SMC Corporation of America
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Search Results "LEY32A-300-S1"

T4 = 0.05 [s] T1 = V/a1 = 300/5000 = 0.06 [s], T3 = V/a2 = 300/5000 = 0.06 [s] T2 = = = 0.94 [s] L 0.5 V (T1 + T3) V 300 0.5 300 (0.06 + 0.06) 300 T4 = 0.05 [s] Therefore, the cycle time can be obtained as follows.

0 300 200 400 100 500 600 Speed [mm/s] Speed [mm/s] LEPY LEPS LEY32m LEY32m for acceleration/deceleration: 2000 mm/s2 LER 90 50 80 Lead 4: LEY32C LEH 40 42 Horizontal work load [kg] Vertical work load [kg] 70 Lead 4: LEY32C LEY -X5 60 Lead 8: LEY32B 30 50 11LEFS 40 20 21 Lead 8: LEY32B 30 11LEJS Lead 16: LEY32A 20 10 Lead 16: LEY32A 10 25A0 0 0 300 200 400 100 500 600 0 300 200 400 100 500

T4 = 0.05 [s] T1 = V/a1 = 300/5000 = 0.06 [s], T3 = V/a2 = 300/5000 = 0.06 [s] T2 = = = 0.94 [s] L 0.5 V (T1 + T3) V 300 0.5 300 (0.06 + 0.06) 300 T4 = 0.05 [s] Therefore, the cycle time can be obtained as follows.

T1 = V/a1 = 300/5000 = 0.06 [s], T3 = V/a2 = 300/5000 = 0.06 [s] T2 = = = 0.94 [s] L 0.5 V (T1 + T3) V 300 0.5 300 (0.06 + 0.06) 300 T4 = 0.05 [s] Therefore, the cycle time can be obtained as follows.

900 50 900 25 900 8 150 1000 75 1000 38 1000 9 200 1200 100 1200 50 1200 10 250 1400 125 1400 63 1400 11 300 1600 150 1600 75 1600 12 350 1800 175 1800 88 1800 13 400 2000 200 2000 100 2000 14 450 2500 225 2500 113 2500 15 500 3000 250 3000 125 3000 LEY32A LEYG32A LEY32B LEYG32B LEY25C LEYG32C 2] 2] 2] [mm/s] [mm/s [mm/s] [mm/s [mm/s] [mm/s 0 24 200 12 200 6 200 1 32 300 19 300 15 300 2

30 50 100 150 200 250 300 350 400 30 50 100 150 200 250 300 350 400 450 500 (kg) 0.580.62 0.73 0.87 0.98 1.09 1.20 1.181.25 1.42 1.68 1.86 2.03 2.21 2.382.56 2.09 2.20 2.49 2.77 3.17 3.46 3.74 4.03 4.32 4.60 4.89 LEY 16 D LEY 25 D LEY 32 D [mm] 1) 30 50 100 150 200 250 300 30 50 100 150 200 250 300 350 400 30 50 100 150 200 250 300 350 400 450 500 (kg) 0.580.62 0.73 0.87 0.98 1.09 1.20

st Over 200 st to 300 st 30 st or less 25 st or less Over 300 st Over 300 st Over 30 st to 100 st Over 25 st to 100 st Over 100 st to 200 st Over 100 st to 200 st Over 200 st to 300 st Over 200 st to 300 st 30 st or less 25 st or less Over 300 st Over 300 st 12 16 20 25 32 40 50 63 300 300 167 167 20 24 24 24 300 300 300 300 171 172 174 174 24 24 24 28 105 105 117 117 40 44 44 44 121

Uniform baking temperature 108 300 10.6 300 138 315 18.5 800 Common to all series.

st Over 300 st Over 25 st to 100 st 25 st Over 100 st to 200 st Over 200 st to 300 st Over 300 st Over 25 st to 100 st Over 100 st to 200 st 25 st Over 300 st Over 25 st to 100 st Over 100 st to 200 st Over 200 st to 300 st 25 st or less Over 300 st Over 30 st to 100 st Over 100 st to 200 st Over 200 st to 300 st 30 st or less Over 300 st Over 25 st to 100 st Over 100 st to 200 st Over 200

Uniform baking temperature 108 154 10.6 300 138 200 18.5 800 Common to all series.

S2 R1 R2 SG FG 24 V 0 V S1 S2 SG 24 V 0 V S1 S2 R1 R2 SG FG 24 V 0 V S1 S2 R1 R2 SG FG 24 V 0 V Ground either the reception side or the transmission side of the shielding wire shield.

S2 S1 S2 S1 S2 S1 Master unit V BDH SD FG SD FG SD FG SD FG CANL Twisted pair wire with shield FG BDL Class 3 ground Class 3 ground Class 3 ground Class 3 ground CANH V+ Connect the shielding wire to the SD terminal.

T4 = 0.05 [s] T1 = V/a1 = 300/5000 = 0.06 [s], T3 = V/a2 = 300/5000 = 0.06 [s] T2 = = = 0.94 [s] L 0.5 V (T1 + T3) V 300 0.5 300 (0.06 + 0.06) 300 T4 = 0.05 [s] Therefore, the cycle time can be obtained as follows.

150 Nil C D Nil H L S 300 300 75 Auto-drains listed on page 95 are attached.

(Length 300 mm) Without lead wires Without connector Misc.

Connector location Connector location P.1.10-124 P.1.10-128 P.1.10-132 Top (vertical) Side (honzontal) Top (vertical) Side (honzontal) Without cable With cable (1.5m) With cable (3m) With cable (5m) Without cable Without cable F F S0 S1 S2 S3 P P S0 S1 S2 S3 S0 S1 S2 S3 U0 U1 U2 U3 U0 U1 U2 U3 U0 U1 U2 U3 0 1 2 3 (2) (2) (2) G 2 to 16 stations With cable (1.5m) With cable (3m) With cable