SMC Corporation of America
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Search Results "G46-2-01-SRB-C"

Sumitomo 3M Limited Manufacturer's part no. 1-1473562-4 1-1473562-4 1473562-4 1-1473562-4 1473562-4 1473562-4 1473562-4 1473562-4 1473562-4 1473562-4 1473562-4 1473562-4 2-1473562-4 2-1473562-4 2-1473562-4 D-A9 D-M9 D-Y D-Z73 D-Z76 D-Z80 Z/ISE1 Note 1) ZS-28-C ZS-28-C ZS-28-C ZS-28-C ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-C-1 ZS-28-

SUP/EXH (Common for the 3/5 port) Valve stations 2 to 24 stations 2 to 18 stations 2 to 8 stations 2 to 24 stations 2 to 18 stations 2 to 8 stations Flat ribbon cable connector conforming to MIL-C-83503 (Refer to page 41.)

Stopper ring Block C MSU CRJ Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com CRA1 Stopper ring Block D Block D Block C CRQ2 Counterclockwise Counterclockwise 2-2> 2> MSQ The maximum rotation range of the shaft with single flat in Fig. 2-2 is 195, from

Stopper ring Block C MSU CRJ CRA1 Stopper ring Block D Block D Block C CRQ2 Counterclockwise Counterclockwise 2-2> 2> MSQ The maximum rotation range of the shaft with single flat in Fig. 2-2 is 195, from end of rotation q to end of rotation w.

Stopper ring Block C MSU CRJ Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com CRA1 Stopper ring Block D Block D Block C CRQ2 Counterclockwise Counterclockwise 2-2> 2> MSQ The maximum rotation range of the shaft with single flat in Fig. 2-2 is 195, from

Density r: 1 [kg/dm3] (or, using conventional units, weight volume ratio c = 1 [kgf/L]) Specific heat C: 4.19 x 103 [J/(kgK)] (or, using conventional units, 1 x 103 [cal/(kgfC)]) 2. Values for density and specific heat change slightly according to temperature shown below. Use this as a reference.

If additional units are to be connected on the network, repeat steps 2-1-3 and 2-1-4. 2-1-6. Apply the power supply to each unit after connecting the unit set above. Then, click [Reload I/O Devices] to make it on-line. -17No.EX-OMN0011-F 2-2. On-line Auto Configuration 2-2-1. Connect the unit to the network and apply the power.

-L 3 5 HRZ002-H 4 HRZ004-L HRZ001-H 2 3 HRZ002-L 2 1 HRZ001-L 1 0 0 20 30 40 50 60 70 80 90 20 10 0 10 20 30 40 Circulating fluid temperature (C) Circulating fluid temperature (C) HRZ002-W/008-W 4 HRZ008-W Heating capacity (kW) 3 HRZ002-W 2 1 0 20 10 0 10 20 30 40 50 60 70 80 90 Circulating fluid temperature (C) 81 Series HRZ Pump Capacity (Thermo-chiller Outlet) HRZ001-L/002-L/004-L HRZ008

Auto switch model Bore size (mm) 20 25 32 40 50 63 80 100 D-M9(V) D-M9W(V) D-A9(V) BMA3-020 (A set of a, b, c, d) BMA3-025 (A set of a, b, c, d) BMA3-032 (A set of a, b, c, d) BMA3-040 (A set of a, b, c, d) BMA3-050 (A set of a, b, c, d) BMA3-063 (A set of a, b, c, d) D-M9A(V) Note 2) BMA3-020S (A set of b, c, d, e) BMA3-025S (A set of b, c, d, e) BMA3-032S (A set of b, c, d, e) BMA3-040S

V < 2 6 . 6 C # 1 S V 2 5 . 0 C M O D E N o r m a l Fig. 6-3 Alarm indication in the event temp. upper and lower limit occurs LIGHT W R N P V < 2 6 . 6 C # 1 S V 2 5 . 0 C M O D E Remote off Fig. 6-4 Alarm indication in the event Remote off occurs 6.2 Alarm indication 6-2 A_HEC-OM-K001-1.7 Chapter 6 Alarms 6.3 Content of Alarms Table 6-2 Content of alarm (1/2) Temp.

industrial robots-Safety JIS B 8370: JIS B 8361: JIS B 9960-1: -1 ) JIS B 8433: *2) 1. 2. 3. 1. 2. 3. 4

N2] 4 x MM through (Thread for mounting attachment) C C B A 4 x H through (Hole for mounting attachment) S S O O B A (mm) (mm) Model A 2.5 3 4 5 6 7 9 Model A 2.5 3 4 5 6 7 9 B 5 5.7 7 9 12 14 17 B 5 5.7 7 9 12 14 17 C 2 2 2.5 4 5 6 7 H 2.4 2.9 3.4 4.5 5.5 6.6 9 MM M2 x 0.4 M2.5 x 0.45 M3 x 0.5 M4 x 0.7 M5 x 0.8 M6 x 1 M8 x 1.25 MHZ2-62 MHZ2-10 MHZ2-6 1 MHZ2-10 2 N2 2 N2 2 N2 2 N2 1 N1

Fig. 1 (2) Be sure to connect a terminating resistor between DA and DB at both ends of the CC-Link system. (Refer to Fig. 2) Fig. 2 (3) The appropriate terminating resistor varies depending on the CC-Link cable used. (Refer to the table and Fig. 3 below.)

Table of contents P 1 2. How to order P 2 3. Specifications P 2 4. External dimensions drawing P 3,4 5. How to mount a nozzle P 5,6 6. Safety Instructions P 710 -1- 2. How to Order IBG1 0 02 Adjuster Symbol Type 0 Without adjuster 1 With adjuster Supply port Nozzle (Refer to page 4 for details.)

(Representative valve) Ambient and operating air temperature -5 to 60 oC (No freezing) C(dm3/(sbar)) 0.6 [1(P) 2(A)] , 0.5 [2(A)3(R)] Flow rate characteristics b 0.2 [1(P) 2(A)] , 0.15 [2(A)3(R)] Port size Rc, NPT, G1/8 ON timing ON upon the set delay Output method Normal close Reset Resets by exhausting the input signal pressure Weight 480g *) The dispersion is shown excluding the first

(Including nut, screw, (spacer)) Applicable bore size (mm) 12 BQ-1 BQ-1 Cylinder series 40 BQ-2 BMU1-025 80 BQ-2 32 BQ-2 BMU1-025 50 BQ-2 BMU1-025 100 BQ-2 25 BQ-1 BMU1-025 140 BQ-2 160 BQ-2 125 BQ-2 BQ-1 20 63 BQ-2 BMU1-025 16 BQ-1 CDQ2 MDU RSDQ MK, MK2 CE1 CXT BQ-1 BQ-2 BQ-1 BQ-2 BQ-2 BQ-2 [Mounting screws set made of stainless steel] The set of stainless steel mounting screws (with nuts

) = 2 words (for Data-INT) Configuration = 0 (1) (4) (5) (2) (3) -21No.EX-OMX1001 Setting using the EDS file Install in advance the EDS file using the Rockwell Automation software RSNetWorxTM for EtherNet/IPTM.

1.41.6Nm 8 2 VR2110 3 01.0MPa 0.250.8MPa 0.560s (*) 10 (%) F.S. oC( -560 3/ (s C (dm 0.6 [1 (P) 2 (A) ] 0.5 [2 (A) 3 (R) ] bar) ) b 0.2 [1 (P) 2 (A) ] 0.15 [2 (A) 3 (R) ] Rc, NPT, G1/8 ON Delay 480g (*) 4 4 V R 2 1 1 0 01 01 Rc 1/8 N01 NPT 1/8 F01 F01 2 G 1/8 9 5 VR 1 ON Delay 0.560 () () 1 ON OFF 6 (1) 2 0.5MPa 2 10 (2) VR2110 3 )0.25MPa A 60sec (), (S) 0.8MPa 40sec

4, 6, 8 ) 80 + 30 (n 2) (n = 2, 4, 6, 8 ) 35 + 30 (n 2) (n = 2, 3, 4 ) 90 + 30 (n 2) (n = 2, 4, 6, 8 ) 100 + 100 (n 2) (n = 2, 4, 6, 8 ) D-A3 D-G39 D-K39 Different surfaces 100 + 100 (n 2) (n = 2, 3, 4 ) Same surface 1 pc. 75 80 90 10 75 75 80 80 Different surfaces 35 55 90 90 90 + 30 (n 2) (n = 2, 4, 6, 8 ) Same surface 75 + 30 (n 2) (n = 2, 4, 6, 8 ) 80 + 30 (n 2) (n = 2, 4, 6,