Field Programmable Gate Array (FPGA)

Suntsu’s FPGA (field programmable gate array) catalog covers a broad range of programmable gate array devices for industrial, communications, defense, and embedded computing applications. Source standard and hard-to-find FPGA chips from leading manufacturers with confidence. Browse our in-stock catalog or contact our team to discuss your requirements.

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Total Products: 22,180
ImageData
Sheet
Part NumberManufacturerDescriptionCategoryDevice PackageVoltageOperating
Temp
Additional SpecificationsQtyGet A
Quote
N/ALAV-AT-E70-3CBG484ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs484-FCCSP (19x19)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
349
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
637000
Qualification:
N/A
Total RAM Bits:
4239360
1,566
N/AN/ALAV-AT-E70-3CSG841CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs841-FCCSP (15x13)0.82V0°C ~ 85°C (TJ)
Number of Logic Elements/Cells:
637000
Total RAM Bits:
4239360
Number of I/O:
502
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
0°C ~ 85°C (TJ)
Package / Case:
841-BGA, FCCSPBGA
Supplier Device Package:
841-FCCSP (15×13)
963
N/AN/ALAV-AT-E70-3CSG841ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs841-FCCSP (15x13)0.82V-40°C ~ 100°C (TJ)
Number of Logic Elements/Cells:
637000
Total RAM Bits:
4239360
Number of I/O:
502
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
-40°C ~ 100°C (TJ)
Package / Case:
841-BGA, FCCSPBGA
Supplier Device Package:
841-FCCSP (15×13)
577
LAV-AT-E70-3LFG1156CLAV-AT-E70-3LFG1156CLattice Semiconductor CorporationIC FPGA AVANT 477KLC 1156BGAFPGAs1156-FPBGA (35x35)0.82V0°C ~ 85°C
Number of Logic Elements/Cells:
477000
Total RAM Bits:
4239360
Number of I/O:
572
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
0°C ~ 85°C
Package / Case:
1156-BBGA
Supplier Device Package:
1156-FPBGA (35×35)
285
N/ALAV-AT-E70-3LFG1156ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs1156-FCBGA (35x35)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
553
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
637000
Qualification:
N/A
Total RAM Bits:
4239360
1,235
N/ALAV-AT-E70-3LFG676CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs676-FCBGA (27x27)820 mV0°C – 85°C
Grade:
Commercial
Number of Gates:
N/A
Number of I/O:
297
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
637000
Qualification:
N/A
Total RAM Bits:
4239360
756
N/ALAV-AT-E70-3LFG676ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs676-FCBGA (27x27)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
297
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
637000
Qualification:
N/A
Total RAM Bits:
4239360
1,731
N/AN/ALAV-AT-G30-1ASG410CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs410-WLCSP (11x9)0.82V0°C ~ 85°C (TJ)
Number of Logic Elements/Cells:
262000
Total RAM Bits:
1740800
Number of I/O:
196
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
0°C ~ 85°C (TJ)
Package / Case:
410-BGA, WLCSP
Supplier Device Package:
410-WLCSP (11×9)
858
N/ALAV-AT-G30-1ASG410ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs410-WLCSP (11x9)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
196
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
262000
Qualification:
N/A
Total RAM Bits:
1740800
357
N/AN/ALAV-AT-G30-1LBG484CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs484-FCBGA (19x19)0.82V0°C ~ 85°C (TJ)
Number of Logic Elements/Cells:
262000
Total RAM Bits:
1740800
Number of I/O:
218
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
0°C ~ 85°C (TJ)
Package / Case:
484-BFBGA, FCBGA
Supplier Device Package:
484-FCBGA (19×19)
120
N/ALAV-AT-G30-1LBG484ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs484-FCBGA (19x19)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
218
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
262000
Qualification:
N/A
Total RAM Bits:
1740800
1,535
N/AN/ALAV-AT-G30-1LFG676CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs676-FCBGA (27x27)0.82V0°C ~ 85°C (TJ)
Number of Logic Elements/Cells:
262000
Total RAM Bits:
1740800
Number of I/O:
298
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
0°C ~ 85°C (TJ)
Package / Case:
676-BBGA, FCBGA
Supplier Device Package:
676-FCBGA (27×27)
426
N/ALAV-AT-G30-1LFG676ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs676-FCBGA (27x27)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
298
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
262000
Qualification:
N/A
Total RAM Bits:
1740800
24
N/AN/ALAV-AT-G30-2ASG410CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs410-WLCSP (11x9)0.82V0°C ~ 85°C (TJ)
Number of Logic Elements/Cells:
262000
Total RAM Bits:
1740800
Number of I/O:
196
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
0°C ~ 85°C (TJ)
Package / Case:
410-BGA, WLCSP
Supplier Device Package:
410-WLCSP (11×9)
1,255
N/ALAV-AT-G30-2ASG410ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs410-WLCSP (11x9)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
196
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
262000
Qualification:
N/A
Total RAM Bits:
1740800
34
N/ALAV-AT-G30-2LBG484CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs484-FCBGA (19x19)820 mV0°C – 85°C
Grade:
Commercial
Number of Gates:
N/A
Number of I/O:
218
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
262000
Qualification:
N/A
Total RAM Bits:
1740800
134
N/ALAV-AT-G30-2LBG484ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs484-FCBGA (19x19)820 mV-40°C – 100°C
Grade:
Industrial
Number of Gates:
N/A
Number of I/O:
218
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
262000
Qualification:
N/A
Total RAM Bits:
1740800
534
N/AN/ALAV-AT-G30-2LFG676CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs676-FCBGA (27x27)0.82V0°C ~ 85°C (TJ)
Number of Logic Elements/Cells:
262000
Total RAM Bits:
1740800
Number of I/O:
298
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
0°C ~ 85°C (TJ)
Package / Case:
676-BBGA, FCBGA
Supplier Device Package:
676-FCBGA (27×27)
492
N/AN/ALAV-AT-G30-2LFG676ILattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs676-FCBGA (27x27)0.82V-40°C ~ 100°C (TJ)
Number of Logic Elements/Cells:
262000
Total RAM Bits:
1740800
Number of I/O:
298
Voltage – Supply:
0.82V
Mounting Type:
Surface Mount
Operating Temperature:
-40°C ~ 100°C (TJ)
Package / Case:
676-BBGA, FCBGA
Supplier Device Package:
676-FCBGA (27×27)
1,418
N/ALAV-AT-G30-3ASG410CLattice Semiconductor CorporationLATTICE AVANT MID-RANGE GENERALFPGAs410-WLCSP (11x9)820 mV0°C – 85°C
Grade:
Commercial
Number of Gates:
N/A
Number of I/O:
196
Number of LABs/CLBs:
N/A
Number of Logic Elements/Cells:
262000
Qualification:
N/A
Total RAM Bits:
1740800
1,993

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About Field Programmable Gate Arrays (FPGA)

A field programmable gate array is a reconfigurable integrated circuit that allows engineers to implement custom digital logic without the cost or lead time of an application-specific IC (ASIC). Unlike fixed-function logic devices, FPGAs can be programmed and reprogrammed after manufacturing, making them well-suited for designs with evolving requirements, rapid prototyping cycles, and low-to-mid volume production runs.

FPGAs process data through an array of configurable logic blocks (CLBs) connected by a programmable routing fabric. This architecture enables parallel processing of high-speed data streams, making FPGAs the preferred solution in digital signal processing, machine vision, radar systems, telecommunications infrastructure, and real-time control applications. They are widely deployed across industrial automation, aerospace and defense, medical imaging, and high-performance computing.

Suntsu carries FPGAs alongside a full range of integrated circuits, including complementary devices such as clock and timing ICs and memory that are commonly designed alongside FPGAs in complex digital systems.

Types of Field Programmable Gate Arrays We Offer

Low-Density FPGAs

Low-density FPGAs offer a cost-effective entry point for designs requiring moderate logic capacity, basic I/O expansion, or glue logic replacement. These devices are commonly used in industrial control, consumer electronics, and embedded systems where a microcontroller alone cannot meet the parallel processing or I/O demands of the application. Their flexibility allows for rapid prototyping in design to meet evolving requirements.

High-Density FPGAs

High-density FPGAs provide large logic cell counts, embedded DSP blocks, high-speed transceivers, and on-chip memory resources for compute-intensive applications. These are specified in communications infrastructure, defense electronics, and AI inference platforms where throughput and low latency are critical. They frequently work alongside interface ICs and drivers and transceivers in high-speed data path designs.

Industrial-Grade FPGAs

Industrial FPGA devices are rated for extended temperature ranges and long product lifecycles, making them appropriate for automation, energy management, and ruggedized equipment. These parts prioritize supply continuity and environmental reliability over peak performance density.

Hard-to-Find and Obsolete FPGAs

Suntsu specializes in sourcing discontinued and allocation-constrained FPGA components for legacy system maintenance and last-time-buy scenarios. Search by part number or manufacturer to check availability across our inventory database.

How to Choose the Right Field Programmable Gate Array

Selecting the correct FPGA requires evaluating both the logic architecture and the broader system context:

Logic capacity and resource requirements: Estimate the number of logic cells, DSP slices, block RAM, and I/O pins your design requires. Undersizing leads to routing congestion; oversizing increases cost and power draw unnecessarily.

I/O standard and interface compatibility: Confirm that the FPGA supports the required I/O voltage standards and high-speed serial protocols (PCIe, LVDS, SERDES) for your system interfaces. Pair with appropriate logic ICs or specialized ICs where signal conditioning is needed.

Power supply and management: FPGAs typically require multiple supply rails for core, I/O, and auxiliary logic. Ensure your power architecture can meet the sequencing and regulation requirements of the selected device.

Operating temperature and reliability grade: Industrial and defense applications require devices rated beyond the commercial 0°C to 85°C range. Verify the temperature grade and qualification level against your deployment environment.

Toolchain and vendor ecosystem: FPGA selection is closely tied to the development toolchain. Factor in familiarity with the vendor’s synthesis and place-and-route environment, IP core availability, and long-term product roadmap support before committing to a device family.

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If you can’t find the parts you’re looking for in our database, don’t worry! We’re here to help. Simply fill out the form below with the part number you need and your contact information, and we’ll locate it for you. If you prefer to speak to someone directly, our sales team is available at 949.783.7300.

























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