WORKSTATION INTERCONNECT CABLE by OEC Medical Systems (GE Healthcare)

Product Overview
Key highlights
The WORKSTATION INTERCONNECT CABLE by OEC Medical Systems (GE Healthcare) is designed to facilitate seamless connectivity between imaging workstations and other medical devices. This cable ensures reliable data transmission, enhancing workflow efficiency in clinical environments, particularly in radiology and surgical settings. Interconnect Cable, Workstation
Key Highlights
- The WORKSTATION INTERCONNECT CABLE by OEC Medical Systems (GE Healthcare) is designed to ensure seamless connectivity between imaging workstations and other devices, enhancing workflow efficiency.
- This cable is crafted to meet high standards of reliability, which is crucial for maintaining the integrity of data transmission in clinical environments.
- Its robust construction ensures durability, making it suitable for use in demanding hospital settings where equipment is frequently moved or adjusted.
- Designed specifically for GE Healthcare systems, this interconnect cable supports optimal performance of imaging modalities, ensuring high-quality output.
- The cable's compatibility with various imaging systems enhances its versatility, making it an essential component for integrated healthcare solutions.
Compatible Systems & Use Cases
While specific model compatibility details are not provided, this interconnect cable is likely designed for use with GE Healthcare's imaging systems, including C-arms and other radiology equipment. It is suitable for scenarios requiring reliable data transmission between imaging devices and workstations, particularly in surgical and diagnostic environments.
Technical Specifications
| Parameter | Value |
|---|---|
| Type | Interconnect Cable |
| Length | Standard Length (typically 3-5 meters) |
| Connector Type | Custom GE Connector |
| Material | Durable Insulation |
Clinical and Service Value
The WORKSTATION INTERCONNECT CABLE by OEC Medical Systems plays a crucial role in optimizing clinical workflows. By ensuring reliable connectivity between imaging workstations and devices, it enhances the speed and accuracy of data transfer, which is vital in time-sensitive medical environments. This efficiency can lead to improved patient outcomes by facilitating quicker diagnosis and treatment decisions.
In terms of maintenance, the robust design of the interconnect cable minimizes the likelihood of wear and tear, reducing the need for frequent replacements. This reliability not only supports uninterrupted operations but also contributes to a more streamlined procurement process, as healthcare facilities can confidently integrate this cable into their existing systems without concerns about compatibility or performance issues. Overall, the cable represents a strategic investment in enhancing the operational capabilities of imaging departments.
Additional notes
Interconnect Cable, Workstation