Your search for LVM returned 30 result(s)
There were no hits with the full part number, but there were 2 hits in the keyword search.
There were no hits with the full part number, but there were 2 hits in the keyword search.
Product Information » New Products Search Results
@q]0-c Suction tlltel Polyethylene NZM-SF @ Tension bolt Stainless steel o Silencer ass'y NZM-SA-0 o Check valve NBR ZM-CV o Release tlow rate conttol screw Stainless steel P318 t2-05A o Valve*' NVJ114-@86@ o Poppet valve ass'y ZM-PV-O o Vacuum switch zsEl-osl@@ zsEl-00.55@ zsMl-015, ZSM1-021 PluE connectol ass'v'.' zs-20-5A, zs-20-5A-30 (10) 'Reas spGcity an apprcpdat body code: " N.O. typ6
@q]0-c Suction tlltel Polyethylene NZM-SF @ Tension bolt Stainless steel o Silencer ass'y NZM-SA-0 o Check valve NBR ZM-CV o Release tlow rate conttol screw Stainless steel P318 t2-05A o Valve*' NVJ114-@86@ o Poppet valve ass'y ZM-PV-O o Vacuum switch zsEl-osl@@ zsEl-00.55@ zsMl-015, ZSM1-021 PluE connectol ass'v'.' zs-20-5A, zs-20-5A-30 (10) 'Reas spGcity an apprcpdat body code: " N.O. typ6
They are as tollows: r_.013) C = 4 0 0 ' C v ' Q=21.94'kv Q = 2 2 . 2 ' s ' t-=---:-=-;;-| LtJ .t(Dz + ruJ.s,| . Ap.1l;;-v s ' . ' \ t n !
They are as tollows: r_.013) C = 4 0 0 ' C v ' Q=21.94'kv Q = 2 2 . 2 ' s ' t-=---:-=-;;-| LtJ .t(Dz + ruJ.s,| . Ap.1l;;-v s ' . ' \ t n !
A Valve
Includes bushing assembly (SY3000-52-5A) 3 pcs. 1 SY360--(-Q) Valve P, R port (1: One-touch fitting for 8, 2: One-touch fitting for 5/16") Includes bushing assembly (SY3000-52-5A) 3 pcs. 1 2 2 SUP/EXH block assembly SY3000-55A(-Q) 3 End block assembly SY3000-56-1A(-Q) For D side (Bushing assembly: Not available for SY3000-52-5A) 4 End block assembly SY3000-56-1B(-Q) For U side (Bushing assembly
VQ 5 0 0 5 1 1
): SQ1241 Double (latching): SQ1240 t e q w t e q w SQ1241 SQ1240 (A)(B) (A)(B) 4 2 4 2 5 1 3 5 1 3 (R1) (P)(R2) (R1)(P)(R2) Double (double solenoid): SQ1241D Double (double solenoid): SQ1240D y e e q w y e q w e SQ1240D SQ1241D (A)(B) (A)(B) 4 2 4 2 5 1 3 u 5 1 3 u (R1)(P)(R2) (R1)(P)(R2) 3 position: SQ1 41 3 4 5 3 position: SQ1 40 3 4 5 y e e q y w e e q w u u SQ1540 SQ1440 SQ1340 SQ1541
e r w q e r w 5 (EA) 4 (A) 3 (EB) 2 (B) 1 (P) 2-position single 2-position double (A)4 2(B) (A)4 2(B) 3(EB) (EA)5 1 3(EB) (EA)5 1 (P) (P) 4-position dual 3-port valve 3-position closed center/exhaust center/pressure center q e r w q e r w 3-position closed center 3-position exhaust center 4-position dual 3-port valve N.C. valve x 2 pcs.
How to Find the Flow Rate (at air temperature of 20C) Subsonic flow when P1 + 0.1013 < 1.89 (P2 + 0.1013) Q = 226S P(P2 + 0.1013) Sonic flow when P1 +0.1013 1.89 (P2 + 0.1013) Q = 113S (P1 + 0.1013) Q : Air flow rate [l/min (ANR)] S : Effective area (mm) P : Pressure drop (P1 P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures Multiply
4 y q r e i !2 o !0 5A 2A 2B 2C 2D CJ1 CJP Y Front nose in line port N Basic style integrated clevis E Double end F Front nose u !
w q t VSR8-2-FG-DVSS8-2-FG-De r e r w q t w q t VSS8-2-DFHG FIG FJG VSR8-2-DFHG FIG FJG e r e r w q t w q t VSR8-2-DFDAG FDBG FDCG e r w q t Replacement Parts VSR8-2-DFDAG FDBG FDCG VSR8-2-DFHG FIG FJG VSR8-2-FG-DVSR8-2-FG-SVSS8-2-DFHG FIG FJG VSS8-2-FG-DVSS8-2-FG-SDescription No.
w e q w VQC1100 VQC1101 2(B) (A)4 2(B) (A)4 r r (R1)5 1 (P) 3(R2) (R1)5 1 (P) 3(R2) e q w e w q VQC1201 VQC1200 2(B) (A)4 2(B) (A)4 (R1)5 1 (P) 3(R2) (R1)5 1 (P) 3(R2) r r e q w e q w VQC1300 VQC1400 VQC1301 VQC1401 2(B) (A)4 2(B) (A)4 2(B) (A)4 2(B) (A)4 (R1)5 1 (P) 3(R2) (R1)5 1 (P) 3(R2) (R1)5 1 (P) 3(R2) (R1)5 1 (P) 3(R2) VQC1500 VQC1501 r r 2(B) (A)4 2(B) (A)4 (R1)5 1 (P) 3(R2) (R1)5
ZS-20-A 16 NPN Open Collector 2 output w/o analog output, 3 revolution adjustment ISl IWith lead wire ZS-20-5A 17 NPN Open Collector 2 output w/o analog output, 200 revolution adjustment Note) When ordering switch with 5m long lead wire, indicate both part numbers. Ex.) ZSE1-01-15CN1 pc. ZS-20-5A-501 pc.
In the case of liquid: P Q = 1.9 x 106Av (9) G Q : Flow rate [l/min] Av : Flow coefficient [m2] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av P(P2 + 0.1) (10) Q : Flow rate [m3/s] Av : Flow coefficient [m2] P : Pressure difference [Pa] P1 : Relative density [MPa]: P = P1 P2 P2 : Relative density [MPa] Front matter 4