A spring washer will be required separately for VP470.
37-81A-3-7 3 58 Ass'y Assy Assy SY3000-37-80A-5 A 18 21,32SA SS5YJ3SY3000-37-80A-2 B SY3000-37-80A-7 A 916 SY3000-37-80A-4 B SY3000-37-80A-5 A 18 SY3000-37-80A-2 B 20,40, 42,43SA SS5YJ5SY3000-37-80A-7 A 912 SY3000-37-80A-4 B SY3000-37-80A-9 A 1316 SY3000-37-80A-7 B SY3000-37-80A-7 A 18 SY3000-37-80A-3 B 21,41SA SS5YJ7SY3000-37-80A-10 A 912 SY3000-37-80A-6 B SY3000-37
Range Back Pressure SMC 22 8.0 -750mmHg~58psi 0~100C 0~30psi (60psi) 136 150 75 Height Width Operator Dia. 1 LVQ60 LQ Seal Locations N u t S e a l L o c k T ubing Support T aper Surface T u b i n g T r ap e zoidal T h re a d s I n s e rt Bushing Nut Lock U.S. Patent #5,996,636 Quadruple Seal Maximum leak protection. Up to 215psi @ 200C.
Current to operate load (off condition) > Leakage current Use a 3-wire switch if this condition cannot be satisfied. Moreover, leakage current flow to the load will be n times larger when n auto switches are connected in parallel. 7. Do not use a load that generates surge voltage.
Description B VNH1 VNH2 VNH3 VNH4 VNH1-16 VNH2-16 VNH3-16 VNH4-16 Bracket (with bolt and washer) 4.2-30 VNH Specifications 3 port valve 2 port valve A B A B VNH311 20A A B VNH411 25A A B VNH113 10A A B VNH213 15A A B VNH313 20A A B VNH413 25A A B VNH133 10A A B VNH233 15A A B VNH333 20A A B VNH433 25A A B VNH111 10A VNH211 15A Model Operating fluid pressure Fluid Operation 0 to 7.0MPa 0 to
JSXFA(E, F, H)-10-BJSXF-10B-KT JSXFA(E, F, H)-10-B-A JSXF-10B-A-KT JSXFA(E, F)-14-BJSXF-14B-KT JSXF-14B-KT2 AN30-03 (14R, 14F), AN30-N03 (14N) Disassembly/Assembly Procedure Caution Port size: 06, 10 Port size: 14 1.
Applicable air preparation equipment VHS20 VHS30 VHS40 VHS40-06 VHS50 Y200-A Y300-A Y400-A Y500-A Y600-A AC20-A AC25-A, AC30-A AC40-A AC40-06-A AC50, AC55 Note), AC60 Note) Y200T-A Y300T-A Y400T-A Y500T-A Y600T-A Note) VHS50 can be connected to AC55 and AC60.
HS 40, 50 25, 32 D-A73C D-A80C D-J79C Approx. 30.5 Approx. 26.6 A A A A 25, 32 40, 50 D-A79W D-F7WV D-F7V D-F7BAVL Approx. 30.5 Approx. 22 A A A A 40, 50 D-P5DW Approx. 31 A A Approx.
HS D-A7H D-A80H D-F7 D-J79 D-F7W D-J79W D-F7F D-F7NT D-F7BAL 40, 50 25, 32 Approx. 30.5 A A Approx. 22 A A Approx. HS 40, 50 25, 32 D-A73C D-A80C D-J79C Approx. 30.5 Approx. 26.6 A A A A 25, 32 40, 50 D-A79W D-F7WV D-F7V D-F7BAVL Approx. 30.5 Approx. 22 A A A A 40, 50 D-P5DW Approx. 31 A A Approx.
Tel :03-3502-2740 Fax:03-5251-7240 August 1996, 14(RP)
CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Blanking plate Port (1) A, Port (2) Port (3) n-Rc 1/4, 3/8 Pitch n: Stations n Symbol L1 L2 2 131 111 3 177 157 4 223 203 5 269 249 6 315 295 7 361 341 8 407 387 9 453 433 10 499 479 Formula: L1 = 46n + 39, L2 = 46n + 19 4-7-22
For IITV00-n Total weight (g) Stations (n) x 100 + 130 (Weight of end block A, B assembly) + Weight (g) of DIN rail Note 2) Specifications other than the following are optional. Pressure range: 0.1MPa, 0.5MPa, 0.9MPa, Power supply voltage: 24VDC, Input signal: 0 to 10VDC Note 3) When there is a downstream flow consumption, pressure may become unstable depending on piping conditions.
M1 M2 Weight (g) ASV310F-01-06S ASV310F-01-08S ASV310F-02-06S ASV310F-02-08S ASV410F-01-08S ASV410F-01-10S ASV410F-02-08S ASV410F-02-10S ASV410F-03-08S ASV410F-03-10S ASV510F-02-10S ASV510F-02-12S ASV510F-03-10S ASV510F-03-12S ASV510F-04-10S ASV510F-04-12S 71.9 73.8 71.9 73.8 83.1 85.2 83.1 85.2 83.1 85.2 90.2 91.8 90.2 91.8 90.2 91.8 16.8 19.3 16.8 19.3 19.3 23.3 19.3 23.3 19.3 23.3 23.3
along with the manifold base model no. 5(R) 1 (P) (R)3 3(R) 1 (P) 3 position exhaust center 3 position exhaust center 4(A) (B)2 4(A) (B)2 (Example) SS5YJA3-41-03-M5 1 pc.
manifold along with the manifold base model no. 1 (P) 3 (R) 5 (R) 1 (P) 3 (R) 3 position exhaust center 3 position exhaust center (B) 2 (A) 4 (B) 2 (A) 4 (Example) SS5YJA3-41-03-M5 1 pc.
MPa How to read the graph When a water flow of 2 l/min is generated, lP 0.017 MPa for a valve with 3 orifice (VX212, 222, 232).
Use a 3-wire switch if this specification cannot be satisfied. Moreover, leakage current flow to the load will be n times larger when n auto switches are connected in parallel. 7. Do not use a load that generates surge voltage.
Use a 3-wire switch if this specification cannot be satisfied. Moreover, leakage current flow to the load will be n times larger when n auto switches are connected in parallel. 7. Do not use a load that generates surge voltage.
Use a 3-wire switch if this specification cannot be satisfied. Moreover, leakage current flow to the load will be n times larger when n auto switches are connected in parallel. 7. Do not use a load that generates surge voltage.
Use a 3-wire switch if this specification cannot be satisfied. Moreover, leakage current flow to the load will be n times larger when n auto switches are connected in parallel. 7. Do not use a load that generates surge voltage.