跳至产品信息
Key Specifications
Huawei QSFP28 50G BiDi 40km Single-fiber Single-mode Optical Module PN:02312EVY
¥21,580.00
促销价
¥21,580.00
常规价格
Product Overview
Long-distance single-fiber bidirectional BiDi QSFP28 optical module PN 02312EVY, matched pair of 02312EVX, rate 50Gbps, wavelength 1309nm TX / 1295nm RX, simplex LC single-fiber port, max transmission distance 40km over G.652 single-mode fiber. It is used for long-distance 5G bearer and cross-regional industrial park fiber transmission, saving half of fiber core resources.
Key Specifications
| Item | Parameter |
|---|---|
| Brand | Huawei |
| PN | 02312EVY |
| Form Factor | QSFP28 Simplex LC Single-fiber BiDi SMF |
| Bit Rate | 50Gbps |
| Wavelength | 1309nm TX, 1295nm RX |
| Tx Optical Power | +1.5 ~ +8dBm |
| Rx Sensitivity | ≤ -13.5dBm |
| Max Reach | 40km G.652 Single-mode Fiber |
| Fiber Type | G.652 SMF |
| Interface | Simplex LC/UPC |
| Pull Tab | Green |
| Matching Module | 02312EVX (Blue pull tab, 1295nm TX / 1309nm RX) |
| Condition | Factory New Sealed |
| Stock Status | In Stock |
| Delivery Lead Time | Within 2 Business Days |
| Warranty | 3 Years Official Factory Warranty |
| Unit Price | $3000.00 |
Core Features
✅ Standard hot-swappable QSFP28 package, compatible with 5G bearer routers and metro aggregation switches
✅ Single-fiber bidirectional transmission, one single fiber completes send & receive, cutting fiber cost by 50%
✅ High-power laser chip, stable 40km ultra-long single-mode transmission for cross-district metro backbone
✅ Universal simplex LC port, matching standard single-fiber LC simplex jumpers
✅ Full DDM digital optical monitoring, real-time monitoring of temperature, transmit/receive optical power and laser bias current
✅ Green pull tab for quick on-site pairing identification with blue-tab 02312EVX
Application Scenarios
Metropolitan network cross-district ultra-long 5G bearer interconnection, remote cross-city industrial park high-speed fiber networking, suburban base station ultra-long fronthaul transmission, operator edge access long-distance convergence links with insufficient fiber cores.