Brief: Learn how this solution can streamline typical workflows and improve reliability. In this video, we demonstrate the TQS-HG10-31DCR 100G QSFP28 LR4 transceiver module, showcasing its high-speed 100Gbps performance over 10km distances. You'll see how its four independent 25.78Gbps channels and duplex LC connectors enable efficient, high-density data center connectivity and reliable WAN applications.
Related Product Features:
Supports 100Gbps data rate over 10km using single-mode fiber with duplex LC connectors.
Features four independent channels, each operating at 25.78125Gbps for full-duplex communication.
Operates on a single +3.3V power supply with hot-pluggable capability for easy installation.
Includes digital diagnostic monitoring (DDM) for real-time performance and status tracking.
Compliant with QSFP MSA (SFF-8436) for standardized form factor and interoperability.
Designed for harsh operating conditions with robust temperature, humidity, and EMI tolerance.
Offers control signals like Module Present, Reset, Interrupt, and Low Power Mode.
Provides a 2-wire serial interface for advanced control and diagnostic information access.
FAQs:
What is the maximum transmission distance of the TQS-HG10-31DCR transceiver?
The TQS-HG10-31DCR supports a transmission distance of up to 10 kilometers over single-mode fiber, making it suitable for connecting data centers and remote office locations.
Is this module hot-pluggable and what are its power requirements?
Yes, the module is hot-pluggable, allowing for installation and removal without shutting down the system. It operates on a single +3.3V power supply.
Does the transceiver include digital diagnostic monitoring capabilities?
Yes, it features Digital Diagnostic Monitoring (DDM), providing real-time access to parameters like temperature, voltage, and optical power via its 2-wire serial interface.
What type of fiber and connectors are compatible with this 100G module?
It is designed for use with single-mode fiber and utilizes duplex LC connectors for reliable and high-density optical connections.