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Thermo Orbitor

The Thermo Scientific Orbitor is a compact benchtop microplate mover built around a bi-directional telescoping arm on an infinitely-rotating base, giving it a 360° workspace from a single position. Revolution drives it both standalone and mounted on a BenchTrak rail, where the added linear axis extends its reach along a bench.

RotationInfinite
Z travel570 mm
Reach±410 mm
Nominal payload250 g
Mass25 kg
GripperMost SBS-standard labware, landscape or portrait, handles lids
Revolution controlPlate transfers, scheduled through Revolution’s transfer system

Thermo Fisher publishes the following for the Orbitor RS2.

AxisDistanceSpeedAcceleration
Z (height)570 mm750 mm/sec2250 mm/sec
Radius (reach)±410 mm1200 deg/sec3600 mm/sec²
Theta (rotation)Infinite225 deg/sec675 deg/sec²
Gripping distance130.4 / 75.4 mm (open/close)
Power requirements120 W, 85–264 VAC, 47–63 Hz
Operating environment15–40 °C
Humidity10–80% rH up to 31 °C, decreasing linearly to 50% rH at 40 °C; max 80% rH non-condensing
Safety compliancesCE, CSA, CSAu
Motion controlClosed-loop servo, brushless motor
ControlDirectly from PC; requires Microsoft Windows 10

The 250 g nominal payload is the number to check a workflow against. A filled deep-well plate with a lid is heavier than an empty microplate, and payload is a mover specification you do not want to discover empirically.

Thermo Fisher labels the Orbitor RS2 “For Research Use Only. Not for use in diagnostic procedures.”

Because the base rotates without limit, storage is arranged around the mover:

Per unitMaximum
Random access (hotels)8 standard plates per hotel72 standard plates — 9 hotels around the mover
Sequential access (stacks)40 standard plates per stack360 standard plates — 9 stacks around the mover

Thermo Fisher states the gripper handles most SBS-standard labware in landscape or portrait, easily handles lids, includes plate detection, and has adjustable gripping force and speed settings.

This is a mover, so its safety characteristics are part of its specification rather than a footnote. Thermo Fisher states the Orbitor RS2:

  • Meets international standards for collaborative robots, and is designed to work in direct cooperation with a person in a defined, purpose-built workspace without guarding or shielding
  • Uses an overhead gripper, avoiding the protruding offset fingers used by some other movers
  • Applies force control that stops all movement at the slightest unexpected contact

None of that removes the need for a proper risk assessment of your own cell — the layout, the neighbouring instruments and the labware are yours, not Thermo Fisher’s.

The Orbitor is a mover, and movers are not driven by device operations. Revolution schedules plate transfers and the mover executes them through the transfer system, in the same way as the PF400 and Stäubli. There is no “move plate” operation to call from a method — you describe where labware needs to be, and the scheduler works out the moves.

Revolution recognises two forms:

  • Orbitor — the mover on its own base
  • Orbitor on BenchTrak — the mover mounted on Thermo Fisher’s track axis, which the specification sheet notes can be added in the field as a workflow grows
  • Thermo Fisher’s own control software must be installed, on Windows, and the mover taught its positions before Revolution schedules transfers through it.
  • Every instrument the mover serves must be within the stated Z travel and reach — or within the BenchTrak’s travel, where fitted.
  • Labware weight must be within the 250 g nominal payload.
  • Position teaching is instrument-side work. A mover that has not been taught a position cannot be scheduled to it.

If you need more of this instrument driven from a schedule, get in touch — the driver is extended on demand.