Starica: Optical Transceiver Supplier for 10G–800G Networks
Optical transceivers, direct-attach cables, and multi-vendor validation for data centers, AI clusters, and carrier networks.
Optical transceivers, direct-attach cables, and multi-vendor validation for data centers, AI clusters, and carrier networks.
Build high-performance optical foundations for digital transformation.
Compatible with mainstream architectures and high-density deployments.
Engineered for high bandwidth and low latency cluster scaling.
Covers fronthaul, midhaul, and backhaul with carrier-grade stability.
Coverage from 10G to 800G for rollout and expansion scenarios.
Explore representative products by data rate, then open the complete catalog for every available model and interconnect direction.
Eight-lane 100G PAM4 parallel SMF option for 800G ports, commonly evaluated for 2x400G DR4 or 8x100G DR1 breakout designs.
A 2x400G FR4-style SMF module for 2km-class data center links and high-speed AI switching fabrics.
QSFP-DD 800G 2x400G FR4 option for deployments that need QSFP-DD port density with 2km SMF reach.
Eight-lane MMF very-short-reach option for AI cluster and in-room 800G links; dual MPO-12 and MPO-16 variants are common.
Four-lane 100G PAM4 parallel SMF option for 400G switch ports and common 4x100G DR1 breakout use cases.
Four-wavelength WDM SMF module with duplex LC, suited to 2km data center links over existing duplex SMF cabling.
Longer-reach 400G SMF option for campus, metro-edge, or inter-building data center links.
Eight-lane MMF short-reach option for dense in-room 400G links; reach depends on OM3/OM4 cabling.
Four-lane 50G PAM4 WDM SMF option for 200G Ethernet mid-reach links and aggregation upgrades.
Four-lane MMF short-reach module for 200G switch links inside a rack row or equipment room.
10km-class SMF option for campus backbone, aggregation uplinks, and mid-distance transport.
40km-class SMF option for metro edge, site-to-site links, and carrier transport scenarios.
Four-lane MMF short-reach module for in-room 100G switch links and short aggregation paths.
Four-lane parallel SMF module for 500m data center links and host-dependent 4x25G breakout designs.
Single-lambda 100G PAM4 module over duplex-LC SMF for 500m data center links.
Single-lambda PAM4 option for 2km duplex-SMF Leaf-Spine, aggregation, and inter-room links.
Four-lane MMF short-reach module for legacy 40G switch expansion, replacement, and short links.
40G option for reusing duplex-LC MMF cabling; vendor generation, wavelength plan, and FEC require paired validation.
Four-wavelength SMF module with duplex LC for 10km campus and backbone uplinks.
Long-reach 40G SMF option for metro-edge or site-to-site links; port power and optical budget should be checked.
Common 25G MMF short-reach module for server access, ToR switches, and in-room links.
Common 25G 10km SMF module for access uplinks, campus backbone, and mid-distance transport.
Extended-reach 25G SMF option; confirm link budget, receive power, and host compatibility before deployment.
Single-fiber 25G option for fronthaul and access links; complementary Tx/Rx wavelengths must be paired.
16G Fibre Channel shortwave MMF option for SAN switch and storage links inside the equipment room.
16G Fibre Channel longwave SMF option for 10km SAN interconnects and inter-building storage links.
Common 10G 10km SMF module for campus uplinks, access aggregation, and legacy network upgrades.
Common 10G MMF short-reach module for in-room server, switch, and storage links.
Long-reach 10G SMF module for campus, access-network, or site-to-site links.
Passive copper cable option for short in-rack 10G links; length and gauge should be selected per project.
850nm multimode Gigabit SFP for switches, industrial networks, and short equipment-room links; reach depends on fiber grade.
1310nm single-mode Gigabit SFP for campus backbones, inter-building links, industrial switches, and remote access.
155M, 1.25G, and 2.5G compact SFP option with dual LC channels; each channel can support independent BiDi transmission.
155M, 1.25G, and 2.5G CWDM/DWDM SFP option for 40km to 120km WDM links.
100G active optical cable for short in-rack or adjacent-rack links; length should follow the cabling design.
400G passive copper option for short in-rack links; length and gauge should match host-port capability and cabling distance.
400G active optical cable for short high-bandwidth links, reducing on-site fiber termination and module matching work.
100G passive copper option commonly used for short switch-to-server or switch-to-storage links inside a rack.
High-speed interconnect support for device vendors, system integrators, telecom operators, comms technology providers, and AI compute centers.
Focused display for device manufacturers projects, including validation rhythm and integration efficiency.
Designed for device manufacturers with practical compatibility, deployment efficiency, and delivery support.
Focused display for system integrators projects, including validation rhythm and integration efficiency.
Designed for system integrators with practical compatibility, deployment efficiency, and delivery support.
Focused display for telecom operators projects, including validation rhythm and integration efficiency.
Designed for telecom operators with practical compatibility, deployment efficiency, and delivery support.
Focused display for commstech providers projects, including validation rhythm and integration efficiency.
Designed for commstech providers with practical compatibility, deployment efficiency, and delivery support.
Focused display for ai compute centers projects, including validation rhythm and integration efficiency.
Designed for ai compute centers with practical compatibility, deployment efficiency, and delivery support.
Shenzhen StaricaLink Technology Co., Ltd. operates the Starica brand, focusing on high-speed optical modules and interconnect solutions from selection and validation to delivery.
ABOUT STARICA
A concise overview of product capability, validation system, and delivery collaboration.
Latest updates and practical notes from high-speed interconnect projects.
A quick breakdown of thermal window, port power profile, and field acceptance steps that impact 800G stability.
Understand major shifts in link budget, rack density, and switch compatibility when moving from 400G to 800G.
Reliable operations and consistent quality for better user experience.
Submit link parameters, compatibility requirements, quantity, and timeline so our team can review the inquiry with context.