C H G F E D B A Port size Model J K 959 317 289 363 157 152 910 260 R 3/4 IDU11C/11D 571 580 30 70 1009 337 309 383 207 175 960 280 R 1 IDU15C : Power source 220 to 240VAC 7
IRV1000 IRV2000 IRV3000 P538010-6 P538020-3 P538030-5 q w e r t y u i o !0 !1 !2 !3 !4 !5 HNBR, etc.
1400 or less 1600 or less Order Made Made to Order Mounting Bracket Part No.
Inlet air temperature 35C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.5MPa Air flow 1200 l/min (ANR) Inlet air temperature 55C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.7MPa Air flow 350 l/min (ANR) Condition Condition A = 0.75 based on conditions q, w and e 1 B = 0.95 based on conditions q, w and e 1 C = 1.00 based on
Condition Condition Inlet air temperature 35 C Outlet air pressure dew point 10 C Ambient temperature 35 C Inlet air pressure 0.5MPa Air flow 1200 l/min (ANR) Inlet air temperature 55 C Outlet air pressure dew point 10 C Ambient temperature 35 C Inlet air pressure 0.7MPa Air flow 350 l/min (ANR) A = 0.75 based on conditions q, w and e 1 B = 0.95 based on conditions q, w and e 1 C = 1.00 based
L L+A Fig. 1 Fig. 2 L 2 1 V E = W ( ) 2 1000 Collision speed V = 1.4 Va Find the kinetic energy E (J) of the load. 1 420 E = 1 ( ) = 0.088 2 1000 V = 1.4 x 300 = 420 Correction factor (reference value) Find the allowable kinetic energy Ea (J).
Inlet air temperature 35C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.5MPa Air flow 1200 l/min (ANR) Inlet air temperature 55C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.7MPa Air flow 350 l/min (ANR) Condition Condition A = 0.75 based on conditions q, w and e 1 1 B = 0.95 based on conditions q, w and e C = 1.00 based on
R T T N E K I ETL LISTED CONFORMS TO M C AC EXT.SENSOR CERTIFIED TO UL STD 60601-1 US C D L I E S T 3054524 Circulating fluid outlet Rc1/4 CAN/CSA STD C22.2 NO.601.1 THERMO-CON HEC002-A5B-F MODEL No.
0 -0.05 0 -0.05 E AL TE 2-TC K F TA DL2 TF TG A S + Stroke H NA F ZZ + Stroke Section TA With non-locking type manual override (suffix N) With locking type manual override (suffix L) HN HR MO RF WL WL KA 0.1 C 8-J NA (mm) Stroke range Bore size (mm) A AL B1 C D DL2 E F GA GB H H1 HR HN (max.)
6 e @1 @1 e tValve guide tValve guide Working principle (For IR2000) When the setting knob is turned, the nozzle is closed by the flapper allowing the supply air that flows in from the upstream side to pass through the fixed throttle.
9 @0 t q @2 w @3 e @4 @1 !5 !4 !6 y !7 !0 i u !8 MK CKQ CLKQ o CK1 !3 CLK2 !1 !2 @1 @4 Component Parts No.
Display value fine adjustment (function) E The code number displayed, identifying the error detected by the self-diagnosis function of the pressure switch. Refer to "Error indication function" on page 88 for details of the errors. Error displayed Switches the switch output to ON/OFF when an error is displayed. Refer to "List of output modes" on page 34 for operating conditions.
locking can be selected Holding an unclamped state Prevents dislocation of home position due to weight of clamp arm Holding a clamped state Prevents work piece slippage and dropping due to work piece weight LOCK LOCK B A B A LOCK LOCK Clamped locking Unclamped locking Compact lock mechanism minimizes extension of length dimension Series CLK1 clamp cylinder with lock Extended dimension mm E
1 ARM Diaphragm (B) e w r y Exhaust Bleed w ARP Diaphragm (C) SUP(1) OUT(2) SUP(1) OUT(2) OUT(2) SUP(1) Exhaust Valve IR u !0 !0 !2 t r !
locking can be selected Holding an unclamped state Prevents dislocation of home position due to weight of clamp arm Holding a clamped state Prevents work piece slippage and dropping due to work piece weight LOCK LOCK B A B A LOCK LOCK Clamped locking Unclamped locking Compact lock mechanism minimizes extension of length dimension Series CLK1 clamp cylinder with lock Extended dimension mm E
[March 2018] E: Contents revised in several places. [June 2018] F: Contents revised in several places. [October 2018] G: Contents revised in several places. [March 2020] H: Contents revised in several places.
Mitsubishi Electric Corporation Yaskawa Electric Corporation Nil G R Y Brake 50W 100W 200W 1 2 3 None With brake Nil K Power supply voltage Stroke 100/110VAC 50/60Hz 100/115VAC 50/60Hz 200/220VAC 50/60Hz 200/230VAC 50/60Hz Without motor Lead screw lead 1 H B C F A D E 8mm 12mm 20mm 5mm 10mm 25mm 40mm 2 0 Lead screw type The tables above show the definition for each symbol only and cannot
Mitsubishi Electric Corporation Yaskawa Electric Corporation Nil G R Y Brake 50W 100W 200W 1 2 3 None With brake Nil K Power supply voltage Stroke 100/110VAC 50/60Hz 100/115VAC 50/60Hz 200/220VAC 50/60Hz 200/230VAC 50/60Hz Without motor Lead screw lead 1 H B C F A D E 8mm 12mm 20mm 5mm 10mm 25mm 40mm 2 0 Lead screw type The tables above show the definition for each symbol only and cannot
1 100 200 300 400 500 1000 1500 100 200 300 400 500 1000 1500 100 200 300 400 500 1000 1500 LC3F2 LC3F2 Speed (mm/s) Speed (mm/s) Speed (mm/s) Xm Xm Load Mass: E-MY2H (Single Axis) D-m D-m E-MY E-MY E-MY2H/m1 E-MY2H/m2 E-MY2H/m3 60 60 60 50 50 50 30 30 30 20 20 20 Load mass (kg) Load mass (kg) Load mass (kg) 10 10 10 E-MY2H25 E-MY2H25 E-MY2H25 5 5 5 E-MY2H16 4 4 E-MY2H16 4 E-MY2H16 3 3 3
0 L = 100 mm Max. speed = Over 200 mm/s 10 10 LEYG25L E LEYG32L E/40L E LEYG32L E/40L E LEYG25L E LEYG32L E/40L E LEYG32L E/40L E Load mass m [kg] Load mass m [kg] LEYG25L E LEYG25L E LEYG16L E LEYG16L E 1 1 LEYG16L E LEYG16L E 120 125 120 125 0.1 0.1 10 100 1000 35 40 10 100 1000 35 40 Stroke [mm] Stroke [mm] Operating Range when Used as a Stopper LEYGM (Sliding bearing) Caution 100 LEYG32M