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Product Detailed Parameters
- Description:IC FPGA 240 I/O 484UBGA
- Series:Cyclone® V GT
- Mfr:Altera
- Package:Tray
- Number of LABs/CLBs:56480
- Number of Logic Elements/Cells:149500
- Total RAM Bits:7880704
- Number of I/O:240
- Voltage - Supply:1.07V ~ 1.13V
- Mounting Type:Surface Mount
- Operating Temperature:-40°C ~ 100°C (TJ)
- Package / Case:484-FBGA
- Supplier Device Package:484-UBGA (19x19)
- Number of Gates:-
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Overview
The Altera 5CGTFD7C5U19I7N is a Cyclone V GT Field Programmable Gate Array (FPGA) housed in a 484-UBGA package. It features 149,500 logic elements and 56,480 Adaptive Logic Modules (ALMs). The device includes 7,880,704 total RAM bits and supports 240 I/O pins. Operating voltage ranges from 1.07V to 1.13V, with a junction temperature range of 0°C to 85°C.
Feature Summary
- High-density logic architecture with over 149,000 logic elements for complex digital designs.
- Integrated high-speed transceivers supporting data rates up to 6.144 Gb/s.
- Significant embedded memory capacity totaling nearly 8 Mbits for data buffering and storage.
Applications
- Industrial automation control systems
- Wireless infrastructure baseband processing
- Test and measurement equipment signal processing
Procurement Notes
Verify the specific suffix 'I7N' against official Intel/Altera documentation to confirm industrial temperature rating and lead-free compliance. Ensure the ordering part number matches the exact package variant required for your PCB footprint design.
Selection Notes
Select this model when high logic density and moderate-speed serial transceivers are required within the Cyclone V GT family. Compare against the C7N variant if commercial temperature operation suffices, or consider higher-capacity devices if logic resources exceed 149,500 LEs.
Part Context
This component belongs to the Cyclone V GT series, designed for cost-sensitive applications requiring significant bandwidth and processing power. It sits between the standard Cyclone V and the higher-performance Arria V families, offering a balance of performance and power efficiency.
Replacement Considerations
Direct pin-to-pin replacements within the same package are limited. Consider the 5CGTFD7C5U19C7N for commercial temperature variants, though thermal specifications differ. Cross-family migration requires schematic and layout redesign.
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