Kinetic energy of load E: J E = 1/2 x IR x 2 (1) = 2/t (: Angular speed at the end) : Rotation angle (rad) t: Rotation time (s) Allowable kinetic energy Allowable Value J (ftlb) Model MRHQ10 0.0026 (0.0019) MRHQ16 0.008 (0.0059) MRHQ20 0.034 (0.025) MRHQ25 0.074 (0.055) 8 Rotary Gripper Series MRHQ Dimensions (mm) 1in = 25.4mm Scale: 60% MRHQ10 A B 34 41 54.5 24.5 4-M4 x 0.7 Depth 6 M5
t l t t RR1 m m m m d Dd9 d Dd9 0.1 0.3 NX +0.2 0 A1 U1 L 7 12 Material: Pin and snap ring both SUS304 Material: SUS304 Material: Pin and snap ring both SUS304 Part no.
The tightening torque should be 0.1 to 0.2 Nm. 5 to 6 14 e-Rodless Actuator Series E-MY2 Names and Functions of Individual Part Controller detail w t q u End Motor I/O cable Controller Power supply cable Slider i y e r Switch FG terminal Motor side end Description Content/Function q w e r t y u i Stroke learning switch Description Content/Function Switch to move the actuator to intermediate
T Connecting thread KBB1-M5 KBB1-M6 KBB3-R1 KBB4-R2 Rc(PT) 1 4 T Connecting thread Part No.
Number of needle rotations Dimensions D3 Applicable tubing O.D. d D1 L3 A L4 M T H (Width across flats) L2 L1 Metric Size/Inch Size [mm] Model d T H D1 D3 L1 L2 L3 L41 A2 M Weight [g] Unlocked Locked Unlocked Locked AS121F-M3-02A-X790 2 11.9 5 AS121F-M3-23A-X790 3.2 7.2 17.2 21.7 5.8 15.8 20.3 16.9 13.3 AS121F-M3-04A-X790 4 8.2 AS121F-M3-06A-X790 6 10.4 18.6 23.1 16.5 6 AS121F-M3-01A-X790
ARJ y AR425 to 935 w r ARX t AMR e ARM ARM u y u q i ARP IR-A r o Replacement Parts Component Parts IR Description Material Part no.
table below G (Grommet terminal: E) H (Conduit terminal: T) I (DIN terminal: D) In the case of EZ or TZ, the length is longer by 10 mm.
Standardized T-type arms and S-type arms Shape selectable to meet specifications/application.
PSE31(T) NPN 2 NPN 2 Max.30 V80 mA 1 V Max.30 V80 mA 1V :15 V 1 k :420 mA 300 (DC12 V) 600 (DC24 V) 50 DC+ DC+ OUT1 OUT1 OUT2 OUT2 DCDCPSE32(T) PSE33(T) NPN 2 PNP 2 Max.80 mA 1 V Max.30 V80 mA 1 V 15 V 1 k DC+ DC+ OUT1 OUT1 OUT2 OUT2 DCDCPSE34(T) PSE35(T) PNP 2 PNP 2 Max.80 mA 1 V Max.80 mA 1 V 420 mA 300 (DC12 V) 600 (DC24 V) 50 DC+ DC+ OUT1 OUT1 OUT2 OUT2 DCDC
speed and seconds of arc are found as follows. x t (1) t d t 1 / 2 t + C (2) C is integration constant.
Red 4 Lock B-1 Black 5 Lock A-1 Brown 1 Sensor B-3 Blue 2 Sensor A-3 Electric Actuator side Controller side 11 - (5) Communication plug connector -5 4 Correspondence network Type 3 2 CC-Link MJ Straight type S 1 T T-Branched Straight type type 5 No.
t e 2 ) 1 pcs. 15 D-P3DW(A) 2 pcs. 15 1 pc. 5 N o t e 2 ) N o t e 4 ) 2pcs.
Description XLS-16XLS-16-P XLS-25XLS-25-P (2) Coil assembly XLS16-20-*G,C,D,T XLS16-20-P*G XLS25-20-*G,C,D,T XLS25-20-P*G (6) Core assembly XLS16-30-1 XLS25-30-1 (4) Armature assembly XLS16-30-2 XLS25-30-2 (3-1) Core O-ring AS568-018V AS568-018V (3-2) Bonnet O-ring AS568-025V AS568-030V Note) Enter voltage no. at * G, C, D, and T after * mean the symbol showing an electrical entry. 6 XL
9 #0 w #1 #0 t q e @9 #1 @1 !9 t @5@6 @1 #0 q !1 w #1 #0 @2 @9 #1 @1 RSH CE1 40 to 63 CE2 @0 @4 @8 i u o @3 !1 #1 #2 @8@4 !2 @7 !3#3 r !4 e !6 @6 ML2B ML1C #7 #6 !5 REA REC RHC !9 @5 t @6 y #0 w @1 #0 #5 !7 #4 q @9@2 !8 #1 #2 !7 #5 #4 @1 MTS CC Component Parts Component Parts Description Material Note Description Material No. No.
T Metric Size L4 L5 A1 A2 M Max.
Note 2) 3/16", 3/8", 1/2" are made of brass (Electroless nickel plated). 15-9-78 5 Speed Controller Adjustable by Flat Head Screwdriver With One-touch Fitting, Elbow Type/Universal Type Dimensions Elbow type L5 D3 H (Hexagon width across flats) Applicable tubing O.D. d AS A L4 ASP D1 ASN L3 AQ ASV AK M1 ASS D2 T L1 ASR L2 ASF Metric Size Inch Size d T H D2 D3 L1 L2 L3 L4 L5 A M1 d T H D1
T Inch size L4 L5 A1 A2 M1 Max.
B DIN rail mounting bracket [-D] VVQ1000-57A for {F, L, M, P, S (EX500) kit} VVQC1000-57A-S for {S (EX250) kit} VVQC1000-57A-T for {T, S (EX126) kit} 17 SOL. A 5 Station 7 SOL. B 18 SOL. A 6 Station 8 SOL.
As a result, the air supply valve t linked to the diaphragm r opens, and a portion of the supply pressure becomes output pressure. This output pressure feeds back to the control circuit i via the pressure sensor u.