The JDS Fitel Optical Switch Assembly SA13CR-FIBD4CC7 is an optical signal routing component engineered for dynamic fiber optic network configuration, monitoring, and testing. The assembly redirects light paths while maintaining signal integrity through low insertion loss and high return loss characteristics. Single-mode 9/125 µm fiber compatibility supports standard telecommunication wavelengths across the C and L bands. Control interfaces and industry-standard fiber optic connectors enable integration into automated test and monitoring systems.
Technical Specifications
• Model: SA13CR-FIBD4CC7
• Fiber Type: Single-mode 9/125 µm
• Wavelength Range: 1270 nm – 1670 nm
• Insertion Loss: Low loss design (precise values detailed in product manual)
• Return Loss: High return loss to minimize source reflection
• Connector Type: Industry-standard fiber optic connectors
• Control Interface: GPIB and RS232 options for remote operation and automation
• Power Supply Options: 110/115/230/240 V AC (50–60 Hz) or −48 V DC
• Maximum Power Consumption: ~100 VA (for related SA Series units)
• Environmental Rating: Pollution Degree 2 category
– Key Features
• Low insertion loss maintains signal fidelity in critical optical paths
• High return loss prevents signal reflections and improves system stability
• Supports dynamic reconfiguration without signal interruption
• Remote control capability via standard industrial interfaces
• Designed for reliability in telecommunication and test environments
– Typical Applications
• Optical network testing and fault isolation
• Real-time network traffic monitoring via switchable access points
• System reconfiguration during maintenance and upgrades
• Laboratory research and development with flexible signal routing
– Compatibility & Integration
The SA13CR-FIBD4CC7 integrates with standard fiber optic test equipment through GPIB and RS232 control interfaces. Dual power options (AC or −48 V DC) accommodate diverse facility infrastructure. Operation within Pollution Degree 2 environments ensures reliable performance in controlled lab and field settings.











