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L L+A Fig. 1 Fig. 2 L 2 1 V E = W ( ) 2 1000 Collision speed V = 1.4 Va Find the kinetic energy E (J) of the load. 1 420 E = 1 ( ) = 0.088 2 1000 V = 1.4 x 300 = 420 Correction factor (reference value) Find the allowable kinetic energy Ea (J).

D I N 'E Terminal 'T Conduit Temlnal 'H 24' Lead hing 01 %'(AXSrd.) t M5 NOM 10-32 ilanual Overrida _Recessed, Nonlocking (Std.)

e E , q 1.5 8 1 2 1 6 2 0 Cylinder speed (in/sec.) Sl6ct a propr unit sccording to exhaust flo/, in lh6 following ordr: (l) Oete|mine air con6umplion ot actuaicrs uaed in tl|e ckc\rii.

e E , q 1.5 8 1 2 1 6 2 0 Cylinder speed (in/sec.) Sl6ct a propr unit sccording to exhaust flo/, in lh6 following ordr: (l) Oete|mine air con6umplion ot actuaicrs uaed in tl|e ckc\rii.

x 0.8 Weight (kg) 0.5 Dimensions 40 Not available to mount 40 Holding screw for main air supply (M2.5) 16 Main air suppy flow adjustment screw Initial air supply flow adjustment nut 11 Holding screw for initial air supply (M5) 82.5 9 MODEL M port M5 x 0.8 PRESS. 0.2MPa~10Pa 0.4~0.7MPa OPERATING PRESS IN Main air supply valve port TEMP. 5~60C S port M5 x 0.8 Initial air supply valve port

(M5) 01T r/ NPTF {A port onl ' Special order Notel) Indicale in parentheses al end of parl # Ex.

The connection M5 thread. Tighten thread to recommended torque value. 3. After installation, check internal leakage (leakage across seat) with inert gases. Perform a helium leak test depending on applications. Maintenance Warning 1.

Relief port M5 thread The body material has been changed to aluminum. ITVH X234 SRH Standard model no.

When error occurs Precautions W hen an e rror occurs,take the following steps. The tenSile strength of the cord is 49N (Skgf). Con t e nl~s___ __-+;;-:::-:::-:-~D~;S~~S~~ o ~n,-:-:cc_ ; I i Tensile strength greater than that will cause Set data is changed by some Influence Push the RESET key to set troubte.

C E E (KF flange) Fd (K flange) Fn D H B A G A Unit: mm Model A B C D E Fn Fd G H XLA-16-2 40 108 38 20 30 17 44 XLA-25-2 50 121 48 27 12 40 26 44 XLA-40-2 65 171 66 39 11 55 41 67 XLA-50-2 70 185 79 46 11 75 52 72 XLA-63-2 88 212 100 55 11 87 95 70 76 XLA-80-2 90 257 117 65 11 114 110 83 104 12 XL-OMS0001-B 6.

Heat exchanger Ventilation Circulating fluid Expansion E circuit valve A Expansion Inverter pump valve B Pump E Temp. sensor (Ref. discharge Ball tap Fluid level gauge TS Press. sensor Over flow port (Ref. low press.)

Weights Unit: g (oz) End boss type (symbol) Model H E M K MHZA2-6 28 (0.99) 28 (0.99) 28 (0.99) 28 (0.99) MHZAJ2-6 29 (1.02) 29 (1.02) 29 (1.02) 29 (1.02) 9

Description Material Note 1 Body Aluminum alloy Anodized 2 Branch passage PPS 3 Gasket HNBR 4 Sensor base PPS 5 Gasket HNBR 6 Sensor Au, Pt, Al2O3 Dimensions A B 70 H F E D 1.5 OUT IN 4 x P L K 2 x Port size N Symbol Model Port size A B D E F H K L N P PF3A703H Rc1, NPT1, G1 130 45 79.1 55.3 22.5 25 35 60 30 M4 x 0.7 depth 7 PF3A706H Rc1 1/2, NPT1 1/2, G1 1/2 170 60 94.1 70.3 30 68 45

Controller model Mounting screw Mounting bracket assembly LC1-1H-N3 M3 x 0.5 LC1-1-N3 Power terminal: TB LC1-1H-N5 M5 x 0.8 LC1-1-N5 LC1-1H-L3 M3 LC1-1-L3 LC1-1H-L5 M5 LC1-1-L5 Communication connector: CN3 Motor power line connector: CN5 Mounting with T-nuts Regenerative absorption unit connector: CN6 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main

Please contact us for the latest version.sales@ocaire.com, ISE30 M5 PT VERSION, INSTRUMENTATION, ISE30/ISE30A PRESSURE SWITCH, AA, ISE30 M5 PT VERSION, 0.21949 lb

Spacer Bolt Top cover Top Cover Mounting Bolt Tightening Torque Bore size Tightening torque 25, 32 0.46 to 0.60 lbfft [0.63 to 0.82 Nm] 2 CKZT -X2797 -X2798 Dimensions CKZT S-X2797 Clamp arm (Refer to page 5 for details.) 16 93 52 53 40 10 34 13 250.1 34 3 170.05 44 A 50.1 180.1 28 +0.1 0 C B Proximity switch 2 x 4 x M5 x 0.8 depth 6 G1/8 Unclamping port A D E G1/8 Clamping port Bore size

0 e e u u r i !1 r t !1 !0 Port 1 Port 2 Port 1 Port 2 Valve element A t q q o o w Valve element B y w Port 3 3 Port valve 2 Port valve Working Principle When the pilot operated solenoid valve !2 is not energized, the valve element A t connected to the piston u is closed by the return spring i. Then valve element B y connected to the valve element A t is open.

When the bearing slides, e the spring for returning to center also expands and contracts. When the force in the lateral direction is released, r the center shaft is returned to the neutral position by e the spring for returning to center. Lock Mechanism Unlocked condition Unlocked condition Locked condition Locked condition The table becomes free when unlocked.