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产品介绍

Specifications:

  Wxx02 (2000 N (450lbs) Version) Wxx04 (4000 N (900 lbs) Version)
Voltage
Input voltage [VDC] 12 24 12 24
Load
Static load (Fx), maximum [N (lbs)] 2000 (450) 4000 (900)
Dynamic load (Fx), maximum [N (lbs)] 2000 (450) 4000 (900)
Stroke
Stroke lengths, standard [cm (inch)] 10 (3.94), 20 (7.87), 30 (11.81), 40 (15.75), 50 (19.69)
Speed
Speed version 58A 54A 58A 54A 58A 58A
Speed, no load [mm/s (inch/s)] 5.8 (0.23) 11.0 (0.43) 5.8 (0.23) 11.0 (0.43) 5.8 (0.23) 5.8 (0.23)
Speed, rated load [mm/s (inch/s)] 4.0 (0.16) 8.0 (0.31) 4.0 (0.16) 8.0 (0.31) 4.0 (0.16) 4.0 (0.16)
Current
Current draw @ rated max. load [A] 4.5 9.0 2.2 4.5 9.0 4.5
Current draw @ stall/in-rush [A] 14.0 21.0 8.0 11.0 21.0 11.0
General Data
End play, maximum [mm (inch)] 0.5 (0.020)
Operating temperature limits [°C (°F)] -25 to +40 (-13 to +104) (1)
Duty cycle, maximum [%] 10
On-time, maximum [s] 180 90 180 90 90 90
Life, average [cycles] 10,000
Sound level [dBa] < 45
Lead screw type acme
Protection class IP67
Anti rotation mechanism(2) yes
Analog feedback output signal voltage [VDC] 0.5 - 4.5
Analog feedback output signal linearity [%] 0.5
Digital feedback input voltage [VDC] 3.8 - 24
Digital feedback output resolution [pulses/mm] 10 5 10 5 10 10
Compliances IEC 60601-1, CSA C22.2, AAMI ES60601-1 (3)
Options
  • Electronic limit switches (ELS) (4)
  • ELS + low level switching (1) (5)
  • Analog or digital position feedback, with or without ELS
  • Mounting adapters turned 90°

​           1) Thrust is reduced at lower temperatures for 2000 N (450 lbs) high speed (54A) and 4000 N (900 lbs) units with ELS + low level switching (option E).
           2) Prevents the extension tube from rotating if it is not fixed in the end.
           3) 4 kN units greater than 30 cm of stroke are not ETL recognized. ETL certification available on N, E, P and D feedback options only.
           4) Shuts off power at the end of stroke and all along the stroke at overload conditions. ELS is normally set for 120% of the rated dynamic maximum load.
           5) Low level switching allows low level signals to control the actuator movement instead of having to switch the high amperage motor voltage.

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