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Product Detailed Parameters
- Description:IC FPGA 560 I/O 1152FBGA
- Series:Cyclone® V GX
- Mfr:Altera
- Package:Tray
- Number of LABs/CLBs:113560
- Number of Logic Elements/Cells:301000
- Total RAM Bits:14251008
- Number of I/O:560
- Voltage - Supply:1.07V ~ 1.13V
- Mounting Type:Surface Mount
- Operating Temperature:-40°C ~ 100°C (TJ)
- Package / Case:1152-BGA
- Supplier Device Package:1152-FBGA (35x35)
- Number of Gates:-
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Overview
The Altera 5CGXFC9E6F35I7 is a Cyclone V GX Field-Programmable Gate Array (FPGA) featuring 301K logic elements and 12 integrated 3.125 Gbps transceivers. It utilizes an Ultra FineLine BGA package with 484 pins, supporting industrial operating temperatures from -40°C to 100°C. The device includes hard IP blocks for PCIe Gen1/Gen2 and memory controllers, alongside variable-precision DSP blocks and M10K embedded memory.
Feature Summary
- Integrated high-speed serial transceivers optimized for low-cost applications
- Hard IP support for PCI Express Gen1 and Gen2 protocols
- Variable-precision digital signal processing capabilities
Applications
- Industrial control systems
- Wireless infrastructure equipment
- Wireline communication interfaces
Procurement Notes
Verify the specific ordering suffix against official Intel documentation to confirm package type, speed grade, and temperature rating. Ensure compatibility with existing board layouts and power delivery networks before procurement.
Selection Notes
Select this model for designs requiring moderate logic density combined with multiple high-speed serial links. Compare resource utilization against Cyclone V E or GT variants to ensure optimal cost-performance balance for the target application bandwidth.
Part Context
This component belongs to the Cyclone V GX family, designed for cost-sensitive applications requiring up to 3.125 Gbps transceiver speeds. It sits between the basic E variant and the higher-speed GT series within the broader Cyclone V portfolio.
Replacement Considerations
Consult official Intel substitution guides for verified cross-references. Generic FPGA replacements may lack compatible pinouts or hard IP features.
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