WP-ENDO-GT-PRO

Woodpecker Endo GT Pro motor

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The Motor of the Future

Eliminate the Guesswork, Control your Results!

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Includes:
• Woodpecker Endo GT Pro
• 2 × Contra-Angles — One With LED And One Without LED
• Handpiece
• Main Unit
• Wireless Foot Pedal
• 2 × Power Adapters
• 4 × File Clips
• 5 × Lip Hooks
• 2 × Touch Probes
• Charging Base
• Measuring Cable
• Tester
• Spray Nozzle
• 10 × Disposable Sleeves
• 2 × Protective Silicone Covers
• Instructions for Use
• Packing List
SKU: WP-ENDO-GT-PRO

Intelligent real‑time torque control

Advanced real‑time torque adaptation based on dentin resistance analysis. Intuitively learns the torque required in each canal segment, automatically adjusting to deliver optimal cutting efficiency while preventing torsional stress and file separation.

Its proprietary technology continuously monitors torque, defines a dynamic safety threshold according to each file’s cutting surface, and instantly switches to a secure reciprocating mode when limits are exceeded, eliminating the need for preset torque values.

Learning torque
Auto-set the ideal torque
Reciprocation if trigger torque surpassed

Improved handpiece response

Sets a new benchmark in handpiece responsiveness, synchronizing reciprocation angles with the exact specifications of today’s leading file systems for consistently accurate shaping. Provides one-touch access to two distinct kinematic modes, allowing clinicians to tailor motion dynamics instantly to canal anatomy and instrument design.

TorqueSense

Detects resistance changes instantly, delivering precise torque exactly when you need it.

T-Mode

Intelligent “watch-winding” motion to safely bypass ledges and negotiate difficult canal anatomy.

ATR Mode

Continuous rotation that switches instantly to reciprocation when resistance is detected to prevent file breakage.

An interference-free, fluid-resistant technology for reading accuracy

  • Evaluates the strength of the electronic signal, helping determine if the connection is reliable for accurately locating the foramen exit.
  • Continuously samples impedance‑based signals and filters noise.
  • Determines when thresholds are reached that should trigger visual changes and, where applicable, motor behaviors (e.g., auto‑stop or auto‑reverse near the apex).

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