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Expanding Nanopositioning Options with Bi-Phase Piezo Motors

September 22, 2026 8:13 AM EDT

Recent developments extend PI's compact inertia-based drive architecture.

SHREWSBURY, Mass., Sept. 22, 2026 /PRNewswire/ -- PI (Physik Instrumente) is expanding its Bi-Phase Inertia Drive (BIX) technology with new motor architectures for compact, high-precision nanopositioning. Building on the B-421 BIX nanopositioning stages, PI engineers have demonstrated new BIX-based designs for higher-force linear motion, rotary positioning, micrometer screw drives, tip/tilt motion, and cryogenic environments.

PI's B-421 BIX miniaturized piezo stages provide 10 nm positioning resolution in an extremely compact package. X, XY, XZ, and XYZ combinations are available, with travel ranges from 13 to 33 mm.

BIX uses two synchronized PICMA® multilayer piezo actuators driven by mirrored sawtooth signals — one expanding while the other contracts — rather than the single-actuator design of conventional stick-slip motors. This reduces the effects of piezo hysteresis and increases acceleration at the friction contact point, giving BIX stages precise, repeatable, self-locking motion in a compact footprint.

Extending BIX to New Applications
PI's recent development work shows how the same bi-phase drive principle can be adapted to different mechanical architectures and performance requirements:

  • High-force BIX uses a two-sided stator with two friction contacts to approximately double the drive force of the standard one-sided design.
  • BIX micrometer screw drives convert the piezo actuators' microscopic motion into rotation of a drive screw, reducing friction losses and increasing available force compared to conventional inertia screw-drive mechanisms.
  • 2D-BIX combines four PICMA® piezo stacks with a lever structure to produce two-axis motion, demonstrated in a mirror tip/tilt platform that can operate in both stepping and analog modes.
  • Rotary BIX uses dual-sided stators to drive miniature rotary platforms, extending the technology to compact rotational positioning.

BIX designs have also been adapted for cryogenic operation, including a flexure-guided linear stage prototype. Together, these developments show the potential to scale the BIX architecture across a range of motion requirements while retaining the core advantages of the bi-phase drive principle.

For OEM customers, the technology provides a platform for compact, high-precision positioning mechanisms in applications where conventional motorized stage designs are constrained by available space, holding requirements, or mechanical complexity.

More information: Bi-Phase Nanopositioning Motor Applications 

Applications and Industries Served
Photonics, laser and optical alignment, metrology, microscopy, semiconductor instrumentation

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SOURCE Physik Instrumente (PI)



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