Description
HandX Handheld Robotic System
| Specification | Details |
|---|---|
| Instrument shaft diameter | 5 mm (fits 5 mm trocars) |
| Degrees of Freedom (DOF) | Up to 7 DOF (insertion, roll, grasp, internal yaw, external yaw, internal pitch, external pitch) |
| Tip rotation | Up to 540° tip rotation quoted |
| End-effector compatibility | Variety of detachable single-use instruments (e.g., monopolar hook, spatula, scissors, needle holder, fenestrated grasper) |
| Modular / Handpiece design | Handpiece is reusable; instruments are detachable; ambidextrous, ergonomic grip |
| Workflow / Setup | Portable, no dedicated robotic OT required; quick setup, minimal docking time |
| Learning curve | Same port positions as conventional laparoscopy; short learning curve quoted |
| Maintenance | Low maintenance; software upgrades rather than mechanical overhaul |
| Regulatory status | FDA cleared and CE-marked (MDR) |
| Indications / Usability | Suitable for a wide variety of minimally invasive surgical specialties (general surgery, gynecology, urology, colorectal, thoracic) |
| Ergonomics | Designed with natural grip, fits various hand sizes, ambidextrous usage |
| Tip articulation mechanism | Motorized articulation for certain axes plus manual for others; system supports up to 8 DOF (4 motorized, 4 manual) per brochure |
HandX Handheld Robotic System
Product Overview
The HandX Handheld Robotic System is a 5 mm fully articulated, software-driven surgical device that bridges the gap between traditional laparoscopy and advanced robotic surgery. Designed with surgeon comfort and precision in mind, HandX offers robotic-level dexterity in a compact handheld form. Its ergonomic design allows surgeons to operate naturally and efficiently, delivering enhanced control, tactile feedback, and surgical accuracy — all while maintaining the simplicity of laparoscopic techniques.
With its software-controlled articulating tip, HandX gives surgeons seven degrees of freedom, matching the flexibility of large robotic systems. It simplifies complex maneuvers inside the abdominal cavity, enabling surgeons to reach target anatomy easily and perform intricate procedures with greater precision and stability.
Key Features of HandX
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Surgeon-Driven Precision: The surgeon holds and operates the HandX directly beside the patient, maintaining full control throughout the procedure — just like conventional laparoscopy, but with robotic precision.
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Modular Design: The HandX handpiece supports multiple interchangeable instruments, allowing flexibility and efficiency in various minimally invasive procedures.
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5 mm Trocar Compatibility: The slim 5 mm shaft fits seamlessly through standard trocars, fully supporting minimally invasive surgery (MIS) techniques.
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Enhanced Tactile Feedback: Because the instrument is held directly by the surgeon, HandX preserves the natural tactile feel that’s often lost in traditional robotic systems.
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Ergonomic Operation: Designed for maximum comfort, the system minimizes surgeon fatigue and improves overall handling during long procedures.
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Simplified Complex Maneuvering: With embedded software control, surgeons can navigate the abdominal cavity smoothly and perform complex motions with ease.
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Full Range of Motion: Offers 7 degrees of freedom — insertion, roll, grasp, internal yaw, external yaw, internal pitch, and external pitch — providing robotic-level articulation.
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No Dedicated Robotic OT Needed: The portable design eliminates the need for a dedicated robotic operating room, making it ideal for hospitals of all sizes.
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Quick Setup: HandX saves valuable operating time with rapid setup and no docking requirements.
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Minimal Learning Curve: Surgeons can use familiar port positions and access points, ensuring fast adaptation with minimal retraining.
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Dual Learning Modes: Choose between intuitive and counterintuitive operation modes to match personal preference and accelerate mastery.
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Low Maintenance: Requires minimal upkeep — primarily software updates — reducing operational costs and downtime.
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Affordable Robotic Surgery: HandX makes robotic-assisted surgery more accessible and cost-effective, bringing advanced surgical technology within reach of more patients and healthcare centers.



































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