Taper ring Steel balls P f R R Enhanced locking efficiency Greater locking efficiency as well as stable locking and unlocking operation has been achieved by arranging a large number of steel ball bearings in circular rows. The floating taper ring provides alignment and stable locking force with respect to piston rod eccentricity.
P P P Lock position Z80 P P H R Rear lock Front lock Y59A Y69A P p P Manual release Y7PV Y7P P P p N L Non-locking type Locking type Y59B Y69B P p P Solid state switch Y7NW Y7NWV P P p Y7PW Y7PWV P P p Y7BW Y7BWV P P p Y7BA P p Lead wire symbols 0.5m . Nil (Example) Y69B 3m . L Y69BL 5m . Z Y69BZ Solid state switches marked with a "p" are produced upon receipt of order.
0 r !4 u !5 !7 y !3 !2 Parts list No. Description Parts list No.
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H G I J K L A B C D E F M R Size Tolerance +0.058 0 -0.1 -0.2 -0.1 -0.2 -0.1 -0.3 -0.1 -0.3 AD-FI-20 AD-FI-25 AD-FI-32 AD-FI-40 +0.027 0 +0.027 0 +0.027 0 +0.027 0 9 9 16 16 36 38 55 55 16 18 22 22 9 9 12 12 20 25 32 40 10 10 15.5 15.5 20 20 24 24 14 14 20 20 M8 x 1.25 M10 x 1.25 M14 x 1.5 M16 x 1.5 20 25 32 40 46 46 56 64 28 30 40 43 60 60 80 88 22 22 30 30 16 16 16 24 10 10 12 12 30 30
Note 1) Lock position F9BWV F9BW F7BWV J79W F9BA F7BA H R Rear lock Front lock Bore size (mm) Foot Note 2) Flange Double clevis F7NT F79F 32 40 50 63 CQ-D032 CQ-D040 CQ-D050 CQ-D063 CQ-F032 CQ-F040 CQ-F050 CQ-F063 CQ-L032 CQ-L040 CQ-L050 CQ-L063 Manual release type F7LF Lead wire length symbols 0.5m . Nil (Example) A80C 3m . L (Example) A80CL 5m . Z (Example) A80CZ None .
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
With end lock (R) Functional option Axial piping type (P) For detailed specifications of adjuster options and functional options, refer to option specifications on pages 3 and 4. Standard Strokes Order Made Order Made Specifications Model Standard stroke (mm) For order made specifications of series MXQ, refer to page 42.
Nil R L Motor straight, motor cable, switch and switch rail located on the right Photo micro sensor rail 1 pc. Motor straight, motor cable, switch and switch rail located on the left Proximity switch rail 1 pc. The tables above show the definition for each symbol only and cannot be used for actual model selection. 1
Model AU ALU ALHU F R Barb fitting M3, M5 M3 M5 Barb elbow Barb one-touch Reducer Removing tubing Withdraw the sleeve straight along the tubing. Use a tool such as long-nose pliers if it is difficult to pull out by hand. 1. Withdraw the tubing straight. 2.
1 0 1 01 Set pressure Gauge port orientation Nil: Standard 0.005 to 0.2MPa 0 OUT IN 1 0.01 to 0.4MPa Knob Gauge port R: R specifications Gauge port JIS symbol Port size Piping port size M5 x 0.8 Rc 1/8 Symbol M5 01 OUT IN Gauge port positions are indicated with the knob on the top side.
Cylinder Port: NPT, Arm Opening Angle: 120°, Arm Position: R (Right Side), Switch Type: T (Turk PNP), R Arm Mtg Position: A (Mounting Position A), R Arm Style: A028 (65mm Offset Plain ref NAAMS ACA028M)
Cylinder Port: NPT, Arm Opening Angle: 105°, Arm Position: R (Right Side), Switch Type: T (Turk PNP), R Arm Mtg Position: C (Mounting Position C), R Arm Style: A004 (Straight Machined ref NAAMS ACA206M)
How to order L E C C G R ii. Dimensions 71 - 8. Reference Information 8.1 LRC Checksum Calculation Procedure (1) How to calculate the LRC checksum The checksum calculation method in Modbus ASCII mode is based on a Longitudinal Redundancy Checking (LRC) method. (i) All data in the transmitted message is added together, excluding the Start Code : and End Code pair CR, LF.
3 0 0 1 SUP OUT 2 3%F.S. 3 R B(P36203018) G 2 3 RcF N IR3000G43-2-01 G43-P2-N01-X30 IR3010G43-4-01 G43-P4-N01-X30 IR3020G43-10-01 G43-P10-N01-X30 02:1/4 03:3/8 04:1/2 Rc FG NNPT 00.010.2MPa 10.010.4MPa 20.010.8MPa PRECI SI O N REG U LATO R I R302BG No.
(10 ) 9DIN 101 1 2 2 -8No.PS-OMR0001CN-J 2 B 2 F 0.010.03mm 0.020.15mm 0.050.30mm G H DC24V AC100V AC110V 10 1 10 2 Rc1/8 4 1 C 2 10 N 6 10 3 0 G1/8 F G1/8 3 0.4MPaMPa 1 11 0.4MPaMPa 2 0.2MPaMPa C Rc1/4 3 F 12 G1/4 0.2MPaMPa 4 0.4MPapsi 0.4MPapsi 10 5 N 1 2 3 4 5 6 1 2 NPN1 PNP1 P 10 6 3 4 0.2MPapsi 0.2MPapsi 7 10 4 5 6 M 5 SI 10 8 1 7 L 7 L N S 6 7 8 R
(10 ) 9DIN 101 1 2 2 -8No.PS-OMT0001CN-E 2 B 2 F 0.010.03mm 0.020.15mm 0.050.30mm G H DC24V AC100V AC110V 10 1 10 2 Rc1/8 4 1 C 2 6 10 N 3 10 0.4MPaMPa 0 G1/8 F G1/8 3 1 11 0.4MPaMPa 0.2MPaMPa 0.2MPaMPa 2 3 C Rc1/4 F 12 G1/4 4 0.4MPapsi 0.4MPapsi 5 10 N 1 2 3 4 5 6 1 2 NPN2 PNP2 P 6 10 3 4 0.2MPapsi 0.2MPapsi 10 7 4 5 6 M SI 5 8 10 1 7 L 7 L N S 6 7 8 R
-2No.PS-OMF0005CN-E / 1 1.5 *3) 1 1 [] -3No.PS-OMF0005CN-E () () -4No.PS-OMF0005CN-E () * 5 m -5No.PS-OMF0005CN-E * (RcNPTG) 1/8 79 Nm 1/4 1214 Nm 1.52 2 * () ()() () () -6No.PS-OMF0005CN-E * IP66IP65 () 060 (5 ) * -7No.PS-OMF0005CN-E (ISA2 ) * * (EXH) 5 m 0.2 MPa CE (2 VCA ) () C-R () ()C-R ( ) () AC 10 DC 2 * * 2 0.51.25 mm -10+10 5 -8No.PS-OMF0005CN-E *
Leakage voltage Caution Take note that the leakage voltage will increase when a resistor is used in parallel with a switching element or when a C-R circuit (surge voltage suppressor) is used for protecting a switching device because of the leakage voltage passing through the C-R circuit. The suppressor residual leakage voltage should be as 3% or less of the rated voltage. 3.
( )C-R 3 ( DC 5% AC 15% ) (SSRTRIAC )AC 1) 3 (C-R ) OFF 2)() ZNR 1V 4 VP450-OMU0001 VP4*50, VP4*70, VVP4*0 Series 5 / ( ) (1) ()COMCOM (2) () Sol.1: Sol.2: 1.NPN Sol.1: Sol.2: +() -() 2.NPN 5 VP450-OMU0001 VP4*50, VP4*70, VVP4*0 Series 5 1 ()ISO VG32 2 ()ISO VG32 1 Rc Nm Rc 1/8 35 Rc 1/4 812 Rc 3/8 1520 Rc 1/2 2025 Rc 3/4 2830 Rc 1 3638 Rc 1 1/4 4042 Rc 1 1/2 4850 P