Linvatec
Linvatec QL6130 5.9mm QuickLatch Dual Stopcock Arthroscopy Sheath
Regular price
$129.99
Regular price
$0.00
Sale price
$129.99
ConMed Linvatec QL6130 QuickLatch® High-Flow Sheath | 5.9 mm Outer Diameter | Dual Rotating Stopcocks | Stainless Steel | 1/EA | Used
The ConMed Linvatec QL6130 QuickLatch® High-Flow Sheath is a precision-engineered 5.9 mm outer diameter fluid management sleeve designed for use with rigid optical scopes and matching obturators. Featuring a quick-connect latching hub and dual rotating stopcock valves, this durable stainless steel sheath delivers continuous fluid inflow and outflow control, maintaining clear joint visualization and targeted distension during educational, demonstration, research, or laboratory procedure simulations.
Product Details
- Manufacturer: ConMed® / Linvatec®
- System / Line: QuickLatch® High-Flow Series
- Part / Catalog Number: QL6130 (QL-6130)
- Product Type: Fluid Management Sheath / Cannulate Sleeve
- Outer Diameter (OD): 5.9 mm
- Valving System: Dual Rotating Stopcocks (T5802 style)
- Connection Type: QuickLatch® mechanism
- Material: German Stainless Steel & Anodized Valve Fittings
- Finish: Satin / Non-reflective finish
- Quantity Included: 1 High-Flow Sheath
- Unit of Measure: 1 Each (1/EA)
- Scope Compatibility: Compatible with standard 4.0 mm optical scopes and QL6102 series obturators
- Application: Fluid control, rigid scope housing, laboratory demonstration, research, and technical evaluation
- Reusability: Reusable (Autoclavable)
- Condition: Used
Key Features
- QuickLatch® coupling system enables fast, single-step attachment and removal of matching optical scopes
- Dual rotating stopcocks allow 360-degree fluid line positioning to eliminate tubing kinks and maintain continuous flow
- High-flow internal channel geometry maximizes fluid volume exchange for crystal-clear optical field clarity
- Corrosion-resistant surgical stainless steel withstands repeated heat sterilization and high-use lab environments
- Smooth atraumatic distal tip minimizes surface friction during insertion into cannula ports or test fixtures