SMC Corporation of America
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Search Results "VHS2510-01B-K"

tubing diameter B Model A 60 6 22 16 12.8 28 5 47 60 6 22 16 12.8 28 5 47 60 6 22 16 12.8 28 5 47 60 6 22 16 12.8 28 5 47 63 6 23 18 12.8 29 5 50 63 6 23 18 12.8 29 5 50 78 8 27.5 23 13.7 35 7 61 78 8 27.5 23 13.7 35 7 61 B C D E F G H ZH05BS-06-06 ZH05BL-06-06 ZH07BS-06-06 ZH07BL-06-06 ZH10BS-06-06 ZH10BL-06-06 ZH13BS-08-10 ZH13BL-08-10 (Mounting hole) Applicable tubing diameter M I J K

PT ports lfeuin-in magna (l-lopuo* ilq-hoa a""t N J K aorh .!

Cooled substance total volume V Cooling time h Cooling temperature difference T Circulating fluid : 20 L : 15 min :Temperature difference: 10C (10 K). Cool from 30C (303 K) to 20C (293 K). : Clear water Density : 1 x 103 kg/m3 Specific heat C: 4.2 x 103 J/(kgK) Water bath Refer to the information shown below for the typical physical property values by circulating fluid.

P. 9 KJE P. 6 KJW P. 4 KJS K M H D Male connector Plug-in elbow Union Y Use to pipe in the same direction from female thread. Most general style. Use to change by 90 in a tube fetching direction from Onetouch fittings. MS Use to branch line in the same direction.

Example of the conventional measurement units (Reference) Unknown 6.0C 20C 26C 1.2 m3/h Fluorinated fluid Density : 1.80 x 103 kg/m3 : Unknown : 6.0C (6.0 K) : 20C (293.15 K) : 26C (299.15 K) : 20 l/min : Fluorinated fluid Density : 1.80 x 103 kg/m3 Heat generation amount Q Circulating fluid temperature difference T (= T2 T1) Circulating fluid outlet temperature T1 Circulating fluid return

Brown Brown Load Load Switch 1 Switch 1 Blue Blue Brown Brown Switch 2 Switch 2 Blue Blue Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Load impedance is 3 k. Leakage current from switch is 1 mA. Power supply Residual Load voltage at ON = voltage voltage x 2 pcs. = 24 V 4 V x 2 pcs. = 16 V Example: Power supply is 24 VDC.

In case of special wiring specification, put the option symbol "-K".

How to Order Indicate option symbol -K in the manifold part number and be sure to specify station positions for single or double wiring on the manifold specification sheet. 2.

(kg) -E 0.21 0.21 0.21 -EL 0.26 0.26 0.26 -M 0.27 0.27 0.27 -ML 0.32 0.32 0.32 Without switch 0.17 0.17 0.17 Model ZM2 ZM4 ZM6 ZM1-J ZM3-J ZM5-J ZM1-K ZM3-K ZM5-K ZM1-A ZM3-A ZM5-A ZM1-B ZM3-B ZM5-B ZM0.24 0.28 0.33 0.34 0.39 0.25 0.29 0.34 0.35 0.4 0.25 0.29 0.34 0.35 0.4 0.26 0.3 0.35 0.36 0.41 P Q 0.24 0.28 0.33 0.34 0.39 -04R/L 0.209 0.214 0.219 0.224 0.229 0.234 0.239 0.244 0.249 0.254

Brown Load Load Auto switch 1 Auto switch 1 Blue Blue Brown Brown Auto switch 2 Auto switch 2 Blue Blue Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Load voltage at ON = Power supply voltage Residual voltage x 2 pcs. = 24 V 4 V x 2 pcs. = 16 V Example: Load impedance 3 k Auto switch leakage current 1 mA Example: Power supply voltage 24 VDC Auto

Rated sensitivity current 10 {Ig1 Ign Iga K (Ig2 Igm)} [mA] (11.1) K: Constant considering the harmonic contents Cable Leakage current breaker K Type Products Noise NV NV-SP filter Driver M Servo Cable Models provided with harmonic and surge reduction techniques NV-SW amplifier NV-CP 1 NV-CW NV-L BV-C1 Ig1 Ign Iga Ig2 Igm General models NFB 3 NV-L Ig1: Leakage current on the electric channel

These vortexes are stable under certain conditions, and their frequency is proportional to the flow velocity, resulting the following formula. f = k x v f: Frequency of vortex v: Flow velocity k: Proportional constant (determined by the vortex generator's dimensions and shape). Therefore, the flow rate can be measured by detecting this frequency.

Key Position and Rotation Range Single vane type Double vane type 90 180 270 90 n o r a a ti r n n g n a o e g n o t ti r a ti o n a a 2 e g t r t o 7 e o 1 r y 0 r 9 8 y e 0 y +4 0 e 0 Key K e K +4 0 +4 0 K +4 0 Key Key 0 (45) 9 Key e Standard Optional g n a r n o ti a t o r (90) y e K (45) (45) A port B port A port A port A port B port B port B port 100 190 280 100 a r n n n r o a g

rod Double acting, Single rod, Non-rotating Nil W K Auto switch Nil Without auto switch (Built-in magnet) Mounting style Refer to the table below for auto switch symbol.

20 to 500 to 390 56 24 LTF6ENH-K to 500 to 390 60 28 LTF8FPL-K to 1000 to 890 to 710 to 580 to 480 64 32 LTF8FNL-K to 890 to 710 to 580 to 480 to 1000 71 50 18 LTF6EPF-K to 300 to 230 54 22 LTF6ENF-K to 300 to 230 58 26 LTF8FPH-K to 500 to 440 to 350 to 290 to 240 62 30 LTF8FNH-K to 500 to 440 to 350 to 290 to 240 Features 2 Electric Actuator with Integrated Guide Series LTF Lead screw lead

Cushion Suffix for cylinder Nil N F Lube type Non-lube type Steel tube J K N R H Nil Nylon tarpaulin Heat resistant tarpaulin Without cushion With cushion on rod end With cushion on head end With cushion on both ends Rod boot D Cushion T Except tubing I.D. 40 Auto switch is not mountable. When specifying symbol more than one, combine symbols in alphabetically.

Function Details K Copy function (F97) (Z/ISE20A, 20B, 20C series only) The settings of the master sensor can be copied to the slave sensors, reducing setting labor and minimizing the risk of setting mistakes. The set value can be copied to up to 10 switches simultaneously.

J 25 to 40 Minimum lead wire bending radius 10 Auto switch H thread effective depth C 4 x N through F Q 2 x M5 x 0.8 (Port size) I D E M Z A + Stroke B + Stroke L W E M K J Standard [mm] Bore size Stroke range Without magnet for auto switch With magnet for auto switch C D E F G H I J K L M N Q W Z A B A B 20 5 to 50 21 17.5 27.5 24 8 8 30 5 29.5 M4 x 0.7 36 2.5 6 3.5 21 3.5 7.5 32 8 25 5

Light/surge voltage suppressor U R With light/surge voltage suppressor With surge voltage suppressor Back pressure check valve K Nil None Built-in Rated voltage The built-in back pressure check valve type is applicable to the 10-SV1000 series only.

8 8 . 0 ( 4 9 . 1 ) 0 . 1 ( 1 2 . 2 ) 5 1 . 1 ( 4 5 . 2 ) 5 8 . 1 ( 8 0 . 4 ) 9 . 1 ( 9 1 . 4 ) d r a d n a t s ( d r a u g l w o B t e k c a r B P 4 4 B P 1 4 4 B P 1 5 4 B P 2 5 4 B P 6 4 B F 8 6 e r u t a r e p m e T , 2 3 G V 1 # l i o e n i b r u t e s u , n i m / s p o r d 5 e t a r p i r d l i o g i s p 3 7 f o e r u s s e r p y l p p u s h t i W * s e i r e S T L A N k n a T d