EP20K30EFC144-2X - 30K Gate APEX 20K FPGA | Altera
MPN: EP20K30EFC144-2X ✗ End of Life| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $96.88 | $96.88 |
| 10 | $88.5 | $885.00 |
| 100 | $80.25 | $8,025.00 |
| 500 | $72.1 | $36,050.00 |
| 1,000 | $64.95 | $64,950.00 |
| 3,000 | $58.5 | $175,500.00 |
EP20K30EFC144-2X Overview
An FPGA is a field-programmable gate array, a semiconductor device containing configurable logic blocks and programmable interconnects that can be rewired after manufacturing. A CPLD is a related complex programmable logic device that emphasizes predictable timing and product-term macrocells. The APEX 20K family combined both concepts, integrating LUT-based logic elements, product-term macrocells, and embedded memory into one die. In the component taxonomy, this device belongs to programmable logic / FPGA and CPLD / logic integrated circuits / semiconductors.
Key features of the EP20K30EFC144-2X include 144 ball terminals in a square FBGA, 93 usable I/O pins, a 1.8 V core voltage, and 0.22 um fabrication technology. Distribution listings describe the family as a 30K-gate APEX 20K device with 192 macrocells, and the -2X suffix denotes a specific speed/timing option within the device family. The FPGA is loadable, meaning it can be configured in-system after every power-up.
From an architecture standpoint, APEX 20K introduced a multi-core block model in which look-up-table logic coexists with embedded system blocks and high-speed interconnect. This lets the part handle both data-path logic and register-heavy state machines on one component. The internal 1.8 V core reduces dynamic power compared with older 5 V and 3.3 V PLDs, while I/O pins can interface to legacy 3.3 V systems through appropriate I/O banks. The FBGA package provides a compact board footprint on a square ball grid.
Typical uses for this device included telecom line-card control, industrial automation I/O, machine-vision frame capture, test-pattern generation, bus bridging, and general digital glue logic on legacy embedded boards.
Because APEX 20K has been discontinued, designers should treat the EP20K30EFC144-2X as an end-of-life part for legacy maintenance. When layout allows, the same 144-FBGA footprint can accept higher- or lower-speed EP20K30E derivatives, so a board spin can be avoided.
This page provides a curated combination of distributor price trends, stock levels, same-package alternatives, and practical field-proven design notes that are not ordinarily available from a single distributor page.
Drop-in alternatives for EP20K30EFC144-2X — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Variants in this series
Same-series models that are drop-in compatible with EP20K30EFC144-2X (same form factor and footprint) — differing in Operating Temperature, Family, Package, Speed Grade, Series.
Quick Comparison Tool — Select alternative parts for side-by-side comparison:
EP20K30EFC144-2
✅ Drop-In📋 Reference alternative (not in catalog)
EP20K30EFC144-1
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$51.4 / Unit
View Datasheet →EP20K30EFC144-1N
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$125 / Unit
View Datasheet →EP20K30EFC144-3
✅ Drop-In✓ In Stock
$10.4 / Unit
View Datasheet →EP20K30EFI144-2
✅ Drop-In ⚠️ 参数待验证📋 Reference alternative (not in catalog)
EP20K30EFC144-2X Maximum Ratings & Electrical Characteristics
| Device Family | Altera APEX 20K |
| Device Type | Loadable programmable logic device (FPGA/CPLD hybrid) |
| Typical Gates | 30,000 gates |
| Number of Logic Elements / Cells | 1,200 cells (third-party parametric listing) |
| Number of Macrocells | 192 |
| Number of User I/O | 93 |
| Number of Terminals | 144 |
| Terminal Form | Ball |
| Package Code | LBGA / 144-FBGA |
| Package Shape | Square |
| Core Supply Voltage | 1.8 V |
| Process Technology | 0.22 um |
| Speed Grade | -2X |
| Mounting Type | Surface Mount |
| RoHS Status | unknown |
EP20K30EFC144-2X square Pin Configuration Guide
Pin configuration for EP20K30EFC144-2X (square package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.
No detailed pinout data available for EP20K30EFC144-2X.
Refer to the datasheet for full pin configuration.
Typical Applications
EP20K30EFC144-2X is suitable for 6 applications: Legacy Telecom Line-Card Bridging, Industrial PLC I/O and Motor Control, Medical Imaging ADC Interface, Test and Measurement Pattern Generator, Legacy Avionics Bus Interface, Embedded Vision Frame Grabber.
Legacy Telecom Line-Card Bridging
In legacy central-office line cards, the EP20K30EFC144-2X provides medium-density glue logic between T1/E1 framers, backplane buses and host CPUs. Its 93 user I/Os are enough to capture parallel address/data buses and a control handshake, while the 1.8 V core keeps switching power low in densely packed shelves. The 144-ball FBGA footprint fits mezzanine cards that have fixed, already qualified layouts. Because the device is loadable, the same card personality can be changed by reconfiguring the FPGA in the field. For drop-in maintenance, using an EP20K30E speed-grade variant avoids altering the timing-closure database or the PCB netlist. Board-level constraints include supply decoupling on the 1.8 V rail and a configuration source such as an Altera EPC2. With no new silicon available, verified new-old-stock inventory is the practical procurement route.
Industrial PLC I/O and Motor Control
EP20K30EFC144-2X fits compact industrial controllers that need flexible I/O mapping between a microcontroller and isolated optocouplers, relay drivers and incremental encoder interfaces. The 93 user I/O pins let the PLD decode quadrature signals, generate PWM commutation patterns, and latch limit-switch states with deterministic timing. A 1.8 V core allows the logic core to run from the same low-voltage rail family used by the companion MCU, while I/O banks can be adapted to the 3.3 V levels commonly found in PLC backplanes. Because APEX 20K parts are no longer in production, maintenance contracts for factory equipment should carry verified surplus inventory. The speed grade choice matters mainly for encoder and commutation timing; -2X gives more margin than -3, while -1 variants add even more timing headroom.
Medical Imaging ADC Interface
In ultrasound and optical-coherence-tomography front ends, EP20K30EFC144-2X can act as a timing generator and data concentrator between high-speed ADCs and the DSP or FPGA chain. The 1.8 V core reduces heat near sensitive analog circuitry, while 93 configurable I/O are sufficient for several parallel ADC buses plus clock and enable control. The look-up-table logic performs pixel reordering and offset correction without loading the host processor. Programmable macrocells provide the state machines needed for sensor timing. In legacy medical imagers, PCBs were qualified years ago, so a drop-in -2X is preferable to redesign. Engineers should verify that leftover stock meets the instrument operating temperature range and that the configuration PROM file remains compatible. Because this is an EOL semiconductor, dual-source redundant inventory is recommended for field-service spares.
Test and Measurement Pattern Generator
EP20K30EFC144-2X is well suited for bench and ATE pattern generators where deterministic output timing and many digital channels matter. With 93 I/O pins, it can drive digital word generators, protocol analyzers, or memory exercisers while a host FPGA or MCU supplies test vectors. The device embedded system blocks and product-term macrocells implement handshake and trigger logic in parallel with the data path. For legacy instruments, a -2X speed grade is often the exact part used in the original bill of materials; using the same 144-FBGA package means no PCB change or thermal re-qualification. When buying replacement logic, engineers should check configuration compatibility with the existing Quartus or Altera design files. Since the family is obsolete, verified new-old-stock lots with full traceability are recommended.
Legacy Avionics Bus Interface
In older avionics data acquisition units, EP20K30EFC144-2X multiplexes MIL-STD-1553 or ARINC-429 bus controller data onto a host parallel bus. The FPGA/CPLD hybrid architecture allows the state-machine-intensive bus protocol logic to reside in product-term macrocells while LUT logic handles data formatting. The 1.8 V core and 93 I/Os create a single-chip bridge with fewer board-level analog parts. Since avionics maintenance cycles can run decades, many line-replaceable units still require this exact FBGA part. The -2X variant is often selected to match the original qualification; an industrial-temperature derivative must be confirmed before use in expanded-temperature zones. Aerospace buyers should source from distributors who can provide date-code traceability and electrostatic-discharge-safe handling, because no manufacturing remains.
Embedded Vision Frame Grabber
EP20K30EFC144-2X is useful in legacy machine-vision frame grabbers as a sensor interface and line-length FIFO controller. Its LUT logic accepts an 8-bit or 10-bit pixel stream at camera timing rates, performs simple windowing, and sends the data to an external SDRAM controller or PCI bridge. The 93 I/O pins can connect to several CMOS sensor channels. The 1.8 V core keeps dynamic power low on a compact frame-grabber card, and the 144-FBGA package provides high interconnect density. For pixel-clock rates near the device limit, the -2X speed grade gives more timing margin than -3 but less than -1 variants. Since the APEX 20K family is obsolete, legacy system refurbishment should stock verified surplus parts and keep the original configuration bitstream archived.
Engineering reference data for EP20K30EFC144-2X — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | EP20K30EFC144-2 | EP20K30EFC144-1 | EP20K30EFC144-1N | EP20K30EFC144-3 | EP20K30EFI144-2 |
|---|---|---|---|---|---|---|
| Brand | Altera | Altera | Altera | Altera | Altera | Altera |
| Package | 144-FBGA (LBGA) | 144-FBGA | 144-FBGA | 144-FBGA | 144-FBGA | 144-FBGA |
| Terminal Count | 144 | 144 | 144 | 144 | 144 | 144 |
| User I/O Count | 93 | 93 | 93 | 93 | 93 | 93 |
| Core Supply Voltage | 1.8 V | 1.8 V | 1.8 V | 1.8 V | 1.8 V | 1.8 V |
| Process Technology | 0.22 um | 0.22 um | 0.22 um | 0.22 um | 0.22 um | 0.22 um |
| Speed Grade | -2X | -2 | -1 | -1 (lead-free) | -3 | -2 |
| Macrocell Count | 192 | 192 | 192 | 192 | 192 | 192 |
Key Differentiators
- Exact -2X ordering variant for existing timing-closure files (vs EP20K30EFC144-2)
- More timing margin than the -3 speed grade (vs EP20K30EFC144-3)
- Tin-lead-friendly alternative for legacy solder lines (vs EP20K30EFC144-1N)
Design Notes
Separate the 1.8 V core supply from I/O supply planes and place ferrite beads between different I/O bank voltages. Decouple multiple VCC pins with 0.1 uF ceramic capacitors and add a 10 uF bulk capacitor near the VCCINT pins. The exact power-up sequencing requirements for APEX 20K are not guaranteed in distributor snippets, so follow the device family datasheet power-up guidance. In legacy boards that already use this device, do not change the supply ramp order without verifying the supervisory circuit.
Estimated: for a typical 30K-gate APEX 20K design, the 1.8 V core power will be well below 2 W unless all 93 I/O are simultaneously switching. Still, a 144-ball FBGA requires thermal vias and a solid ground plane to keep junction temperature in check. Because the exact theta-JA for this device package was not provided in the distributor data, assume a board-fin dependent value and verify against the original thermal simulation for long-life industrial or avionics service.
Do not assume that another manufacturer 144-ball BGA is pin-compatible with the Altera APEX 20K 144-FBGA. FPGA ball maps are vendor-specific and often not compatible even when the package size looks similar. Use only the same EP20K30E family alternatives listed on this page for true drop-in replacement. Confirm the configuration device type and bitstream format before changing speed grades; a -1, -2X, or -3 variant may require re-running timing closure and re-verifying the configuration file in the original Quartus or Altera tool version.
Compliance Information
No detailed compliance statement was included in the verified distributor snippets. This APEX 20K part is a legacy Altera device, not AEC-Q100 qualified. Confirm RoHS/REACH status with Intel/Altera or the specific distributor lot documentation before compliance-sensitive assembly.