400G QSFP112 SR4 Compatible Transceiver: 400G-QSFP112-100

400G QSFP112 SR4 Transceiver Overview
Our 400G QSFP112 SR4 transceiver enables compact high-density connectivity for next-generation data center architectures. Supporting 100m over OM4 multimode fiber with 4 lanes at 850nm using PAM4 modulation, this module delivers 1.8 dB link budget at 425 Gbps aggregate throughput. MPO/APC connector with host FEC in compact QSFP112 form factor.
- Media Type: 4 Lanes of Multi-Mode Fiber (MMF)
- Connector: MTP/MPO-12 (APC)
- Fiber Count: 8 Fibers
- Maximum Distance: 100 m
- Guaranteed Link Budget: 1.8 dB
- Tx Wavelenght: 850 nm
- Supported Data Rate: 425 Gbps
- DDM/DOM: Supported
- Forward Error Correction (FEC): Host FEC Supported
- Temperature Range: Standard 0°-70°C
400G QSFP112 SR4 Pricing
400G QSFP112 SR4 Compatible Transceiver Specification
Form Factor | QSFP112 |
Modulation | PAM4 (Pulse Amplitude Modulation 4-level) |
Media Type | 4 Lanes of Multi-Mode Fiber (MMF) |
Connector | MTP/MPO-12 (APC) |
Fiber Count | 8 Fibers |
Maximum Distance | 100 m |
Guaranteed Link Budget | 1.8 dB |
TX Wavelenght | 850 nm |
RX Wavelenght | 850 nm |
Supported Data Rate | 425 Gbps |
Supportet Ethernet Applications | 400G Ethernet (425 Gbps) |
DDM/DOM | Supported |
Forward Error Correction (FEC) | Host FEC Supported |
CDR (Clock and Data Recovery) chip | Supported |
Transmitter Type | VSCEL Laser |
Tx Wave Bandwidth | 19 nm |
Average Launch Power (Min) Each Lane | -4.6 dBm |
Average Launch Power (Max) Each Lane | 4 dBm |
Extinction Ratio (Min) | 2.5 dB |
Receiver Type | PIN photodiode |
RX Wave Bandwidth | 19 nm |
Average Receiver Sensitivity (Min) Each Lane | -6.4 dBm |
Average Receiver Sensitivity (Max) Each Lane | 4 dBm |
Receiver Overload | 5 dBm |
Temperature Range | Standard 0°-70°C |
Storage Temperature | -40° to 85°C |
Relative Humidity | 5 to 85% |
Power Consumption (Max) | 8 W |
Power | +3.3V single power supply |
Compliance | CE;RoHS;Class 1 FDA and IEC60825-1 Laser Safety Compliant;100G Lambda MSA;400GBASE-SR4;IEEE 802.3bs;CMIS V5.0;QSFP112 MSA |
400G QSFP112 SR4 Compatible Transceiver Datasheet
v2Complete technical specifications and product details
400G QSFP112 SR4 Compatible Transceiver Description
Our EDGEOPTIC 400G-QSFP112-100 is a multi-vendor compatible 400G QSFP112 SR4 optical transceiver module designed for short-reach 400 Gigabit Ethernet applications over multimode fiber infrastructure. The 400G-QSFP112-100 module employs 4-lane parallel transmission technology operating at 850 nm wavelength, with each lane transmitting at 106.25 Gbps using PAM4 modulation to achieve an aggregate data rate of 425 Gbps. This next-generation QSFP112 form factor delivers 100G-per-lane optical density with extended reach compared to VR4 variants, optimized for modern hyperscale data center environments.
Our 400G QSFP112 SR4 transceiver utilizes VCSEL (Vertical-Cavity Surface-Emitting Laser) transmitters optimized for 100G-per-lane PAM4 signaling, providing power-efficient optical transmission with reduced lane count compared to legacy SR8 approaches. The receiver section incorporates PIN photodiodes optimized for high-speed 850 nm reception across all four lanes within a 19 nm wavelength bandwidth. The module ensures a 1.8 dB guaranteed optical link budget, supporting transmission distances up to 100 meters over OM4 multimode fiber. However, distance is an indicative parameter calculated for identification purposes – ultimately we calculate reach taking into account minimal optical budget, modal bandwidth characteristics, and average attenuation of the deployed multimode fiber plant.
The 400G-QSFP112-100 compatible SR4 module is a hot-pluggable QSFP112 form factor transceiver with MTP/MPO-12 APC connector as the optical interface, utilizing 8 fibers (4 transmit, 4 receive) for parallel transmission. The electrical interface conforms to QSFP112 MSA, CMIS V5.0, and IEEE 802.3bs specifications, ensuring compatibility with latest-generation QSFP112 host systems across multiple vendor equipment platforms. Our 400G QSFP112 SR4 transceiver can be encoded for compatibility with latest platforms from leading vendors including Cisco, Juniper, Arista, Nokia, Huawei, and other major network equipment manufacturers deploying next-generation switching infrastructure. The module supports host-side Forward Error Correction and incorporates CDR (Clock and Data Recovery) functionality on all electrical lanes.
The transceiver includes DDM/DOM (Digital Diagnostic Monitoring) capability providing real-time operational parameters including transmitted and received optical power levels per lane, module temperature, bias current, and supply voltage. This diagnostic data is accessible via the CMIS-compatible management interface, enabling comprehensive monitoring of transceiver health and performance. The module operates within a 0 to 70°C commercial temperature range with maximum power consumption of only 8W, delivering exceptional power efficiency for high-density leaf-spine deployments.
Standards compliance includes IEEE 802.3bs for 400 Gigabit Ethernet and 100G Lambda MSA specifications for the optical interface. The transceiver achieves multi-vendor interoperability through adherence to industry QSFP112 MSA standards, though equipment with vendor-specific module authentication may require custom EEPROM programming for full compatibility. Our 400G QSFP112 SR4 transceiver is CE/RoHS certified and compliant with Class 1 FDA and IEC60825-1 laser safety standards.
Typical applications include intra-rack and adjacent-rack interconnects, leaf-spine fabric connections, high-performance computing clusters, and AI/ML training infrastructure requiring low-latency 400G connectivity. The SR4 architecture with 100G-per-lane signaling provides future-ready bandwidth density while maintaining compatibility with existing MPO-12 structured cabling. Because our focus is providing top quality service, we perform comprehensive quality verification before delivery including optical parameter measurements across all four lanes, connector cleanliness inspection, and QSFP112 transceiver EEPROM memory validation tests.