Product Details
800G QSFP112 AEC
Product Overview
The 800G QSFP112 AEC is an optical module designed specifically for high-speed data transmission scenarios. It is rigorously developed and manufactured in strict compliance with the three major industry standards—QSFP-DD MSA, IEEE802.3ck, and CMIS v5.0—delivering excellent high-speed transmission performance and stable operational reliability. This module supports a variety of wire gauges from 26 to 30 AWG, enabling high-speed data transmission up to 7 meters. It also features hot-swappable functionality, with a maximum power consumption of only 10W, and incorporates EMI-resistant design. Its operating temperature range spans 0°C to 70°C, ensuring stable compatibility across various devices and environments such as data centers, cloud servers, switches, and routers. As a core component for high-speed data transmission in the data storage and communications industries, it plays an essential role.
Core Protocol Compliance
As a professional-grade high-speed optical module, the 800G QSFP112 AEC fully complies with the three key industry protocols, guaranteeing its versatility and adaptability. The QSFP-DD MSA ensures that the module’s physical interface and electrical characteristics meet unified industry standards, allowing seamless integration with any network device supporting QSFP-DD interfaces. The IEEE802.3ck protocol defines the transmission standards for 800G Ethernet, ensuring the module can stably achieve 800Gbps data rates to meet the bandwidth demands of next-generation Ethernet networks. Meanwhile, the CMIS v5.0 protocol provides a standardized framework for module management and monitoring, enabling equipment maintenance personnel to track module status in real time and ensure stable system operation. Comprehensive compatibility with these three protocols gives this optical module broad device compatibility, allowing it to quickly integrate into existing network architectures without additional configuration.
Transmission Performance and Specifications
1. Wire Gauge Options: Supports multiple wire gauges from 26 to 30 AWG, allowing flexible selection based on deployment distance and cost requirements; each gauge ensures a stable 800Gbps transmission rate.
2. Transmission Distance: Capable of transmitting data over distances up to 7 meters, sufficient to cover connections between cabinets and devices within a data center, meeting short-distance high-speed transmission needs.
3. Hot-Swappable Design: Enables module installation and replacement without shutting down equipment, significantly improving operational efficiency and reducing system downtime.
4. Power Consumption Control: With a maximum power draw of only 10W, it effectively lowers overall equipment energy consumption compared to similar high-power modules, cutting electricity costs for data centers.
5. EMI-Resistant Design: Incorporates built-in EMI shielding to effectively resist electromagnetic interference, ensuring stable and accurate data transmission while preventing packet loss or transmission errors caused by interference.
6. Operating Temperature Range: Covers 0°C to 70°C, adapting to temperature variations in data centers, server rooms, and other environments, ensuring reliable operation under typical indoor conditions.
Key Advantages
1. Full Multi-Protocol Compatibility: Compliant with QSFP-DD MSA, IEEE802.3ck, and CMIS v5.0, compatible with most mainstream network devices, enabling rapid deployment without additional adaptation.
2. Flexible Wire Gauge Adaptation: Supports multiple wire gauges from 26 to 30 AWG, allowing configuration based on transmission distance, budget, and other factors to meet personalized deployment needs.
3. Stable Short-Distance Transmission: With a maximum transmission distance of 7 meters, it covers internal device connectivity within data centers, ensuring stable 800Gbps data transfer.
4. Low Power Consumption: With a maximum power draw of only 10W, it reduces overall equipment energy use, helping data centers cut long-term operating costs.
5. Convenient Maintenance: Hot-swappable design allows module replacement during active operation, boosting maintenance efficiency and minimizing losses due to system downtime.
6. Excellent Anti-Interference Performance: EMI-resistant design effectively counters electromagnetic interference, safeguarding data transmission accuracy and stability while lowering error rates.
Core Product Value
1. Multi-protocol compatibility ensures seamless integration with mainstream network devices, reducing deployment costs and adaptation challenges.
2. Low-power design cuts overall data center energy consumption, lowering long-term operating expenses.
3. Hot-swappable and stable transmission features enhance system maintenance efficiency, ensuring continuous and reliable data transfer.
4. Wide temperature tolerance enables stable operation in standard server room environments without requiring additional climate control equipment.
Target Customer Segments
Data center operators, cloud service providers, network equipment manufacturers, switch and router producers, data storage solution vendors, and communication system integrators.
Application Scenarios
1. 800G Ethernet Applications: Serving as a core transmission component for 800G Ethernet, enabling high-speed inter-device data exchange to meet the high-bandwidth demands of next-generation Ethernet networks.
2. Switch and Router Connectivity: Compatible with various switches and routers supporting QSFP-DD interfaces, facilitating high-speed port expansion and data transmission to boost overall network bandwidth.
3. Data Storage Systems: Used for high-speed data transfer between storage devices and servers, ensuring rapid read/write operations and backups for large-scale data, thereby enhancing storage system responsiveness.
4. Data Centers and Cloud Servers: Enables high-speed interconnection between cabinets and server clusters within data centers, supporting large-scale data processing and transmission needs of cloud services while ensuring their stability and response speed.
Industry Pain Points Addressed
1. Traditional optical modules often suffer from poor protocol compatibility, requiring extra debugging to adapt to different devices. This product’s full multi-protocol compatibility allows quick integration into existing network architectures.
2. Some high-power optical modules lead to excessive equipment energy consumption and increased operating costs; the 10W low-power design effectively reduces overall energy usage.
3. Conventional optical modules typically lack hot-swappable capabilities, necessitating system shutdowns for replacements. The hot-swappable feature significantly improves maintenance efficiency and minimizes downtime-related losses.
4. To address the need for short-distance, high-speed data transmission within data centers, the module’s maximum 7-meter transmission distance covers cabinet-to-cabinet and device-to-device connections, ensuring stable 800Gbps data transfer.
5. Electromagnetic interference frequently causes high data transmission error rates; the EMI-resistant design enhances transmission stability and reduces the risk of packet loss.
Frequently Asked Questions (FAQ)
Q1: Which industry protocols does the 800G QSFP112 AEC comply with?
A: This optical module conforms to the three major industry standards—QSFP-DD MSA, IEEE802.3ck, and CMIS v5.0—and is compatible with most mainstream network devices supporting QSFP-DD interfaces.
Q2: What is the module’s maximum transmission distance, and which wire gauges are supported?
A: The module can transmit data up to 7 meters, supporting multiple wire gauges from 26 to 30 AWG, which can be flexibly configured according to actual application requirements.
Q3: What is the module’s power consumption, and does it support hot-swapping?
A: The module’s maximum power consumption is only 10W, offering excellent energy-saving features, and it supports hot-swapping, allowing installation and replacement during active operation to improve maintenance efficiency.
Q4: What is the operating temperature range of this optical module?
A: The module operates within a temperature range of 0°C to 70°C, adapting to temperature fluctuations in typical indoor environments such as data centers and server rooms, ensuring stable operation.
Q5: In which scenarios is this optical module primarily used?
A: Primarily applied in 800G Ethernet, switch and router connectivity, data storage systems, and data center/cloud server applications, meeting high-speed data transmission needs.

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