A B A B 54 MXY6 34 59 5 MXY8 MX 39 67 MXY12 MTS 47 MY Solid State Switch D-M9B(V), D-M9N(V), D-M9P(V) Lead wire entries inside (mm) B B CY Model Mounting Switch operating range A B A B A B 50 MXY6 2 MG 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 38 55 MXY8 2.5
B 2 Valve body size VEXB-2P VEX1-9-1 P Port size Port size M5 1/8 Thread type Port size Thread type Rc G Note) Thread type Symbol A B Symbol Nil F N T Symbol Nil F N T Symbol A B Thread type Rc G Note) Sub-plate Port size 1/8 1/4 NPT NPTF NPT NPTF VEXB-4 Seal material VEX1-11-2 Base gasket Symbol Nil B Seal material NBR seals FKM seals Note) Not conforming to ISO1179-1. 844 VEX13 Series 0
Flow Characteristics/Weight C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv 1 2 (P A) 2 3 (A R) Valve model Flow characteristics Weight (g) Operating pressure range (MPa) Port size Grommet DIN terminal 0.10 0.13 0.13 0.10 0.13 0.13 0.13 0.13 0.13 0.13 0.41 0.32 0.32 0.41 0.32 0.59 0.32 0.32 0.59 0.32 2 3 2 3 2 3 VKF33 VKF33 Y VKF33 E VKF33 V VKF33 W VKF334 VKF334Y VKF334E VKF334V VKF334W 0.67
Spatter Cover 2: KR (Applicable tube: FR soft nylon, FR double layer) Applicable fitting size Model Installed L1 L2 D KR-08C1 KR-06C1 6 12.8 15 18 20 KR-10C1 KR-12C1 18 13.7 20 15.7 22 17.2 22 17.2 8 10 12 One-touch fitting How to install One-touch fitting Construction of spatter cover Install with matching A and B parts. 15-3-5
time of pressure in the cylinder Body (Red) Residual pressure release push button (Red) VCHC D With One-touch fitting without a push button guard Release button (Blue) Release button (Blue) ASR ASQ D L1 Q B A D 8 4.2 Applicable tubing W (mm) M M L2 L2 Applicable tubing Weight (g) Model Applicable tubing O.D. 6 8 10 12 D L1 L2 Q W M KEB06 KEB08 KEB10 KEB12 12.8 15.2 18.5 20.9 25 27 27.7 29
Dynamic moment Me3 We W L2 Review Me3. = 1/3 14.7 (50 + 27) 103 = 0.38 [Nm] 3a = Me3/Me3 max = 0.38/3 = 0.13 Central axis of guide A Me1 W We Me1 = 1/3 We(L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 3b = Me1/Me1 max = 0.48/3 = 0.16 Review Me1.
Male elbow: KRL Inch e l b a c i l p p A . D .
Dynamic moment Me3 We W L2 Review Me3. = 1/3 14.7 (50 + 27) 103 = 0.38 [Nm] 3a = Me3/Me3 max = 0.38/3 = 0.13 Central axis of guide A Me1 W We Me1 = 1/3 We(L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 3b = Me1/Me1 max = 0.48/3 = 0.16 Review Me1.
Dynamic moment Me3 L2 We W Review Me3. = 1/3 14.7 (50 + 27) 103 = 0.38 [Nm] 3a = Me3/Me3 max = 0.38/3 = 0.13 Central axis of guide A Me1 Me1 = 1/3 We(L1 + B) 103 W We = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 3b = Me1/Me1 max = 0.48/3 = 0.16 Review Me1.
Maximum load mass m 1 = m/m max = 1/5 = 0.20 L2 Review m. L1 2. Static moment M2 = m g (L1 + B) 103 m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 and M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We(L2 + A) 103 3.
HIGH PRECISION DIGITAL PRESSURE SWITCH, PRESSURE SWITCH, ISE50-80, 845, 181 lb
L4 Weight (g) A L3 L1 L2 D1 D2 D3 Part No.
Valve type Symbol Nil A G H L Body material Coil insulation Seal material NBR FKM NBR FKM FKM N.C. (2) N.O. (3) Brass Class B Stainless steel 50 Note) (1) IN Note) For pure water: The armature assembly is a corrosion resistant construction.
side parallelism to A side Non-rotating accuracy 0.005 B side traveling parallelism to A side 0.01 C side perpendicularity to A side Radial clearance C B 0.05 M dimension tolerance Radial clearance (m) 0 Note) 0 Note) M Non-rotating table accuracy (deg) Note) In theory, radial clearance and non-rotating table accuracy are zero by the preloaded specification.
A H 2-P Port size 2-P A B H 2-M Port size 2-M Thread depth N L L K K Conduit terminal: T F (Q) 34 25 U R C G (PF) 1/2 E B A H D 2-P Port size (S) 2-M L K N.C.
(width across flats) Applicable tubing (mm) Effective area (mm2) Connection Weight (g) L4 d L2 L3 M A L1 Model thread R I.D.
Stainless Steel (mm) A B C D E F G H J L Bracket part no.
L1 L2+A5 L3 Kinetic Energy 2 Find the kinetic energy E (J) of the load. Find the allowable kinetic energy Ea (J).