This is a legacy product. Please contact us for the latest version.sales@ocaire.com, VACUUM EJECTOR, COMPACT, VACUUM SERIES, ZA COMPACT VACUUM EJECTOR, BG, ZA NOZZLE SIZE 0.5, .38580 lb
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, VACUUM EJECTOR, COMPACT, VACUUM SERIES, ZA COMPACT VACUUM EJECTOR, BG, ZA NOZZLE SIZE 0.5, .38580 lb
Vacuum ejector series ZA is compact and lightweight, making it ideal for pick and place operations, and suitable to all industries.? Due to the compact design of the ZA, it is possible to install on moving parts.? The shortened tube length to pad improves response time.? The ZA is available as a single unit or manifold type, with or without pressure sensors?and suction filters.? Compact
Vacuum ejector series ZA is compact and lightweight, making it ideal for pick and place operations, and suitable to all industries. Due to the compact design of the ZA, it is possible to install on moving parts. The shortened tube length to pad improves response time. The ZA is available as a single unit or manifold type, with or without pressure sensors and suction filters. Compact
Vacuum ejector series ZA is compact and lightweight, making it ideal for pick and place operations, and suitable to all industries. Due to the compact design of the ZA, it is possible to install on moving parts. The shortened tube length to pad improves response time. The ZA is available as a single unit or manifold type, with or without pressure sensors and suction filters. Compact
Vacuum ejector series ZA is compact and lightweight, making it ideal for pick and place operations, and suitable to all industries. Due to the compact design of the ZA, it is possible to install on moving parts. The shortened tube length to pad improves response time. The ZA is available as a single unit or manifold type, with or without pressure sensors and suction filters. Compact
state (AMH) Element saturated state (AFM, AFD) Element initial state (AFM, AFD) P1 = 0.3 MPa P1 = 0.5 MPa P1 = 0.7 MPa P1 = 0.3 MPa P1 = 0.5 MPa P1 = 0.7 MPa 0.12 0.12 P1 = 0.3 MPa P1 = 0.5 MPa P1 = 0.7 MPa Pressure drop (MPa) Pressure drop (MPa) 0.10 0.10 0.08 0.08 0.06 0.06 0.04 0.04 P1 = 0.3 MPa P1 = 0.5 MPa P1 = 0.7 MPa 0.02 0.02 100 200 300 400 0 400 800 1200 1600 0 Inlet air flow rate
(AFM, AFD) 0.12 P1 = 0.3MPa P1 = 0.5MPa P1 = 0.7MPa P1 = 0.3MPa P1 = 0.5MPa P1 = 0.7MPa 0.08 P1 = 0.3MPa P1 = 0.5MPa P1 = 0.7MPa Pressure drop MPa Pressure drop MPa 0.10 0.06 0.08 P1 = 0.3MPa P1 = 0.5MPa P1 = 0.7MPa 0.06 0.04 0.04 0.02 0.02 0 80 160 240 200 400 600 800 0 Inlet air flow rate l/min (ANR) Inlet air flow rate l/min (ANR) IDG75M, 75V (standard dew point 20C (4F)) IDG75HM, 75HV
= 1.0 MPa P1 = 0.3 MPa P1 = 0.7 MPa P1 = 0.5 MPa P1 = 0.1 MPa P1 = 0.5 MPa P1 = 0.3 MPa 0.08 0.08 P1 = 0.7 MPa Pressure drop [MPa] Pressure drop [MPa] P1 = 1.0 MPa 0.06 0.06 P1 = 0.1 MPa 0.04 0.04 0.02 0.02 0 0 0 500 1500 1000 Flow rate [L/min (ANR)] 0 2000 1000 4000 3000 Flow rate [L/min (ANR)] AF40-D Rc1/2 AF40-06-D Rc3/4 0.1 0.1 P1 = 0.7 MPa P1 = 0.3 MPa P1 = 0.5 MPa P1 = 0.7 MPa P1 =
] 0.03 0.02 0.02 P1=0.3 MPa P1=0.5 MPa P1=0.5 MPa P1=0.3 MPa P1=0.7 MPa P1=0.7 MPa 0.01 0.01 0 0 0 0 50 100 50 100 150 200 Flow rate [L/min (ANR)] Flow rate [L/min (ANR)] AFM30-A AFD30-A P1=0.5 MPa 0.04 P1=0.7 MPa P1=0.3 MPa 0.04 P1=0.5 MPa P1=0.3 MPa 0.03 Pressure drop [MPa] Pressure drop [MPa] P1=0.7 MPa 0.03 0.02 0.02 P1=0.5 MPa P1=0.3 MPa P1=0.5 MPa P1=0.3 MPa 0.01 0.01 P1=0.7 MPa P1=
P1=0.7MPa 0 0 0 0 50 100 50 100 150 200 Flow rate L/min (ANR) Flow rate L/min (ANR) AFM30-A AFD30-A P1=0.5MPa 0.04 0.04 P1=0.7MPa P1=0.3MPa P1=0.5MPa P1=0.3MPa 0.03 Pressure drop MPa Pressure drop MPa 0.03 P1=0.7MPa 0.02 0.02 P1=0.5MPa P1=0.3MPa P1=0.5MPa P1=0.3MPa 0.01 0.01 P1=0.7MPa P1=0.7MPa 0 0 0 0 50 100 150 200 100 200 300 500 400 600 Flow rate L/min (ANR) Flow rate L/min (ANR) AFM40
Ex2) 3 port valve: Switching nozzle VNH P1 P1 port (Pilot air SUP port) nozzle P1 port (Pilot air SUP port) 2(A) 1(P) Tank Coolant pump 3(B) Switching nozzles on supplying coolant liquid.
P1 = 0.7 MPa P1 = 0.7 MPa 0.08 0.08 P1 = 0.5 MPa P1 = 0.3 MPa Pressure drop (MPa) Pressure drop (MPa) P1 = 0.1 MPa P1 = 0.5 MPa P1 = 0.1 MPa 0.06 0.06 P1 = 0.3 MPa Maintenance 0.04 0.04 F.R.L. Warning 0.02 0.02 AV 1.
The port P1 on the valve is used as a pilot port, but not the P1 hole on the manifold base.
P1 = 0.7MPa 0.08 0.08 P1 = 0.7MPa P1 = 0.5MPa P1 = 0.3MPa Pressure drop MPa Pressure drop MPa P1 = 0.1MPa P1 = 0.5MPa 0.06 0.06 P1 = 0.1MPa P1 = 0.3MPa 0.04 0.04 Maintenance Warning 1.
Specific Product Precautions P1 = 0.5MPa Pressure drop MPa 0.08 0.08 Pressure drop MPa P1 = 0.3MPa P1 = 0.3MPa P1 = 0.5MPa P1 = 0.7MPa P1 = 0.1MPa 0.06 0.06 Be sure to read before handling.
P1 = 0.7 MPa P1 = 0.7 MPa 0.08 0.08 P1 = 0.5 MPa P1 = 0.3 MPa Pressure drop (MPa) Pressure drop (MPa) P1 = 0.1 MPa P1 = 0.5 MPa P1 = 0.1 MPa 0.06 0.06 P1 = 0.3 MPa Maintenance 0.04 0.04 F.R.L. Warning 0.02 0.02 AV 1.
(P1+0.1013) l/min(ANR) Calculation by effective area Q=109.6S(P1+0.1013) l/min(ANR) gP(P2+0.1013)l/min(ANR) Saturated Steam How to Read the Graph In the sonic flow region: For a flow of 15kg/h Orifice 4.5 valve(VX2m3mS)...P1 0.15MPa Orifice 3 valve(VX2m2mS)...P1 0.37MPa Orifice 2 valve(VX211mS)...P1 0.82MPa Heat content will differ somewhat depending upon the pressure P1, in the case
1 t VXZ o y o y IN(P1) !3 VXS r !3 IN(P1) r OUT(P2) VXB B A OUT(P2) A B VXE IN(P1) C C IN(P1) e e q w VXP q w VXD2A VXD2B VXR !4 i VXH !4 u u !0 VXF A B !1 i VX3 !2 !0 !2 VXA o !1 t !3 o OUT (P2) w IN(P1) !3 B r OUT(P2) A r IN (P1) e C e IN(P1) C q w q VXD2E, 2F, 2G VXD2C, 2D Component Parts Operation
Flow Rate Characteristics Flow Rate Characteristics VBAT05A 2 1.6 0.1 ARJ 1.4 Outlet pressure (MPa) Outlet pressure (MPa) P1 = 1.0 MPa 1.2 P1 = 0.8 MPa Max. pulsation range (MPa) AR425 to 935 0.08 P1 = 0.75 MPa P1 = 0.7 MPa 1 P1 = 0.6 MPa P1 = 0.5 MPa P1 = 0.5 MPa 1 0.8 P1 = 0.4 MPa 0.06 ARX P1 = 0.3 MPa P1 = P2 0.6 P1 = P2 AMR 0.04 0.4 0.2 ARM 0.02 VBAT05A 0 500 1000 1500 2000 2500 3000