5 y i !8 o !6 e u @4 @0 @1 @2 w !4 !2 !0!1 !3 !
. 5 1 5 . 4 6 5 . 4 2 2 . 5 1 7 . 3 1 6 4 5 . 8 1 6 . 5 2 7 . 7 1 2 2 0 1 0 1 9 9 0 1 U 2 Q K 5 . 8 1 5 . 1 7 5 . 7 2 5 . 8 1 1 . 6 1 5 . 0 5 1 2 0 4 4 . 8 2 6 2 2 1 2 1 9 9 2 1 U 2 Q K 9 . 0 2 5 . 5 7 0 3 9 . 0 2 1 . 8 1 5 . 3 5 2 2 4 . 7 5 4 . 5 4 2 3 6 1 6 1 9 9 6 1 U 2 Q K 5 . 6 2 0 9 5 . 6 3 5 . 6 2 3 2 5 6 5 2 3 1 1 ) 3 1 1 ( 8 7 Branch Y: KQ2U Inch Applicable tube O.D.
4.1 Communication alarm occurs . 4-1 4.2 Communication alarm reset . 4-2 4.3 Setting method . 4-2 Chapter 5 Ethernet Modbus / TCP communication . 5-1 5.1 Request for taking measures for information security . 5-1 5.2 Precautions for wiring communication . 5-2 5.3 Connected explanation . 5-2 5.4 Communication specification . 5-3 5.5 Modbus/TCP communication function . 5-3 5.6 Precautions for
I 3 o = t o Io | o 5 o o r t 9 = i * o g ! . 0 = 2 0 . . , . . o l:.1:/ 0 a 0 2 0 4 0 . 6 0 8 1 . 0 1 2 1 . 4 1 6 1 . 4 2 . 0 1 . 0 1 . 5 2 0 2 5 3 . 0 0 0 5 TOTAL ENERGY (i IbS/C) (Tho!
5/16 6 6 8, 5/16 3 11.5 19.5 20 23 10, 3/8 10, 3/8 1/4 1/4 7 11.5 22 22 26 1/4 1/4 19 20.5 737 ARM11A/B Series End Block Pressure Gauge ARM11E L Part no.
(Example) For M4: L2 = 8 mm Applicable shaft types: S, W, Y L1 L1 = Q1 = M LL LL L2 = Q2 = M Q1 (mm) (mm) Size Size Keyway dimensions 30 50 63 80 100 30 50 63 80 100 Thread M3 x 0.5 M5 x 0.8 M6 x 1 M8 x 1.25 M10 x 1.5 M12 x 1.75 Rc 1/8 Rc 1/4 Thread M3 x 0.5 M5 x 0.8 M6 x 1 M8 x 1.25 M10 x 1.5 M12 x 1.75 Rc 1/8 Rc 1/4 2.5 4 5 4 5 6.8 2.5 4 5 (mm) 4 5 6.8 6.8 8.5 10.3 8 LL 3 5 5 5 5 Key groove
9 #0 #1 @1 @0@6 @5 @9 @4 @3 @7 !5 !1 i !0 q w !6 o r t e @2 @8 #3 #2 Without air cushion With auto switch With air cushion $1 $0 $2 #4 #6 #8 #9 #7 #5 Component Parts Component Parts No.
(Example) For M4: L2 = 8 mm Applicable shaft types: S, W, Y L1 L1 = Q1 = M LL LL L2 = Q2 = M Q1 (mm) (mm) Size Size Keyway dimensions 30 50 63 80 100 30 50 63 80 100 Thread M3 x 0.5 M5 x 0.8 M6 x 1 M8 x 1.25 M10 x 1.5 M12 x 1.75 Rc 1/8 Rc 1/4 Thread M3 x 0.5 M5 x 0.8 M6 x 1 M8 x 1.25 M10 x 1.5 M12 x 1.75 Rc 1/8 Rc 1/4 2.5 4 5 4 5 6.8 2.5 4 5 (mm) 4 5 6.8 6.8 8.5 10.3 8 LL 3 5 5 5 5 Key groove
D-H7BAL D-H7NF D-C7 D-C80 D-H7 D-H7W D-H7BAL D-H7NF Auto switch D-A3A D-G39A D-K39A D-A44A D-C7 D-C80 D-C73C D-C80C D-A3A D-G39A D-K39A D-A44A model Data D-C73C D-C80C D-B5 D-B6 D-B59W D-G5NTL Bore size A 1() 1() 2(0) 7 B 0() 0() 0.5(0) 5.5 A 6(4) 6(4) 7(5) 12 B B 0() 0() 1(0) 6 B 5(3) 5(3) 6(4) 11 Hs 22.5 25 28.5 32.5 A 7(5) 7(5) 8(6) 13 A Hs 25 27.5 31 35 B 6(4) 6(4) 7(5) 12 Hs 60 62.5
VQ1 3 C6 Y 5 0 1
RX RX RX RX RX RX RX RX (n+2)8 (n+2)9 (n+2)7 (n+2)6 (n+2)5 (n+2)4 (n+2)3 (n+2)2 Point table No. output 3 (PT2) RX(n+2)4 0 0 0 0 0 0 1 0 1 1 0 0 0 0 0 2 0 0 Point table No. output 4 (PT3) RX(n+2)5 1 1 0 0 0 0 0 3 0 0 1 4 0 0 0 0 0 0 Point table No. output 5 (PT4) RX(n+2)6 Point table No. output 6 (PT5) RX(n+2)7 1 1 1 1 1 254 1 1 0 1 255 1 1 1 1 1 1 1 Point table No. output 7 (PT6) RX(n+2)8
10.5 [5m ] L E C P *B* (a) (b) 2 A B-1 L 1 A A-1 (b) 6 A B-1 B B-2 1 1.5m 5 A A-1 B A-2 3 3 3m B B-2 COM-A/COM B-3 4 B A-2 COM-B/A-3 5 5m (c) COM-A/COM B-3 Shield COM-B/ A-3 Vcc B-4 12 GND A-4 13 Vcc B-4 A B-5 7 GND A-4 A A-5 6 A B-5 B B-6 9 A A-5 S B A-6 8 (d) B B-6 3 B A-6 (a) + B-1 4 A-1 5 + B-3 1 2 A-3 (a) (8) (14.2) B1 A1 (b) 2 1 (17.7) (14) (18) (10.2) 6
RX RX RX RX RX RX RX RX (n+2)8 (n+2)9 (n+2)7 (n+2)6 (n+2)5 (n+2)4 (n+2)3 (n+2)2 Point table No. output 3 (PT2) RX(n+2)4 0 0 0 0 0 0 1 0 1 1 0 0 0 0 0 2 0 0 Point table No. output 4 (PT3) RX(n+2)5 1 1 0 0 0 0 0 3 0 0 1 4 0 0 0 0 0 0 Point table No. output 5 (PT4) RX(n+2)6 Point table No. output 6 (PT5) RX(n+2)7 1 1 1 1 1 254 1 1 0 1 255 1 1 1 1 1 1 1 Point table No. output 7 (PT6) RX(n+2)8
2) LEC-T1-3G *1 *2 http://www.smcworld.com/ 5(P.23) 16(P.68) USB LAN -8- 2.4 () (1) (JXC-CPW) (JXC91-) 1 (JXC-CPW) 1 *1 1 *1 [] (:LEC-T1-3G) (LEC-W2) (USB ) (: P5062-5) (2) 3.4 (P.16) (3) 4.1 (IP )(P.18) (4)PLC PLC (5) 5.
SX VK L C3 (3.2) C4 (4) C6 (6) M5 (M5 thread) VZ C6 (6) kit VF VFR N1 (1/8) N3 (5/32) N7 (1/4) N7 (1/4) VP7
Use the manifold specification sheet to specify. 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 SI unit output no. SI unit output no.
F 3 COMPRESSED AIR THEORY Units Pressur Prooerties of Gases lsothermic change (Boyle's Law) lsobaric change Charles Law Law of Gay Lussac lsochoric change Adiabatic (lsentropic) change Standard Volume Flow Bernoulli's Equation Air Humidity Relative humidity Pressur and Flow Use of the diagram: Formulae: 6 6 I 1 0 1 0 1 1 1 1 1 1 1 1 1 2 1 2 1 2 1 2 1 2 1 3 1 5 1 6 1 6 AE 36 36 5 AIR TBEATMENT
F 3 COMPRESSED AIR THEORY Units Pressur Prooerties of Gases lsothermic change (Boyle's Law) lsobaric change Charles Law Law of Gay Lussac lsochoric change Adiabatic (lsentropic) change Standard Volume Flow Bernoulli's Equation Air Humidity Relative humidity Pressur and Flow Use of the diagram: Formulae: 6 6 I 1 0 1 0 1 1 1 1 1 1 1 1 1 2 1 2 1 2 1 2 1 2 1 3 1 5 1 6 1 6 AE 36 36 5 AIR TBEATMENT
[C] Correction factor 5 to 30 1.41 35 1.21 40 1 45 0.92 50 0.75 55 0.63 60 0.53 Inlet air temp. [C] Correction factor 5 to 45 1.15 50 1.07 55 1 60 0.95 65 0.9 70 0.86 75 0.82 80 0.79 Inlet air temp. [C] Correction factor 5 to 45 1.21 50 1.10 55 1 60 0.87 65 0.76 70 0.74 75 0.72 80 0.70 Inlet air temp. [C] Correction factor 5 to 30 1.3 35 1 40 0.82 45 0.68 50 0.57 Inlet air temp.