Your search for LEFS returned 30 result(s)
There were no hits with the full part number, but there were 15 hits in the keyword search.
There were no hits with the full part number, but there were 10 hits in the keyword search.
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Series: LEFS (Ball Screw Drive), Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: S3 (200W Output, Incremental Encoder), Lead: A (LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm), Stroke: 300mm, Motor Option: w/o Option, Auto Switch Mounting Bracket: None, Grease Application: with, Positioning Pin Hole: Housing B, Bottom, Cable Type: S (Standard Cable), Cable Length:
Series: LEFS (Ball Screw Drive), Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: S3 (200W Output, Incremental Encoder), Lead: A (LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm), Stroke: 300mm, Motor Option: w/o Option, Auto Switch Mounting Bracket: None, Grease Application: with, Positioning Pin Hole: Housing B, Bottom, Cable Type: S (Standard Cable), Cable Length:
Series: Ball Screw Drive, Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: 200W Output, Incremental Encoder, Lead: LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm, Stroke: 300mm, Motor Option: w/o Option, Auto Switch Mounting Bracket: None, Grease Application: with, Positioning Pin Hole: Housing B, Bottom, Cable Type: Standard Cable, Cable Length: 2m, Driver Type: LECSA1
Series: Ball Screw Drive, Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: 200W Output, Incremental Encoder, Lead: LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm, Stroke: 300mm, Motor Option: w/o Option, Auto Switch Mounting Bracket: None, Grease Application: with, Positioning Pin Hole: Housing B, Bottom, Cable Type: Standard Cable, Cable Length: 2m, Driver Type: LECSB2
, 300, 400500, 600, 700, 800401010001000800620500??
, 300, 400500, 600, 700, 800401010001000800620500??
Series: LEFS (Ball Screw Drive), Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: S3 (200W Output, Incremental Encoder), Lead: A (LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm), Stroke: 500mm, Motor Option: w/o Option, Auto Switch Mounting Bracket: None, Grease Application: with, Positioning Pin Hole: Housing B, Bottom, Cable Type: S (Standard Cable), Cable Length:
Series: Ball Screw Drive, Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: 200W Output, Incremental Encoder, Lead: LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm, Stroke: 500mm, Motor Option: w/o Option, Auto Switch Mounting Bracket: None, Grease Application: with, Positioning Pin Hole: Housing B, Bottom, Cable Type: Standard Cable, Cable Length: 2m, Driver Type: -,
Series: LEFS (Ball Screw Drive), Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: S3 (200W Output, Incremental Encoder), Lead: A (LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm), Stroke: 300mm
Series: Ball Screw Drive, Accuracy: Basic Type, Size: 32, Motor Mounting Position: In-line, Motor Type: 200W Output, Incremental Encoder, Lead: LEFS25, 12mm; LEFS32, 16mm; LEFS40, 20mm, Stroke: 300mm, Motor Option: -, Auto Switch Mounting Bracket: -, Grease Application: -, Positioning Pin Hole: -, Cable Type: -, Cable Length: -, Driver Type: -, I/O Cable Length: -
T2 = T1 T2 T3 T4 200 0.5 300 (0.1 + 0.1) 300 = L : Stroke [mm] (Operating condition) V : Speed [mm/s] (Operating condition) a1: Acceleration [mm/s2] (Operating condition) a2: Deceleration [mm/s2] (Operating condition) T1 = V/a1 [s] T3 = V/a2 [s] = 0.57 [s] T4 = 0.05 [s] T2: Constant speed time can be found from the following equation.
Overhang: L3 [mm] 1500 5000 mm/s2 Refer to Dynamic Allowable Moment graphs (Pages 709 and 710). 20 mm/s2 10 mm/s2 Mep 1000 m 500 L3 100 0 0 10 20 30 40 50 60 70 80 Work load [kg] Selection example) Select the LEJS63V7B-300 from the graph on the right side. Confirm that the external force is 20 [N] or less.
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.
The value below is recommended. = 0.1 + 0.90 + 0.1 + 0.05 = 1.15 [s] 2000 T4 = 0.05 [s] 1000 mm/s2 3000 mm/s2 Step 3 Check the allowable moment. 1500 5000 mm/s2 Refer to Dynamic Allowable Moment graphs (Pages 127 and 128). L3 [mm] 10 mm/s2 Mep 1000 20 mm/s2 m 500 L3 0 0 10 40 50 20 30 60 70 80 Work load [kg] Selection example) Select the LEJS63S3B-300 from the graph on the right side.
: W [kg] 3000 mm/s2 3000 mm/s2 40 30 20 10 mm/s2 10 5000 mm/s2 0 100 200 300 400 500 600 700 800 900 0 0 Speed: V [mm/s] Speed: V [mm/s] EQY32HB Horizontal/Lead 8 Vertical/Lead 8 100 90 80 70 60 50 40 30 20 10 0 50 100 150 200 250 300 350 400 450 30 3000 mm/s2 25 Work load: W [kg] Work load: W [kg] 3000 mm/s2 20 15 5000 mm/s2 10 10 mm/s2 5 0 50 100 150 200 250 300 350 400 0 0 Speed: V [mm
: LEY25EA 10 0 300 200 400 100 500 600 0 0 300 200 400 100 500 600 0 Speed [mm/s] Speed [mm/s] LEY32mE LEY32mE for acceleration/deceleration: 2000 mm/s2 90 50 Lead 4: LEY32EC Lead 4: LEY32EC 80 40 43 Horizontal work load [kg] Vertical work load [kg] 70 Lead 8: LEY32EB 60 30 40 45 50 Lead 8: LEY32EB Lead 16: LEY32EA 20 22 30 Lead 16: LEY32EA 10 11 20 10 0 300 200 400 100 500 600 0 0 300 200