SMC Corporation of America
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Power consumption P: 1000 [W] Q = P = 1000 [W] Cooling capacity = Considering a safety factor of 20%, 1000 [W] x 1.2 = 1200 [W] V: Power supply voltage HRSH 090 P HRSH Power consumption HRSE HRSE e Derive the heat generation amount from the output. Output (shaft power etc.) W: 800 [W] w Derive the heat generation amount from the power supply output.

4-7-17 2 Series VT325 Flow Characteristics/Weight Flow characteristics 1 2 (P A) 2 3 (A R) 3 2 (R A) 2 1 (A P) Weight Valve model Grommet Port size C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv VT325 VT325V (Vacuum spec. type) VT325 VT325V (Vacuum spec. type) 0.55 kg (For AC) 0.60 kg (For DC) Note) Values for a single valve unit.

Consult with your P/A sales representative. Note 3) Stroke will be reduced by 0.06" for rubber bumper type. *Combination of body options (CM) is available. Note 1) With switch is available on strokes 025(1/4") and greater.

EDV EVD FM For Option V V C11 PE P C11 FM PRS P TDR MC PE FOR OPTION V V IDFA Series 11-6 11 3 IDX-OM-W032 12 V 12 V V 12-2 12-1 1. 1 2 2. 3.

P Q Supply valve and release valve Supply valve Except nozzle diameter 05 type Note) Switch mounted style is also available. P. 13-4-17 to 13-4-19 13-4-4 4 Series ZM Vacuum Ejector: With Valve and Switch Construction: LZM1-KL-E Precautions Be sure to read before handling.

80 85 90 95 100 105 60 65 70 75 80 85 73 78 83 88 93 98 16 to 25 Relief port 2 x M5 x 0.8 2 x P through M5 x 0.8 R QA Q GC GB E MM GA D J C 2.8 A Width across flats L 2 x P through A1 H E 4 x T counterbore 0.5 B S Z (mm) S Z A A1 GB P Q QA R T B C D E GA GC H J L MM Bore size 5 30 40 50 5 10 15 20 25 30 40 50 10 15 20 25 20 16 12 11 5.5 4.5 9 4 4.5 2 16 12 26 20 40 32 8 6 30 27 M6 x 1.0

Low maintenance Bracket (End bracket, Center bracket) Output Without bracket With bracket Note) Nil B NPN output PNP output Nil P Note) The number of center brackets differ depending on the bar length. (Refer to the below table.) Not assembled.

Besides, be certain that a retaining ring is placed firmly into the groove of rod cover before supplying air at the time of installment. 75 Compact Cylinder/Anti-lateral Load Series CQ2 Replacement Procedure is 32, 40, 50 63, 80, 100 P.290 Construction Standard !3 !2 !1 !2 !1 !

Note 2) When changing the port location, please order a new port plug: MXH-P (2 pcs.)

N371) for details. 0.45(12) 1.54(0.70) 3,59(1 120) i tli6 h6 max. absorption enargy/hour p. 1 cfcls.

PRODUCT SPECIFICATIONS S E R I E S I P 5 0 0 0 / I P 5 1 0 0 IP5000 (Linear) IP5100 (Rotary) SERIES 20 100 psi SUPPLY PRESSURE STROKE SENSITIVITY LINEARITY HYSTERESIS 0.4" 3.4" 60 100 degrees WITHIN 0.1% F.S. WITHIN 0.5% F.S. WITHIN 1% F.S. WITHIN 0.75% F.S. WITHIN 1% F.S. WITHIN 2% F.S. WITHIN 0.5% F.S.

PRODUCT FEATURES S E R I E S I P 6 0 0 0 / I P 6 1 0 0 I HIGH PERFORMANCE POSITIONER Cross section of the exhaust system. I RESISTANT TO HOSTILE ENVIRONMENTS Employs the combination of the check valve and the labyrinth effect. I EXCEPTIONAL SHOCK AND VIBRATION PERFORMANCE EXH.

N371) for details. 0.45(12) 1.54(0.70) 3,59(1 120) i tli6 h6 max. absorption enargy/hour p. 1 cfcls.

2 x JC DD Depth from bottom (not including JD) JE D (Plugged with a hexagon socket set screw when front ports are used) Effective depth FB DE 2 x JU FD BC FA AW H Q Effective depth 1.2 (UU) SD BH AY BK JD BG AX 2 x P SF AV Front port (Plugged with a hexagon socket set screw when side ports are used) AU BB (Max.

type allows element replacement ZFB30 8, 10, 3/8" 75 Easily replaced filter element ZFB40 1/2" 100 ZFC 10 4, 5/32" ZFA ZFA IN/OUT straight piping ZFC5 In-line type 20 Easy installation and removal with One-touch fittings ZFB ZFB 6, 1/4" 30 ZFC ZFC 5 P.281 Light and compact molded resin parts 8, 5/16" 70 ZFC7 10, 3/8" 80 Easily replaced filter element 12 100 Note) Flow rate when initial

SImA, rma l vollaQl9"IV ()( less ZSE4B-~: -26 Vacuum Analog output 1-5V( S%F S.I. load lq>edaoc:e: IkO ZSE4B -~: -65 P NP output PNP open co~ eclor MmA ISE4LB~i -25 Posilive pressure NPN output NPN0)J (l OJi eclGf 30V. 8rhA, resma l vol tage'!

V: Power supply voltage Power consumption P: 7 [kW] Q = P = 7 [kW] P Cooling capacity = Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)