SMC Corporation of America
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Search Results "HECR010-A2-E"

ON(SVON ON) 1-193 E ONSVON ON 1-194 E 1-195 E 1-196 E EEPROM 1-197 E EEPROM 10 CPU CPU CPU 1-198 CPU E 1 SV1.00 RESETSVONSETUP 52 - 13. / A () (50mm ) () () 5m 5m 10% 15m 20% 53 - 14 / 141.

Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)

Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com V 1000 1 2 420 1000 1 2 E = W (-) 2 E = 1 (-) 2= 0.088 Find the kinetic energy E (J) of the load. Find the allowable kinetic energy Ea (J). Confirm that the kinetic energy of the load does not exceed the allowable kinetic energy.

ON(SVON ON) 1-193 E ONSVON ON 1-194 E 1-195 E 1-196 E EEPROM 1-197 E EEPROM 10 CPU CPU CPU 1-198 CPU E 1 SV1.00 RESETSVONSETUP 52 - 13. / A 50mm () () 5m 5m 10% 15m 20% 53 - 14 / 14.1 LE () EMG 1000 1 54 - /Best Pneumatics No UL UL1310 Class2 14.2 55 - 14.3 90~100 DC24VSVON a) b) c) d) e) 56 - D (100 ) 14.4 1. 2. 3. 4. 5. 6. 7. 8. /-10603585% 57 - 14.5 5 14.6

Load at the end of lever arm = m a2 = m1 + m2a22 + k a12 12 3 Dk = m2 2r2 5 -X 387 MK Series Design/Selection Caution 1.

D1 D1 A2 T T Inch L4 L5 A1 A2 M MAX.

22 L For positive pressure ZSE60 A2 M F L 22 For compound pressure Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Piping specifications Option A2 B2 URJ 1/4, Piping in the backward direction Nil None TSJ 1/4, Piping in the backward direction Bracket A URJ 1/4 and

R I E S (N)ASV T E E T Y P E S Y M B O L S W I T H B U I LTI N S I L E N C E R B O D Y T Y P E 1 Tee 2 Elbow P O R T T H R E A D M3 M3x0.5 M5 M5x0.8 01 1/8 02 1/4 03 3/8 04 1/2 T U B I N G D I A M E T E R Metric (mm) 04 4mm 06 6mm 08 8mm 10 10mm 12 12mm Imperial (inch) 07 1/4 09 5/16 11 3/8 13 1/2 Model Applicable T H D1 D2 D3 L1 L2 L3 A1 A2 M1 M2 Weight g tube O.D Max Min Max Min Max Min

9 #4 #8 E @4 r @7 @5 o !0 i @8 !8 !6 $2 #2 !3 #3 !7 !2 @3 e #1 t y $1 u w q @6 @2 @1 $3 E' Section E-E' CYV32 t !9 $0 @1 @2 y u @6 #9 @5 @4 @3 Note Component Parts No. No.

L RR,IU1 E, A, L, t MM NX Part no A2 NDHIO boreSlzc D

(Standard body dimensions) DE E -X -XA17 -XA21 20DA Data MM MM 30 (Standard body dimensions) 30 (Standard body dimensions) T A A E E 6-17-13 12 Simple Specials: -XC14: Change of Trunnion Bracket Mounting Position These changes are dealt with Simple Specials System.

Determination of loads kinetic energy (E) bore size Determination of bore size Review of larger bore size E Es E Es E = m E 2 a ( ) 2 (Refer to page 29) 1000 P Ps P Ps Determination of pressure for intermediate stop (p) (Refer to page 29) Review of larger bore size and operating pressure Model determination 1 Magnetically Coupled Rodless Cylinder Low Profile Guide Type Series CY1F Types

ZS-26-E-4 R04 4 plug-in reducer Connector for PSE300 1 pc.

NPN type -PNP type Input signal power Input signal power CN5 CN5 supply supply 24 VDC 24 VDC A1 COM A1 COM A2 IN0 A2 IN0 A3 IN1 A3 IN1 A4 IN2 A4 IN2 The power supply can be either polarity. The power supply can be either polarity.