Ubiquiti UISP Fiber Coexistence WDM Filter
The Ubiquiti UISP Fiber Coexistence WDM Filter integrates both XGS/XG-PON and GPON services onto one fiber distribution system. With (24) connectors and designed to be mounted on a 1U rack, this product is a versatile and efficient choice for fiber connectivity.
Tech Specs
Click here for the UISP Fiber Coexistence WDM Filter datasheet.
| Device Specifications | |
|---|---|
| Mechanical | |
| Dimensions | 442 x 120 x 43.7 mm (17.4 x 4.7 x 1.7") |
| Weight | 1.8 kg (3.97 lb) |
| Enclosure Material | Metal |
| Connector Type | (8) COM (SC/UPC) (8) GPON (SC/UPC) (8) XGS/XG-PON (SC/UPC) |
| Hardware | |
| GPON - COM Port Wavelength Range | 1290—1330 nm 1480—1500 nm |
| Max. Insertion Loss | 1 dB |
| Min. Isolation | 25 dB |
| XGS-PON - COM Port Wavelength Range | 1260—1280 nm 1575—1580 nm |
| Max. Insertion Loss | 1 dB |
| Min. Isolation | 25 dB |
| Min. Return Loss | 50 dB |
| Max. Polarization Dependent Loss | 0.1 dB |
| Fiber Type | ITU-T G.657.A1 Single Mode Fiber |
| NDAA Compliant | Yes |
FAQs
Q: What type of device is the Ubiquiti UACC-UF-WDM-XGS?
A: The UACC-UF-WDM-XGS is a 10G WDM (Wavelength Division Multiplexing) transceiver, designed for high-speed fiber connectivity in enterprise and ISP networks.
Q: What fiber links does the UACC-UF-WDM-XGS support?
A: It supports long-range single-mode fiber links, enabling reliable 10G connections over extended distances without signal degradation.
Q: Can the UACC-UF-WDM-XGS handle high-capacity traffic?
A: Yes, it is engineered for ultra-high throughput, making it suitable for data-intensive applications, backbone networks, and high-performance enterprise deployments.
Q: How is the UACC-UF-WDM-XGS integrated into a network?
A: The transceiver plugs directly into compatible SFP+ or XGS-PON ports on switches or routers, providing plug-and-play installation for rapid deployment.
Q: Is the UACC-UF-WDM-XGS suitable for low-latency applications?
A: Yes, its low-latency design ensures reliable performance for real-time data, VoIP, or high-speed networking environments.