Series VFS consists of 5 port pilot solenoid valves with metal seals and base mounted or body ported type manifolds. Base mounted manifolds are available in plug-in and non plug-in styles. Body ported manifolds are available with bar or separate type manifold bases. Port sizes range from 1/8 to 3/4 with Rc(PT), NPTF and G(PF) thread types available. Various options also available. VFS2000
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, VALVE, SOL, BRASS, VALVE, VDW VALVE 3-WAY BRASS, CC, VDW BODY PORT 1/8 NPT, .00000 lb
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, VALVE SGL PLUG-IN BASE MOUNT, VALVE, VFR3000 SOL VALVE 4/5 PORT, PD, VFR3000 BASE MT 1/4, 1.54323 lb
Operation Principle Quick feed stroke Cylinder stroke Wedge mechanism (35mm) F Boosted stroke 5mm F:Cylinder output F:Boosted output F'=6F(When the stroke is boosted) Extended Retracted 1-3. Relation between the output and stroke The boosted output and time for return depend on the specification of the cylinder.
Please refer to the content of Rx1B. 3B station READY 3C to CC-Link system area 3F 40 to 6F 70 to CC-Link system area 7A Only at Full numerical data instructions Remote The content of Remote station READY is as same as at Single numerical data instructions.
40) RWr(n+41) RWw(n+41) IO-Link IO-Link : : Process data Process data Port 3 Port 3 RWr(n+4E) RWw(n+4E) RWr(n+4F) RWw(n+4F) RWr(n+50) RWw(n+50) RWr(n+51) RWw(n+51) IO-Link IO-Link : : Process data Process data Port 4 Port 4 RWr(n+5E) RWw(n+5E) RWr(n+5F) RWw(n+5F) RWr(n+60) RWw(n+60) RWr(n+61) RWw(n+61) IO-Link IO-Link : : Process data Process data Port 1 Port 1 RWr(n+6E) RWw(n+6E) RWr(n+6F
Please refer to the content of Rx1B. 3B station READY (No used) 3C to 3F CC-Link system area 40 to 6F 70 to 7A CC-Link system area Only at Full numerical data instructions Remote The content of Remote station READY is as same as at Single numerical data instructions.
EOT 36 24 $ 68 44 D 100 64 d 5 5 ENQ 37 25 % 69 45 E 101 65 e 6 6 ACK 38 26 & 70 46 F 102 66 f 7 7 BEL 39 27 ' 71 47 G 103 67 g 8 8 BS 40 28 ( 72 48 H 104 68 h 9 9 HT 41 29 ) 73 49 I 105 69 i 10 0A LF 42 2A * 74 4A J 106 6A j 11 0B VT 43 2B + 75 4B K 107 6B k 12 0C FF 44 2C , 76 4C L 108 6C l 13 0D CR 45 2D 77 4D M 109 6D m 14 0E SO 46 2E . 78 4E N 110 6E n 15 0F SI 47 2F / 79 4F O 111 6F
EOT 36 24 $ 68 44 D 100 64 d 5 5 ENQ 37 25 % 69 45 E 101 65 e 6 6 ACK 38 26 & 70 46 F 102 66 f 7 7 BEL 39 27 ' 71 47 G 103 67 g 8 8 BS 40 28 ( 72 48 H 104 68 h 9 9 HT 41 29 ) 73 49 I 105 69 i 10 0A LF 42 2A * 74 4A J 106 6A j 11 0B VT 43 2B + 75 4B K 107 6B k 12 0C FF 44 2C , 76 4C L 108 6C l 13 0D CR 45 2D 77 4D M 109 6D m 14 0E SO 46 2E . 78 4E N 110 6E n 15 0F SI 47 2F / 79 4F O 111 6F
Alarm_Comment _111 (01-111) 6F C RESET Input
Alarm_Co mment_1 11 (01-111) 6F C RESET Input
Alarm_Co mment_1 11 (01-111) 6F C RESET Input
Alarm_Co mment_1 11 (01-111) 6F C RESET Input