g h i j k No. 1 2 mm/s mm mm/s^2 mm/s^2 % % mm/s % mm mm mm 0 ABS 100 80.00 3000 3000 80 40 30 100 70.00 100.00 25.00 No.00[mm] 80[mm] 1AREA [mm] k [mm] c [mm/s] b [mm/s] h 100 30 0 g [%] 80 INP 0 [%] f 40 40[%] INPON ON INP OFF P.41 7.2 0 10 20 30 40 50 60 70 80 90 100 [mm] 102 2AREA AREA1 2 [mm] k [mm] c [mm/s] b [mm/s] h 100 30 0 g [%] 80 INP 40 0 [%] f 170[mm] 2100[mm] AREAON
The 2-byte data of the result of (7) is the CRC value. 3.10 Checksum calculation method HRR Series 3-10 HRX-OM-W004 Chapter 3 Serial communication (Example 1) The least significant bit was a 1. 0 0 0 0 0 0 0 1 1 bit shift in the lowest direction 0 0 0 0 0 0 0 0 1 Add 0 to the top Execute ExOR if 1 (Example 2) The least significant bit was a 0. 0 0 0 0 0 0 0 0 1 bit shift in the lowest
0 to 300 INP1DELAY SEC screen No.21 "AL25Contact input signal detection 1" OFF detection timer 0 0 to 10 INP1OVER SEC screen No.22 screen Changing of "AL26Contact input signal detection 2" FLT OFF/WRN/FLT INP2ALARM No.23 "AL26Contact input signal detection 2" reading delay timer 0 0 to 300 INP2DELAY SEC screen No.24 "AL26Contact input signal detection 2" OFF detection timer 0 0 to 10 INP2OVER
COM Terminal block marking Model A COM B T VQC 4 5 10 0 1 A side COM VQC 4 5 20 0 1 A side COM B side VQC 4 5 3 4 5 6 0 0 1 A side COM B side Note 1) There is no polarity. It can also be used as COM. Note 2) The sub-plate is double wired even for the VQC4 5100 1.
Table: AND Logic Table I I I I O 1 1 1 1 1 1 1 1 0 0 1 1 0 0 0 1 0 0 0 0 0 0 0 0 0 5.2 The OR Block The Output comes ON when any input is ON. The Output remains OFF only if all the inputs are OFF. Unused Inputs are considered to be Off.
DB MVGQ L S Q K J C " #$% B " #$% A " #$% G % 6 %, , %( **%' -.7 MVGQM, MVGQL Common Dimensions 55 : *; % , %(' )* )% 8% ,9% 55 #*('*' ,$% 55 B C DA G GA H J K L MM ML NN PW Q R S T V W X YY YL Z VW / / #%%, 80 0 00 0 / 00 0 1 / 1 & / 1 & / -. 100 0 0 1 1 & 1 & / 0 % < , ,,; % 5*( 6* % % (%5%'*% ,$%, % *( % ,*('*' ,$%, ;= 5%*(, 6 (,* ( * , *% % . % % %* %(= %&% % 55%
Free mounting Examp e:Au1o swfch & speed conlro er mountinq Extemal shock absorber types 4 tO 10 tinus more allowable kinetic energy Rotation Longludna f.oLr.ling space rs reduced bealse lhere rs no pralruson irom adjushenl bots or nterna shock absorbrs shock abcotbers a avaiaHe, lbr low energy and high energy E g P n E E ooor jad .(8)t, o-7., 0 2 0 3 0 4 0 5 0 6 0 7 0 3 0 9 1 0 RoE!
ML2B / W1 ML2B / M1 0 0 0 0 Momentum Nm 0 0 Load N 0 Piston Speed m/s Piston Speed m/s ML2B / W2 ML2B / M2 Momentum Nm Load N Piston Speed m/s Piston Speed m/s ML2B / W3 ML2B / M3 20 10 Momentum Nm 5 Load N 3 2 1 Piston Speed m/s Piston Speed m/s ML2B / W4 Allowable Kinetic Energy 00 H or izontal M ounting 100 5 00 Ver tical M ounting 50 Load N 0 0 1 00 Load N 0 50 5 Piston Speed
uto switch mounting 40 50 63 Reed Switch B71 0-871 A31-0-A31 B76 0-876 A37--D-A37 877-0-877 A39-0-A39 ~~7B8 . ~7K7 BM1..Q4 BM105 BM1-06 0-85:!l6, ~5'K5 BA..Q4 BA-05 BA-06 D-A:3, DA4 D.G3K3 B01-04M B001..Q5M B01-06M B79-0-879 A41--0-A41 880-0880 A49--0-A49 851 0-851 Note)These auto SWitch as cannot be used m magnetic fields.
(U, D)-SCS1 EX124 (U, D)-SCS2 EX140-SCS1 EX140-SCS2 EX120/121/122-STA1 EX123(U, D)-STA1 IN313-TA1 N N Y Y 16 8 16 8 16 8 16 16 16 16 8 16 8 0 0 0 0 0 0 0 0 0 0 0 0 0 VQ, SX, SY & SV VQ2000/4000/5000 CompoBus/S OMRON N N N Y SQ1000/2000, SZ3000/5000 VQ, SX, SY & SV VQ2000/4000/5000 (N)VFR/S, (N)VZS, ISO SYSBUS N EX120/121/122-SSL1 N VQ, SX, SY & SV EX120/121/122-SSL2 N S-Link SUNX EX123 (
They are as tollows: r_.013) C = 4 0 0 ' C v ' Q=21.94'kv Q = 2 2 . 2 ' s ' t-=---:-=-;;-| LtJ .t(Dz + ruJ.s,| . Ap.1l;;-v s ' . ' \ t n !
They are as tollows: r_.013) C = 4 0 0 ' C v ' Q=21.94'kv Q = 2 2 . 2 ' s ' t-=---:-=-;;-| LtJ .t(Dz + ruJ.s,| . Ap.1l;;-v s ' . ' \ t n !
0 5 10 0 0 5 10 0 5 10 Needle rotation (Turns) Needle rotation (Turns) Needle rotation (Turns) Note) "-U10/32" is the same as "M5".
7 With rubber bumper: CNGBN $6 $0 $7 #2 #1 #3 #6 #9 y #0 $0 @6 q @3 !0 !1 u #4 $5 !5 !4 @5 #5 CL Long stroke CL1 @8@9 @6$3o$2!3r!6i!9@1!8@0#8@9@7 tw MLGC With air cushion: CNGBA %5 %1 ^0 %6 %8$8 %0%7$9%9 %4%2%3^2^1 %6$8 %8 CNG MNB CNA CNS Long stroke CLS Description Material Note Component Parts No. No.
flow (Port exhaust) Vacuum pressure 60 40 Suction flow (Silencer exhaust) Air consumption 20 Port exhaust Silencer exhaust 0 0 10 20 30 40 50 60 Suction flow [L/min (ANR)] ZK212 Flow-rate Characteristics Exhaust Characteristics 0 10 20 30 40 50 60 70 80 90 100 100 90 80 70 60 50 40 30 20 10 0 0 0.1 0.2 0.3 0.4 0.5 0.6 Supply pressure [MPa] 100 Suction flow (Port exhaust) Vacuum pressure
U side D side D D D D D D 3 2 1 Stations How to Order Solenoid Valve 10 SV 1 1 0 0 F 5 Note) Clean series Note) Available with manifold block for station additions. Refer to the WEB catalog.
0 0 0 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 Inlet pressure MPa 0 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 Inlet pressure MPa AC60 AC30 0.25 0.25 Set point Set point Outlet pressure MPa Outlet pressure MPa 0.2 0.2 0.15 0.15 0 0 0 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 Inlet pressure MPa 0 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 Inlet pressure MPa AC40 0.25 Set point Outlet pressure MPa 0.2 0.15 0 0 0.2
8 AS w q w q ASP @0 e @0 e ASN @1 !0 !9 !6 !7 @1 !0 !9 !6 !7 AQ i ASV ASQ530F-02 type ASQ630F-03 type ASQ530F-02 type ASQ630F-03 type y !5 !3 y u AK !5 !7 !7 ASS !4 !1 !2 !4 !1 !8 !8 ASR !6 !6 ASF t q t q @0 r @0 r @1 !0 !9 !6 !7 @1 !0 !9 !6 !7 Component Parts Note Material Note Description Description Material No. q w e r t y u i o !0 !1 !2 !3 No. !4 !5 !6 !7 !8 !
0 0 0 0 0 10 20 5 10 5 10 ASF Number of needle rotations Number of needle rotations Number of needle rotations 15-9-65 Series AS-FM Construction Component Parts No.
[60 Hz] 0 10 20 30 40 50 Circulating fluid temperature [C] HRS012-A-20/HRS012-W-20 (Single-phase 200 to 230 VAC) 2500 2500 Ambient temperature or facility water temperature Ambient temperature or facility water temperature Cooling capacity [W] Cooling capacity [W] 2000 2000 25C 25C 1500 1500 32C 1000 1000 32C 500 500 40C 40C 00 10 20 30 40 50 Circulating fluid temperature [C] 0 [50 Hz] 0