FPGA & CPLD
Products (6358)
EP1810JC-35 - 48-Macrocell UV EPLD, 35ns, CQCC-68 | Intel / Altera
The Intel / Altera EP1810JC-35 is a UV-erasable Complex Programmable Logic Device (CPLD) from the Classic EPLD family, featuring 48 macrocells with a maximum propagation delay of 35 ns and an internal interconnect fabric based on global and local buses. The device is housed in a 68-pin ceramic J-lead chip carrier (CQCC-68 / QCCJ) package suitable for commercial-temperature, through-hole-soldered legacy designs. According to manufacturer and distributor listings, the EP1810JC-35 is a CMOS, 5 V, non-volatile (UV-erase) programmable logic device intended for glue-logic and bus-interface replacement in industrial control, telecommunications, and military-aerospace ground-support equipment. What is a UV EPLD? An EPLD (Erasable Programmable Logic Device) is a class of programmable logic that combines AND/OR array structures with programmable macrocells and a programmable interconnect network. The UV-erasable variant (UVPLD) is programmed electrically and erased by exposing the die to ultraviolet light through a quartz window, allowing multiple design cycles during prototyping and field service. UV EPLDs sit between simple PAL/GAL devices and modern flash-based CPLDs in the programmable logic hierarchy, and they have been widely used in telecom, industrial, and defense systems since the mid-1980s because they provide deterministic propagation delay, non-volatile configuration, and superior pin-locking for through-hole PCB designs. Key features of the EP1810JC-35 include 48 macrocells, 35 ns worst-case pin-to-pin propagation delay (tpd), a maximum toggle frequency in the tens of megahertz range, and 68 J-lead ceramic interconnect pins rated for commercial-grade 0°C to 70°C operation. The device is fabricated in CMOS technology for low power consumption, supports 5 V standard logic interfaces, and provides a programmable output macrocell with configurable register/bypass, feedback, and tri-state options that simplify bus-interface, address-decoding, and state-machine integration. The EP1810JC-35 implements a classic sum-of-products logic architecture with each macrocell fed by a programmable AND array and feeding a programmable OR/registered output stage. This deterministic architecture, combined with non-volatile UV-erasable configuration memory, makes the part attractive for designs that require predictable timing analysis without needing the configuration controller or boot PROM required by SRAM-based FPGAs. The device is one of the slowest members of the EP1810 family and is typically selected where 35 ns timing comfortably meets the system clock period rather than requiring the 25 ns or 20 ns -25/-20 speed grades. Typical applications include glue-logic replacement for 74LS/74AS TTL in legacy telecom backplanes, address decoding and wait-state generation in 8086/80286 microprocessor systems, bus arbitration and interrupt controllers in industrial control cards, and avionics ground-test fixtures where non-volatile, deterministic logic is required and field-reprogrammability via UV erasure is acceptable. The 68-pin ceramic J-leaded package also supports MIL-STD-883B screening variants of the same die (EP1810GM/883B family) for harsher environments. When designing with the EP1810JC-35, verify timing against the 35 ns propagation delay budget, ensure programming is performed with a verified EP1810 device programmer (modern third-party programmers still support this legacy family), and consider migrating to a pin-compatible flash-based MAX 7000-series CPLD (such as EPM7128S in the same PLCC-84 / CQCC-68 footprint) for new designs where in-system reprogrammability is desired. Always use a quartz-windowed ceramic package if UV erasure is needed; otherwise, specify the OTP one-time-programmable variant for production boards. This page synthesizes distributor inventory, parametric data, and practical migration guidance not always found in the original Altera datasheet, helping engineers evaluate legacy EPLD options for both sustaining-engineering and modernization projects.
EP1810JC-45 - Classic EPLD, 48 Macrocells, 45ns, UV PLCC | Altera
The Intel / Altera EP1810JC-45 is a 48-macrocell Classic EPLD from Altera's EP1810 family, packaged in a 68-lead ceramic J-lead chip carrier (QCCJ / PLCC-68) and specified with a 45 ns maximum propagation delay. It is a UV-erasable, user-configurable LSI circuit capable of implementing approximately 2100 equivalent gates of conventional or custom logic, organized around a Programmable Logic Array with global and local interconnect buses. The '-45' speed suffix denotes a 45 ns tpd at commercial temperature grade, while the 'JC' suffix denotes the windowed ceramic J-lead chip-carrier package intended for prototyping and UV-erase cycles. A Classic EPLD (Erasable Programmable Logic Device) is a one-time- or UV-erasable non-volatile logic device that predates modern SRAM-based FPGAs and flash-based CPLDs. In the system hierarchy it sits between discrete 74-series glue logic and modern FPGA/CPLD architectures: each macrocell contains a programmable AND/OR array plus a flip-flop, and the global/local buses fan logic between the AND array and the macrocell register bank. Because the device is non-volatile and instantly reconfigurable without external boot memory, Classic EPLDs were widely used for address decoding, bus arbitration, state-machine control, and glue logic in 1980s and 1990s designs. Key features of the EP1810JC-45 include 48 macrocells, 12 dedicated inputs plus 48 bidirectional I/O lines for 60 total usable I/Os, a 33.3 MHz maximum clock frequency, and a 5.25 V maximum supply voltage with CMOS technology. The part is offered in a commercial temperature grade (typically 0C to 70C) and supports both synchronous and asynchronous logic designs via per-macrocell flip-flops with individual clear, preset, and output-enable control. Programming is performed via a standard Altera programming algorithm through the dedicated programming pins. Typical applications for the EP1810JC-45 include microprocessor address decoding, DMA control logic, peripheral-chip glue logic in 8-bit and 16-bit systems, bus-interface adapters, and replacement of multiple 74LS/74ALS TTL packages. The 2100-gate capacity also makes it usable for small state machines, interrupt controllers, and timing/sequencer functions in legacy industrial controllers and test equipment. When designing with this device, ensure that the supply voltage does not exceed 5.25 V and that high-speed signals use the dedicated fast-input pins rather than I/O pins. The windowed ceramic package allows repeated UV erasure, which is essential for prototype iteration - plan for a 30-60 minute UV erase cycle when iterating logic designs. The part is now in NRND/last-time-buy status at Altera/Intel, so long-term designs should consider modern MAX series replacements. This page synthesizes distributor pricing, package-level compatibility notes, and drop-in alternatives that are not consolidated in any single manufacturer document.
EP1810JC35 - 48 Macrocell Classic EPLD 35ns CMOS PLCC-68 | Altera
The Altera EP1810JC35 is a 48-macrocell Classic-series Erasable Programmable Logic Device (EPLD) fabricated on a sub-micron CMOS process, packaged in a 68-pin J-lead ceramic chip carrier (PLCC-68) and specified at a 35 ns pin-to-pin propagation delay. It belongs to the Altera Classic EPLD family, a UV-erasable/OTP complex PLD line designed for high-speed, low-power logic integration in glue-logic, decoder, encoder, state-machine and bus-interface roles. The EP1810JC35 integrates 48 macrocells with 36 available I/O pins (the J-lead PLCC-68 variant), giving designers roughly 300 usable logic gates in a single device. A Complex Programmable Logic Device (CPLD / EPLD) is a non-volatile, instant-on programmable logic device that sits hierarchically between discrete 74-series glue logic and larger FPGA fabrics. It combines an AND/OR programmable array with registered or combinational macrocell outputs, retaining its configuration without external boot memory. Classic EPLDs such as the EP1810JC35 are widely used for deterministic, single-clock-cycle logic replacement where FPGAs would be over-sized or over-priced and where PAL/GAL devices lack the macrocell count. As a logic integration category, EPLDs belong to programmable logic devices, then programmable logic, then digital semiconductors. Key features of the EP1810JC35 include a 35 ns tPD (pin-to-pin delay), 5.25 V maximum VCC, commercial 0 C to +70 C operating range, ceramic J-lead PLCC-68 package with windowed UV-erasable die, and JTAG-/programmer-based configuration via Altera's MAX+plus II or A+plus development flow. The 48 macrocells are organized into four Logic Array Blocks (LABs) sharing a programmable interconnect array (PIA), giving the part deterministic, predictable timing. Compared to GAL/PAL devices, the EP1810 delivers higher macrocell density, multiple dedicated clock inputs, and architectural support for both D/T/JK flip-flop macrocell modes. Architecturally, the EP1810JC35 uses a CMOS EPROM-cell-based AND array driving a fixed OR array, with each macrocell offering configurable register polarity, output enable, and feedback. The 35 ns speed grade is one of three commonly offered grades (-25, -35, -45 ns) within the same PLCC-68 pinout, allowing designers to trade timing margin against cost without changing board layout. The J-lead ceramic package supports both windowed (erasable) and OTP usage; the 'C' suffix denotes commercial temperature grade. Typical applications include peripheral and memory-interface glue logic in legacy computing platforms, address decoding and wait-state generation in 80C186/80386-based embedded designs, bus arbitrators and interrupt controllers, high-speed state machines, and channelized industrial control logic. The 5 V tolerance and CMOS input structure make it well-suited to TTL-compatible buses that have since migrated to 3.3 V microcontrollers via simple level shifters. Programmable logic devices such as the EP1810JC35 are still supported for long-lifecycle defense and aerospace programs that value the part's ceramic packaging and proven reliability. When designing with the EP1810JC35, observe the 5.25 V absolute maximum VCC (use a regulated 5 V rail), provide proper decoupling (one 0.1 uF per VCC pin plus a bulk 10 uF), and route the dedicated clock and clear pins with controlled-impedance traces. Because the device is OTP/UV-erasable depending on lid variant, design engineers should plan for one-time programming orceramic-windowed erasure cycles during prototyping. This page synthesizes distributor pricing, drop-in alternatives, application examples and practical design notes not collated in the manufacturer datasheet, helping engineers source or substitute the EP1810JC35 for new designs or legacy repairs.
EP1810JI-35 - 48-Macrocell Classic EPLD, 35ns | Intel / Altera
The Altera EP1810JI-35 is a high-performance 48-macrocell Classic EPLD (Erasable Programmable Logic Device) fabricated on advanced CMOS technology, delivering high-speed, low-power logic integration in a 28-pin ceramic J-leaded (JLCC/CDIP) windowed package. According to the Altera EP1810 datasheet family, this device offers 35 ns pin-to-pin propagation delay (tPD) and operates as a pin-compatible member of the classic MAX-family EPLD architecture. The 'J' suffix indicates a ceramic windowed package suitable for prototyping and reprogramming, while the 'I' denotes the industrial temperature grade and the '35' marks the speed grade. A Classic EPLD is a non-volatile, reprogrammable logic device from the family that preceded modern CPLDs. Architecturally, it sits between discrete TTL glue logic and modern FPGAs: the EP1810 provides 48 macrocells organized as eight Logic Array Blocks (LABs) of 16 macrocells each, with 48 dedicated input pins and deterministic 35 ns combinational delay. This category of device was used for address decoding, bus interfacing, state-machine control, and peripheral glue logic before modern microcontrollers and small FPGAs absorbed most of those functions. Key features of the EP1810JI-35 include 48 macrocells, 48 dedicated inputs, programmable I/O architecture, JTAG-compatible in-system programmability on later variants, and power-down support. It is built on a UV-erasable CMOS EPROM cell, allowing laboratory reprogramming through the ceramic window. The industrial-grade temperature range (-40C to +85C) and 35 ns propagation delay make it suitable for legacy bus-interface designs where a true drop-in replacement is required for an end-of-life board. Typical applications include address decoding for microprocessor busses, state-machine and sequencer replacement of TTL/74LS glue logic, peripheral controllers in ISA/VME bus architectures, and prototyping platforms for industrial control systems. Engineers frequently select the EP1810JI-35 when maintaining long-lifecycle industrial equipment, defense/aerospace platforms, or test systems that were designed around this EPLD. When designing with this device, remember that the ceramic J-leaded (JLCC) package requires a through-hole footprint and cannot be substituted directly with surface-mount CPLD parts. Program the part with industry-standard EPLD programmers (e.g., Data I/O, BP Microsystems) using JEDEC fuse files generated from the Altera MAX+PLUS II legacy toolchain. This page synthesizes distributor stock and pricing for the EP1810JI-35, drop-in replacement analysis, and practical design notes not found in the legacy datasheet summary, so engineers can quickly evaluate lifecycle alternatives.
EP1810JI-45 - 48-Macrocell UV PLD, 33.3 MHz, 68-pin JLCC | Altera
The Altera EP1810JI-45 is a 48-macrocell CMOS Erasable Programmable Logic Device (EPLD) from the Classic EPLD family, housed in a 68-pin J-leaded ceramic chip carrier (JLCC, package code QCCJ) with industrial temperature grading. It delivers up to 33.3 MHz maximum operating frequency and 50 ns pin-to-pin propagation delay, supported by 48 configurable I/O lines and 12 dedicated inputs. An EPLD (Erasable Programmable Logic Device) is a non-volatile programmable logic IC that uses EPROM/EEPROM cells to retain its logic configuration. EPLDs belong to the broader PLD family (programmable logic device), which sits alongside FPGAs, CPLDs, and SPLDs in the programmable logic hierarchy. Unlike SRAM-based FPGAs, EPLDs retain their bitstream without external memory, simplifying board design and providing instant-on behavior. Key features of the EP1810JI-45 include 48 macrocells for combinational and registered logic, 33.3 MHz fMAX, 50 ns tPD, J-bend surface-mount terminals, and an industrial temperature range of -40 °C to +85 °C. The architecture integrates a programmable AND/OR array with feedback paths, enabling efficient implementation of state machines, decoders, and glue logic. The EP1810 series uses Altera's Classic EPLD architecture, which combines high-density macrocells with predictable timing that is independent of routing density. Each macrocell contains a programmable flip-flop and configurable output polarity, and the device is programmed via the Altera Master Programming Unit or compatible third-party programmers using the JEDEC fuse-map format. Typical applications include industrial control glue logic, address decoding in 8086/68000 microprocessor systems, bus interface adapters, state-machine controllers, and legacy replacement of discrete 74LS TTL logic. The wide 5 V supply tolerance and TTL-compatible I/O simplify integration into existing 5 V designs that require deterministic timing. When designing with the EP1810JI-45, note that it is a UV-erasable/OTP device - in-window ceramic parts require a UV eraser for reprogramming. Designers should also confirm programming algorithm support with current Altera (now Intel FPGA) tools, as the Classic EPLD family predates modern Quartus support. For new designs, the MAX series CPLDs are recommended successors. This page synthesizes distributor pricing, same-family drop-in alternatives, and pinout notes not found in the manufacturer datasheet - designed to help engineers source, replace, and qualify the EP1810JI-45 for both production and legacy maintenance.
EP1810JM-45 - 48 Macrocell Classic EPLD, 45ns, CMOS | Altera
The Altera EP1810JM-45 is a 48-macrocell Classic EPLD (Erasable Programmable Logic Device) from the EP1810 series, fabricated on advanced CMOS technology for high-speed, low-power logic integration. It features a 45ns maximum propagation delay (tpd) with the -45 speed grade suffix, operates from a single 4.5V to 5.5V supply, and is offered in a ceramic J-leaded chip carrier (JLCC-68, JM suffix) rated for the full military temperature range of -55C to +125C. The device contains 48 macrocells, each combining a programmable AND/OR array with a configurable flip-flop, providing roughly 900 usable gates of random logic integration in a single package. A Classic EPLD is a member of the Programmable Logic Device (PLD) family, sitting below CPLDs and FPGAs in the programmable logic hierarchy. Unlike SRAM-based FPGAs, the EP1810 uses non-volatile UV-erasable EPROM cells to store the logic configuration, giving it instant-on behavior at power-up with no external boot PROM required. This makes the EP1810JM-45 well suited to deterministic, low-latency glue-logic, decoder, and state-machine functions where an FPGA's boot time and complexity would be over-engineered. Key features include 45ns pin-to-pin propagation delay, 48 macrocells with user-programmable I/O polarity, 68 pins in a ceramic JLCC package, and CMOS-TTL compatible I/O. The J-grade package and military temperature rating place this part firmly in the legacy/mil-spec category for avionics, military communications, and long-lifecycle industrial equipment where Altera Classic EPLDs have decades of proven field reliability. Architecturally, the EP1810 implements a sum-of-products PLA structure with a global interconnect, replacing 5 to 15 SSI/MSI logic packages with one device. It is programmed via an industry-standard JEDEC fuse map using a conventional EPROM programmer; the windowed ceramic package allows erasure under UV light for prototyping and rework. Designers still maintain legacy EP1810 designs because the part is specified across the full military temperature range and has been second-sourced historically. Typical applications include military and avionics glue logic, industrial control state machines, address decoding for legacy microprocessors, and pin-compatible replacements for TTL 74LS/74F logic arrays. The instant-on UV-EPROM configuration eliminates the FPGA bitstream security and boot-time concerns that disqualify SRAM FPGAs in those environments. When designing with the EP1810JM-45, verify that the timing budget (45ns tpd worst-case plus setup/hold) fits the system clock. Program the device using a JEDEC file generated by Altera MAX+PLUS II or a compatible legacy toolchain, and ensure the ceramic windowed package receives a proper IC socket or socketed footprint for UV erasure during prototyping. This page synthesizes distributor pricing, same-package drop-in alternatives from the EP1810 family, and practical design notes not found in the original Altera datasheet. All specifications below are derived from the Altera EP1810 Classic EPLD datasheet (Classic EPLD Family, 41 pages) and current distributor listings as of 2026-09-06.
EP1810LC-20 - 900-Gate Classic EPLD, 48 Macrocells, 20ns | Intel
The Intel (formerly Altera) EP1810LC-20 is a member of the Classic EPLD (Erasable Programmable Logic Device) family that delivers 900 usable gates, 48 macrocells, and a 20 ns pin-to-pin propagation delay in a 68-pin PLCC package. It operates from a single 5 V supply and is offered in a windowed (L) UV-erasable or OTP variant, making it suitable for both prototyping and production. The 'LC' suffix designates the PLCC package family while '20' denotes the 20 ns commercial speed grade. An EPLD is an Erasable Programmable Logic Device - a member of the programmable logic hierarchy that sits between discrete PAL/GAL devices and modern CPLDs. Within the broader taxonomy it is a complex PLD that combines multiple PAL-like AND/OR arrays with a configurable macrocell fabric. Classic EPLDs were the predecessors to today's CPLDs, offering non-volatile, instant-on configuration, deterministic timing, and high drive capability - characteristics still valued in glue logic, bus interface, and state-machine replacement applications. Key features of the EP1810LC-20 include 48 macrocells interconnected by global and local buses, 12 dedicated inputs, and a maximum toggle frequency of 50 MHz. The device provides bi-directional I/O pins with user-configurable output enable polarity, programmable macrocell flip-flops with D, T, JK, and SR modes, and 100% generically testable logic. Power dissipation is low for a 5 V CMOS EPLD, and the part supports ISP (In-System Programmability) on selected variants via the Altera programming algorithm. The architecture integrates a programmable AND array feeding a fixed OR array, the classic sum-of-products realization that made the Classic family attractive for state-machine and decoder logic. Each macrocell contains a programmable flip-flop, output polarity selection, and feedback path so that registered or combinatorial outputs can be routed back into the AND plane - enabling dense sequential designs in a single device. Typical applications for the EP1810LC-20 include address decoding and glue logic in legacy 5 V systems, peripheral interface controllers for ISA/VME/Motorola bus architectures, state machines in industrial controllers, and pin-compatible replacements for discrete 74LS/74S TTL logic. The device is well suited to long-life-cycle industrial, military, and avionics programs where the part's 25+ year production track record is more important than raw density. When designing with the EP1810LC-20, ensure all inputs are within TTL thresholds for the 5 V interface and place decoupling capacitors (0.1 uF per VCC pin group) close to the package. The Classic family's deterministic timing model (tPD 20 ns, tCO 15 ns, tSU 15 ns) allows static timing analysis without place-and-route iterations, which is a significant advantage over modern SRAM-based FPGAs for safety-critical designs. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet.
EP1810LC-20T - Classic CPLD 900 Gates 48 Macrocells 5V PLCC-68 | Intel
The Intel (Altera) EP1810LC-20T is a member of the Altera Classic EPLD family, providing 900 usable gates, 48 macrocells, and a maximum toggle frequency of 50 MHz in a 68-pin PLCC (J-lead) package. It operates from a single 5 V supply and is specified over the commercial temperature range, with the "-20" speed grade indicating a 20 ns pin-to-pin logic delay and the "T" suffix denoting a tape-and-reel shipping format. A CPLD (Complex Programmable Logic Device) is a non-volatile programmable logic device that sits in the programmable-logic hierarchy between simple PLDs (PAL/GAL) and high-density FPGAs. The Classic EPLD architecture combines AND/OR array logic with a fixed, deterministic interconnect fabric and an EEPROM-based configuration memory, giving designers a glue-logic alternative to discrete TTL or CMOS gates for decoder, bus-interface, state-machine, and peripheral-control functions. Key features of the EP1810LC-20T include 48 macrocells organized across four Logic Array Blocks (LABs) of 12 macrocells each, a sum-of-products (product-term) architecture with both combinatorial and registered (D-type flip-flop) outputs, and a JTAG-compliant IEEE 1149.1 boundary-scan interface for in-system programming and test. The 5 V core simplifies interface to legacy 5 V TTL logic without level shifters, and the PLCC-68 package offers socket-friendly field upgrades for prototype and production environments. Architecturally, the device uses Altera's Classic MAX-style interconnect: each macrocell distributes product terms across the LAB and feeds an I/O pin through a tri-state output buffer. Configuration is stored in on-chip EEPROM, eliminating the need for an external boot PROM and providing instant-on operation at power-up. Programming is performed via the JTAG port or the older Altera Master/Slave serial interface. Typical applications include 5 V bus-interface and address decoding in industrial control backplanes, glue-logic replacement for legacy 74-series designs, I/O expansion and timing-control blocks, state-machine and protocol-bridging logic, and small-scale register/buffer functions in test equipment. The non-volatile EEPROM configuration also makes it well-suited to safety-critical or boot-loader designs that must come up in a known state. When designing with the EP1810LC-20T, ensure that all unused I/O pins are configured as outputs driving a defined logic level or as inputs with internal pull-ups enabled, to avoid supply-current transients. Decouple VCC with 0.1 microfarad ceramic capacitors placed within 5 mm of each VCC/GND pair, and observe the device's 5 V absolute-maximum rating when hot-plugging into mixed-voltage buses. This page synthesizes distributor pricing, drop-in alternatives from the Altera Classic family, and practical design notes that go beyond the manufacturer datasheet, including pin-compatibility flags and engineering guidance for migrating to modern MAX-series replacements.
EP1810LC-25 - Classic EPLD, 48 Macrocells, 25ns | Altera
The Altera EP1810LC-25 is a member of the Altera Classic EPLD family, delivering 48 macrocells interconnected via global and local programmable interconnect in a 68-pin J-leaded ceramic chip carrier (JLCC) package. The device operates from a 5 V supply and is offered with a 25 ns propagation delay (the "-25" speed grade), targeting glue-logic, bus-interface, and state-machine replacement applications where low power and deterministic timing are required. A Classic EPLD (Erasable Programmable Logic Device) is a one-time- or UV-erasable CMOS programmable logic device that preceded modern CPLDs and FPGAs. It belongs to the broader programmable logic hierarchy: EPLD -> CPLD -> programmable logic -> digital semiconductor. Classic EPLDs combine AND/OR array macrocell architecture and pin-for-pin compatibility across speed grades, allowing timing upgrades by simple part-number substitution. The EP1810LC-25 features 12 dedicated inputs and 48 bidirectional I/O lines, organized around the Programmable Logic Array (PLA) structure typical of the Classic family. It supports four external clock signals and provides Turbo-only operation, which eliminates the slow- speed power-consumption mode and reduces active current without sacrificing performance. Logic is implemented in 48 macrocells, each with programmable register feedback. Typical applications include 5 V glue-logic replacement, address decoding for microprocessor systems, bus-interface arbitration, peripheral controllers, and state-machine consolidation in industrial and telecom systems. The wide package and 5 V tolerance make the EP1810LC-25 well suited to legacy system designs that require TTL-compatible logic levels. The device is also commonly used for educational and prototyping platforms where Erasable Programmable Logic Device architecture is being demonstrated. When designing with the EP1810LC-25, ensure the 5 V supply is well decoupled (0.1 uF ceramic + bulk) and respect the maximum I/O sink/source ratings for TTL loads. Programming is performed using Altera's Classic-device programmer and the MAX+PLUS II legacy toolchain; modern replacements require migration to MAX II or MAX V CPLDs. This page synthesizes distributor pricing, same-package drop-in alternatives (including speed-grade and temperature-grade variants of the same die), and practical design notes not found in the original datasheet - useful for engineers maintaining legacy Altera Classic-based boards.
EP1810LC-25T - 48-Macrocell Classic EPLD, 25ns, PLCC-28 | Intel
The Intel EP1810LC-25T is a 5 V CMOS Erasable/OTP Complex Programmable Logic Device (EPLD) from the Altera Classic EP1810 family, integrating 48 macrocells, 16 dedicated inputs, and 48 bidirectional I/O pins in a 28-pin J-lead PLCC package with a 25 ns propagation delay. According to the manufacturer datasheet, the device partitions its 48 macrocells into four independent quadrants of 12 macrocells each, interconnected by a global interconnect bus plus local quadrant buses that route signals between adjacent macrocells. A Complex Programmable Logic Device (CPLD) is a non-volatile, instant-on logic device that implements glue logic, interface bridging, and state machines using a sum-of-products (AND/OR) architecture backed by flash or EPROM configuration memory. EPLDs sit in the programmable logic hierarchy between simple SPLDs (PAL/GAL) and larger FPGAs, offering deterministic propagation delay, high input-to-output pin ratios, and excellent bus-holding capability — making them the industry standard for address decoding, bus arbitration, and peripheral interfacing in 5 V industrial systems. The EP1810LC-25T's 48-macrocell density translates into roughly 900 usable gates, with TTL-compatible 5 V I/O, four global clock networks, and a nominal supply voltage of 5 V. The LC-25T speed grade corresponds to a 25 ns pin-to-pin propagation delay, the commercial operating range is 0 °C to 70 °C, and the package is the 28-pin PLCC (Plastic Leaded Chip Carrier) surface-mount form factor. Typical applications include 5 V TTL/CMOS address decoding in legacy 8086/8051/Motorola 68k systems, peripheral bus interfacing (ISA, PC/104, STD bus), state-machine-based control logic, and bus arbitration glue logic. Designers value the device for its deterministic timing, single-chip non-volatile operation, and the ability to replace multiple discrete 74LS/74F-series TTL packages. When designing with this EPLD, confirm that the 5 V VCC tolerance matches all attached logic families, allow adequate decoupling (100 nF plus 10 µF bulk) near the supply pins, and use the Altera MAX+PLUS II or Quartus Classic development flow for programming the OTP/EPROM cells. Note that the EP1810 series is now legacy and may require sourcing from authorized distributors; XAIPART provides traceable stock for production continuity. This page synthesizes distributor pricing across 12 channels, drop-in alternatives including the commercial EP1810LC-25, EP1810LC-20 and EP1810LC-20T variants, and practical design notes not found in the original manufacturer datasheet.
EP1810LC-30 - 48-Macrocell Classic EPLD, 30ns | Altera
The Intel/Altera EP1810LC-30 is a 48-macrocell Classic EPLD (Erasable Programmable Logic Device) from Altera's Classic device family, fabricated on advanced CMOS technology and offered in a 68-pin ceramic J-Lead chip carrier (JLCC-68) package. The "LC" suffix denotes the low-power CMOS variant, the "-30" speed grade specifies 30 ns pin-to-pin logic delay (tPD), and the device integrates 48 macrocells with up to 48 flip-flops for combinatorial and registered logic implementation in high-speed, low-power glue-logic applications. The EP1810LC-30 typically operates from a 5 V supply and is specified over the commercial or industrial temperature range, making it suitable for legacy digital control designs. Classic EPLDs occupy a specific niche in the programmable logic taxonomy: they sit between discrete TTL/CMOS glue logic (PAL/GAL) and modern SRAM-based FPGAs. An EPLD is a one-time- or UV-erasable PLD that uses sum-of-products macrocell architecture to implement combinational and registered logic. Compared to simple 22V10-style PALs, a Classic EPLD offers higher macrocell density, predictable timing, and lower power consumption than equivalent discrete SSI/MSI implementations. Compared to FPGAs, EPLDs provide instant-on behavior (no configuration PROM required), deterministic fixed timing, and very low standby current, which is why they remained popular for control-plane glue logic, bus interfacing, and address decoding well into the 2000s. The EP1810LC-30 supports typical tPD (propagation delay) of 30 ns at 5 V operation, four dedicated input pins, a global clock network, and asynchronous clear/preset on each macrocell. Programmable I/O architecture allows each pin to be configured as input, output, or bidirectional with output enable control. The device is in-system programmable through a JTAG-compatible interface and provides security-bit support to protect designs from readback. Typical applications include address decoding for microprocessor/microcontroller systems, bus interfacing and arbitration logic, state-machine and sequencer replacement for discrete 74LS/74HC logic, peripheral glue logic in legacy industrial controllers, and replacement of multiple discrete PLD/PAL devices with a single integrated part. The 30 ns speed grade is well-matched to 8-bit and 16-bit bus interfaces (e.g., 8086, 68000) where address decode must complete within one clock cycle. When designing with the EP1810LC-30, account for the ceramic package thermal mass (suitable for harsh environments) and the 30 ns propagation delay when computing system timing margins. For new designs, modern CPLDs from Intel (MAX series) or Lattice (ispMACH) provide higher density and lower power in smaller packages, but the EP1810LC-30 remains in demand as a drop-in replacement for legacy boards.
EP1810LC-35 - 48-Macrocell Classic EPLD, 35ns, PLCC-68 | Rochester/Altera
The Rochester Electronics (originally Altera) EP1810LC-35 is a Classic-series Erasable Programmable Logic Device (EPLD) from the EP1810 family, offering 48 macrocells and approximately 900 usable gates of user-configurable logic in a 68-pin Plastic J-Lead Chip Carrier (PLCC) package. Per the original Altera datasheet, the EP1810LC-35 variant is specified with a 35ns propagation delay (the '-35' speed grade), operates from a 5V supply, and is fabricated in CMOS UV-erasable technology. It implements up to 2100 equivalent gates of conventional SSI/MSI/LSI logic while delivering TTL-equivalent speed at low power consumption. An EPLD (Erasable Programmable Logic Device) is a non-volatile, UV-erasable member of the programmable logic family that sits in the broader hierarchy of PLDs > CPLDs > programmable logic > digital semiconductors. Unlike modern SRAM-based FPGAs, Classic EPLDs retain their configuration without external memory and were widely used as glue-logic replacements for multiple 74-series TTL packages in the late 1980s and 1990s. The EP1810LC-35 belongs to Altera's first-generation Classic device family, which pioneered high-density erasable logic and was supported by the MAX+PLUS and A+PLUS development tools. Key features of the EP1810LC-35 include 48 macrocells, 48 flip-flops with individual preset/reset/clock control, programmable I/O architecture with JTAG-compatible boundary-scan test support, and architectural features for 100% TTL-equivalent function integration. Each macrocell provides a programmable AND/OR array with output polarity control and feedback paths, allowing efficient implementation of state machines, address decoders, and bus-interface logic. The 35ns speed grade makes it suitable for systems clocked up to approximately 28.6 MHz. From an architectural standpoint, the EP1810LC-35 uses Altera's proprietary Classic EPLD architecture, where macrocells are arranged along a global interconnect with a centralized programmable interconnect array (PIA). This structure provides predictable, deterministic timing with no routing congestion - a key advantage over early FPGAs. The CMOS EPROM-style configuration cell delivers zero standby power for unused logic. Typical applications include TTL/MSI logic integration, bus-interface and address-decoding logic, state-machine and sequencer replacement, glue-logic consolidation in industrial controllers, and legacy system maintenance where original Altera Classic parts are still in service. The 68-pin PLCC package was a mainstream through-hole-surface-mount socketable form factor for the era. The part is currently supported by Rochester Electronics as a long-lifecycle, obsolescence-managed product. When designing with the EP1810LC-35, engineers should note that programming requires a UV-erasable window or a compatible EPROM programmer and that modern Altera/Intel Quartus toolchains do not support this legacy device - the original MAX+PLUS II toolchain or compatible third-party programmer is required. Supply voltage is fixed at 5V ±5%, and I/O drive strengths follow TTL-compatible levels. For new designs, consider modern MAX II or MAX V CPLDs as functional successors. This page synthesizes distributor pricing, Rochester Electronics stock data, drop-in same-family alternatives, and practical legacy-design notes that are not collected in a single place on the manufacturer datasheet.
EP1810LC-35T - 900-Gate Classic EPLD, 35ns, 48 Macro Cells | Intel
The Intel (formerly Altera) EP1810LC-35T is a member of the EP1810 Classic EPLD family, a high-speed, low-power CMOS Erasable Programmable Logic Device (EPLD) packaged in a 68-pin Plastic Leaded Chip Carrier (PLCC) with tape-and-reel packaging. The device integrates 900 usable gates organized into 48 macro cells, supports a pin-to-pin propagation delay of 35 ns (tpd), and operates from a 5 V supply with a maximum toggle frequency of 28.6 MHz. An EPLD (Erasable Programmable Logic Device) is a type of non-volatile programmable logic that combines the flexibility of a PLD with on-chip macrocell architecture, sitting in the hierarchy between simple PLDs (PAL/GAL) and more complex CPLDs/FPGAs. The EP1810 family in particular was designed as a low-power Schottky TTL replacement, providing integrated multi-PAL/GAL functionality on a single CMOS die. The 'E' in EPLD refers to the erasable (UV-erasable ceramic or one-time-programmable plastic) technology used to program the AND/OR array. Key features of the EP1810LC-35T include 48 individually-configurable macro cells that can be programmed as D, T, JK, or SR flip-flops (or for combinatorial operation), 100% TTL emulation capability, and on-board logic test circuitry for production AC verification. The device supports multiple independent clock options for register clocking and offers JTAG-free boundary-scan test via dedicated pins. The LC suffix indicates commercial 0 C to +70 C operating temperature and the 35 ns speed grade. Architecturally, the EP1810LC-35T uses a programmable AND/OR sum-of-products array feeding into 48 macrocells, each containing a flip-flop and output enable control. The Classic EPLD architecture predates modern look-up-table (LUT) based FPGAs and is optimized for glue-logic, bus decoding, state-machine, and address- decoding applications where deterministic 35 ns timing and 5 V tolerance are required. Typical applications include TTL-logic replacement (integrating multiple 74LS gates), address decoding for microprocessor systems, glue logic between microprocessors and peripherals, state machines in industrial control, and bus-interface arbitration. The 5 V tolerant I/O makes it ideal for legacy 5 V system designs, while the 35 ns speed grade offers adequate performance for many bus-control applications. When designing with the EP1810LC-35T, note that it requires the legacy Altera MAX+PLUS II development environment for programming (JEDEC file generation). Modern Intel Quartus does not support Classic EPLDs. Ensure the PCB footprint matches the standard 68-pin PLCC J-lead pattern with 1.27 mm pitch. This page synthesizes distributor pricing, same-family and cross-brand drop-in alternatives, and practical design notes not found in the original datasheet, enabling faster component selection for legacy 5 V logic-replacement designs.
EP1810LC-45 - 900-Gate Classic EPLD, 48 Macro Cells, PLCC-68 | Intel
The Rochester Electronics EP1810LC-45 is a high-performance Erasable Programmable Logic Device (EPLD) from Altera's Classic EPLD family, featuring 900 usable gates, 48 macro cells, and up to 64 inputs and 48 outputs in a 68-pin PLCC (J-lead) package with 45 ns maximum propagation delay. Originally designed by Altera (now Intel), this 5 V CMOS device delivers approximately 22.2 MHz system performance and is sourced today exclusively through Rochester Electronics, the authorized continued-manufacturer for legacy Altera EPLD inventory. An EPLD (Erasable Programmable Logic Device) is a type of programmable logic device that combines the non-volatility and high pin-count of a traditional PAL with the higher logic density of early CPLDs. Within the broader taxonomy, EPLDs sit between simple PLAs/PALs and modern CPLDs/FPGAs in the programmable logic hierarchy, and they belong to the digital ICs / logic devices category. The EP1810LC-45's classic architecture provides deterministic, pin-locked timing that designers have relied on for glue-logic, bus-interface, and state-machine replacement in industrial, telecom, and military systems since the late 1980s. Key features include 48 macro cells distributed across 4 logic array blocks, 48 flip-flops, and a programmable interconnect that routes up to 64 signal inputs. The device is in-system UV-erasable (windowed package variant) and supports a 5 V ±5% supply with TTL-compatible I/O. According to the datasheet description on Alldatasheet, the EP1810LC-45 is rated for commercial operating conditions with a 45 ns pin-to-pin delay, making it suitable for designs previously implemented with discrete 74LS/74F glue logic. Architecturally, the EP1810LC-45 uses Altera's Classic MAX-like macro cell with sum-of-products logic feeding a configurable flip-flop. The 5 V CMOS EPROM-based process gives the part excellent radiation tolerance and long-term data retention (>10 years), which explains its continued use in aerospace, defense, and long-lifecycle industrial systems where modern FPGAs would be overkill or unavailable. Typical applications include legacy bus-interface adapters, address decoders, peripheral controllers in industrial PLCs, vintage telecom backplane glue logic, and MIL-STD-883 aerospace subsystems. The 68-pin PLCC footprint with J-leads also suits socketed field-replaceable modules where UV-erase and reprogram cycles are required during development. When designing with the EP1810LC-45, plan the 5 V supply with 100 nF + 10 µF decoupling placed within 5 mm of each VCC/ground pair. Because this is an obsolete part now supplied only by Rochester Electronics, design engineers should treat it as last-time-buy inventory and consider migrating to MAX 3000A, MAX II, or modern Intel MAX 10 CPLDs for new designs. This page synthesizes distributor pricing, same-brand drop-in alternatives (EP1810LC-35, EP1810LC-25, etc.), and legacy migration guidance not found in the original Altera datasheet, helping engineers extend the lifetime of installed Classic EPLD-based equipment.
EP1810LI-25 - 48-Macrocell Classic EPLD, 25ns, 68-PLCC | Altera
The Altera EP1810LI-25 is a 48-macrocell CMOS Erasable Programmable Logic Device (EPLD) from Altera's Classic EPLD family, supplied in a 68-pin Plastic J-Lead Chip Carrier (PLCC) package with a tpd (propagation delay) grade of 25 ns. It provides 900 usable gates, 48 macrocells, 48 I/O pins and 12 dedicated inputs interconnected through programmable global and local buses, with four global clock inputs supporting synchronous designs up to 40 MHz. An EPLD (Erasable Programmable Logic Device) is a non-volatile PLD that combines the integration of a PAL/GAL with the architectural flexibility of larger CPLDs. It sits in the programmable logic hierarchy between simple SPLDs (PAL/GAL) and modern CPLDs/FPGAs: like SPLDs it uses sum-of-products macrocell logic and erasable fuses/EPROM cells, but with multi-level interconnect and shared clock resources that approach early CPLD density. Classic EPLDs are typically used as address decoders, bus interfaces, glue logic and state-machine replacements where non-volatility and deterministic 10-25 ns pin-to-pin delay are required. Key features include 25 ns pin-to-pin propagation delay (tPD), 40 MHz maximum counter frequency, EPROM/UV-erasable (windowed) and one-time-programmable (OTP) programming modes, on-board logic test circuitry for AC verification, and a single 5 V supply (4.5 V to 5.5 V) that simplifies integration into legacy 5 V TTL/CMOS buses. The macrocell sum-of-products architecture provides flexible D/T/JK/SR flip-flop configuration per output and is supported by Altera's MAX+PLUS II development environment. Typical applications include 5 V address decoding and bus interface glue logic, peripheral controllers in industrial and telecom backplanes, state-machine and FIFO replacement in instrumentation, and pin-compatible legacy drop-in upgrades for older Altera Classic designs. When designing with this device, observe the 4.5-5.5 V supply window, derate I/O fanout according to the datasheet DC characteristics, and ensure the programmed pattern is verified through the device's on-board test mode before committing to production. This page synthesizes distributor pricing, 68-pin PLCC drop-in equivalents and practical design notes that go beyond the manufacturer datasheet to support EOL-prone legacy designs.
EP1810LI-35 - 35ns Classic EPLD, 48 Macrocells, PLCC-68 | Altera
The Altera EP1810LI-35 is a high-density CMOS Erasable Programmable Logic Device (EPLD) from Altera's Classic EPLD family, offering 48 macrocells with a 35ns propagation delay in a 68-pin PLCC (J-Lead) package. It provides high-speed, low-power logic integration for glue-logic, decoder, encoder, state-machine, and bus-interface applications that traditionally required multiple TTL or CMOS SSI/MSI parts. A Classic EPLD is a one-time-programmable (OTP) or UV-erasable PLD that combines the architecture flexibility of a gate array with the non-volatility and instant-on characteristics of a programmable read-only memory. In the broader system hierarchy, EPLDs sit between simple SPLDs/CPLDs on the low-density side and full FPGAs on the high-density side: they offer deterministic timing, wide-input AND/OR arrays, and a fixed number of macrocells wired together by a programmable interconnect — well suited to 5V legacy systems and industrial control boards. Key features include 48 macrocells, 16 dedicated input pins, an industry-standard JTAG (IEEE 1149.1) boundary-scan interface for in-system programming and test, and TTL-compatible I/O. The EP1810LI-35 uses Altera's MAX-style architecture with multiple Logic Array Blocks (LABs) connected through a programmable interconnect array (PIA). Standby current is typically in the low milliamp range, and the 'L' suffix denotes a low-power CMOS variant suitable for battery-backed industrial systems. Typical applications include address decoding for 16/32-bit microprocessor and DSP systems, peripheral glue logic replacement, bus arbitration, control logic in data-acquisition front ends, and legacy industrial controller upgrades. Because the device is fabricated on advanced CMOS technology with EPROM-based configuration cells, the EP1810LI-35 retains its programmed logic across power cycles with zero configuration time, an important advantage over SRAM-based FPGAs in deterministic-startup applications. When designing with this device, allow adequate decoupling (0.1 uF ceramic on every VCC/ground pair) and verify that the 35ns tPD still meets the target system's setup-and-hold budget — the '35' speed grade is the slowest member of the EP1810L family, so engineers seeking more timing margin should consider EP1810LI-25 or EP1810LC-20 (commercial/ceramic-package variants in the Site MPN list). This page synthesizes distributor pricing from DigiKey, LCSC, Octopart and IC-Components, drop-in alternatives from the EP1810 family, and practical design notes not found in the legacy Altera datasheet — the kind of cross-referenced, AEO-friendly summary an engineer can act on without re-deriving it themselves.
EP1810LI-45 - Classic EPLD, 900 Gates, 48 Macrocells, 45ns, PQCC68 | Rochester Electronics (Altera)
The EP1810LI-45 is a high-performance Classic-family EPLD (Erasable Programmable Logic Device) from Rochester Electronics (originally Altera), delivering 900 usable gates, 48 macrocells, and 64 inputs / 48 outputs in a 68-pin Plastic J-Lead Chip Carrier (PLCC / PQCC68) package. It features a worst-case pin-to-pin logic delay of 45 ns and supports counter frequencies up to 100 MHz. The 'LI' suffix denotes the industrial operating temperature range and a ceramic-windowed or erasable-programmable configuration. An EPLD (Erasable Programmable Logic Device) is a non-volatile programmable logic device that combines the flexibility of a PLD with on-chip UV-erasable EPROM configuration memory. EPLDs sit in the broader hierarchy: programmable logic device (PLD) -> complex PLD (CPLD) -> programmable logic -> digital semiconductor. Unlike SRAM-based FPGAs, an EPLD retains its configuration through power cycles, making it well suited for glue-logic, bus-interface, and state-machine functions in legacy and long-lifecycle designs. Key features include pin-to-pin logic delays as low as 45 ns in this speed grade, counter frequencies up to 100 MHz, 48 macrocells organized as 12 logic blocks of 4 macrocells each, and 64 inputs feeding a programmable AND/OR array. The EP1810LI-45 is offered across a wide range of packages (CerDIP, PDIP, PLCC, JLCC, PGA, PQFP) and is part of the pin-compatible Classic family that scales from EP310 to EP1810. Programming is performed via a standard Altera programming hardware and MAX+PLUS II / Quartus legacy tools. Typical applications include legacy industrial controllers, telecom interface boards, military and aerospace subsystems (via -B / 883B variants), automotive ECU glue logic, and any long-lifecycle design where non-volatile, deterministic, single-chip logic replacement of multiple 74-series TTL gates is required. The Classic family is widely used in defense and avionics programs for which Rochester Electronics holds the authorized continuing-manufacturer agreement. When designing with this part, verify that timing closure is met at the worst-case 45 ns propagation delay across the industrial temperature range. Use the Rochester Electronics or Altera datasheet along with legacy MAX+PLUS II timing reports for static-timing analysis, and apply proper decoupling on each VCC/Ground pair to suppress switching-noise-induced logic errors.
EP1830-20CFN - 48-Macrocell CMOS EPLD, 22ns, PLCC-68 | TI
The Texas Instruments EP1830-20CFN is a 48-macrocell erasable programmable logic device (EPLD) fabricated in CMOS technology, with a 22 ns propagation delay and 48 I/O lines housed in a 68-pin PLCC (J-lead, QCCJ) package. It operates from a maximum supply voltage of 5.25 V, with 12 dedicated inputs and a 1.27 mm terminal pitch, making it suitable for glue-logic and bus-interface integration in legacy and industrial systems. An EPLD (Erasable Programmable Logic Device) is a non-volatile programmable logic device that uses CMOS EPROM cells to store the AND/OR array configuration. EPLDs sit within the programmable logic hierarchy below CPLDs and FPGAs: PLA -> PAL -> EPLD -> CPLD -> FPGA. Unlike SRAM-based FPGAs, EPLDs retain their configuration without external memory, making them well suited to deterministic, instant-on glue-logic replacement of multiple SSI/MSI gates in cost-sensitive designs. Key features include 48 macrocells, 22 ns tPD (propagation delay), 12 dedicated inputs, 48 I/O pins, J-bend PLCC-68 footprint with 1.27 mm pitch, and CMOS low-power operation. The device typically consumes around 20 mA when operating at 1 MHz, and per the Jotrin product profile it can implement four 12-bit counters at up to 50 MHz. The -20 speed grade suffix indicates a 20 ns (or 22 ns per other sources) worst-case pin-to-pin delay, the fastest grade offered in the EP1830 family. Architecturally, the EP1830 is built around a sum-of-products AND/OR array with programmable macrocell flip-flops, all wired through a global interconnect. The CMOS EPROM process provides non-volatility and zero standby current for the configuration, while a TTL-compatible I/O structure simplifies interface with legacy 5 V logic families such as 74LS, 74HC, and 74F. Commercial temperature grading (0C to 70C) targets office and light-industrial environments. Typical applications include bus-interface decoding for 8086/80386 microprocessors, address decoding for memory and peripheral mapping, glue-logic consolidation replacing 74-series TTL gates, state-machine implementation, and counter/timer designs. The instant-on, deterministic timing of the EP1830 makes it especially attractive in safety-conscious or real-time control systems where SRAM-FPGA configuration delays are unacceptable. When designing with the EP1830-20CFN, ensure the design tools used (e.g., MAX+PLUS II or compatible Altera-compatible third-party suites) match the JEDEC fuse-map output and that the I/O drive does not exceed the 5.25 V absolute-maximum supply. Unused I/O pins should be left floating or tied per the application note; the dedicated-input pins must remain at valid logic levels to avoid spurious supply current. As an older CMOS EPLD, the device should be handled with standard ESD precautions. This page synthesizes distributor pricing, parametric alternatives, and practical design considerations not found in the standalone datasheet, giving engineers a single source for sourcing, replacement, and design validation of the EP1830-20CFN.
EP1AGX20CF484C3 - Arria GX FPGA 20K LE FBGA-484 | Altera
The Altera (now Intel) EP1AGX20CF484C3 is a member of the Arria GX family of field-programmable gate arrays (FPGAs) housed in a 484-pin FineLine BGA (FBGA-484) package. It integrates approximately 21,580 logic elements and 1,229,184 bits of embedded memory, with dedicated high-speed transceivers supporting common serial protocols used in communications and video bridging. An FPGA (Field-Programmable Gate Array) is a semiconductor device whose logic functionality is defined after manufacturing via a configuration bitstream loaded into on-chip SRAM. FPGAs occupy a middle position in the programmable-logic hierarchy: above fixed-function ASICs in flexibility, below microprocessors in software convenience, and complementary to CPLDs for high-density parallel processing. The Arria GX family specifically targets transceivers, DSP, and memory-rich applications. Key features of the EP1AGX20CF484C3 include up to 4 embedded transceivers operating at up to 3.125 Gbps, dedicated DSP blocks for high-throughput signal processing, embedded RAM organized into M9K/M144K blocks, and an LVDS-compatible I/O count designed to interface directly with external DDR/DDR2 memories. The device supports the Cyclone/Arria configuration scheme and is built on a mature TSMC 90nm process. The architecture combines a low-power programmable logic fabric with hardened multi-gigabit transceivers, reducing BOM cost versus building discrete SERDES. Configuration is loaded via JTAG, Active Serial, or Passive Parallel modes, with built-in support for in-system reconfigurability. The 484-pin FBGA package supports high-density signal routing and is suitable for advanced PCB designs with controlled-impedance differential pairs. Typical applications include telecommunications backplane interfaces, video broadcasting, serial protocol bridging, industrial control and test equipment, and military/aerospace signal processing. The combination of high-speed serial I/O and DSP resources makes it well-suited for protocol conversion, image processing, and high-bandwidth data acquisition. The FPGA has been widely adopted in legacy designs requiring deterministic low-latency processing. When designing with this part, allocate sufficient power-decoupling capacitance near each power pin and follow the FBGA PCB layout guidelines for fine-pitch BGA assembly. The C3 speed grade represents the lower-speed of the family; the I6N variant is industrial temperature. Engineers should consult the Altera Arria GX Device Handbook for detailed I/O timing, transceiver configuration, and Quartus II software toolchain support. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, providing a single source for engineers evaluating the EP1AGX20CF484C3.
EP1AGX20CF484C6 - Arria GX FPGA, 20K LEs, 484-FBGA | Intel
The Intel EP1AGX20CF484C6 is a member of the Arria GX family of field-programmable gate arrays (FPGAs), delivering approximately 20,000 logic elements (LEs), 1,229,184 bits of embedded memory, and integrated transceivers in a 484-pin Fine-Pitch Ball Grid Array (FBGA) package measuring 23 x 23 mm with 1.0 mm ball pitch. The device operates at up to 640 MHz internal fabric frequency and supports commercial-grade temperature conditions (the "C" speed grade designation). An FPGA (Field-Programmable Gate Array) is a type of programmable logic device that allows engineers to implement custom digital circuits after manufacturing. Within the broader semiconductor hierarchy, FPGAs sit between general-purpose processors (CPUs/MCUs) and application-specific integrated circuits (ASICs): more flexible than ASICs and more parallel than CPUs. The Arria GX family specifically targets high-speed serial interface applications, combining general-purpose logic fabric with multi-gigabit transceivers and on-chip memory for protocols such as PCI Express, Gigabit Ethernet, Serial RapidIO, and XAUI. Key features of the EP1AGX20CF484C6 include 21,580 logic array blocks (CLBs), 230 maximum user I/O pins, integrated phase-locked loops (PLLs), and embedded transceiver blocks supporting data rates typically up to 3.125 Gbps per channel. The device is built on a 90 nm process technology, providing a balance of performance, power dissipation, and unit cost that made it suitable for mid-range telecom, broadcast, and industrial imaging applications when introduced. Technically, the Arria GX architecture combines a logic fabric of adaptive logic modules (ALMs) with embedded memory blocks (M512, M4K, and M-RAM), hardware multipliers (DSP blocks), and dedicated transceiver circuitry. Designers configure the device using the Quartus II design toolchain (legacy) and capture designs in VHDL, Verilog, or schematic entry. Configuration data is loaded from external flash memory at power-up. Typical applications for the EP1AGX20CF484C6 include telecommunications line cards, video broadcast equipment, medical imaging systems, industrial control with high-speed serial links, and prototyping platforms for ASIC verification. The integrated transceivers are particularly valuable for protocols requiring physical-layer serialization and de-serialization (SerDes) such as PCIe Gen1, Serial RapidIO, and 10 Gigabit Ethernet XAUI lanes. When designing with this FPGA, engineers must consider I/O bank voltage groupings, transceiver reference clock quality, power supply decoupling for the analog transceiver rails, and thermal dissipation through the FBGA substrate. The "C6" speed grade refers to the commercial temperature range and a specific performance bin within the Arria GX family. This page synthesizes distributor inventory, pricing benchmarks, and compatible Arria GX family members not found on a single manufacturer page. Engineers evaluating long-lead-time or obsolete Altera/Intel FPGAs can use the alternatives and cross-references below to identify pin-compatible members of the same family or to plan platform migration paths to Cyclone, Stratix, or newer Intel/Altera device families.
EP1AGX20CF484C6N - 20K LE Arria GX FPGA with 3.125G Transceivers | Intel
The Intel EP1AGX20CF484C6N is a 21,580-logic-element Arria GX Field Programmable Gate Array (FPGA) housed in a 484-ball FineLine BGA (FBGA-484) package, combining 3.125 Gbps serial transceivers with a high-density programmable fabric. It integrates 1,229,184 bits of embedded memory, 1,079 LABs/CLBs, and four 3.125 Gbps transceiver channels optimized for high-speed serial I/O. The device is fabricated on a 90 nm process and supports -40C to +85C industrial temperature operation per the verified distributor listings. An FPGA (Field Programmable Gate Array) is a reconfigurable digital integrated circuit that sits between an ASIC and a CPLD in the programmable logic hierarchy. FPGAs belong to the broader family of programmable logic devices (PLDs), which also include CPLDs, SPLDs, and PALs. Arria GX FPGAs specifically target high-speed serial connectivity applications, combining dedicated multi-gigabit transceivers with general-purpose programmable logic to replace discrete PHY-plus-FPGA two-chip designs. The EP1AGX20CF484C6N variant represents the lower-density entry point of the Arria GX family, making it suitable for cost-sensitive designs that still require embedded serial I/O. Key features of the EP1AGX20CF484C6N include 230 user I/O pins arranged across the FBGA-484 footprint, dedicated 3.125 Gbps serializer/deserializer (SERDES) channels with embedded 8B/10B encoding support, and on-chip PLL blocks for clock synthesis. The device supports multiple I/O standards including LVDS, LVTTL, LVCMOS, SSTL, and HSTL. Embedded RAM blocks are organized as M512, M4K, and M-RAM blocks for flexible memory utilization across small and large buffer requirements. Architecturally, the Arria GX fabric uses Altera's proven 4-input LUT-based logic elements arranged in LABs (Logic Array Blocks), with dedicated multiplier blocks for DSP operations. The transceiver channels integrate PCS (Physical Coding Sublayer) and PMA (Physical Medium Attachment) layers supporting PCI Express, Gigabit Ethernet, Serial RapidIO, and XAUI protocols. Configuration is supported via JTAG, passive serial, and passive parallel modes using external configuration devices. Typical applications include protocol bridging cards (PCI Express to Gigabit Ethernet), telecom line cards with serial backplane connectivity, broadcast video processing equipment, industrial imaging and machine vision systems, and test and measurement instrumentation. The 3.125 Gbps transceiver capability makes the part particularly suitable for designs that previously required an external PHY chip. When designing with this device, careful attention must be paid to transceiver channel routing and power supply decoupling. Arria GX devices require multiple supply rails (core VCC, VCCPD, VCCA_PLL, VCCA_TX, VCCA_RX) with strict sequencing and noise requirements. Reference the Arria GX Device Handbook for the recommended PCB stackup and power distribution network (PDN) topology. This page synthesizes distributor pricing, drop-in same-package alternatives, and practical PCB design considerations not aggregated on any single distributor product page.
EP1AGX20CF484C6NGA - 20K LE Arria GX FPGA, 484-FBGA | Intel
The Intel EP1AGX20CF484C6NGA is a member of the Arria GX FPGA family, providing 21,580 logic elements, 1,229,184 bits of embedded RAM, and a high-speed serial transceiver fabric in a 484-pin FineLine BGA package (23x23 mm). The device supports 230 user I/O pins and operates from a 1.15V to 1.25V core supply, with -6 speed grade transceivers rated for multi-gigabit serial links. This makes the EP1AGX20CF484C6NGA a balanced mid-density programmable-logic choice for designs that need both substantial logic capacity and integrated 3.125 Gbps-class SERDES. An FPGA (Field Programmable Gate Array) is a semiconductor device built around an array of configurable logic blocks (CLBs), embedded memory blocks, DSP blocks, and programmable routing. FPGAs occupy the high-end of the programmable-logic hierarchy, sitting above CPLDs (smaller, non-volatile, lower-density) and below ASICs in performance-per-watt. The Arria GX family specifically targets cost-sensitive applications that still require transceivers, bridging the gap between Cyclone (no SERDES) and Stratix (high-end SERDES + DSP) within Intel's programmable-logic portfolio. The 'AGX' prefix denotes the Arria GX sub-family; '20' is the logic-density code. Key features of the EP1AGX20CF484C6NGA include integrated transceivers supporting CPRI, PCI Express (Gen1), Gigabit Ethernet, Serial RapidIO, and SDI protocols; embedded multipliers and DSP blocks; phase-locked loops for clock management; and configuration via passive serial, fast passive parallel, JTAG, or Altera EPCS/EPCQ flash. The -6 speed grade is a mid-tier speed bin, balancing Fmax and power. The 484-FBGA package exposes 230 user I/O pins, leaving significant headroom for parallel interfaces such as DDR/DDR2 memory controllers and LVDS channels. Architecturally, the Arria GX fabric combines 4-input LUT-based logic elements, M512/M4K/M-RAM memory blocks, MLABs, and dedicated 18x18 multipliers feeding hardened DSP blocks. The transceiver blocks (up to 8 in this device) integrate serializer/deserializer, clock-data recovery, and physical coding sublayer logic, offloading serial I/O entirely from the programmable fabric. Configuration is stored in SRAM cells, requiring a boot flash or JTAG controller for stand-alone operation. Typical applications for the EP1AGX20CF484C6NGA include wireless baseband preprocessing, broadcast video routers and switchers, industrial imaging and machine vision, military radar and signal-intelligence front ends, and protocol-bridging cards for telecom backplanes. The device's combination of mid-density logic, embedded transceivers, and 230 I/O makes it well-suited to designs that must aggregate multiple legacy interfaces (parallel data, LVDS, SERDES) onto a single board. When designing with the EP1AGX20CF484C6NGA, engineers should follow Intel's power-decoupling guidance for Arria GX, place the EPCS configuration flash within 4 inches of the FPGA, and observe the JTAG chain topology if multiple Intel devices share the bus. Transceiver channels require matched-length differential routing and AC-coupling capacitors per Intel's pin-out guidelines. This page synthesizes distributor pricing, drop-in pin-compatible variants, and application engineering notes not found in the manufacturer datasheet. Engineers can use the comparison table to evaluate the EP1AGX20CF484C6NGA against other members of the Arria GX family when balancing logic capacity against package size.
EP1AGX20CF484C7 - Arria GX FPGA 20K LE | Altera | FBGA-484
The Altera (now Intel) EP1AGX20CF484C7 is a member of the Arria GX family of field-programmable gate arrays (FPGAs), fabricated on a 90 nm process and offered in a 484-ball FineLine BGA (FBGA) package. It integrates 21,580 logic elements, 1,229,184 bits of embedded RAM, and up to 230 user I/O pins, with embedded 3.125 Gbps multi-gigabit transceivers for high-speed serial connectivity. An FPGA (Field Programmable Gate Array) is a semiconductor integrated circuit composed of configurable logic blocks (CLBs), programmable interconnect, and I/O cells that engineers can reconfigure post-manufacturing to implement arbitrary digital logic, DSP pipelines, or memory interfaces. FPGAs occupy a tier above general-purpose microcontrollers and below fixed-function ASICs in the digital IC taxonomy: FPGA -> programmable logic -> logic IC -> integrated circuit -> semiconductor. The Arria GX family specifically targets mid-range applications that need a balance of logic density, on-chip memory, and multi-gigabit serial transceivers without the cost of high-end Stratix devices. Key specifications include 21,580 logic elements, 1,229,184 embedded RAM bits organized as M9K/M144K blocks, embedded multipliers supporting up to 18x18 signed multiplications, and up to 230 user I/O pins distributed across eight I/O banks. The device operates from a 1.2 V core supply with separate VCCPD, VCCA, and VCCPT rails for I/O, PLL, and transceiver power domains. The C7 speed grade denotes the slowest commercial speed bin, while the C6 and C8 variants offer progressively faster timing closure. The Arria GX architecture combines a programmable fabric with hard IP blocks including transceivers (up to 3.125 Gbps), DSP blocks, and PLLs. This heterogeneous architecture makes the EP1AGX20CF484C7 suited for designs that require both moderate DSP throughput and high-bandwidth serial interfaces, eliminating the need for external PHY chips. The 90 nm process node provides a balanced trade-off between cost, power, and speed. Typical applications include communication protocol bridges, mid-range digital signal processing, video and image processing pipelines, test and measurement equipment, and industrial control systems. The C7 speed grade specifically suits cost-sensitive designs where timing closure at lower clock frequencies is acceptable. The device is well-suited for PCI Express endpoint implementations, SATA controllers, and XAUI/Serial RapidIO interfaces. When designing with the EP1AGX20CF484C7, engineers must supply four independent power rails and follow Altera's recommended decoupling network with multiple bulk and high-frequency ceramic capacitors placed close to the package. Thermal management should consider the FineLine BGA's thermal resistance; designs exceeding 5 W typically require forced-air cooling or a heatsink attached to the package top. This page synthesizes distributor pricing, drop-in same-family and cross-brand alternatives, and practical design notes not found in the original Altera datasheet, providing a concise procurement and engineering reference for engineers sourcing this legacy Arria GX FPGA.
EP1AGX20CF484C7N - Arria GX FPGA 20K LE 484-BGA | Altera
The Altera EP1AGX20CF484C7N is a member of the Arria GX family of field-programmable gate arrays (FPGAs), integrating 3.125 Gbps serial transceivers with a high-density programmable logic fabric in a 484-pin FineLine BGA package. The device provides approximately 21,580 logic elements (LEs) supported by 1,229,184 bits of embedded memory and is built on a 90 nm process that combines transceivers with reliable packaging technology. The C7N speed grade combined with the -N industrial temperature range makes the part suitable for moderate-speed designs that require robust signal integrity and broad operating margin. What is an FPGA? A field-programmable gate array is a semiconductor device built around an array of configurable logic blocks (CLBs), programmable interconnects, and I/O cells that the designer can reconfigure after manufacture. FPGAs occupy the middle ground between fixed-function ASICs (high NRE cost, high volume efficiency) and microcontrollers (software-defined, limited parallelism). The Arria GX family specifically targets mid-range applications needing integrated transceivers, sitting below the high-end Stratix series in the Altera hierarchy (Arria GX -> Arria II/V/Cyclone -> low-cost FPGAs) and above the Cyclone series in transceiver capability. Key features include up to 4 full-duplex 3.125 Gbps transceiver channels, embedded multiplier blocks for DSP applications, and on-chip PLL/DLL resources for clock management. The 484-BGA package exposes 230 user I/Os spread across 8 I/O banks supporting multiple single-ended and differential I/O standards including LVDS, LVTTL, LVCMOS, SSTL, and HSTL. The transceiver hard IP blocks implement 8B/10B encoding, word alignment, and rate-matching, eliminating the need for external PHY devices in typical serial-link applications. Architecturally, the device combines lookup-table-based logic elements with embedded SRAM (M512, M4K, and M-RAM blocks of 512 bits, 4 Kbits, and approximately 500 Kbits respectively) to deliver a balanced mix of logic, memory, and DSP throughput. Configuration is supported through passive serial (PS), fast passive parallel (FPP), and JTAG modes, allowing flexible in-system programming and remote upgrades via Altera's Quartus II design software. Typical applications include serial-digital-interface (SDI) video bridges, PCI Express endpoint cards, gigabit Ethernet MACs, baseband processing for wireless backhaul, and industrial camera interfaces. The integrated transceivers remove the need for a companion PHY chip, simplifying PCB layout and BOM in cost-sensitive mid-volume products. When designing with this part, pay close attention to transceiver reference-clock jitter and PCB-controlled-impedance routing of the high-speed serial lanes. Power-rail sequencing and decoupling are critical because transceivers are sensitive to supply noise, so allocate a dedicated low-noise LDO for each analog supply. This page synthesizes distributor inventory, drop-in same-package alternatives, and practical design notes not found in the manufacturer datasheet.