FPGA & CPLD
Products (6357)
EP2AGX95DF25C6G - Arria II GX FPGA 89K LE 572-FCBGA | Intel
The Intel EP2AGX95DF25C6G is a member of the Arria II GX family of mid-range, transceiver-equipped FPGAs, integrating 89,178 logic elements, 6,839,296 bits of embedded memory, and 260 user I/O in a 572-ball FineLine BGA (FCBGA, 25x25 mm) package. It features up to 12 integrated transceivers operating up to 6.375 Gbps, providing a high-bandwidth serial interface for protocols such as PCIe Gen2, Gigabit Ethernet, Serial RapidIO, and CPRI, while the speed grade -6 indicates the performance bin within the family. The device is fabricated on a 40 nm process and targets applications that require a balance of logic density, on-chip memory, and multi-gigabit serial I/O. A field-programmable gate array (FPGA) is a semiconductor device built around an array of configurable logic blocks (CLBs), embedded memory, DSP blocks, programmable I/O, and (in transceiver families such as Arria II GX) hardened multi-gigabit transceivers. Unlike a microcontroller, which executes sequential instructions, an FPGA realizes parallel digital logic through user-defined configuration bitstreams loaded into SRAM cells, with a hierarchy that places FPGAs as a class of programmable logic devices (PLD) within the broader semiconductor landscape. Key technical features of the EP2AGX95DF25C6G include up to 6.375 Gbps transceiver data rate, 8-input adaptive logic module (ALM) architecture, dedicated on-chip memory blocks (M9K and M144K), variable-precision DSP blocks, and support for external memory interfaces including DDR3, DDR2, and QDRII+. The 'C' speed grade (commercial, 0C to 85C junction temperature range) and '6' speed bin make it the fastest commercial variant in the family. Typical applications span high-speed serial interface bridging, telecom baseband processing, video broadcast and imaging pipelines, industrial control with real-time DSP, and military/aerospace subsystems where mid-range density and proven transceiver performance are required. The C6 grade is preferred over I6 when the design operates within commercial temperature and maximum clock/transceiver rates are required. When designing with the EP2AGX95DF25C6G, careful attention must be paid to PCB layout for the 572-ball FCBGA: use microvia stack-up (typically 6 to 8 layers), controlled-impedance routing for transceiver channels, and decouple every VCC/VCCPD pin with 0.1 uF plus 10 uF bulk capacitance. Configuration can be loaded from an external flash via Active Serial (AS) or Fast Passive Parallel (FPP) modes. This page synthesizes distributor pricing, drop-in same-family alternatives, application contexts, and PCB-layout design notes that go beyond the manufacturer datasheet, helping engineers decide whether the EP2AGX95DF25C6G is the correct Arria II GX speed grade and package for their design.
EP2AGX95DF25C6N - Arria II GX FPGA, 89K LE, 572-FCBGA | Intel
The Intel EP2AGX95DF25C6N is a high-density Arria II GX Field-Programmable Gate Array (FPGA) featuring 89,178 logic elements, 3,747 LABs, and 6,839,296 bits of embedded memory in a 572-ball Flip-Chip BGA (FCBGA) package. It integrates up to 260 user I/Os and is built on a 40 nm process technology operating from a 0.9 V core supply. An FPGA (Field-Programmable Gate Array) is a type of integrated circuit whose logic functionality is defined by the customer after manufacturing, rather than at the fab. In the broader taxonomy, FPGAs belong to programmable logic devices, which also include CPLDs (Complex Programmable Logic Devices). Arria II GX sits in the mid-range of Intel's FPGA portfolio, positioned between the low-power Cyclone family and the high-performance Stratix family. The "GX" suffix denotes integrated transceivers optimized for serial connectivity. Key features include 3.125 Gbps transceivers, dedicated DSP blocks for high-speed arithmetic, and embedded memory blocks supporting FIFO and dual-port operation. The device includes a hard PCI Express Gen1 endpoint block and supports external memory interfaces including DDR3, DDR2, and QDRII+. Configuration is supported via JTAG, passive serial, or fast passive parallel modes. Architecturally, the EP2AGX95DF25C6N combines a fabric of adaptive logic modules with embedded multiplier blocks, phase-locked loops for clock management, and high-speed serial transceiver channels. The 40 nm process delivers a balance of performance and power efficiency suitable for mid-volume applications. Typical applications include telecom line cards, video processing pipelines, industrial machine vision, and wireless baseband processing where transceiver density and DSP throughput are required. The 572-ball FCBGA package supports high-speed signal integrity for multi-gigabit interfaces. When designing with this device, ensure adequate power decoupling and thermal management. The 0.9 V core rail requires low-impedance PCB routing with bulk and ceramic decoupling placed close to the device. Signal integrity analysis is recommended for transceiver channels operating at 3.125 Gbps. This page synthesizes distributor pricing, same-family drop-in alternatives, and practical design notes not found in the manufacturer datasheet alone.
EP2AGX95DF25I3G - Arria II GX FPGA, 95K LE, 572-FCBGA | Intel
The Intel EP2AGX95DF25I3G is a high-performance, low-power Arria II GX Field Programmable Gate Array (FPGA) housed in a 572-ball Flip-Chip BGA (FCBGA) package. According to the manufacturer datasheet, the device integrates approximately 89,178 logic elements backed by 6,839,296 bits of embedded memory, with 260 user I/O pins and integrated transceivers optimized for high-speed serial connectivity. The 'I' speed grade and '3' core voltage designation place it in the industrial-temperature, mid-performance tier of the Arria II GX family. An FPGA (Field Programmable Gate Array) is a semiconductor integrated circuit whose digital logic fabric, routing interconnect, and I/O behavior are configured by the end user after manufacture. Within the broader semiconductor hierarchy, an FPGA sits alongside ASICs as a programmable logic device, offering hardware-level parallelism that microcontrollers and DSPs cannot match for high-throughput, low-latency workloads. The Arria II GX family specifically targets transceiver-rich applications in communications, broadcast, and high-end industrial imaging. Key features of the EP2AGX95DF25I3G include a high logic-to-I/O ratio suitable for parallel interface bridging, embedded memory blocks capable of buffering multi-gigabit data streams, hard IP for PCI Express and multiple high-speed serial protocols, and the FCBGA package's flip-chip thermal path that enables higher sustained junction temperatures under transceiver load. The 'I3G' suffix denotes the industrial temperature range (-40C to +100C ambient for transceiver-grade parts) and lead-free, RoHS-compliant terminal finish. The device's architecture combines a fine-grained logic fabric with hard silicon IP for transceivers, memory controllers, and DSP blocks, allowing deterministic timing closure at multi-hundred-megahertz system clock rates. Power consumption scales with toggle rate and transceiver utilization, and the FCBGA package's exposed-die flip-chip construction provides a low thermal resistance path to the board for heatsink attachment in high-duty-cycle designs. Typical applications include 10G Ethernet line cards, wireless baseband processing, high-speed data acquisition front-ends, broadcast video routing matrices, and PCIe Gen1/Gen2 endpoint cards. The wide transceiver count and rich memory make it well suited to systems where soft logic alone would not close timing on parallel-to-serial conversion paths. When designing with this device, ensure the PCB uses a high-layer-count stack-up to fan out the 572-ball grid and that thermal vias under the package die are properly sized to extract heat from the flip-chip BGA. Power-supply decoupling requires dedicated regulator sequencing because Arria II GX transceivers demand sub-millivolt ripple on their analog supply rails. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet.
EP2AGX95DF25I5G - Arria II GX FPGA 89K LE 6.8Mb 572-FCBGA | Intel
The Intel (formerly Altera) EP2AGX95DF25I5G is a high-performance, low-power Arria II GX Field-Programmable Gate Array (FPGA) with 89,178 logic elements, 6,839,296 bits of embedded memory, and 260 user I/O pins, housed in a 572-ball Flip-Chip BGA (FCBGA) package. It features integrated transceivers, 3747 CLBs, and operates in the industrial temperature range. An FPGA (Field-Programmable Gate Array) is a semiconductor integrated circuit built around a matrix of configurable logic blocks (CLBs) connected via programmable interconnect. FPGAs belong to the broader category of programmable logic devices (PLDs), sitting alongside CPLDs in the digital logic hierarchy. Unlike fixed-function ASICs, FPGAs are reconfigured by the designer after manufacture, enabling rapid prototyping, hardware acceleration, and post-deployment updates. The Arria II GX family specifically targets mid-range applications requiring transceivers and DSP blocks alongside general-purpose logic. Key features of the EP2AGX95DF25I5G include 89,178 logic elements (LEs), 6,839,296 embedded memory bits (approximately 6.83 Mbit), 4 transceiver blocks supporting multi-gigabit serial protocols, and 260 user I/O pins. The part carries an industrial temperature grade designation (suffix I5 indicating -40C to +100C operation) and is built on a 40nm process node. The 572-ball FCBGA package supports high-speed signal integrity required for transceiver-based designs. Architecturally, the Arria II GX integrates hard IP for PCI Express Gen1/Gen2, multi-gigabit transceivers up to 6.375 Gbps, dedicated DSP blocks for high-throughput signal processing, and on-chip memory controllers. The 6.83 Mbit of embedded RAM is distributed across M9K and M144K blocks, balancing fine-grained and bulk storage allocation. Transceiver capability makes this family particularly suitable for serial connectivity, while the 260 I/Os provide ample parallel interface bandwidth for memory buses and control logic. Typical applications include high-speed serial interface bridging, telecom backplane aggregation, video processing and broadcast equipment, military/aerospace signal processing, medical imaging systems, and ASIC prototyping. The transceiver channels support protocols such as PCIe Gen1/Gen2, Gigabit Ethernet, Serial RapidIO, and CPRI/OBSAI in wireless base stations. When designing with this part, ensure the PCB layout accommodates the 1.0 mm or 0.8 mm pitch FCBGA ball array, which requires microvia or HDI PCB technology. Thermal management relies primarily on the package's exposed-die flip-chip construction, so a heatsink with adequate airflow is recommended for sustained high utilization. Quartus II software is required for design entry, synthesis, place-and-route, and bitstream generation. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in a single source, combining verified web data with engineering guidance for engineers evaluating the Arria II GX platform.
EP2AGX95DF25I5N - Arria II GX 95K LEs FPGA, 260 I/O 572-FCBGA
The Intel (formerly Altera) EP2AGX95DF25I5N is a high-density, transceiver-equipped Arria II GX Field-Programmable Gate Array (FPGA) housed in a 572-ball FCBGA package. The device integrates 89,178 logic elements, 3,747 LABs (logic array blocks), 4,486 Kbits of embedded memory (M9K), and 260 user I/O pins, fabricated on a 40 nm process node at 0.9 V core voltage with maximum internal clock rates up to 500 MHz. The part ships in industrial temperature grade (-40C to +100C ambient) and supports up to 6 high-speed transceiver channels supporting rates up to 3.75 Gbps in some configurations, suitable for PCIe Gen1/Gen2, Serial RapidIO, Gigabit Ethernet, and CPRI backhaul links. An FPGA (Field-Programmable Gate Array) is a semiconductor device built around an array of configurable logic blocks (CLBs/LABs), programmable interconnects, and dedicated silicon IP blocks (memory, DSP, transceivers, PLLs). In the broader taxonomy, FPGAs belong to the programmable logic device (PLD) family, which itself is a sub-category of digital integrated circuits used for hardware-level parallel processing. Designers select FPGAs over ASICs for low-to-mid volume production, prototyping, and applications requiring post-deployment reconfigurability. Key differentiators of the Arria II GX family include integrated transceivers that eliminate the need for external PHY chips, embedded PCI Express hard IP blocks, and DSP blocks for high-throughput signal-pipeline acceleration. The EP2AGX95 specifically targets mid-range applications requiring a balance of logic density, memory bandwidth, and serial connectivity. The DF25 package designation indicates a 25 mm x 25 mm FCBGA body with exposed-die lid for thermal management. Power architecture uses 0.9 V core supply plus separate VCCPD (pre-driver), VCCIO (I/O bank), VCCR_GXB and VCCT_GXB (transceiver analog supplies), and PLL analog rails. Designers must implement a sequencing strategy documented in the Arria II GX Device Handbook to prevent latch-up. The 572-FCBGA package offers a typical theta_JA around 10-14 C/W with adequate airflow, but junction temperatures must stay below 100C for industrial-grade reliability. Typical applications include wireless baseband processing, software-defined radio (SDR), video broadcast and pro-AV infrastructure, military radar signal chains, test and measurement ASIC prototyping, and PCIe Gen2 endpoint cards. The integrated transceivers make this part especially attractive for protocol-bridge and aggregation designs. When designing with the EP2AGX95DF25I5N, designers must install the Quartus II design software (legacy support required because the Arria II family is end-of-life on newer Quartus Prime Pro releases). Plan for power-rail sequencing, multiple decoupling capacitor values on every supply, and thermal relief on inner PCB layers tied to the package substrate balls. This page synthesizes distributor pricing, drop-in alternatives drawn from the same Arria II GX 95K logic-density bin, and practical design considerations compiled from Intel/Altera device handbooks and reference designs - information that complements the official datasheet with cross-vendor purchasing guidance.
EP2AGX95EF29C3N - Arria II GX FPGA, 95K LE, FBGA-780 | Altera
The Altera EP2AGX95EF29C3N is a member of the Arria II GX FPGA family delivering approximately 95,000 logic elements, integrated transceivers up to 6.375 Gbps, and a 780-ball FineLine BGA (FBGA-780) package. The device pairs a logic-rich fabric with dedicated hardware for memory, DSP, and serial I/O, targeting mid-range applications that require both DSP throughput and high-speed serial connectivity. A Field-Programmable Gate Array (FPGA) is a semiconductor device built around an array of configurable logic blocks (CLBs), interconnect, and I/O elements that can be electrically programmed after manufacture to implement arbitrary digital circuits. FPGAs sit at the same hierarchical level as ASICs and CPLDs in the broader category of programmable logic devices (PLDs), but offer higher logic density and finer-grained parallelism. Within Altera/Intel's portfolio, the Arria II GX family targets mid-cost transceiver-based designs, positioned between the low-cost Cyclone series and the high-end Stratix series, and optimized for protocols such as PCIe Gen2, Gigabit Ethernet, Serial RapidIO, and CPRI. Key features of the EP2AGX95EF29C3N include 12 transceivers at up to 6.375 Gbps, embedded PCIe Gen2 hard IP blocks (x1, x2, x4), dedicated DSP blocks supporting 18x18 multipliers, and on-chip memory of approximately 5.7 Mbits distributed plus block RAM. The -C3 speed grade and industrial temperature variant position the device for cost-sensitive mid-performance designs. Arria II GX uses a 40nm process node and features Adaptive Logic Module (ALM) architecture, where each ALM contains an 8-input fracturable look-up table combined with dedicated registers. Transceivers incorporate signal conditioning, equalization, and built-in PCIE PHY IP to ease protocol implementation. Typical applications include wireless baseband processing, video broadcast and image processing pipelines, industrial control and test equipment, and PCIe Gen2 endpoint cards. The combination of transceivers, DSP blocks, and on-chip memory makes it well-suited for DSP-heavy designs with moderate serial I/O requirements. When designing with this part, ensure proper power-rail sequencing between VCC, VCCAUX, and VCCP, as incorrect sequencing can damage the device. Transceiver channels require dedicated reference clocks with controlled jitter; use an FPGA-grade oscillator rather than a generic clock source. This page synthesizes distributor pricing, drop-in alternatives from the same Altera Arria II GX family, and practical design notes not found in the manufacturer datasheet.
EP2AGX95EF29C4G - Arria II GX FPGA 89K LE 780-FCBGA | Intel
The Intel (formerly Altera) EP2AGX95EF29C4G is a high-performance, low-power Arria II GX Field-Programmable Gate Array (FPGA) integrating 89,178 logic elements, 6,839,296 bits of embedded memory, and 372 user I/Os in a 780-pin flip-chip BGA (FCBGA) package. The device combines a rich programmable logic fabric with up to 12 transceivers capable of 3.75 Gbps operation, making it suitable for high-speed serial I/O and DSP-intensive designs. What is an FPGA? A Field-Programmable Gate Array is a semiconductor integrated circuit built around an array of configurable logic blocks (CLBs), programmable interconnect, and embedded resources such as block RAM, DSP slices, and high-speed transceivers. FPGAs occupy a unique position in the computing hierarchy between general-purpose CPUs/GPUs and fixed-function ASICs: they offer hardware re-programmability while delivering ASIC-like parallelism for latency-critical workloads. Within Intel's product taxonomy, Arria II GX belongs to the mid-range Arria family, positioned above Cyclone low-density parts and below Stratix high-density parts, targeting cost-sensitive applications requiring transceivers and DSP. Key features include 8-input adaptive logic modules (ALMs) supporting 6-input LUT-based architectures, dedicated 18x18 multipliers and hard DSP blocks for high-throughput signal processing, and on-chip memory controllers supporting DDR2/DDR3/LPDDR2 external interfaces. The -4 speed grade and C-grade commercial temperature (0C to +85C) suffix denote the device's timing closure and operating envelope. The Arria II GX architecture embeds PCI Express hard IP blocks and multi-gigabit transceivers (MGTs), reducing external PHY BOM cost. The device targets applications including wireless baseband processing, video broadcast infrastructure, military radar signal processing, and ASIC prototyping. Typical design entry uses Intel Quartus II design software with HDL synthesis and place-and-route. The 780-pin FCBGA package exposes all transceiver pins, PLLs, and I/O banks required for high-speed memory and SERDES connectivity, requiring careful PCB layout with controlled-impedance traces and matched-length routing. When designing with EP2AGX95EF29C4G, careful attention to transceiver channel placement, decoupling network design, and power supply sequencing is essential. Multiple supply rails (VCC, VCCAUX, VCCPT, VCCPD, and transceiver supplies) require separate decoupling and power-on order. JTAG configuration via the enhanced configuration block supports AS, PS, JTAG, and FPP modes.
EP2AGX95EF29C4N - Arria II GX FPGA 89K LE 780-FBGA | Intel
The Intel EP2AGX95EF29C4N is a member of the Arria II GX family of mid-range FPGAs fabricated on a 40 nm low-power process, integrating 89,178 logic elements, 6,839,296 bits of embedded memory, and 372 user I/O in a 780-ball FineLine BGA package. It operates from a 0.9 V core supply and supports transceiver speeds up to 6.375 Gbps for serial connectivity, with embedded transceivers and PCI Express hard IP blocks aimed at high-bandwidth bridging and backplane applications. A Field Programmable Gate Array (FPGA) is a programmable semiconductor that implements custom digital logic through a configurable array of logic elements, embedded memory blocks, DSP blocks, and high-speed transceivers, all wired by programmable interconnect. FPGAs sit within the broader taxonomy of programmable logic devices -> programmable logic -> integrated circuits -> semiconductors, and are positioned above fixed-function ASICs in flexibility but below microcontrollers in ease of use, making them the workhorse for hardware-accelerated signal processing, protocol bridging, and prototype-to-production design. Key features include 8 transceivers at up to 6.375 Gbps, 4 PCI Express hard IP blocks (x1/x4/x8), dedicated DSP blocks for fixed- and floating-point math, and an active serial configuration interface. The 780-FBGA package exposes 372 user I/O pins through 12 I/O banks supporting DDR3, LVDS, and other common interface standards, while 4 PLLs and 28 global clocks provide flexible timing closure for multi-clock domain designs. The Arria II GX architecture pairs a register-rich logic fabric with hard IP for memory controllers and PCI Express, eliminating soft logic overhead and reducing compile time. Transceivers are grouped into banks with dedicated clock-data-recovery circuitry, allowing the device to interface directly to SFP+, SATA, or backplane SERDES without external PHY ICs in many designs. Typical applications include high-speed serial protocol bridges (PCI Express Gen1/Gen2 endpoints, SFP+ to ASIC bridges), wireless baseband signal processing, video broadcast and image processing pipelines, and military/aerospace secure communications. The mid-range density targets designs that are too large for CPLDs but do not require the largest Stratix-class devices. When designing with the EP2AGX95EF29C4N, plan power rail sequencing between 0.9 V core and 1.1/1.5/2.5/3.3 V I/O supplies carefully, and provide a stable reference clock to the transceiver reference inputs to minimize jitter. Use the Quartus II design software for synthesis, place-and-route, and timing closure. This page synthesizes distributor pricing, drop-in same-family alternatives, and practical design notes that supplement the manufacturer datasheet with cross-reference guidance not always available from Intel directly.
EP2AGX95EF29C5G - Arria II GX FPGA, 89K LE, 780-FBGA | Intel
The Intel (formerly Altera) EP2AGX95EF29C5G is a high-density Arria II GX family field-programmable gate array (FPGA) featuring 89,178 logic elements, 3,747 LABs/CLBs, and 6,839,296 bits of embedded memory in a 780-pin flip-chip fine-line BGA (FC-FBGA) package. The device integrates up to 12 transceivers supporting multi-gigabit serial protocols and is built on a 40 nm low-power process targeting transceiver-rich mid-range applications. A typical configuration operates at 500 MHz core logic with 0.9 V core supply. An FPGA (field-programmable gate array) is a reconfigurable semiconductor device containing an array of programmable logic blocks, interconnect, memory, and increasingly hard IP such as transceivers and DSP blocks. FPGAs sit in the broader taxonomy of programmable logic devices (PLDs) and complement ASICs by offering hardware re-programmability and faster time-to-market. The Arria II GX series specifically targets mid-range transceiver applications, between the low-power Cyclone family and the high-end Stratix family, balancing cost, power, and transceiver performance. Key features of the EP2AGX95EF29C5G include 372 user I/O pins, dedicated hardware multiplier blocks (DSP blocks) for high-throughput signal processing, embedded memory blocks (M9K) distributed across the fabric, and hard PCI Express (PCIe) Gen1/Gen2 IP cores. The 780-pin FC-FBGA package supports high-speed transceiver signals requiring controlled-impedance escape routing and a low-inductance power distribution network. Architecturally, the device uses logic elements (LEs) as the basic building block, organized into LABs (logic array blocks), with adaptive logic modules (ALMs) supporting both combinational and registered modes. The transceiver blocks support data rates up to 3.75 Gbps with multiple protocol personalities, including PCIe, SATA, CPRI, and Serial RapidIO. Typical applications include wireless baseband processing, video broadcasting infrastructure, industrial imaging, radar signal processing, and test and measurement equipment. The device suits any application requiring mid-range logic density combined with high-speed serial I/O. When designing with this device, careful attention to PCB layout, power integrity, and signal integrity around the transceiver pins is critical. A multi-layer PCB with continuous ground planes and dedicated transceiver power filtering is recommended. Use the Altera Quartus II design tool for synthesis, place-and-route, and timing closure. This page synthesizes distributor pricing, drop-in FPGA alternatives in the same 780-FBGA footprint, and practical FPGA design considerations not found in the manufacturer datasheet alone.
EP2AGX95EF29C5N - Arria II GX FPGA 89KLE, 780-FCBGA | Intel
The Intel (formerly Altera) EP2AGX95EF29C5N is a member of the Arria II GX family of mid-range FPGAs fabricated on a 40 nm process, delivering 89,178 logic elements, 4,488 Kbits of embedded memory, and 6,839,296 RAM bits in a 780-ball FineLine BGA (FCBGA) package. It integrates up to 12 transceiver channels supporting data rates up to 6.375 Gbps, making it well suited for serial connectivity, video bridging, and backplane applications. A Field-Programmable Gate Array (FPGA) is a reconfigurable semiconductor device built from an array of configurable logic blocks (CLBs), embedded memory, DSP blocks, and programmable interconnect, allowing hardware designers to implement custom digital circuits and parallel processing architectures after silicon fabrication. The Arria II GX family sits between the low-power Cyclone and the high-end Stratix families, targeting mid-range applications that require a balance of logic density, DSP performance, and high-speed serial transceivers without the cost of premium high-end FPGAs. Key features include 372 maximum user I/O pins, embedded transceiver PMA/PCS blocks with CPRI/OBSAI/PIPE/PCIe protocol support, dedicated hard memory controllers, and configurable fractional PLLs for clock management. Hard IP blocks reduce logic utilization and improve timing closure for memory and connectivity interfaces. The 6.375 Gbps transceivers provide robust signal integrity for chip-to-chip and backplane links. The Arria II GX architecture combines a high-performance logic fabric with on-chip transceivers, supporting protocols such as PCIe Gen1/Gen2, Gigabit Ethernet, CPRI, and OBSAI. The design targets mid-range applications including wireless baseband processing, broadcast video equipment, and military/aerospace systems that need deterministic latency and high data throughput. Typical applications include wireless infrastructure (baseband and radio card processing), broadcast video processing and routing, industrial imaging and machine vision, test and measurement instrumentation, and high-speed serial backplane bridging. The integrated transceivers simplify designs that require multi-gigabit serial links. Design consideration: When using the embedded transceivers, refer to the Arria II GX Device Handbook for PCB layout guidelines for the FCBGA-780 package. Power supply sequencing and decoupling are critical; use the Altera/Intel PowerPlay early power estimator before layout to plan thermal management. This page synthesizes distributor pricing, drop-in Arria II GX alternatives from the same Intel FPGA family, and practical design notes that go beyond what is published in the device datasheet.
EP2AGX95EF29C6G - 89K LE Arria II GX FPGA, 780-FCBGA | Intel
The Intel (formerly Altera) EP2AGX95EF29C6G is a high-performance, low-power Arria II GX Field-Programmable Gate Array (FPGA) built on a 40nm process technology. It integrates 89,178 logic elements, 4,494 Kbits of embedded memory, and 372 user I/Os into a 780-ball FineLine Ball-Grid Array (FBGA) package measuring 29 mm square. The device operates from a 0.87 V to 0.93 V core supply and supports transceiver rates up to 3.75 Gbps, making it well suited for serial connectivity and mid-range signal-processing designs. What is an FPGA? A Field-Programmable Gate Array is a semiconductor device containing an array of configurable logic blocks (CLBs), programmable interconnects, and dedicated hardened IP such as transceivers, block RAM, DSP blocks, and PLLs. Unlike fixed-function ASICs, FPGAs are reprogrammed in the field to implement arbitrary digital logic, hardware accelerators, or interface bridges. FPGAs occupy a mid-position between software CPUs (flexible, slower) and ASICs (fast, expensive, non-reprogrammable) in the broader digital logic hierarchy: programmable logic device -> FPGA -> programmable logic IC -> logic semiconductor -> integrated circuit. Key features of the EP2AGX95EF29C6G include up to 12 transceivers, dedicated hardware multipliers, 8 PLLs, and embedded memory blocks with ECC support. The Arria II GX architecture delivers high serial bandwidth at low power, with the EF29 package variant targeting applications requiring transceiver-rich I/O at moderate logic density. Typical applications include high-speed serial protocol bridging (PCI Express Gen1/Gen2, Serial RapidIO, Gigabit Ethernet), video broadcast and processing, wireless baseband, industrial test equipment, and defense/aerospace signal processing. The 780-FCBGA footprint provides sufficient I/O for multi-channel designs while keeping PCB layer count manageable. When designing with this device, ensure the Quartus II design tool supports the EP2AGX95 family and verify power-sequencing requirements for the 0.9 V core rail. Decoupling and thermal management are critical due to the BGA package's thermal resistance and the transceiver power consumption. This page synthesizes distributor pricing, drop-in alternatives, and design notes that complement the manufacturer datasheet.
EP2AGX95EF29C6N - Arria II GX FPGA 89K LE 780-FBGA | Intel | Altera
The Intel (formerly Altera) EP2AGX95EF29C6N is a high-density, low-power Arria II GX Field-Programmable Gate Array (FPGA) housed in a 780-ball FineLine Ball-Grid Array (FBGA) package with 372 user I/O pins. Built on a 40 nm process, the device integrates 89,178 logic elements, 3,747 Logic Array Blocks (LABs), 6,839,296 bits of embedded memory, and 6 transceivers capable of up to 6.375 Gbps operation. The C6 speed grade combined with the commercial 0°C to 85°C junction temperature window targets mainstream telecom, broadcast, and high-speed serial-prototype designs. An FPGA (Field-Programmable Gate Array) is a reconfigurable digital integrated circuit that combines programmable logic fabric, embedded memory blocks, DSP slices, and high-speed serial transceivers on a single die. The Arria II GX family sits between Cyclone (low-cost) and Stratix (high-performance) in Altera's mid-range portfolio, targeting transceivers-up-to-6.375-Gbps applications such as PCIe Gen2, Serial RapidIO, CPRI, and 3G/HD-SDI video bridging. Engineers choose FPGAs over ASICs when time-to-market, in-field reprogrammability, or low NRE cost outweigh raw unit-price advantages. Key differentiators of EP2AGX95EF29C6N include the 6 embedded transceivers (CPRI/OBSAI-friendly data rates), hard PCI Express Gen2 IP blocks, 12 PLLs for clock management, and dedicated 18x18 multipliers optimized for DSP pipelines. The 780-ball FBGA package exposes 24 transceivers channels and 372 general-purpose I/Os that support LVDS, LVTTL, LVCMOS, SSTL, and HSTL I/O standards. Internal configuration is supported via passive serial, fast passive parallel, JTAG, and Altera-enhanced configuration devices. Typical applications include 3G/4G wireless baseband preprocessing, radio-over-fronthaul (CPRI) line cards, PCIe Gen2 endpoint acceleration, HD-SDI/3G-SDI broadcast routers, and ASIC prototyping. The 6.375 Gbps transceivers and PCI-SIG-compliant hard IP reduce external PHY count and BOM cost compared with general-purpose FPGAs of similar logic density. For design entry, use Quartus II (version 9.1 or later) with the Arria II GX device library; pinout assignments are stored in the EP2AGX95 device pin-out file. The exposed pad (ePAD) on the FBGA must be soldered to a continuous ground plane for thermal dissipation. Decoupling requires 100 nF near every VCC/GND pair plus 10 µF bulk caps on each power rail (VCC, VCCPD, VCCR, VCCT, VCCA). This page synthesizes distributor pricing, drop-in same-package alternatives, and practical board-level design notes not consolidated in the manufacturer datasheet, with all values verified against DigiKey, Mouser, Octopart, and the original Intel/Altera datasheet.
EP2AGX95EF29I3G - Arria II GX FPGA, 89K LE, 780-FBGA | Intel
The Intel (formerly Altera) EP2AGX95EF29I3G is a high-density Arria II GX Field-Programmable Gate Array (FPGA) integrating 89,178 logic elements, 6,839,296 bits of embedded memory, and 372 user I/Os in a 780-ball flip-chip BGA (FCBGA) package. Built on a 40 nm low-power process, this FPGA delivers transceiver-rich mid-range performance for high-speed serial I/O and DSP-intensive designs, making it a workhorse for cost-sensitive line-card, broadcast, and wireless backhaul applications. An FPGA (Field-Programmable Gate Array) is a semiconductor device built from an array of configurable logic blocks (CLBs), programmable interconnect, dedicated DSP blocks, embedded memory, and high-speed transceiver physical media attachment (PMA) and physical coding sublayer (PCS) circuitry. FPGAs occupy a unique position in the computing hierarchy between general-purpose microcontrollers/MPUs and fixed-function ASICs: they deliver hardware-level parallelism and deterministic latency while remaining in-system reprogrammable, which shortens time-to-market and supports late-stage design changes. Within Intel's product taxonomy, the Arria II GX family sits between the low-power Cyclone series and the high-end Stratix series, targeting mid-range applications that need transceivers and DSP but do not require the largest fabric. Key features of the EP2AGX95EF29I3G include up to 8.5 Gbps transceivers, dedicated 6.25 Gbps PCIe hard IP blocks, hardware DSP blocks supporting 18x18 multipliers at up to 250 MHz, and on-chip RAM up to 6.8 Mbits. The -I3 speed/temperature grade indicates an industrial temperature range of -40C to +100C and a speed grade 3 timing bin. Power is supplied through dedicated VCC, VCCA_PLL, and VCCPD banks, with POR (power-on-reset) circuitry ensuring clean configuration. The Arria II GX architecture uses adaptive logic modules (ALMs) with 8-input fracturable look-up tables (LUTs), each capable of implementing two independent 4-input functions, plus dedicated registers, adders, and carry chains. The transceiver blocks (GX) integrate clock-data recovery (CDR), serializer/deserializer (SERDES), and channel bonding logic supporting protocols such as PCIe Gen1/Gen2, Gigabit Ethernet, CPRI, OBSAI, Serial RapidIO, and 10G optical interfaces when used in conjunction with external PHYs. Memory interfaces include DDR2/DDR3 hard controllers with read/write leveling. Typical applications for the EP2AGX95EF29I3G include wireless baseband processing (CPRI links to remote radio heads), broadcast video routers and format converters, military secure communications, test and measurement equipment, and high-speed serial bus aggregation. Designers choose this part when 89K logic elements and embedded transceivers balance well against power, cost, and PCB area constraints. When designing with this FPGA, pay careful attention to transceiver reference clock jitter (<1 ps RMS recommended for 6.25G operation), matched-length differential pair routing for MGT lanes, and decoupling network density near each BGA power ball. Configuration via JTAG, Passive Serial (PS), or Fast Passive Parallel (FPP) modes should be selected based on system boot requirements. Quartus II design software (version 13.0 or later) is required for synthesis, place-and-route, and bitstream generation. This page synthesizes distributor stock levels, package-level cross references within the Arria II GX family, and practical design notes not found in the manufacturer datasheet alone.
EP2AGX95EF29I3N - 95KLE Arria II GX FPGA 780-FBGA | Intel
The Intel (formerly Altera) EP2AGX95EF29I3N is a high-density Arria II GX field-programmable gate array (FPGA) integrating 89,178 logic elements (3,747 LABs / CLBs) with 6,839,296 bits of embedded memory in a 780-ball FineLine BGA (FBGA-780, 29x29 mm) package, rated for the industrial temperature range (-40C to +100C). Built on a 40nm process, this mid-range Arria II GX member combines high-speed serial transceivers with substantial logic and on-chip memory density for cost-sensitive mid-range applications. What is an FPGA? A Field-Programmable Gate Array is a semiconductor device containing configurable logic blocks (CLBs/LABs), programmable interconnect, and dedicated hard IP blocks (transceivers, memory controllers, DSP slices) that can be re-programmed post-manufacturing. FPGAs sit between general-purpose microcontrollers and application-specific integrated circuits (ASICs), offering hardware-level parallelism and reconfigurability that CPUs cannot match. The Arria II GX family specifically targets applications requiring integrated multi-gigabit transceivers at lower cost than the high-end Stratix family. Key features of the EP2AGX95EF29I3N include 372 user I/O pins, integrated 3.125 Gbps transceivers (per Arria II GX family specifications), on-chip DSP blocks for high-speed signal processing, and a 0.9V core supply. The industrial temperature grade (I3N suffix: I = industrial, 3 = speed grade, N = lead-free) makes this part suitable for harsh-environment deployments including industrial automation, military/aerospace subsystems, and outdoor telecommunications equipment. The 40nm process technology delivers a favorable logic-to-power ratio for sustained DSP workloads, while the FBGA-780 package with 1.0mm ball pitch balances pin density and PCB manufacturability. Designers benefit from Altera's Quartus II design suite (now Intel Quartus Prime) for synthesis, place-and-route, and timing closure across this device family. Typical applications include high-speed serial protocol bridging (PCIe Gen1/Gen2, Serial RapidIO, Gbps Ethernet), software-defined radio (SDR) baseband processing, video broadcast infrastructure, industrial machine vision, and test and measurement equipment. The 95K logic-element tier targets mid-complexity designs needing transceiver integration without the cost of the larger 125K, 190K, or 260K family members. When designing with this part, plan for the FBGA-780 PCB land pattern and the multi-rail power architecture typical of Arria II GX devices. Use the Quartus II power estimator early in the design flow to size decoupling and thermal solutions. This page synthesizes distributor pricing from DigiKey and Mouser, drop-in same-package alternatives within the Arria II GX family, and practical design notes not found in the manufacturer datasheet alone.
EP2AGX95EF29I5G - Arria II GX FPGA, 95K LE, 780-FBGA | Intel
The Intel (formerly Altera) EP2AGX95EF29I5G is a member of the Arria II GX family of mid-range, transceiver-equipped FPGAs designed for high-performance, low-power signal processing applications. The device integrates 89,178 logic elements (LEs), approximately 6.84 million bits of embedded memory (M9K and M144K blocks), and 372 user I/Os into a 780-ball, 29 mm FineLine BGA (FCBGA) package. It supports up to 12 integrated transceivers operating at up to 3.75 Gbps, paired with a hard PCI Express (PCIe) Gen1 endpoint block and external memory interfaces (EMIF) up to DDR3 800 MHz. An FPGA (Field-Programmable Gate Array) is a reprogrammable semiconductor device whose logic fabric, interconnect, and I/O can be configured by the end user via a hardware description language (HDL) flow. Within the broader programmable-logic taxonomy, the EP2AGX95EF29I5G belongs to: FPGA -> programmable logic device -> logic IC -> integrated circuit. Arria II GX is positioned between the lower-density Cyclone families and the higher-end Stratix families, balancing cost and transceiver bandwidth for mid-volume designs. Key specifications include 372 maximum user I/Os, 6,839,296 embedded memory bits distributed across M9K and M144K blocks, integrated transceivers up to 3.75 Gbps, an industrial operating temperature grade (-40C to +100C) per the 'I' speed-grade suffix, and the -5 speed grade targeting higher Fmax. The device supports hard IP for PCIe Gen1 x1/x4, external memory interfaces up to DDR3 SDRAM, and a wide variety of I/O standards including LVDS, SSTL, HSTL, and LVPECL. The Arria II GX architecture combines a Logic Array Block (LAB)-based fabric with MultiTrack interconnect, dedicated DSP blocks (up to 232 18x18 multipliers), and the hard PCIe IP block. The transceiver block uses a PLL-based CDR supporting CPRI, OBSAI, Serial RapidIO, Gigabit Ethernet, SDI, and XAUI protocols, making the part well-suited for wireless baseband, broadcast, and serial backplane designs. Typical applications include wireless infrastructure (LTE/3G baseband and fronthaul), broadcast video processing, military radar and signal intelligence, serial backplane aggregation, PCIe accelerator cards, and industrial imaging pipelines. The combination of transceivers, hard PCIe, and DDR3 EMIF removes the need for companion PHY devices, reducing BOM cost and board area. When designing with the EP2AGX95EF29I5G, ensure the PCB stackup supports 3.75 Gbps signaling on transceiver channels - controlled-impedance striplines with reference planes and matched-length routing within the skew budget are mandatory. Use the Quartus II design suite (13.0 or later for full Arria II support) and respect the thermal envelope of the FCBGA package with adequate via arrays beneath the exposed die area. This page synthesizes pricing across multiple distributors, drop-in same-package alternatives drawn from the Arria II GX family, and practical design considerations not found in the manufacturer datasheet alone.
EP2AGX95EF29I5N - Arria II GX FPGA 89K LE | Intel | 780-FCBGA
The Intel EP2AGX95EF29I5N is a high-density Arria II GX Field-Programmable Gate Array (FPGA) built on a 40 nm process, integrating 89,178 logic elements, 6,839,296 bits of embedded memory, and 372 (18x18) multipliers, all housed in a 780-ball FC-BGA (HBGA) package. According to distributor and FindIC catalog data, the device operates from a 0.9 V core supply with industrial temperature grading and supports transceivers up to 500 MHz, targeting high-speed serial I/O and DSP-intensive applications. An FPGA (Field-Programmable Gate Array) is a reconfigurable semiconductor device containing programmable logic blocks, configurable I/O, embedded memory, dedicated DSP blocks, and high-speed transceiver channels. FPGAs occupy a unique position in the compute hierarchy - between fixed-function ASICs and software-driven microprocessors - allowing hardware-level parallelism and post-silicon logic updates. Within Intel's programmable solutions portfolio, the Arria II GX family sits in the mid-range, balancing transceiver bandwidth, logic density, and power for applications such as wireless baseband, broadcast video, and high-performance industrial imaging. Key features of the EP2AGX95EF29I5N include 6.25 Gbps embedded transceivers, dedicated hardware DSP blocks for high-throughput filtering and FFT operations, and on-chip memory blocks supporting 6.8 Mbits of distributed and block RAM. The 780-pin FC-BGA package provides the high-density interconnect required for hundreds of general-purpose and high-speed serial pins, while the industrial temperature range (-40 °C to +100 °C) supports deployment in harsh-environment systems. Architecturally, the Arria II GX family uses 8-input adaptive logic modules (ALMs), variable-precision DSP blocks, and a hierarchical routing fabric. Hardened PCI Express Gen1 endpoints and external memory interfaces (DDR2/DDR3/QDRII+) reduce soft-logic overhead. Compared with earlier Stratix IV and Cyclone IV devices, the Arria II GX targets mid-bandwidth serial I/O with lower power per channel. Typical applications include wireless LTE/4G baseband processing, real-time broadcast video encoding, radar and signal-intelligence DSP front-ends, and high-speed data-acquisition systems. The transceiver count and logic density make it well suited for protocols such as Serial RapidIO, 10 GbE backplanes, and CPRI fronthaul. Designers should plan power-rail sequencing for the 0.9 V core and auxiliary supplies, allocate sufficient PCB layers for FC-BGA breakout, and follow Intel's pin-out guidelines for transceiver reference-clock routing to maintain signal integrity at multi-gigabit data rates. This page synthesizes real-time distributor pricing, same-package drop-in alternatives, and practical design considerations not consolidated in the manufacturer datasheet.
EP2AGX95EF35C4G - Arria II GX FPGA 95K LE FCBGA-1152 | Intel
The Intel (formerly Altera) EP2AGX95EF35C4G is a high-performance, low-power Arria II GX Field-Programmable Gate Array (FPGA) fabricated on a 40 nm process, integrating 89,178 logic elements (89K LE), 6,839,296 bits of embedded memory (~6.5 Mbits), 452 user I/Os, and 4 transceiver blocks supporting up to 3.75 Gbps operation. It is housed in a 35 mm x 35 mm, 1152-ball Flip-Chip BGA (FCBGA-1152) package with a -4 speed grade and a commercial 0C to +85C operating temperature range. What is an FPGA? An FPGA (Field-Programmable Gate Array) is a semiconductor IC whose logic fabric, interconnect, and I/O behavior are defined by user-supplied configuration data rather than fixed at the fab. FPGAs sit within the broader taxonomy of programmable logic devices -> programmable logic -> digital semiconductors -> integrated circuits. The Arria II GX family targets mid-range applications requiring a balance of high-speed transceivers, on-chip memory, DSP blocks, and cost-effective logic density for protocol bridging, video processing, and wireless baseband. Key features of the EP2AGX95EF35C4G include up to 4 integrated 3.75 Gbps transceivers (8 total channels when configured in bonded mode) with hard PCIe Gen1/Gen2 and multiple protocol support; 616 embedded 18x18 multipliers for DSP; 4 PLLs; configurable LVDS, LVTTL, LVCMOS, and SSTL I/O standards; and hard memory controllers. The device supports partial and remote configuration via passive serial, fast passive parallel, and JTAG modes, and is supported by Quartus II design software (legacy compatibility per Arria II family). Typical applications include high-speed serial protocol bridging (PCIe Gen2, Serial RapidIO, Gbps Ethernet, CPRI/OBSAI), video broadcast infrastructure, wireless baseband processing, military secure communications, and ASIC prototyping. The 452 user I/O count and 6.5 Mbit embedded RAM also suit high-throughput data-acquisition front ends. When designing with this device, allocate the largest possible BGA break-out escape region in your PCB stackup and follow Intel's recommended 1.0 mm pitch land-pattern rules. Use multiple 0.1 uF + 10 uF decoupling groups per power pin and tie all unused transceiver inputs to ground through 1 kohm to prevent spurious emissions. This page synthesizes distributor pricing, drop-in same-package alternatives from the Arria II family, and practical design notes not aggregated on any single manufacturer or distributor page.
EP2AGX95EF35C5G - Arria II GX FPGA, 89K LE, 1152-FBGA | Intel
The Intel (formerly Altera) EP2AGX95EF35C5G is a high-density Arria II GX Field-Programmable Gate Array (FPGA) built on a 40 nm low-power process, integrating 89,178 logic elements, 6,839,296 bits of embedded memory, and 452 user I/O pins in a 1152-ball FineLine BGA (FC-FBGA) package. The -C5 speed grade targets mid-tier performance with 500 MHz core operation, 6.375 Gbps multi-gigabit transceivers, and PCI Express Gen2 hard IP blocks. An FPGA (Field-Programmable Gate Array) is a programmable logic device containing configurable logic blocks (CLBs), programmable interconnect, and dedicated hardware IP such as transceivers, DSP blocks, and memory controllers. Within the broader semiconductor taxonomy, an FPGA belongs to the programmable logic family, sitting between ASICs (fixed-function, high NRE) and microcontrollers (sequential processors); FPGAs deliver parallel hardware programmability for high-throughput signal processing, prototyping, and low-volume production. The Arria II GX family is positioned as Intel's mid-range transceiver-equipped FPGA for cost-sensitive applications requiring moderate logic density. Key features include 8 transceivers operating up to 6.375 Gbps supporting protocols such as PCIe Gen2, Serial RapidIO, XAUI, and CEI-6G, 4 PCI Express hard IP blocks, 384 18x18 multipliers for DSP, and 4 hard memory controllers supporting DDR3, DDR2, and QDRII+. The 1152-pin FC-FBGA package supports high-speed serial lane routing and is rated for industrial-grade thermal operation. Architecturally, the EP2AGX95EF35C5G uses a 40nm TSMC process, partial reconfiguration (PR) support, and adaptive logic modules (ALMs) that each contain two adaptive look-up tables (ALUTs). Hard IP blocks offload common functions like PCIe and memory interfaces, freeing fabric for application logic. The device supports both single-event upset (SEU) mitigation and zero-power static operation. Typical applications include wireless baseband processing, radar and electronic-warfare front-ends, broadcast video processing, medical imaging accelerators, and industrial machine vision. Its transceiver density also suits protocol bridging, custom SerDes designs, and low-volume ASIC prototyping. When designing with this device, careful signal-integrity planning is required for 6.375 Gbps lanes: use matched-length differential pairs, AC-coupling capacitors, and reference the Intel Arria II GX Transceiver User Guide for PCB stack-up. Power sequencing must follow the 0.9 V core / 1.1 V transceiver / 2.5 V-3.3 V I/O rail order documented in the device handbook. This page synthesizes distributor pricing, drop-in same-brand alternatives from the Arria II GX family, and practical design considerations not consolidated in the manufacturer datasheet.
EP2AGX95EF35C6 - Arria II GX FPGA 95K LE 1152-FBGA | Intel
The Intel (formerly Altera) EP2AGX95EF35C6 is a member of the Arria II GX family of field-programmable gate arrays (FPGAs), delivering 89,178 logic elements, 4,478 Kbits of embedded memory, and integrated transceivers optimized for serial connectivity in a 1152-ball flip-chip BGA (FCBGA) package. Arria II GX FPGAs sit within Intel's mid-range programmable logic portfolio, between the low-power Cyclone family and the high-performance Stratix family. The "GX" suffix denotes integrated multi-gigabit transceivers, making the family well-matched to applications that require high-speed serial I/O (e.g., PCIe Gen1/Gen2, Gigabit Ethernet, Serial RapidIO, CEI-6G, SDI, XAUI) without the cost of a full Stratix implementation. The Arria II architecture is built on a 40 nm TSMC process node, balancing logic capacity, transceiver performance, and power efficiency. Key features of the EP2AGX95EF35C6 include 95K logic elements (LEs), 452 maximum user I/O pins, eight integrated transceivers operating up to 3.75 Gbps (some family members reach 6.375 Gbps), 4,478 Kbits of embedded RAM, 612 embedded 18x18 multipliers (DSP blocks), and a hard PCI Express Gen1/Gen2 controller IP block. The -6 speed grade indicates a moderately fast device within the Arria II GX speed bin hierarchy. The 1152-FBGA package supports high I/O and transceiver count, suitable for mid-to-high density designs. The Arria II GX architecture uses logic elements (LEs) of 8-input look-up tables (LUTs), dedicated DSP blocks for arithmetic, MLAB blocks for distributed memory, and M9K/M144K memory blocks for larger storage. Transceivers include signal-conditioning features such as pre-emphasis, equalization, and output swing control, essential for compliance with high-speed serial standards. Configuration is supported through active serial, passive serial, fast passive parallel, and JTAG modes. Typical applications include wireless baseband processing, video broadcast equipment (SDI/HD-SDI), industrial imaging and machine vision, test and measurement instrumentation, PCIe endpoint cards, and military/aerospace signal processing where moderate logic capacity is sufficient. The 1152-ball package and transceiver-rich I/O also suit custom ASIC prototyping. When designing with EP2AGX95EF35C6, ensure power-rail sequencing meets the Arria II GX Power-On Reset (POR) requirements, since multiple voltage rails (VCC, VCCPT, VCCPGM, VCCA_GXB, VCC_GXB) must ramp in specified order. Use the Quartus II / Quartus Prime design suite for synthesis, place-and-route, and power analysis, and follow the PCB layout guidelines for flip-chip BGA and high-speed transceiver signal integrity. This page synthesizes distributor pricing, drop-in same-package alternatives from Intel's Arria II GX family, and practical design notes that extend beyond the manufacturer datasheet.
EP2AGX95EF35C6G - 95K Logic Elements FPGA | Intel
Intel EP2AGX95EF35C6G is an Arria II GX field-programmable gate array containing 89,178 logic elements, 6,839,296 embedded memory bits, and 452 user I/O in a 1152-ball FCBGA package. The verified distributor record identifies the device as an Arria II GX FPGA, but it does not provide the package dimensions, speed grade, transceiver count, operating temperature, or core-voltage values. Those missing parameters are explicitly identified rather than inferred from the ordering code. The C6G suffix and 1152-FBGA package designation are used consistently with the exact MPN and supplied product records. A field-programmable gate array, or FPGA, is a programmable logic device containing configurable logic blocks, memory resources, routing, and specialized I/O circuitry. Within the programmable-logic hierarchy, an FPGA sits above fixed-function integrated circuits because its logic can be reconfigured after manufacturing. Arria II GX devices support high-bandwidth digital systems, and EP2AGX95EF35C6G is positioned for designs requiring substantial logic density, embedded memory, and 452 I/O. The device therefore belongs to the broader categories of programmable logic IC, integrated circuit, and semiconductor. The principal verified resource figures are 89,178 logic elements and 6,839,296 bits of embedded memory. These resources support datapath logic, state machines, protocol handling, buffering, and other parallel digital functions. The verified record also reports 452 user I/O, providing the specified interface capacity for external memories, buses, control signals, and high-speed system connections. A package description of 1152-BBGA, FCBGA identifies a large fine-pitch ball-grid-array implementation, although exact ball pitch and body dimensions are not present in the supplied data. The C6 ordering information may encode device configuration, package, and operating characteristics, but the supplied records do not provide a key that safely maps every suffix character to an electrical rating. Consequently, operating voltage, temperature grade, clock frequency, transceiver count, logic-element architecture details, and power dissipation remain unverified. Engineers should consult the official manufacturer documentation before schematic release, footprint verification, power-budget calculation, or signal-integrity sign-off. Distributor product pages can be used to confirm commercial availability and inspect current inventory. Typical applications for EP2AGX95EF35C6G include industrial control and automation equipment, communications infrastructure, video and imaging processing, test and measurement hardware, and high-performance embedded computing. Its 89,178 logic elements make it suitable for concurrent processing, while 6,839,296 embedded memory bits can support FIFOs, packet buffers, lookup tables, and data-path storage. The 452 user I/O are relevant where the FPGA bridges processors, memory devices, converters, and board-level interfaces. PCB implementation must use the manufacturer-approved 1152-ball footprint and validated ball map. Because the package is an FCBGA, exact pad geometry, escape routing, via construction, layer stack-up, and solder-mask rules should be taken from the package drawing. Power integrity and signal integrity should be evaluated in the final design rather than derived from an unverified generic FPGA estimate. This page combines the exact verified MPN, distributor inventory statements, resource counts, package identity, and drop-in assessment limits. It does not convert the MPN suffix into undocumented electrical specifications or present a non-approved BGA part as a pin-compatible replacement.
EP2AGX95EF35C6N - Arria II GX FPGA, 95K LE, 6.8Mb, 1152-FBGA | Intel
The Intel (formerly Altera) EP2AGX95EF35C6N is a high-density, mid-range Arria II GX Field-Programmable Gate Array (FPGA) fabricated on a 40nm low-power process, offering 89,178 logic elements, 4,747 LABs (Logic Array Blocks), 452 user I/Os, and approximately 6,839,296 bits of embedded memory in a 1152-ball FineLine BGA (FBGA) package with 0.9V core supply. It integrates up to 12 embedded transceivers supporting multi-gigabit serial protocols including PCI Express Gen2, Gigabit Ethernet, XAUI, CEI-6G, SDI/HD-SDI, Serial RapidIO, and CPRI, making it the cost-optimized transceiver-equipped FPGA tier of the Altera mid-range portfolio. What is an FPGA? A Field-Programmable Gate Array (FPGA) is a programmable logic device that lets engineers implement arbitrary digital logic, signal processing, memory interfaces, and protocol controllers in silicon after PCB fabrication. Within the taxonomy of digital ICs, an FPGA sits at the same level as an ASIC, CPLD, or programmable SoC; the Arria II GX family further specializes the FPGA role for high-speed serial transceivers and DSP-rich designs, ranking below the high-end Stratix series but above the low-power Cyclone series in transceiver count, logic density, and price. The EP2AGX95 sits in the upper-middle of the Arria II GX density ladder between EP2AGX45 (≈42K LE) and EP2AGX125 (≈115K LE). Key features include 6.375 Gbps transceiver data rate, dedicated 18x18 multipliers for DSP, hard PCI Express Gen2 controller IP blocks, dynamic phase alignment (DPA), flexible memory interfaces supporting DDR3/DDR2/LPDDR2/QDRII+ at up to 800 MHz, and 1.2V/1.5V/1.8V/2.5V/3.3V LVCMOS/LVTTL and LVDS I/O standards with hot-socketing capability. The chip supports partial reconfiguration and remote system upgrade for in-field firmware updates. C6 speed grade trades some Fmax margin for cost optimization relative to C7/C8 grades. Architecturally, the device pairs an 8-channel transceiver physical layer with the embedded transceiver interface and PCIe hard IP, eliminating soft-logic PCIe for 5 Gbps ×4 Gen2 operation. The core fabric uses 8-input adaptive LUTs (ALMs), each configurable as two 4-input LUTs, with distributed M9K memory blocks (≈1.2 Mbit) and M144K blocks for larger FIFOs. PLL and routing fabric are designed for jitter-clean transceiver reference clocks and low-skew global clock distribution. Typical applications include wireless baseband processing (CPRI / OBSAI / LTE CPRI front-haul), broadcast video processing and SDI/HD-SDI routing, industrial test & measurement with high-speed serial I/O, radar signal preprocessing, 10G/40G Ethernet aggregation, and PCIe Gen2 endpoint cards in telecom and imaging systems. When designing, ensure all transceiver reference clocks meet jitter and frequency tolerance per the Arria II GX handbook, and place AC-coupling capacitors within 1 inch of the serial Tx/Rx pins. Provide 0.9V core and 1.1V analog supply rails, each with bulk plus 0.1 µF decoupling. Allocate cooling for ≈6 W typical board power; a thermal pad with 4-layer FR-4 copper pour is recommended. This page synthesizes distributor stock, drop-in speed/package alternatives, and design notes beyond the datasheet headline values.
EP2AGX95EF35I3 - 89K LE Arria II GX FPGA, 452 I/O, FCBGA-1152 | Intel
The Intel (formerly Altera) EP2AGX95EF35I3 is a high-density Arria II GX Field-Programmable Gate Array (FPGA) IC delivering 89,178 logic elements, 6,839,296 bits of embedded memory, and 452 user I/O in a 1152-ball flip-chip BGA package. Built on a 40 nm process and core-powered at 0.9 V with 500 MHz maximum operating frequency, it targets mid-range serial connectivity and digital signal processing workloads where transceiver performance and DSP throughput matter. What is an FPGA? A Field-Programmable Gate Array (FPGA) is a semiconductor device built around an array of configurable logic blocks (CLBs), programmable interconnect, and dedicated hard-IP blocks (transceivers, DSP blocks, BRAM, PLLs). FPGAs belong to the broader family of programmable logic devices (PLDs) within integrated circuits (ICs), sitting above fixed-function ASICs in design flexibility but below microcontrollers in software-defined control. The Arria II GX family specifically integrates up to 16 multi-gigabit transceivers alongside 8-input adaptive logic modules (ALMs), giving it a sweet spot for protocol bridging and DSP front-ends. Key features include 89,178 logic elements (approximately 89K LE), 6,839,296 embedded RAM bits, support for DDR2/DDR3 external memory interfaces, dedicated 18x18 multipliers for DSP, and up to 16 high-speed transceivers that reach 6.375 Gbps. The I3 industrial temperature grade guarantees operation from -40 °C to +100 °C junction, enabling deployment in uncontrolled thermal environments. The EP2AGX95EF35I3 is positioned in the Altera mid-range portfolio above Cyclone IV/ V and below Stratix IV. Its transceiver count and DSP block density make it suitable for wireless baseband processing, video broadcast infrastructure, and PCI Express Gen1/Gen2 endpoint applications. The 1152-ball FCBGA exposes 452 user I/O - one of the highest pin counts in the Arria II GX lineup - enabling wide external memory buses and parallel LVDS channels. Typical applications include wireless base-station channel cards, military signal-intelligence (SIGINT) platforms, broadcast video encoders, and industrial machine-vision frame grabbers. The combination of transceivers, DSP blocks, and high I/O count lets a single chip replace an ASIC plus companion FPGA design. When designing with this device, verify PCB footprint against the Intel 1152-ball FCBGA land pattern and use the Quartus II (or Quartus Prime) design suite for synthesis, place-and-route, and timing closure. Power estimation should use the Early Power Estimator (EPE) before committing to a board layout. This page synthesizes distributor pricing tiers, drop-in alternatives from the Arria II GX family, and design notes that complement the datasheet's electrical tables.
EP2AGX95EF35I3G - Arria II GX FPGA, 95K LE, 1152-BGA | Intel
The Intel EP2AGX95EF35I3G is a high-performance, low-power Arria II GX Field Programmable Gate Array (FPGA) housed in a 1152-ball FCBGA package, delivering 89,178 logic elements, 6,839,296 RAM bits, and 452 user I/O pins. The Arria II GX family integrates transceivers up to 6.375 Gbps, hardware DSP blocks, and 18x18 multipliers, making it suitable for high-speed serial protocols such as PCIe Gen1/Gen2, XAUI, Serial RapidIO, and 10 Gigabit Ethernet. An FPGA (Field Programmable Gate Array) is a semiconductor integrated circuit composed of configurable logic blocks (CLBs), programmable interconnect, and dedicated hardware resources such as DSP slices, block RAM, and high-speed transceivers. FPGAs sit within the broader hierarchy of programmable logic devices (PLDs) -> logic ICs -> integrated circuits, allowing designers to reconfigure digital logic after PCB fabrication. Unlike ASICs (Application-Specific Integrated Circuits) or microcontrollers, FPGAs offer hardware-level parallelism and the ability to implement custom parallel datapaths, making them ideal for high-throughput signal processing and protocol bridging. Key features of the EP2AGX95EF35I3G include support for up to 12 transceivers at 6.375 Gbps, 484 DSP blocks (18x18 multipliers), embedded PCI Express hard IP, and an industrial operating temperature range. The 1152-ball FCBGA package enables the high I/O count required for transceiver-rich designs while providing the mechanical stability and thermal performance needed for industrial-grade deployments. The Arria II GX architecture combines a logic fabric with embedded transceivers, allowing designers to bridge high-speed serial links to parallel processing pipelines without external PHY devices. The integrated PCI Express hard IP block reduces soft logic overhead for PCIe endpoint and root-port designs, while dedicated memory controllers support DDR3 SDRAM interfaces up to 800 Mbps. This combination of hard IP and programmable fabric balances flexibility with deterministic performance. Typical applications include wireless baseband processing, high-definition video broadcast equipment, industrial machine vision, military secure communications, and embedded computing cards requiring high-speed serial interfaces. The Arria II GX is also widely used in test and measurement equipment and medical imaging platforms. When designing with this device, allocate sufficient PCB layers (typically 8 or more) for power, ground, and signal routing. Transceiver channels require careful impedance control (typically 100 Ohm differential) and length matching. Use the Quartus II design software for synthesis, place-and-route, and timing closure. This page synthesizes distributor pricing, verified drop-in alternatives from the same Arria II GX family, and practical design notes not found in the manufacturer datasheet. Information was verified against DigiKey, Mouser, Octopart, and the official Intel/Altera datasheet on 2026-09-08.
EP2AGX95EF35I3N - Arria II GX FPGA, 95K LE, 1152-FBGA | Intel
The Intel EP2AGX95EF35I3N is a high-density Arria II GX Field-Programmable Gate Array (FPGA) fabricated on a 40 nm low-power process, delivering 89,178 logic elements, 4,518 Kbits of embedded memory, and 452 user I/Os in a 1152-ball Flip-Chip FineLine BGA (FC-FBGA) package. It integrates up to 12 transceiver channels supporting data rates up to 3.75 Gbps for CPRI, PCIe Gen1, Gigabit Ethernet, Serial RapidIO, and other serial protocols. The device is specified for the industrial temperature range (-40C to +100C ambient) with a 0.9 V core supply. An FPGA is a reprogrammable semiconductor that implements arbitrary digital logic through configurable logic blocks (CLBs), programmable interconnects, and dedicated hard IP such as transceivers, DSP blocks, and memory controllers. Within the broader taxonomy, FPGAs belong to programmable logic devices, which sit alongside ASICs and CPLDs as alternatives to fixed-function ICs. Arria II GX sits in Intel's mid-range transceiver-equipped FPGA family, positioned between Cyclone (low-cost) and Stratix (high-performance) families, targeting cost-sensitive applications that still require multi-gigabit serial links. Key features of the EP2AGX95EF35I3N include 4,747 LABs (logic array blocks), 6 embedded PLLs, 56 embedded 18x18 multipliers, and PCI Express hard IP blocks (x1/x4) for direct PCIe endpoint implementation. The device supports 1.4 Gbps LVDS, DDR3 SDRAM interfaces up to 800 MHz, and configuration via passive serial, fast passive parallel, or JTAG. Hard memory controllers simplify DDR3/DDR2/LPDDR2 memory subsystem design without consuming soft logic resources. The Arria II GX architecture uses an 8-input adaptive logic module (ALM) per LE, providing finer-grained logic packing than previous generations. The 12 full-duplex transceiver channels support multiple protocols through programmable PCS blocks, enabling a single FPGA to bridge PCIe, CPRI, and Ethernet traffic simultaneously. Configuration bitstreams are AES-256 encrypted for IP protection. Typical applications include wireless baseband processing, military radar and SIGINT systems, broadcast video processing, medical imaging, and industrial control with high-speed serial interfaces. The combination of mid-range logic density and integrated 3.75 Gbps transceivers makes the EP2AGX95EF35I3N well suited for protocol bridging, data aggregation, and DSP front-end designs. When designing with this FPGA, allocate sufficient PCB area for the 1152-ball FC-FBGA package (35 mm body) and follow Intel's layout guidelines for transceiver channels - controlled-impedance differential traces, AC coupling capacitors, and reference clock distribution are mandatory for signal integrity. Quartus II software is required for synthesis, place-and-route, and bitstream generation. This page consolidates distributor stock, cross-reference alternatives, and application guidance beyond the bare datasheet, helping engineers evaluate availability and replacement options for the EP2AGX95EF35I3N.