iG-FMC-SFP08-I1

iWave Global
136-IG-FMC-SFP08-I1
iG-FMC-SFP08-I1

Mfr.:

Description:
Interface Modules 8 x SFP28 FMC Module

Lifecycle:
New Product:
New from this manufacturer.
ECAD Model:
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Availability

Stock:
0

You can still purchase this product for backorder.

On Order:
4
Expected 7/9/2026
Factory Lead Time:
15
Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
$-.--
Ext. Price:
$-.--
Est. Tariff:
This Product Ships FREE

Pricing (SGD)

Qty. Unit Price
Ext. Price
$1,148.65 $1,148.65

Product Attribute Attribute Value Select Attribute
iWave Global
Product Category: Interface Modules
RoHS:  
Ethernet Module
SFP
8 Port
25 Gb/s
Ethernet, I2C
1.2 V
12.25 V
- 40 C
+ 85 C
iG-FMC
Bulk
Brand: iWave Global
Dimensions: 84.81 mm x 69 mm
Mounting Style: PCB Mount
Operating Supply Voltage: 3.3 V, 12 V
Product Type: Interface Modules
Factory Pack Quantity: 1
Subcategory: Embedded Solutions
Products found:
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Attributes selected: 0

Compliance Codes
CAHTS:
8473302000
USHTS:
8473301180
MXHTS:
8473300401
ECCN:
EAR99
Origin Classifications
Country of Origin:
India
Assembly Country of Origin:
Not available
Country of Diffusion:
Not available
The country is subject to change at the time of shipment.

Octa SFP28/SFP+ FMC+ Module

iWave Global Octa SFP28/SFP+ FMC+ Module is designed for quick evaluation of the 560-pin standard FMC+ VITA 57.4 HSPC connector. Each SFP28/SFP+ connector is capable of supporting 25G with a transmit data rate of 25Gbps. The FMC+ HSPC connector is capable of handling high-speed serialized signals and can be used for size-constrained embedded applications.

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.