SMC Corporation of America
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Search Results "MLGCMB32-250-R-E"

D2012-10-9 9 Series MHY2 Construction Closed condition Size 10 Size 16 Size 20, 25 r o !8 e w !7 t r o !8 e w @0 !7 t r o !8 e w @0 !7 t !5 !5 !5 !6 !6 !0 u !2 i q !1 y !9 !0 u !2 i q !1 y !9 !0 u !3 !2 i q !1 y !9 !4 !4 !4 Open condition Component Parts Note Note No. q Description Material No. Description Material Bushing B !

D2012-10-9 9 Series MHY2 Construction Closed condition Size 10 Size 16 Size 20, 25 r o !8 e w !7 t r o !8 e w @0 !7 t r o !8 e w @0 !7 t !5 !5 !5 !6 !6 !0 u !2 i q !1 y !9 !0 u !2 i q !1 y !9 !0 u !3 !2 i q !1 y !9 !4 !4 !

Description Material q w e r No. Description Material Note o !0 !1 !2 NBR Brass Brass Steel O-ring Body Needle Lock nut Nipple Zinc alloy Stainless steel Brass Stainless steel Needle guide Electroless nickel plated Electroless nickel plated Black oxidized coated Handle E type snap ring Electroless nickel plated Replacement Parts No.

Power off is displayed when power is not supplied. 3 Power status Indicates the connection status of the PCNFC reader / writer. 4 R/W connection status R/W undetected: NFC reader / writer is not identified or USB is not connected.

Red flashes if the CPU is abnormal. q w e r t y u Green lights up when emitters require cleaning.

SW RESET RUN2 RUN1 OV INPUT 6 7 5 8 4 + 9 3 SET UP A 2 B 1 0 C D 1 E F 0 to 10V V R 1 OUTPUT SET UP BALANCE CONTROLLER VYU5-D 2 V R 2 OV ERR.

Pilot port location Nil Front R Right L Left Pilot port Pilot port Pilot port Front Right Left Application Examples Lightweight workpieces such as electronic boards can be stopped, positioned and clamped with high accuracy. Stopper Positioning Clamping Space is reduced due to the integrated construction of a cylinder and linear guide.

E (KF ) Fn J H B A G A mm A B C D E Fn G H J XLC-16 40 110 38 1 30 17 40 26 XLC-25 50 120 48 1 12 40 26 39 27.5 XLC-40 65 171 66 2 11 55 41 63 36 9 XL-OMV0002 4-2.162580,100,160 C E D C E E (KF ) (K ) Fn Fd J K H B A G A mm A B C D E Fn Fd G H J K XLC-50 70 183 80 31 10.5 75 52 77 29 10.5 XLC-63 88 209 100 39 11 87 95 70 76.5 36 9 XLC-80 90 250 117 45.5 11 114 110 83 105 44 9 XLC-100 108

M5 female thread, through type (With mounting hole) 01 R 1/8 (With M5 female thread) IM5H Note Description Part no. N01 NPT1 /8 (With M5 female thread) ZSM Connector for PSE200 1 pc. ZS-26-E-4 R04 4 plug-in reducer Connector for PSE300 1 pc.

MHR MHK MHS MHC2 MHT2 MHY2 MHW2 MRHQ Auto switch 2.8-9 Series MHY2 Construction Closed 10 16 20, 25 r o !8 e w !7 t !5 r o !8 e !6 w @0 !7 t !5 r o !8 e !6 w @0 !7 t !5 !0 u !2 i q !1 !4 y !9 !0 u !2 i q !1 !4 y !9 !0 u !2 i q !1 !4 y !9 !3 Open Component Parts Component Parts Note No. q Description Material Aluminum alloy Description Material Note No.

A variety of electrical connection options Manifold Single valve SMC VQ110 -*L SMC VQ110 -*M JAPAN SMC VQ110 -*G JAPAN E E JAPAN P E P Plug-in unit manifold Plug lead unit manifold L type plug connector P 5 M type plug connector Grommet Series VQ100 Standard Specifications Standard Specifications Specifications Item specifications specifications 1watt 0.5 watt Type 3 port direct operated

L1 L2+A5 L3 2 1 W V 2 E= ( ) 2 9.8 1000 Collision speed V=1.4 Va *) Corrected coeficient 1 10 420 E= ( ) =0.09 2 9.8 1000 V=1.4 x 300=420 Calculate kinetic energy E(J) of moment. Calculate allwable kinetic energy Ea(J). Check that kinetic energy of moment does not exceed allowable kinetic energy.

Description AC servomotor Lead screw High rigidity direct acting guide Coupling Bearing R Bearing F Body A Table Housing A Housing B Top cover No.

M10) Unitinch [mm] A B C D E F G H J K L M N P Q R 31.5 34.2 IDFB55E 2 1.4 [800] [868] 18.5 33.7 5.0 17.9 4.3 9.8 2 0.5 19.70.1 3.0 27.60.04 20.7 20.40.2 [470] [855] [128] [455] [110] [250] [50] [13] [5002] [75] [7001] [526] [5195] [36] 35.4 38.1 IDFB75E 2 [900] [968] IDFB Series 6-3 6-2 IDX-OM-W035 6 6-4 IDFB22E-11 IDFB22E/37E-23 R GFCI GFCI R GFCI R GFCI L N PE R TB1 PE N L 1 2 TB1

condition r C = 0.90 based on condition r 2 2 Based on condition t, A and C Corrected air flow = 350 (0.75 x 1.00) = 467 l/min (ANR) 3 3 Based on condition t, B and C Corrected air flow = 1200 (0.95 x 0.90) = 1400 l/min (ANR) Based on condition y; IDUS4E is selected as the model to process an air flow larger than 467 l/min (ANR) with a 50Hz power supply, according to data D-1.

condition r C = 0.90 based on condition r 2 2 Based on condition t, A and C Corrected air flow = 350 (0.75 x 1.00) = 467 l/min (ANR) 3 Based on condition t, B and C Corrected air flow = 1200 (0.95 x 0.90) = 1400 l/min (ANR) 3 Based on condition y; IDUS4E is selected as the model to process an air flow larger than 467 l/min (ANR) with a 50Hz power supply, according to data D-1.

on condition r C = 0.90 based on condition r 2 2 Based on condition t, A and C Corrected air flow = 350 (0.75 x 1.00) = 467 l/min (ANR) 3 Based on condition t, B and C Corrected air flow = 1200 (0.95 x 0.90) = 1400 l/min (ANR) 3 Based on condition y; IDUS4E is selected as the model to process an air flow larger than 467 l/min (ANR) with a 50Hz power supply, according to data D-1.