



Coherent 400G ZR+/ZR QSFP-DD with High Tx Output Power—LC-duplex C-band DWDM, ~120 km ZR and extended ZR+ profiles, 400GAUI-8 host, CMIS management—built for OSNR-challenging DCI and ROADM paths.
The 400G ZR+ QSFP-DD (High Tx Output Power) is a coherent pluggable transceiver for metro/region DCI and OSNR-challenging routes. It integrates a digital coherent DSP (DCO) and operates in the C-band DWDM ITU grid over LC-duplex fiber with a 400GAUI-8 host interface. Compared with standard ZR modules, the High Tx variant delivers increased launch power (model-dependent), providing extra link margin for longer spans, ROADM cascades, and paths with higher filter/insertion loss. It supports OIF 400ZR and optional OpenZR+ profiles (vendor-dependent) for extended reach.
Standards & Modes
OIF 400ZR interoperability; optional OpenZR+ profiles (platform/model dependent)
Line modulation: DP-16QAM (ZR); additional QPSK/16QAM profiles for ZR+ (where supported)
Management: CMIS 4.0+ with DOM/diagnostics and alarms
Optics & Reach
Band/Channel: C-band DWDM, ITU-T grid (75/100 GHz filter compatibility)
Connector/Fiber: LC-duplex, OS2 SMF
Typical reach: ~120 km (ZR); extended reach and ROADM traversal with ZR+ profiles (network- and profile-dependent)
High Tx Output Power: higher launch levels for improved OSNR and margin on multi-element paths (exact dBm depends on version)
Performance & Power
Payload: 400 GbE
Integrated SD-FEC in-module for long-reach performance
Typical module power: ~16–20 W (platform/environment dependent)
Reliability & Environment
Case temperature: 0 to +70 °C (commercial); extended range on request
Laser safety: Class 1 (IEC 60825-1) • RoHS/REACH compliant
Use Cases
400G DCI over dark fiber with higher span loss or multiple filters
DWDM MUX/DEMUX point-to-point with EDFA chains
ROADM networks requiring additional launch margin (ZR+ profiles)
Design note: High-power launch may require VOA/attenuation on short spans to avoid receiver saturation. Verify channel plan, attenuation, OSNR, CD/PDL, and EDFA gain/tilt against your DWDM design.