Enable Generates an error. 1 Disable Does not generate an error. -10..10 V -5..5 V -20..20 mA 0..10 V 0..5 V 1..5 V 0..20 mA Set the analogue input device range per channel. Analogue input range (Range) Selects the analogue input range. -10..10 V 2 4..20 mA Offset binary Offset binary. Sets analogue data type which is output to master per unit. 2s complement 2s complement.
515-61 5.1 52 5.1.1 52 5.1.2 53 5.1.3 54 5.2 55 5.2.1 55 5.2.2 56 5.2.3 57 5.2.4 58 5.2.5 59 5.2.6 59 5.3 5-10 5.4 5-12 5.4.1 5-12 5.4.2 5-14 5.4.3 5-26 5.5 5-32 5.5.1 JOG 5-32 5.6 5-34 5.6.1 5-34 5.6.2 DOG 5-36 5.6.3 5-38 5.6.4 5-40 5.6.5 5-41 5.6.6 (ON) 5-43 5.6.7 DOG 5-44 5.6.8 5-46 5.6.9 DOG CRADLE 5-48 5.6.10 DOGZ 5-50 5.6.11 DOG 5
6 7 7 7 8 8 8 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 (Note 5) (Note 5) 1 2 3 4 5 6 1 2 3 4 5 6 1 2 3 4 5 6 1 2 3 4 5 6 1 2 3 4 5 6 1 2 3 4 5 6 RDP (Note 8) (Note 2) 150 RDN 8 7 7 8 7 7 8 7 7 8 8 8 (Note 6) Branch connector (Note 6) Branch connector (Note 6) Branch connector Note 1.
DISPLAY AND OPERATION SECTIONS 5 1 to 5 -30 5.1 Overview 5 2 5.2 Display sequence 5 3 5.3 Status display 5 4 5.3.1 Display transition 5 5 5.3.2 Display examples 5 6 17 5.3.3 Status display list . 5 8 5.4 Diagnostic mode 5 -10 5.5 Alarm mode 5 -12 5.6 Point table mode 5 -14 5.6.1 Point table transition 5 -14 5.6.2 Point table mode setting screen sequence 5 -15 5.6.3 Operation example
m i m 4 8 1 . 5 1 6 1 ( 1 8 . 5 5 ) m a x .
-5 5.4 Communication sequence . 5-11 5.5 Message configuration . 5-12 5.5.1 Message format . 5-12 5.5.2 Message example . 5-14 5.6 BCC . 5-15 5.7 Command . 5-15 5.8 Command explanation . 5-16 5.8.1 Command:PV1 Circulating fluid discharge temperature . 5-16 5.8.2 Command:SV1 Circulating fluid set temperature (R) . 5-17 5.8.3 Command:SV1 Circulating fluid set temperature (W) . 5-18 5.8.4 Command
5-5 5.4 Communication sequence. 5-11 5.5 Message configuration . 5-12 5.5.1 Message format . 5-12 5.5.2 Message example . 5-14 5.6 BCC . 5-15 5.7 Command . 5-15 5.8 Command explanation . 5-16 5.8.1 Command:PV1 Circulating fluid discharge temperature . 5-16 5.8.2 Command:SV1 Circulating fluid set temperature (R) . 5-17 5.8.3 Command:SV1 Circulating fluid set temperature (W) . 5-18 5.8.4 Command
5-5 5.4 Communication sequence. 5-11 5.5 Message configuration . 5-12 5.5.1 Message format . 5-12 5.5.2 Message example . 5-14 5.6 BCC . 5-15 5.7 Command . 5-15 5.8 Command explanation . 5-16 5.8.1 Command:PV1 Circulating fluid discharge temperature . 5-16 5.8.2 Command:SV1 Circulating fluid set temperature (R) . 5-17 5.8.3 Command:SV1 Circulating fluid set temperature (W) . 5-18 5.8.4 Command
5-5 5.4 Communication sequence. 5-11 5.5 Message configuration . 5-12 5.5.1 Message format . 5-12 5.5.2 Message example . 5-14 5.6 BCC . 5-15 5.7 Command . 5-15 5.8 Command explanation . 5-16 5.8.1 Command:PV1 Circulating fluid discharge temperature . 5-16 5.8.2 Command:SV1 Circulating fluid set temperature (R) . 5-17 5.8.3 Command:SV1 Circulating fluid set temperature (W) . 5-18 5.8.4 Command
sequence .5-11 5.5 Message configuration.5-12 5.5.1 Message format .5-12 5.5.2 Message example.5-14 5.6 BCC .5-15 5.7 Command .5-15 5.8 Command explanation .5-16 5.8.1 Command:PV1 Circulating fluid discharge temperature.5-16 5.8.2 Command:SV1 Circulating fluid set temperature (R).5-17 5.8.3 Command:SV1 Circulating fluid set temperature (W).5-18 5.8.4 Command:LOC Key-lock setting (R) .5-19
Copper-free specifications (20-) Shows the products for copper-free with prefix 20-. 20Example) Copper-free specifications 20-CQ2B12-20D Data Copper-free 2. For the detailed dimensions, refer to each series catalog. 3. Please contact SMC for directional control valves, air line equipment, air preparation equipment and others.
5 5 120 130 5 5 Driver input/output signal list (CN-1/F connector) Driver dimensions For LJ1, LG1, LX Pin no.
OPERATION 5 1 to 5 -60 5.1 Switching power on for the first time . 5 2 5.1.1 Startup procedure . 5 2 5.1.2 Wiring check . 5 3 5.1.3 Surrounding environment . 5 4 5.2 Startup . 5 5 5.2.1 Power on and off procedures . 5 5 5.2.2 Stop . 5 5 5.2.3 Test operation. 5 6 5.2.4 Parameter setting . 5 7 5.2.5 Point table setting . 5 8 5.2.6 Actual operation . 5 8 5.3 Driver display . 5 9 5.4 Automatic
OPERATION 5 1 to 5 -60 5.1 Switching power on for the first time . 5 2 5.1.1 Startup procedure . 5 2 5.1.2 Wiring check . 5 3 5.1.3 Surrounding environment . 5 4 5.2 Startup . 5 5 5.2.1 Power on and off procedures . 5 5 5.2.2 Stop . 5 5 5.2.3 Test operation. 5 6 5.2.4 Parameter setting . 5 7 5.2.5 Point table setting . 5 8 5.2.6 Actual operation . 5 8 5.3 Driver display . 5 9 5.4 Automatic
bushing 2 5 6 12 Without brake 234 LXPB5 5 phase stepper 2 5 6 12 With brake 242 2 5 6 12 Without brake 250 LXSH2 2 phase stepper 2 5 6 12 With brake 258 High rigidity direct acting guide LXS 2 5 6 12 Without brake 266 LXSH5 5 phase stepper 2 5 6 12 With brake 274 CE Marking _ Page 282 Made to Order AC servomotor specification _ 288 Low particulate generation specification _ 294 Construction
(Ch0&1 in) Monitor under range 0: disable, 1: enable 0: offset binary 1: signed magnitude 2: 2s complement 6..7 Data format Channel parameter Channel 0 to 1 0: -10..+10 V, 1: -5..+5 V, 2: -20..+20 mA, 3: 0..10 V, 4: 0..5 V, 5: 1..5 V, 6: 0..20 mA, 7: 4..20 mA 0..2 (Ch0 in) Analogue input range 3 Reserved 3 0: -10..+10 V, 1: -5..+5 V, 2: -20..+20 mA, 3: 0..10 V, 4: 0..5 V, 5: 1..5 V, 6: 0
(Ch0&1 in) Monitor under range 0: disable, 1: enable 6..7 Data format 0: offset binary, 1: signed magnitude, 2: 2s complement Channel parameter Channel 0 to 1 0: -10..+10 V, 1: -5..+5 V, 2: -20..+20 mA 3: 0..10 V, 4: 0..5 V, 5: 1..5 V, 6: 0..20 mA, 7: 4..20 mA 0..2 (Ch0 in) Analogue input range 3 Reserved 3 0: -10..+10 V, 1: -5..+5 V, 2: -20..+20 mA 3: 0..10 V, 4: 0..5 V, 5: 1..5 V, 6: 0
B M5 x 0.8 M4 xO.7 5-30 '11 20 32 2 6 7 8 1 7 2A 1 6 . 5 1 9 M5 x 0-8 N45 x 0.8 5-50 1 4 26 40 3 8 I 8 20 1 9 21.5 M5 x 0.8 N.45 x 0.8 5-50 t l ) . 5 1 8 32 50 4 1 0 1 0 1 0 20 22 43.5 22 1/8 (PT) 1i8 (PT) 5-50 1 9 5 22 40 5 1 l 1 2 24 29 5 1 . 5 22 23 i il : lModel I l ] H : H A L J KI L Mt\4 NA NB oP Q ] . , R i l : : S I sl L', . l Y r l lrye f Kqgq'l 26 5 1 4 M4 xO.7 5 M5 x 0.8 6 1 8