SMC Corporation of America
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Search Results "G46E-7-01M-C"

(for F, L, S & T1 kits) VVQ5000 3A 1 VVQ5000 2A 1 Electrical entry Electrical entry T1, F, L, T, S kits F kit (connector side) C kit (plug lead type) T1, F, L, T, S kits F kit (connector side) C kit (plug lead type) L F Note1) L F Note1) C C Option Option Nil W Note 2) Standard IP65 enclosure Exhaust cleaner mounting Rc1 Exhaust cleaner mounting Rc1 1/2 Direct exhaust with silencer box Standard

port 3 22.5 3 22.5 84 96 e ng e ng ra 3 ra on on ti A port ta 3 ti 90 4 ro ta 7 ro m 1 A port A port u Clockwise m e e m g s 3 u i ni n w im k C ra c l o Mi 6 3 8 ax n o 1 ti M ta ro e m g u m n ni Mi 180 e ra C s l i o w c k n tio ta ro m mu xi Ma Positioning pin hole Positioning pin hole Position of bottom positioning pin hole Position of bottom positioning pin hole With external shock

Particularly when using a C-R element (surge voltage suppressor) for the protection of a switching element, take note that leakage voltage will increase due to leakage current flowing through the C-R element.

Series VX Solenoid Coil Assembly How to Order VX021 C 001 01 B Rated voltage (1) VX solenoid coil assembly 02 =+4 7> 01 =+4 7> Electrical option Application 03 =+4 7> Nil # 04 =+4 7> S 5 % * ,* -> -/& 05 ( ! 001 # ) # ) #' ) L 5 % ) / *% ' 06 ! 002 003 Z 5 % *%+ * ,* -07 ( =+4 7> 08 (?

NT-02 NT-03 NT-G04 (15) (19.6) (21.9) M8 x 1.25 M10 x 1.25 M14 x 1.5 12.5 16.5 18 13 17 19 20 25, 32 40 5 6 8 20 C type 8 for shaft C type 8 for shaft IY-G02 0.040 0.076 8 16.2 21 7.6 0.9 1.5 20 CD-G02 0.040 0.076 8 38.6 1.5 43.4 7.6 0.9 C type 10 for shaft C type 10 for shaft IY-G03 20.2 25.6 9.6 1.15 0.040 0.076 10 1.55 25, 32 0.040 0.076 10 CD-G25 42.6 1.55 48 9.6 1.15 25 C type 10 for

Applicable cable O.D.: 3.5 to 7 (Reference) 0.5 mm2 2 core and 3 core wires equivalent to JIS C 3306.

4 types Combination of applicable chart A 1 A 2 C 8 C59 Chart 1, 2, 7 A 2 A24 C10 C60 Chart 1, 2, 7 Combination is available only when all the conditions are fulfilled in the combination chart.

Mist C auto-drain Auto-drains listed on page 17 are attached.

Circulating Fluid Typical Physical Property Values Ethylene Glycol Solution 20% Temperature [C] Density [kg/m3] Specific heat C [J/(kgK)] 10 1.03 x 103 3.93 x 103 20 1.03 x 103 3.95 x 103 30 1.02 x 103 3.97 x 103 40 1.02 x 103 3.98 x 103 50 1.01 x 103 4.00 x 103 60 1.01 x 103 4.02 x 103 Water Density g: 1 x 10 3 [kg/m 3] Specific heat C: 4.2 x 10 3 [J/(kg K)] 6 Thermo-con/ Rack Mount Type

15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 0 0 0 0 Sign MSB AD value LSB -39No.EX-OMN0038-C (3)Scaled data format In the scaled data format, AD values corresponding to the input signal range can be optionally set between F and 7FFF or -32767 and 32767.

This may cause damage to the machinery. ) m m ( e z i s e r o B e v l a v n o i h s u C s t a l f s s o r c a h t d i W h c n e r w n o g a x e H 0 5 , 0 5 , 2 3 7 4 2 1 C 0 1 2 3 B M 5 . 2 5 . 2 y e k h c n e r w n o g a x e H 0 0 1 , 0 8 , 3 6 0 5 2 1 C 0 1 3 6 B M 4 4 y e k h c n e r w n o g a x e H Mounting & Piping 2. Be certain to activate the air cushion at the stroke end.

pressure dew point ( C) 14-19-10 7 Membrane Air Dryer Series IDG Calculation of inlet air flow rate Q1, and confirmation of compressed air supply capacity.

D C D C D C D CLQB32-10D M5 x 65 L M6 x 80 L M10 x 100 L M5 x 55 L 65 80 100 55 CL1 -15D -15D x 70 L x 85 L x 105 L x 60 L 70 85 105 60 -20D -20D x 75 L x 90 L x 110 L x 65 L 75 90 110 65 MLGC -25D -25D x 80 L x 95 L x 115 L x 70 L 80 95 115 70 -30D -30D x 85 L x 100 L x 120 L x 75 L 85 100 120 75 10.5 CNG -35D -35D 7 12.5 17 x 90 L x 105 L x 125 L x 80 L 90 105 125 80 -40D -40D x 95 L x

Hs A 29 B (mm) D-C73 A D-H7A1/H7B B Hs A B Bore size Hs 7 6 22.5 6 5 22.5 7 6 25 6 5 25 8 7 28.5 7 6 28.5 14 12 32.5 13 11 32.5 20 25 32 40 Note) The above values should be used as a guide for detection at stroke end.

).B RY(n+4).B Reserve RX(n+4).C RY(n+4).C RX(n+4).D RY(n+4).D RX(n+4).E RY(n+4).E RX(n+4).F RY(n+4).F RX(n+4).0 Digital input 0 RY(n+4).0 RX(n+4).1 Digital input 1 RY(n+4).1 RX(n+4).2 Digital input 2 RY(n+4).2 RX(n+4).3 Digital input 3 RY(n+4).3 RX(n+4).4 Digital input 4 RY(n+4).4 RX(n+4).5 Digital input 5 RY(n+4).5 RX(n+4).6 Digital input 6 RY(n+4).6 RX(n+4).7 Digital input 7 RY(n+4).7 Reserve

NT-02 NT-03 NT-G04 (15) (19.6) (21.9) M8 x 1.25 M10 x 1.25 M14 x 1.5 12.5 16.5 18 13 17 19 20 25, 32 40 5 6 8 20 C type 8 for shaft C type 8 for shaft IY-G02 0.040 0.076 8 16.2 21 7.6 0.9 1.5 20 CD-G02 0.040 0.076 8 38.6 1.5 43.4 7.6 0.9 C type 10 for shaft C type 10 for shaft IY-G03 20.2 25.6 9.6 1.15 0.040 0.076 10 1.55 25, 32 0.040 0.076 10 CD-G25 42.6 1.55 48 9.6 1.15 25 C type 10 for

3m (8) CN4 8 7 63 - 16 * 16.2 P.65 RESET BDDC24V E 16.1 5 OUT03 IO OUT0OUT3 ALARM OUT0 OUT1 OUT2 OUT3 B ON OFF ON OFF OFF C ON OFF OFF ON OFF D ON OFF OFF OFF ON E ON OFF OFF OFF OFF SVRESETON SVRE SETON B RESET C RESET D OFF RESET,SVON E OFF OFF -D 1 DSVREOFFOFF 2 RESETSVON SVREONON 64 - 16.2 *1 code 112 12 0 2 3 4 5 6 7 (01-048) B RESET 1-+ 2W 1W 2 W 12 0 3

(7) 140 79 200 E C x 200 (=D) 25 Note 1) Distance within which the table can move when it returns to origin.