Olympus Reusable Coagulation Electrode Heat Probe CD-120U, in excellent condition, similar to photo displayed.
- REF: CD-120U
- Price indicated is for each probe.
- Immediate despatch
The Olympus CD‑120U is a durable, reusable heat probe designed for precise coagulation during endoscopic procedures. Its monopolar electrode tip delivers controlled thermal energy for effective hemostasis of bleeding vessels and tissue ablation. Built for compatibility with Olympus electrosurgical generators and designed for repeated sterilization, the CD‑120U supports reliable performance in demanding clinical environments.
Technical Specifications
Specification | Details |
---|---|
Model | CD‑120U |
Device Type | Reusable monopolar coagulation electrode (heat probe) |
Shaft Length | 2,000 mm |
Shaft Diameter | 2.3 mm |
Electrode Tip | Rounded stainless‑steel probe, 1.5 mm tip diameter |
Cable Length | 1,800 mm |
Connector Type | Olympus standard monopolar generator plug |
Generator Compatibility | Olympus HPU-20, ESG‑300, ESG‑400 series electrosurgical generators |
Temperature Range | Up to 200 °C |
Insulation Material | PTFE‑coated handle and shaft |
Sterilization | Autoclavable (standard steam sterilization cycles) |
Housing Material | Medical‑grade stainless steel shaft, moulded polymer handle |
- Key Features
- Precise Thermal Coagulation: Monopolar heat probe tip provides uniform energy delivery for controlled hemostasis.
- Reusable & Sterilizable: Designed for repeated use; withstands standard autoclave cycles without degradation.
- Wide Generator Compatibility: Works seamlessly with Olympus ESG‑300 and ESG‑400 electrosurgical generators.
- Durable Construction: Solid stainless‑steel shaft and PTFE insulation ensure long service life and chemical resistance.
- Ergonomic Design: Textured, lightweight handle allows secure grip and fine control during delicate endoscopic maneuvers.
- Consistent Performance: Rounded probe tip minimizes tissue adherence and facilitates smooth coagulation.
- Easy Maintenance: PTFE coating and smooth surfaces enable quick cleaning and reduce dwell of biological debris.