of an extra travel (overrun) in Graph 3 on page 10-10-7 and use the cylinder in applications in which the overrun will not cause any problem. Dedicated seal kit: Refer to "Construction" on page 10-10-9. 3.
SI unit of the SDTC or SDTD specification to an input block or valve.
Examine for My My=10(10+30)/1000=0.4 A3=30 Examine for My My=10(30+10)/1000=0.4 A6=10 M=W(Ln+An)/1000 Corrected value for center position distance of moment An: Table 3 Calculate allowable static moment Ma(Nm) Ma=K Mmax Work mounting coeficient K: Fig.3 Allowable moment coeficient : Graph 2 Max. allowable moment Mmax: Table 4 2=M/Ma May=1 x 1 x 15.9=15.9 Mymax=15.9 K=1 =1 2=0.4/15.9=0.0252