This wiring is common in each mode. (1) Using 3-phase 200 V AC to 240 V AC power supply for LECSN2-T Note 1. Between P3 and P4 is connected by default. 2. Always connect between P+ and D terminals. (Factory-wired) 4.
Motor Type: T5 [AC Servo Motor (T6), 100W, Absolute Encoder]
Motor Type: T5 [AC Servo Motor (T6), 100W, Absolute Encoder], Network Card Type: -
INMETRO certifications: Ex ia IIC T4/T5/T6 Ga Ex ia IIC T4/T5/T6 Gb Ex nA IIC T4/T5/T6 Gc Ex ic IIC T4/T5/T6 Gc P+F; NJ2-12GK-SN, 2-wire type, DC; > 3 mA; < 1 mA, NAMUR NC. Temperature range: -40 C to +85 C / -40 F to +185 F. Not applicable to 6. sign "E4".
SIGNALS AND WIRING (Note 2) I/O signals in control modes Related parameter P P/S S S/T T T/P Pin No.
(factory-wired) When using a regenerative option, disconnect P+ and D, and connect the regenerative option to P+ and C. P+/C/D Regenerative option Refer to section 11.2 for details. Supply the following power to L11 and L21.
4 6 LECSS2-T7 LECSS2-T8 170 5 21 AC Servo Motor Driver Series LECSS-T Specications Model LECSS2-T5 LECSS2-T7 LECSS2-T8 Compatible motor capacity [W] 100 200 400 Compatible encoder Absolute 22-bit encoder (Resolution: 4194304 p/rev) LEY LEYG LEFS/LEFB LEJS/LEJB LECSS-T Power voltage [V] Three phase 200 to 240 VAC (50/60 Hz), Single phase 200 to 240 VAC (50/60 Hz) Allowable voltage uctuation
LECSS2-T9 L1L2L3 AC200V240V 50Hz/60Hz L1L2L3 AC200V240V 50Hz/60Hz L1L3 P3P4 P3P4() P+D() P+DP+C P+CD 11.2 L11L21 LECSS2-T5 L11L21 LECSS2-T9 AC200V240V L11L21 UVW (UVW)(UVW) N(PE) ((PE) 3 9 3. 3.3.2 (1) 1)3.1 (L1/L2/L3/L1/L3) PLC OFF 2)(L11L21) ON [AL.
L1 L2 L3 Driver LECSC2-T5 / LECSC2-T7 LECSC2-T8 / LECSC2-T9 Main circuit power supply Power supply 3-phase 200 to 230VAC, 50/60Hz L1L2L3 1-phase 200 to 230VAC, 50/60Hz L1L2 When using driver built-in regenerative resistor, connect P( ) and D. (Factory-wired) P C D When using regenerative option, disconnect P( ) and D, and connect regenerative option Regenerative option to P and C.
Dimensions P.386 Spare Parts P.390 KQ2 Metric size P.383 KDM6 How to Order P.392 Variations P.393 Dimensions P.394 KDM Metric size P.391 How to Order P.404 Variations P.405 Dimensions P.406 Inch size P.403 How to Order P.414 Variations P.415 Dimensions P.416 Inch size P.413 Gasket Seal (Uni Thread) Connection thread Applicable tubing Rc G NPT NPTF How to Order P.420 Variations P.421 Dimensions
(otaloq l{0, lltlodell trl tl P 0 R 5 T U v w x CR 6.59 ?
P/N 3/8 B5 x 2 3/8 B5 x 3 3/8 B5 x 4 3/8 B3 x 2 #2 1/2 Barb P/N 3/8 B2 1/2 x 2 3/8 B2 1/2 x 3 3/8 B2 1/2 x 4 3/8 B2 1/2 x 5 3/8 B2 1/2 x 6 3/8 B2 1/2 x 7 #3 Barb P/N 3/8 B3 x 2 3/8 B3 x 3 3/8 B3 x 4 3/8 B3 x 5 3/8 B3 x 6 #4 Barb P/N 3/8 B4 x 2 3/8 B4 x 3 3/8 B4 x 4 3/8 B4 x 5 Thread Size 1 Barb # (Size) Quantity of Barbs Part Numbering Example 52 Available with #1, #2, #2
Dimension L Weight (g) 1.2-99 Type 41 42 Type 41P 42P Manifold Options How to order interface regulators Series SY3000 Series SY5000/7000 P 2 ARBY5000 00 ARBY3000 05 P 2 ARBY7000 Regulated port Regulated port P port A port (P port control type A port regulated) P port A port (P port control type A port regulated) P P A1 A1 B port (P port control type B port regulated) B port (P port control
Mode button 1s Set button 1s or Mode button 1s Set button 1s Fig. 41-1 No.IP8S-OM09 57 Mode button 1s Set button 1s or Mode button 1s Set button 1s P constant I constant D constant Fig. 41-2 Mode button 1s Set button 1s or Mode button 1s Set button 1s P constant I constant D constant Fig. 41-3 Mode button 1s Set button 1s or Mode button 1s Set button 1s P constant I constant
Motor Type: T5 [AC Servo Motor (T6), 100W, Absolute Encoder], Network Card Type: 9 (EtherNet/IPâ„¢)
Motor Type: T5 [AC Servo Motor (T6), 100W, Absolute Encoder], Network Card Type: E (EtherCat®)
Motor Type: T5 [AC Servo Motor (T6), 100W, Absolute Encoder], Network Card Type: EtherNet/IPâ„¢
Motor Type: T5 [AC Servo Motor (T6), 100W, Absolute Encoder], Network Card Type: EtherCat®
The pressure supply is above the disc. tffi P F ISO Symbol A B t-vt A B rT--r] P E X P E X ffi P E X A E T t--l I T T I P E X Fig 7.12 Section through a Rotary Disc Valveand a disc for a 4/3 tunction with closed center P N E U U A T t c T E c H N o L o c Y I UALVE OPERATION M E C H A N I C A L O P E R A T I O N :E : Square Roller e Roller Lever A l:Ez : Plunger t-l n n tldt A !
T3 = V/a2 = 300/3000 = 0.1 [s] L 0.5 V (T1 + T3) V Time while the actuator is operating at a constant speed T3: Deceleration time [s] T2 = Time from the beginning of the constant speed operation to stop T4: Settling time [s] Time until positioning is completed T5: Resting time [s] Time the product is not running T6: Total time [s] Total time from T1 to T5 300 0.5 300 (0.1 + 0.1) 300