. -106090%RH -33- 5.5 5 5.6 OFF SVRE OFF [BK RLS]DC24V [BK RLS] [BK RLS]DC24V [BK RLS] EMG /LEC -34- 6./ 6.1 / 10 1 LEF16 40mm LEF25 60mm LEF32 70mm LEFS40 105mm 6.2.
SVRE OFF [BK RLS]DC24V [BK RLS] [BK RLS]DC24V [BK RLS] EMG /LEC -40- 7./ 7.1. / [LEYG ] 7.2.
Number of fixed allocations 1 output Servo alarm (ALM) [Initial allocation] Lock (/BK) [Can be allocated by setting the parameters.]
Number of xed allocations 1 output Servo alarm (ALM) [Initial allocation] Lock (/BK) [Can be allocated by setting the parameters.]
107 - 3 ON/OFF OFF OFF ON ON ON OFF OFF ON ON OFF OFF ON OFF OFF OFF PLC 108 - 7. / A 50mm ( ) 5m 5m 10% 15m 20% 109 - 8. / 8.1 () EMG / 110 - 1000 1 / UL,UL1310Class2 8.2 111 - 8.3 DC24VSVON a) b) c) d) e) D 100 112 - 8.4 1. 2. 3. 4. 5. 6. 7. 8. -106090% -106090 113 - 8.5 5 P5 8.6 SVRE OFF [BK RLS]DC24V [BK RLS] [BK RLS] DC24V [BK RLS] EMG /LEC 114 - 9. 9.1 / 9.2 ON
-1 or 10BK-2 10 BK-2 1/2 10 RBK4-2 1/4 BK-3 10 RBK4-2 1/2 Page 17 Distributed by Power Aire, Inc.
For mounting the limit switch, order the switch mounting bracket (WRF-BK) separately. For details, refer to page 86.
Do not supply 24 VDC power supply continuously to the [BK RLS (Lock release)] terminal. Stop supplying 24 VDC power supply to the [BK RLS (Lock release) terminal during normal operation. If power is supplied to the [BK RLS] terminal continuously, the lock will be released, and workpieces may be dropped when the stop signal (EMG) is received. 9.
Do not supply 24 VDC power supply continuously to the [BK RLS (Lock release)] terminal. Stop supplying 24 VDC power supply to the [BK RLS (Lock release) terminal during normal operation. If power is supplied to the [BK RLS] terminal continuously, the lock will be released, and workpieces may be dropped when the stop signal (EMG) is received. 9.
7.6 14 - (SVRE OFF )[BK RLS]DC24V [BK RLS] BK RLSDC24V BK RLS (EMG) /(LEC ) 8. 8.1 / ! L H L H L H 15 - 1020 /2 713 3 () 30%(F.S.) 25%(F.S.) 20%(F.S.) LEHZ(J) 10,16 20,25 32,40 LEHF 10 20 32,40 LEHS 10 20 32,40 / () 8.2 !
If the product is operated without releasing the lock, wearing of the lock sliding surface will be accelerated, causing reduction in the holding force and the life of the locking mechanism. (8) Do not supply 24VDC power supply constantly to the [BK RLS (Lock release)] terminal. Stop supplying 24VDC power supply to the [BK RLS (Lock release)] terminal during normal operation.
Description AC servomotor Feed screw bl bm bn bo bp bq br bs bt 100W Ball screw/Slide screw 1 2 3 4 5 6 7 8 9 bk Aluminum alloy Aluminum alloy IIR PC PC High rigidity direct acting guide Bearing R Bearing F Frame Table Housing A Housing B Body cover Aluminum alloy/Stainless steel Aluminum alloy Aluminum alloy Aluminum alloy Aluminum alloy 5 Series LG1H LG1H21: With Coupling/Dimensions 110
Motor (Servo/24 VDC) Lock release (+) Input (+) for releasing the lock Black BK RLS Wiring Example 2 Parallel I/O Connector: CN4 When you connect a PLC, etc., to the CN4 parallel I/O connector, use the I/O cable (LEC-CK4-).
RLS]DC24V [BK RLS] [LK RLS]DC24V [LK RLS] EMG /LEC 75 - 19 19.1 / JXCD1EEPROM1,000,000 76 - 19.2 ON 5 () 77 - 19.3 19.4 ( ) 78 - 19.5 19.6 D 100 19.7 79 - 20 ,, (), YES NO JXCD1 LED 1 MSNS 2 ALM 3 LEC-W2 4 5 80 - No.
RLS (3) EMG LK RLS (6) (2) M 24V (1) C 24V 0V (4) DC24V 0V (1)(DC24V) (2)BK RLS (3)BK RLS -26- 6.4 (1)() (3m) SI PWR (3) EMG (2) M 24V (1) C 24V 0V (4) DC24V 0V -27- (2)((1)) DC24V EMG () DC24V 0V Ry Ry: U LK RLS (6) Ry (1 ) (3) EMG (2) M 24V (1) C 24V 0V (4) DC24V 0V LK RLS (6) Ry (2 ) (3) EMG (2) M 24V (1) C 24V 0V (4) DC24V 0V LK RLS (6) Ry (3 ) (3) EMG (2) M
RLS EMG Ry C 24V 24V M 24V 0V 0V (2 ) BK RLS EMG Ry C 24V 24V M 24V 0V 0V (3 ) BK RLS EMG Ry C 24V 24V M 24V 0V 0V (LEC)OFF 23 - 7.CN3 1 1 DA CC-Link A 2 2 DB CC-Link B 3 3 DG CC-Link 4 4 SLD CC-Link 5 5 FG CC-Link CC-Link CC-Link 1105%, 1/2W CC-Link 1305%, 1/2W 24 - 8.CN1IF (CONT) 8.1 (LEC)12 LEC-CG1-1 LEC-CG2-1 LEC-CG2b) M12 4pin b) M12 4pin LEC-CGD LEC-CGD LEC-CGR
M 24V 0V 0V (2) BK RLS EMG Ry C 24V 24V M 24V 0V 0V (3) BK RLS EMG Ry C 24V 24V M 24V 0V 0V (LEC)OFF 22 - 7.CN3 1 2 3 4 5 TM() 1 VDeviceNet 2 CAN_L CAN(L) 3 SHIELD 4 CAN_H CAN(H) TM() 5 V+ DeviceNet DeviceNet TMCAN_HCAN_L 1201% 1/4W 23 - 8.CN1IF(CONT) 8.1 (LEC)8 LEC-CG1-1LEC-CG2-1 LEC-CG2b) M12 4pin b) M12 4pin LEC-CGD LEC-CGD LEC-CGR c) M12 4pin LEC-CG1b) M12 4pin b) M12 4pin
RLS EMG Ry C 24V 24V M 24V 0V 0V (2 ) BK RLS EMG Ry C 24V 24V M 24V 0V 0V (3 ) BK RLS EMG Ry C 24V 24V M 24V 0V 0V LECOFF 25 - 7CN3: 1 5 4 3 2 1 2 5 4 3 2 1 9 8 7 6 9 8 7 6 3 RXDTXD-P / 4 5 DGND 6 VP 7 8 RXD/TXD-N / 9 PRODIBUS DP 6GK1 500-0FC106ES7 972-0BA12-0XA0 PROFIBUS DP 26 - 8CN1:IF CONT 81 5 (LEC) LEC-CG1-1 LEC-CG2-1 LEC-CG2b) M12 4pin b) M12 4pin LEC-CGD
RLS LEC 1 LEC 1 EMG Ry C 24V LEC LEC 24V M 24V 0V 0V BK RLS LEC 2 LEC 1 EMG Ry C 24V LEC LEC 24V M 24V 0V 0V LEC 3 BK RLS LEC 1 EMG Ry C 24V LEC LEC 24V M 24V 0V 0V 30 - GW GW (CN2SW)ON GW (CN2SW)OFF (CN4)EMG+EMGLEC (EMG+,EMG-OPEN) LEC OFF 7.CN1(CONT) 7.1 GW 12 LEC GW CONT (CN1)LEC 5.LEC-CAP-X22 3.
SU) S A (mm) A AU AV AW AX AY BA BB Size 1 YA 1 28 2.8 11 8.2 5.5 1.5 35 39.6 2 30 3.6 12.6 9.2 7 2 37 45.1 3 34.5 4.4 15.5 10.5 8 2.5 43 46.7 7 41 4.8 18.4 12.2 10 3 50 59.2 YB effective depth YC (mm) BC BD BE BG BH BI BJ BK D DD DE FA FB FD H J JA JB JC JD JE JF JG Size M4 x 0.7 M4 x 0.7 1 4.5 32 17 11 8.2 30 4.5 5.3 27h9 27.5h9 14H9 4.8 2 3.7 9 3.3 6 3.5 2.2 5.3 4 M4 x 0.7 M4 x 0.7 2 5.5