SMC Corporation of America
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SMC's series ZP, ZP2 and ZP3 vacuum pads offer a complete line of pad options to meet all of your handling and transfer needs. A wide range of sizes, shapes and materials allow design engineers the flexibility to choose the appropriate pad configuration, making the ZP, ZP2, and ZP3 suitable for a variety of routine and unusual lifting applications.Heavy duty vacuum pad, Replacement part,
ZP2V is a vacuum saving valve that when multiple vacuum pads are operated by one vacuum generator, and some of them are not holding the work piece, the reduction of vacuum pressure is restricted and the work piece can remain held by the rest of pads. When the work pieces have different shapes, the control circuit can be simplified. There is no need for switching operation when changing work pieces
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Vacuum Saving Valve Series ZP2V How to Order ZP2V 03 A5 Connection thread symbol for the pad Fixed orifice size Male thread connection Applicable fixed orifice size Fixed orifice size (mm) Symbol Thread size Symbol 0.5 0.3 0.7 1.0 03 05 07 10 A5 A8 A01 AG1 AN1 0.3 M5 No.0.8 M8 0.5 R1/8 0.7 Male thread G1/8 1.0 Pad side NPT1/8 Female thread connection Applicable fixed orifice size Symbol

Vacuum Pad Series ZP Replacement Parts: Pad Unit (With lock ring/Without lock ring) How to Order Pad Unit How to Order Lock Ring Unit X19 U N 10 ZP ZPL 1 Pad dia. (mm) Lock ring Applicable pad dia. (mm) 02 04 2 4 Nil -X19 With lock ring Without lock ring (10 or larger) 1 2 10 to 16 20 to 32 ZX 06 6 3 40, 50 ZR 08 8 Material 10 10 ZM N S NBR Silicon rubber 13 13 16 16 Pad type U Urethane rubber

INDEX 42 Metal Base Plug-in Type 50 Side Ported D-sub Connector Flat Ribbon Cable PC Wiring Series SY3000/5000/7000 Type 51 Bottom Ported RoHS How to Order Manifold SS5Y 50 3 F D 05 C6 1 q w e r t y u i o !

ZPT2004U 2 1.2 0.3 4 2.6 4.6 2 2.6 1.2 ZPT10UT 10 11 1 ZPT04U-4-A8 ZPT3507U 3.5 1.8 0.5 7 4.3 7.8 4 4.8 1.6 0.8 ZPT13UT 13 14 1.5 ZPT06U-4-A8 ZPT4010U 4 2 0.8 10 5 11 6 7 ZPT16UT 16 17 2.5 2.5 ZPT08U-4-A8 ZPT10CT 10 11 0.8 8 9 1 ZPT13CT 13 14 Dimensions by Stroke 1 ZPT16CT 16 17 D E F Model ZPT 6-4-A8 18 15 47 ZPT10-4-A8 23 80 ZPT15-4-A8 28 85 43 ZPT25-4-A8 38 95 13-11-22 Series ZPT Vacuum

Operating Flow Rate 100 90 Suction flow rate of vacuum generator (Q1) Quantity of vacuum saving valves (N) = 80 Minimum operating flow rate (Q2) Vacuum pressure (kPa) 70 Example) Vacuum saving valve used: ZP2V-A8-05 From Table 1, Q2 can be calculated as 5.0 L/min (ANR). 60 Q2 = 5.0 L/min (ANR) 50 N = 6 (unit) 31 {L/min (ANR)} 5 {L/min (ANR)} 40 30 N = 6 (unit) Table 1.

ZPY2004U 10 11 1 2 1.2 0.3 4 2.6 4.6 2 2.6 1.2 ZPY13UT ZPY04U--A8 ZPY3507U 13 14 3.5 1.8 0.5 7 4.3 7.8 4 4.8 1.6 0.8 1.5 ZPY16UT ZPY06U--A8 ZPY4010U 16 17 4 2 0.8 10 5 11 6 7 2.5 2.5 ZPY10CT 10 11 0.8 ZPY08U--A8 8 9 1 ZPY13CT 13 14 Dimensions by Stroke 1 ZPY16CT 16 17 4 tube 6 tube E F D Model G H J G H J ZPYU16--A8 63 15 37 ZPYU10--A8 94 40 15.5 2.5 7 12.5 1.8 5 ZPYU15--A8 45 99 43 ZPYU25

Operating Flow Rate 100 90 Suction flow rate of vacuum generator (Q1) Quantity of vacuum saving valves (N) = 80 Minimum operating flow rate (Q2) Vacuum pressure (kPa) 70 Example) Vacuum saving valve used: ZP2V-A8-05 From Table 1, Q2 can be calculated as 5.0 L/min (ANR). 60 Q2 = 5.0 L/min (ANR) 50 N = 6 (unit) 31 {L/min (ANR)} 5 {L/min (ANR)} 40 30 N = 6 (unit) Table 1.

Operating Flow Rate 100 90 Suction flow rate of vacuum generator (Q1) Quantity of vacuum saving valves (N) = 80 Minimum operating flow rate (Q2) Vacuum pressure (kPa) 70 Example) Vacuum saving valve used: ZP2V-A8-05 From Table 1, Q2 can be calculated as 5.0 L/min (ANR). 60 Q2 = 5.0 L/min (ANR) 50 N = 6 (unit) 31 {L/min (ANR)} 5 {L/min (ANR)} 40 30 N = 6 (unit) Table 1.

Operating Flow Rate 100 90 Suction flow rate of vacuum generator (Q1) Quantity of vacuum saving valves (N) = 80 Minimum operating flow rate (Q2) Vacuum pressure (kPa) 70 Example) Vacuum saving valve used: ZP2V-A8-05 From Table 1, Q2 can be calculated as 5.0 L/min (ANR). 60 Q2 = 5.0 L/min (ANR) 50 N = 6 (unit) 31 {L/min (ANR)} 5 {L/min (ANR)} 40 30 N = 6 (unit) Table 1.

Operating Flow Rate 100 90 Suction flow rate of vacuum generator (Q1) Quantity of vacuum saving valves (N) = 80 Minimum operating flow rate (Q2) Vacuum pressure (kPa) 70 Example) Vacuum saving valve used: ZP2V-A8-05 From Table 1, Q2 can be calculated as 5.0 L/min (ANR). 60 Q2 = 5.0 L/min (ANR) 50 N = 6 (unit) 31 {L/min (ANR)} 5 {L/min (ANR)} 40 30 N = 6 (unit) Table 1.

Example of Selection from Minimum Operating Flow 100 Example) Vacuum saving valve used: ZP2V-A8-05 From Table 1, Q2 can be calculated as 5.0 l/min (ANR). 90 31 {l/min (ANR)} 5 {l/min (ANR)} 80 N = 6 (unit) Vacuum pressure (kPa) 70 Q2 = 5.0 l/min (ANR) 60 Table 1.