SMC Corporation of America
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Centigrade(oC) Fahrenheit(oF) 5.13 11 Changing temp. unit Pressure unit can be changed.

This produuct Your system Circulating fluid temperature 31 Serial communication Discharge temperature 31 Circulating fluid display temperature Heat 31 radiation 1 Circulating fluid set temperature 30 Offset temperature 30 1 Example of MODE 2 When the offset temperature is -1oC, circulating fluid display temperature and the communication data is 29oC (circulating fluid discharge temperature

This produuct Your system Circulating fluid temperature 31 Serial communication Discharge temperature 31 Circulating fluid display temperature Heat 31 radiation 1 Circulating fluid set temperature 30 Offset temperature 30 1 Example of MODE 2 When the offset temperature is -1oC, circulating fluid display temperature and the communication data is 29oC (circulating fluid discharge temperature

This produuct Your system Circulating fluid temperature 31 Serial communication Discharge temperature 31 Circulating fluid display temperature Heat 31 radiation 1 Circulating fluid set temperature 30 Offset temperature 30 1 Example of MODE 2 When the offset temperature is -1oC, circulating fluid display temperature and the communication data is 29oC (circulating fluid discharge temperature

(P. 23) 9 - 6 DC24V LED LED PWR ALM LED 8.LED (P.31) JXCLEDALM DeviceNet SI I/O 16.(P.64) * 7 PLC DeviceNet LED LED PWR ALM MS NS DeviceNet (()) LED 8.LED (P.31) (JXC)LEDNSPLC PLC 20.P.80 PLC 10 - 8() ()() () 9 10.P.33 PLC 14.P.53 11 - 3 3.1.

52 50 56 31 03 65 Response message (Slave to Master) STX Slave Address ACK Command Reading data ETX BCC 02 30 31 06 50 56 31 30 30 31 38 37 03 0F 5.5 Message configuration HRS090 Series 5-14 HRX-OM-T004 Chapter 5 Simple communication protocol function 5.6 BCC EXOR algorithm of all characters from STX to ETX is read with the check code for error detection.

52 50 56 31 03 65 Response message (Slave to Master) STX Slave Address ACK Command Reading data ETX BCC 02 30 31 06 50 56 31 30 30 31 38 37 03 0F 5.5 Message configuration HRSH Series 5-14 HRX-OM-Q033 Chapter 5 Simple communication protocol function 5.6 BCC EXOR algorithm of all characters from STX to ETX is read with the check code for error detection.

52 50 56 31 03 65 Response message (Slave to Master) STX Slave Address ACK Command Reading data ETX BCC 02 30 31 06 50 56 31 30 30 31 38 37 03 0F 5.5 Message configuration HRS100/150 Series 5-14 HRX-OM-S010 Chapter 5 Simple communication protocol function 5.6 BCC EXOR algorithm of all characters from STX to ETX is read with the check code for error detection.

M3 x 0.5 x 3L M8 x 1.25 x 8L (Bolt holder) (Hexagon socket head set screw) 31 0.5 45 45 3 3 5.3 5.3 250.2 250.2 16 32 2-M3 x 0.5 through 6.5 counter bore depth 5 (Same on the opposite side) 3.4 through 3 3 45 45 5.5 M2.5 x 0.45 x 6L (Cap screw) M3 x 0.5 x 12.5L (Hexagon bolt) and M3 x 0.5 (Hexagon nut) 2-M3 x 0.5 through Steel ball Plug 2-M3 x 0.5 through 2.75 (11) (10+ST) 250.2 4 Part no

52 50 56 31 03 65 Response message (Slave to Master) STX Slave Address ACK Command Reading data ETX BCC 02 30 31 06 50 56 31 30 30 31 38 37 03 0F 5.5 Message configuration HRSH Series 5-14 HRX-OM-R028 Chapter 5 Simple communication protocol function 5.6 BCC EXOR algorithm of all characters from STX to ETX is read with the check code for error detection.

size (mm) 20 25 32 40 50 Bore size (mm) S O P T U V W X Z HN HR Q Y R Y R Q 20 25 32 40 50 20 25 32 40 50 1/8 26 12 82 48 40 39 157 38.5 12(14) 98(106) 12 37 25.3 11 95 M6 x 1 depth 9 1/8 31 13 100 57 46 46 175 39 12(14) 98(106) 12 40 28.3 11 95 M6 x 1 depth 13 1/8 38 16 114 65 52 46 201 40 12(14) 101(109) 12 43 31.3 11 97 M6 x 1 depth 13 1/8 47 20 138 84 62 56 238 41 12(15) 109(118) 13

11 12.5 12 95 103 129 143 51 31 31 35 11.5 30 32 34 46 50 63 76 6.6 6.6 8.6 8.6 M8 x 1.25 M8 x 1.25 M10 x 1.5 M10 x 1.5 16 16 20 20 32 38 43 57 96 104 127 141 M8 x 1.25 M8 x 1.25 M10 x 1.5 M10 x 1.5 20 20 22 22 30 30 40 50 96 104 130 130 M8 x 1.25 M8 x 1.25 M10 x 1.5 M10 x 1.5 13.5 13.5 17 17 Rc 1/8 Rc 1/8 Rc 1/4 Rc 1/4 G 1/8 G 1/8 G 1/4 G 1/4 NPT 1/8 NPT 1/8 NPT 1/4 NPT 1/4 20 20.5 22 24

This produuct Your system Circulating fluid temperature 31 Serial communication Discharge temperature 31 Circulating fluid display temperature Heat 31 radiation 1 Circulating fluid set temperature 30 Offset temperature 30 1 5.4 Description of the Screen HRS Series 5-34 DOC1001322 Chapter 5 Display and Setting of Various Functions Example of MODE 2 When the offset temperature is -1oC, circulating

Note 2) For manifold dimensions including elbow fitting, see page 11.

Max. load mass 2 = M/Mmax Review M1, M2, M3 Mmax is the allowable moment 2. Static moment 3 = Me/Memax Review Me1, Me3 Memax is the allowable moment 3.

Max. load mass 2 = M/Mmax Review M1, M2, M3 Mmax is the allowable moment 2. Static moment 3 = Me/Memax Review Me1, Me3 Memax is the allowable moment 3.

Max. load mass 2 = M/Mmax Review M1, M2, M3 Mmax is the allowable moment 2. Static moment 3 = Me/Memax Review Me1, Me3 Memax is the allowable moment 3.

) 9 pins Terminal block (M3) 18 pins Connector SYJ SX +COM (Type 45), COM (Type 45N) In common between +COM and COM. + COM 2 to 10 stations: W = 26n + 172 11 to 20 stations: W = 26n + 199 Internal wiring Manifold base weight W (g) n: Stations (D-sub connector) SX3000 2 to 10 stations: W = 54n + 227 11 to 20 stations: W = 54n + 264 Terminal block SX5000 Note) There is a limit to the number

) 9 pins Terminal block (M3) 18 pins Connector SYJ SX +COM (Type 45), COM (Type 45N) In common between +COM and COM. + COM 2 to 10 stations: W = 26n + 172 11 to 20 stations: W = 26n + 199 Internal wiring Manifold base weight W (g) n: Stations (D-sub connector) SX3000 2 to 10 stations: W = 54n + 227 11 to 20 stations: W = 54n + 264 Terminal block SX5000 Note) There is a limit to the number

31 31 31 : 3 position ( ): Rc3/8 1.11-7