iWave Global FMC+/FMC Add-On Modules for Rapid System Expansion

iWave Global FMC+/FMC Add-On Modules are designed for rapid system expansion across commercial, industrial, and rugged environments. The FMC and FMC+ standards define versatile, high-performance mezzanine modules that enable flexible system integration while helping reduce design effort for developers. These modules eliminate fixed protocols, reduce system overhead, and support flexible pin allocation for adaptable FPGA-based designs.

The FMC+/FMC Add-On Modules support air-cooled and ruggedized conduction-cooled variants for reliable deployment in demanding conditions. For applications requiring greater bandwidth and expanded connectivity, the double-width form factor provides additional carrier card bandwidth, increased front-panel space, and a larger PCB area for advanced circuitry. Leveraging the high-pin-count capabilities of modern FPGAs, these standards enable multi-gigabit performance through state-of-the-art connector technology while maintaining a robust, low-latency interface between mezzanine I/O and the FPGA on the carrier.

The iWave Global FMC+/FMC Add-On Modules are ideal for applications requiring rapid system expansion, high-bandwidth mezzanine I/O, FPGA-based carrier card integration, and reliable deployment across commercial, industrial, and rugged environments.

PCIe Gen4 x8 FMC Modules

Specifications:
• FMC connector: VITA 57.1 HPC
• Storage: 32Kb EEPROM for configuration
• PCIe Slot: Gen4 x8 Root Port; supports Gen4/Gen3/Gen2/Gen1
• PCIe endpoint: Gen4/Gen3/Gen2/Gen1 x8 via cable
• NVMe storage: M.2 Key-M slot with PCIe Gen3 x2
• MIPI interface: 4-lane MIPI CSI and DSI
• Form factor: single-width VITA 57.1 (80mm x 69mm)

Products
iG-FMC-PCIe08-I2 - PCIe Gen4 x8 FMC Card, Industrial grade
iG-FMC-PCIe08-I3 - PCIe Gen4 x8 FMC Card, Industrial grade (For G35D configuration)
iG-C40-PCIe08-C3 - PCIe Gen4 x8 Cross cable

iWave Global FMC+/FMC Add-On Modules for Rapid System Expansion

PCIe Gen4 x16 FMC+ Modules

Specifications:
• FMC+ connector: VITA 57.4
• PCIe slot: Gen4 x16 Root Port; supports Gen4/Gen3/Gen2/Gen1
• PCIe endpoint: Gen4/Gen3/Gen2/Gen1 x16 via cable
• Storage: 32Kb EEPROM for VITA 57.4 configuration
• Form factor: 98.5mm x 69mm

Products
iW-FMC-PCIe16-I1 - PCIe Gen4 x16 FMC+ Card, Industrial grade
iW-C40-PCIe16-C2 - PCIe Gen4 x16 Cross cable

iWave Global FMC+/FMC Add-On Modules for Rapid System Expansion

Quad QSFP28 FMC+ Module

Specifications:
• QSFP interface: Quad 2×1 QSFP28/QSFP+ connectors supporting up to 400G
• VITA 57.4 FMC+ HSPC Connector
• Clocking: 4-bit programmable clock synthesizer
• Configuration storage: 32Kb EEPROM for VITA 57.4 settings
• Power input: 12V supplied through FMC+ HSPC connector
• Form factor: VITA 57.4 single-width (84.81mm x 69mm)

Product
iW-FMC-QSFP04-I1 - Quad QSFP FMC+ Card, Industrial grade

iWave Global FMC+/FMC Add-On Modules for Rapid System Expansion

Octa SFP28/SFP+ FMC+ Module

Specifications:
• VITA 57.4 FMC+ HSPC connector
• Octa SFP28/SFP+ connector: supports up to 200Gbps (8x 25Gbps)
• 4-bit programmable clock synthesizer
• 32Kb EEPROM for VITA 57.4 configuration storage
• 12V power input through FMC+ HSPC connector
• Form factor: VITA 57.4 single width (84.81mm x 69mm)

Product
iG-FMC-SFP08-I1 - 8x SFP28 FMC Module

iWave Global FMC+/FMC Add-On Modules for Rapid System Expansion

VITA 57.1 FMC Loopback Test Module

Specifications:
• VITA 57.1–compliant FMC HPC connector
• Multi-gigabit transceiver loopback support up to 25Gbps
• TX–RX loopbacks for high-speed data pairs DP0–DP9
• Loopback support for LA[33:0], HA[23:0], and HB[21:0] banks
• Digital I/O loopback for LA / HA / HB banks
• 10-bit programmable clock synthesizer
• 4Kb EEPROM for configuration storage
• Compatible with FMC+ HSPC array socket
• Compact form factor: VITA 57.1 single width (78.5mm x 69mm)

Products
iG-FMC-LBFMCP-I1 - VITA57.4 FMC+ Loopback Test Card, Industrial grade
iG-FMC-LBFMC-I1 - VITA57.1 FMC Loopback Test Card, Industrial grade

iWave Global FMC+/FMC Add-On Modules for Rapid System Expansion
Veröffentlichungsdatum: 2025-10-09 | Aktualisiert: 2026-05-22