A signal type for contact output signal 4 to 6 can be selected by the customer. Refer to Table 2.4-3 Signal type for contact output signals 4 to 6. (1) (2) (3) Setting of contact output signal 4 to 6 Selection of signal type Table 2.4-2 Setting of contact output signal 4 to 6 No.
System diag.2 7 6 5 4 3 2 1 0 Byte 8 Bit No.
Specifications -6-1 6.1 Specification table -6-1 6.2 Performance chart -6-2 1) Cooling capacity -6-2 2) Heating capacity -6-2 3) Pump capacity -6-3 7 Preparation for Operation -7-1 7.1 Preparation for circulating fluid -7-1 7.2 Power supply -7-2 7.3 Grounding -7-2 7.4 Supply circulating fluid and drain -7-2 7.5 Check repair -7-3 7.5.1 Daily check -7-3 7.5.2 Check after seismic vibration and
8.5 8.5 (Pitch) P = 16 33 (Pitch) P = 17 One-touch fitting (A, B port) 24.5 1/8 (A, B port) Applicable tubing O.D.: 6, 1/4" Other dimensions are the same as the grommet type.
6 15/22 18/23 3/4 5/6 9/10 13/14 6/7 13/14 Rc 1/2 Stainless steel, EPDM, Copper brazing (Heat exchanger), Silicone, Brass 3-phase 200 VAC 50 Hz, 3-phase 200 to 208 VAC 60 Hz Allowable voltage fluctuation 10% 20 14 30 23 30 20 25 60 46 Refer to page 94.
. i-4 i-2-7 . i-4 i-2-8 . i-5 i-2-9 . i-5 i-3 . i-6 i-4 / . i-7 1 1-1 . 1-1 2-1 . 2-1 2-2 . 2-1 2-2-1 . 2-1 2-2-2 . 2-2 2-2-3 . 2-2 2-2-4 . 2-2 2-2-5 . 2-3 2-3 . 2-4 3 / 3-1 . 3-1 3-2 . 3-1 3-3 . 3-2 3-4 . 3-2 3-5 . 3-2 3-6 . 3-2 4 4-1 . 4-1 4-2 . 4-1 4-2-1 . 4-1 4-2-2 . 4-1 4-2-3 . 4-2 5 5-1 . 5-1 5-2 . 5-3 1 6 6-1 . 6-1 6-2 GWP . 6-1 6-3 . 6-2 6-
With drain With drain With drain With drain With drain gauge guide cock guide cock guide B B B B B B B B B AFF20 159. 6 159. 4 146. 1 142. 1 148. 6 AFF30 219. 8 219. 8 219. 8 186. 6 184. 9 180. 6 185. 1 200. 6 205. 1 AFF40 263.3 265.1 265.1 232 230. 3 225. 9 230. 4 245. 9 250. 4 -31- Revision history Revision A: September 2020 Addition of the Series 20 and 40 Revision B: August 2021 Addition
With drain With drain With drain With drain With drain gauge guide cock guide cock guide B B B B B B B B B AM20 159. 6 159. 4 146. 1 142. 1 148. 6 AM30 219. 8 219. 8 219. 8 186. 6 184. 9 180. 6 185. 1 200. 6 205. 1 AM40 263. 3 265. 1 265. 1 232 230. 3 225. 9 230. 4 245. 9 250. 4 -31- Revision history Revision A: September 2020 Addition of the Series 20 and 40 Revision B: September 2020 Addition
(mm) 3.2 4 6 8 10 12 16 M5 R1/8 Connection thread Connection thread G1/8 R1/4 G1/4 R3/8 G3/8 R1/2 G1/2 No thread Applicable tube O.D.
Metric size 2 3.2 4 6 3.2 4 6 8 10 3.2 4 6 8 10 6 8 10 12 10 12 16 Tubing O.D.
18 12 35 5 31 M4 x 0.7 5 6 3 M8 x 1.25 29 1/8 83 124 25 Up to 300 22 19.5 17 50 18.5 10 36 5.5 6 18 12 40 6 33 M5 x 0.8 5.5 8 3.5 M10 x 1.25 29 1/8 83 129 32 RHC Up to 300 22 19.5 17 50 20 12 38 6.6 6 18 12 40 6 38 M5 x 0.8 5.5 10 3.5 M10 x 1.25 35.5 1/8 85 131 40 Up to 500 30 27 19 60 26 16 46 6.6 6 19 13 50 8 47 M6 x 1.0 6 14 4 M14 x 1.5 44 1/8 93 149 50 MK(2) Up to 600 35 32 27 75 32 20
See page 6-13-12 for dimensions. See page 6-13-12 for dimensions.
They can cause the coil to burn out. 6. Low temperature operation 1) The valve can be used in an ambient temperature of between 10 to 20C.
6 18 12 40 6 33 M5 x 0.8 5.5 8 3.5 M10 x 1.25 29 1/8 83 126.5 32 Up to 450 22 19.5 17 50 20 12 38 6.6 6 18 12 40 6 38 M5 x 0.8 5.5 10 3.5 M10 x 1.25 35.5 1/8 85 128.5 40 Up to 800 30 27 19 60 26 16 46 6.6 6 19 13 50 8 47 M6 x 1.0 6 14 4 M14 x 1.5 44 1/8 93 147 50 Up to 1200 35 32 27 75 32 20 58 9 9 21 14 58 11 58 M8 x 1.25 7 18 5.5 M18 x 1.5 55 1/4 109 172.5 63 Up to 1200 35 32 27 90 38
6 e !0 !3 w @1 @2 !5 t y q r e !0 !3w #0 @9 #3 @8 @7 o @0 !6 i !9 !8 u o @0 !7 i !9 !
See page 6-13-12 for dimensions. See page 6-13-12 for dimensions.
-6 = 9.0 x 10-6 (kgm2) Moment of inertia around Z axis IA = IZ1 + m1r12 X 10-6 z r2 Z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis IZ2 = {m2 (d2 + e2)/12} x 10-6 IZ2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) IB = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) I =
Dimensions Applicable tubing O.D. d Inch Size Metric Size L3 Model L3 Model Weight (g) 6 7 8 12 13 26 31 Weight (g) 6 7 8 9 12 18 21 24 26 31 M1 d M1 D2 L2 D1 L1 L2 D2 D1 L1 d Min. 24.9 25.5 Min. 24.9 25.5 26.6 27.6 28.7 30.2 31.5 Max. 27.7 28.5 Max. 27.7 28.5 29.8 32.6 33.7 35.2 36.5 3.2 4 6 4 6 6 8 AS1001FM-23 AS1001FM-04 AS1001FM-06 AS2001FM-04 AS2001FM-06 AS2051FM-06 AS2051FM-08 AS1001FM
-6 = 9.0 x 10-6 (kgm2) Moment of inertia around Z axis IA = IZ1 + m1r12 X 10-6 z r2 Z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis IZ2 = {m2 (d2 + e2)/12} x 10-6 IZ2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) IB = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) I =
I ':"1 6 65 274 1 7 7 1 7 7 6 52 55 -r5 loo . 6 . 202 202 6 8 65 320 227 227 6 47 75 litzs . 70 345 252 252 6 47 150 6 8 370 277 2 7 7 r 1 65 T-slot A dimensions T-slot B dimensions $unies tX$ tilo To 0[dEl' tlect|'ic Acl||at0 AC Servo Motor 100vAc TS45O1N -rslsotl I Nole 1) l Applicable Applicable TarnaFwa Sek I 2OOVAC TS45O1N AppLicable L Applicable 3 -.'