SMC Corporation of America
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Search Results "LVM10R1Y-6C-2-K-Q"

6 6-2 GWP (GWP) Regulation (EU) No 517/2014 IPCC AR4) R134a 1,430 1,430 R404A 3,922 3,920 R407C 1,774 1,770 R410A 2,088 2,090 (1) (2) IDU Series 6-2 GWP 6 2 IDX-OM-W014 6 6-3 Q E D A B P G [AC200V] C F J M K L N H 4x13 [AC100V] [AC200V] 10 (:1.9m) (17) :0.8m mm A B C D E F G H J K L M N P Q IDU3E Rc3/8 440 498 285 2751 15 455 IDU4E Rc1/2 13 483 31 568 470 270 3001 80 2402

. 2 2 2 2 1 Location . 2 2 2 2 2 Anchorage . 2 2 2 2 3 Air piping . 2 3 2 2 4 Drain Tube . 2 3 2 2 5 Electric wiring . 2 4 2 3 Cautions about Reinstallation . 2 6 Chapter 3 Operation / Shutdown 3 1 Check points before operation . 3 1 3 2 Operation . 3 1 3 3 Shutdown . 3 2 3 4 Cautions about restart . 3 2 3 5 Check points before restart . 3 2 3 6 Precautions for long-term non-operation .

. 2-2 2-2-3 . 2-2 2-2-4 . 2-3 2-2-5 . 2-3 2-3 . 2-5 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 1 4-2-2 . 4-1 4-2-3 . 4-2 5 5-1 . 5-1 6 6-1 . 6-1 6-2 GWP . 6-3 6-3 . 6-4 6-4 . 6-5 6-5 . 6-7 7 C 7-1 . 7-1 7-2 . 7-1 8 K 8-1 . 8-1 8-2 . 8-1 9 L 9-1 . 9-1 9-2 . 9-1 9-3 . 9-2 9-4 . 9-2 10 M 10-1

n = 2, 4, 6, 8 n 150 + 100 (n 2) n = 2, 4, 6, 8 100 + 100 (n 2) 110 + 100 (n 2) n = 2, 4, 6, 8 CNA 1 15 110 150 Different sides CNS 110 150 35 2 Same side 110 150 55 CLS D-A44 150 + 30 (n 2) n = 2, 4, 6, 8 150 + 50 (n 2) n = 2, 4, 6, 8 Different sides 110 + 30 (n 2) n = 2, 4, 6, 8 35 + 30 (n 2) n Same side 110 + 50 (n 2) n = 2, 4, 6, 8 55 + 55 (n 2) CLQ 1 110 150 15 MLGP D-Z7/Z80

(n 2) /2 n = 2, 4, 6, 8 10 + 40 (n 2) /2 n = 2, 4, 6, 8 15 + 40 (n 2) /2 n = 2, 4, 6, 8 2 (Different surfaces, Same surface) 1 10 15 D-M9mAV n 10 + 30 (n 2) /2 n = 2, 4, 6, 8 15 + 30 (n 2) /2 n = 2, 4, 6, 8 2 (Different surfaces, Same surface) 1 10 15 D-A9m n 10 + 40 (n 2) /2 n = 2, 4, 6, 8 15 + 40 (n 2) /2 n = 2, 4, 6, 8 2 (Different surfaces, Same surface) 1 10 D-A9mV n 10 + 30

BH BI (UU) 2-M3 x 0.5 (opposite side, same location) (For front port, use hexagon socket head set screw) Q H 2-J through JA depth of counter bore JB (opposite side, same location) 1.5 S BE CA CB BF DD D BD BG A 2.2 (0.4) Note 1) SD 16 BA 2-M3 x 0.5 depth 4 BB W 2-M3 x 0.5 (For side port, use hexagon socket head set screw) N BC Note 2) For the 180 specification, the slated line area do not

J 25 K 10 L 14 N 90 O 55 P 110 Q 50 R 88 S 3.2 1/2, 3/4 1 3/4, 1 1, 1 1/2 1 1/2, 2 36 9 205 19 100 106 3 106 10 AME450 Related poroducts 212 22 107 106 3 106 10 36 221 21 10 14 9 90 55 110 50 88 3.2 44 66 96 257 314 406 30 40 30 10 15 15 16 20 24 9 11 13 100 150 180 65 85 120 130 180 220 60 76 110 102 136 184 4.5 4.5 6 239 291 403 22 32 42 128 167 235 122 160 220 3 122 160 220 10 10 10

. 7-1 7-5 . 7-2 8 C 8-1 . 8-1 8-2 . 8-1 9 K 9-1 . 9-1 9-2 . 9-1 10 L 10-1 . 10-1 10-2 . 10-1 10-3 . 10-2 10-4 . 10-2 11 M 11-1 . 11-1 11-2 . 11-1 11-3 . 11-2 11-4 . 11-2 12 R 12-1 . 12-1 12-2 . 12-1 12-3 . 12-1 12-4 . 12-2 12-5 . 12-2 2 13 S 13-1 . 13-1 13-2 . 13-2 13-3 . 13-2 14 T 14-1 . 14-1 14-2 . 14-1 14-3 . 14-1 14-4 . 14-2 14-5 . 14-3 15

BH BI (UU) 2-M3 x 0.5 (opposite side, same location) (For front port, use hexagon socket head set screw) Q H 2-J through JA depth of counter bore JB (opposite side, same location) 1.5 S BE CA CB BF DD D BD BG A 2.2 (0.4) Note 1) SD 16 BA 2-M3 x 0.5 depth 4 BB W 2-M3 x 0.5 (For side port, use hexagon socket head set screw) N BC Note 2) For the 180 specification, the slated line area do not

from the VY Valve. 02 14 2.0 3 03 38 3.3 body Ported Type 04 12 3.9 Terminal Designations are as follows: 04 12 7.2 5 06 34 8.9 1 = 24v Power Supply 2 = Control Signal 3 = Common Negative for both power and signal. 10 1 10 5% 2% + -2% 7 10 1 114 17 12 114 18 9 14 112 2 33 20 2 37 Courtesy of Steven Engineering, Inc. !

Graph (3) 20 x 9.8 x (0.07 + 0.05) x 10/1000 = 0.24 20 x 9.8 x (m1 + m2) x H/1000 0.24 Nm < Effective torque OK < Effective torque (Nm) Find the moment of inertia, "IR" for the load + attachments (2 pcs.) 7 IR = K x (a2 + b2 + 12h2) x (m1 + m2)/(12 x 106) IR = 2 x (202 + 302 + 12 x 102) x (0.07 + 0.05)/(12 x 106) = 0.05 kgm2 (K = 2: Safety factor) Kinetic energy 8 Confirm that the kinetic

6 $2 #2 !3 #3 !7 !2 @5 @4 r @3 e @6 @1 @2 #1 t y $1 u w q E' Section E-E' CYV32 t !9 $0 @1 @2 y @4 @3 u @6 #9 @5 Description Material Note Parts list Description Material Note No. No.

Current consumption 0.12 A or less Current type Note 2) 4 to 20 mA DC, 0 to 20 mA DC (Sink type) Voltage type 0 to 5 VDC, 0 to 10 VDC Input signal Preset input type 4 points (Negative common) Current type 500 or less Voltage type 6.0 to 6.5 k (at 25C) Input impedance Preset input type Approx. 4.7 k 1 to 5 VDC Output impedance: 1 k or more Output accuracy: 6% F.S. or less Analog output Symbol

4-J Depth JK Thread depth PC (from counterbore surface) 2-P 2-Counterbore dia.

B T Y L Depth ED T 4-LD PA K 4-MM Counter bore depth C Thread depth M F MX MTS QW PB MY CY N A E depth EK MG Q + Stroke G CX Z + Stroke Stroke adjustment screw LW (inner cover) DA A -X 20HP H HL HA HA HI Data TA TA R 4-J Depth JK Thread depth PC (from counterbore surface) 2-P 2-Counterbore dia.

. 2 2 2 2 1 Location . 2 2 2 2 2 Anchorage . 2 2 2 2 3 Air piping . 2 3 2 2 4 Drain Tube . 2 3 2 2 5 Electric wiring . 2 4 2 3 Cautions about Reinstallation . 2 5 Chapter 3 Operation / Shutdown 3 1 Check points before operation . 3 1 3 2 Operation . 3 1 3 3 Shutdown . 3 2 3 4 Cautions about restart . 3 2 3 5 Check points before restart . 3 2 3 6 Precautions for long-term non-operation .

6 $2 #2 !3 #3 !7 !2 @5 @4 r @3 e @6 @1 @2 #1 t y $1 u w q E' Section E-E' CYV32 t !9 $0 @1 @2 y @4 @3 u @6 #9 @5 Description Material Note Parts list Description Material Note No. No.

VH*-OMQ0023-C PRODUCT NAME Pressure Relief 3 Port Valve With Locking Holes MODEL / Series / Product Number VHS20-(F,N)01~02A,B(-B,S)(-K,R,Z) VHS30-(F,N)02~03A,B(-B,S)(-K,R,Z) VHS40-(F,N)02~04A,B(-B,S)(-K,R,Z) VHS40-(F,N)06A,B(-B,S)(-K,R,Z) VHS50-(F,N)06~10A,B(-B,S)(-K,R,Z) VHS2510-(F,N)01~02A,B(-B,S)(-K,R,Z) VHS3510-(F,N)02~03A,B(-B,S)(-K,R,Z) VHS4510-(F,N)02~04A,B(-B,S)(-K,R,Z) VHS4510-(