Vacuum Compatible Motorized Vertical Drive Optical Mount with DC motor 940-0080

Vacuum Compatible Motorized Vertical Drive Optical Mount with DC motor 940-0080

• 1'' or 2" optics diameter • Stainless steel • Annealed front panel • Compact/robust design • Super stable • Manual version Vacuum Compatible Motorized Vertical Drive Mirror Mounts with DC motor 940-0080 are designed… Read more →

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Order

SKU Description
940-0080-01 Mount for Ø25,4 mm (1'') optics with DC motor
Out of stock
940-0080-02L
Out of stock
940-0080-02S
Out of stock
940-0080-03L Mount for Ø76.2 mm (3'') 12,7 mm thickness optics with DC motor
Out of stock
940-0080-03S
Out of stock

Specifications

940-0080-01 940-0080-02
Optics diameter 25,4 mm 50,8 mm
Clear aperture 23 mm 48 mm
Tilt / Tip range ±2,5° ±2,5°
Angular Resolution / by horizontal / by vertical 1,5 arcsec / 1,75 arcsec. in the middle tilt of platform 1 arcsec / 1,25 arcsec. in the middle tilt of platform
Installed actuators 2 x 970-0067-15V 2 x 970-0067-15V
Lead screw pitch 0.25 mm 0.25 mm
Cable 1,2 m length cable included 1,2 m length cable included
Motor connector HDB15(M) HDB15(M)
DC motor DCE1841 DCE1841
Optocoupler end limit switches 2 per actuator 2 per actuator
Recommended controller 980-1045 980-1045

Description

  • 1'' or 2" optics diameter
  • Stainless steel
  • Annealed front panel
  • Compact/robust design
  • Super stable
  • Manual version

Vacuum Compatible Motorized Vertical Drive Mirror Mounts with DC motor 940-0080 are designed to minimize mount-induced wavefront distortions. In conventional mounts, a side screw tightens the mirror. Radial forces acting on the mirror induces parasitic wavefront distortion, such as astigmatism.

940-0080 mirror mounts use secure 3-points mirror suspension in between frontal flat spring and the back plate. Uniformly distributed axial forces eliminate wavefront distortion. Due thermal processes on optic holding part, all metal inner tensions were removed and part makes none micro movements.

These mounts are ideal for industrial applications in different optical devices (laser cavities, optical sub-assemblies, limited space applications) because of their long-term stability.

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