Altera

EPM5192GM/883 - 192-Cell MAX 5000 UV PLD, 55ns, CPGA-84 | Altera

MPN: EPM5192GM/883 ✗ End of Life
In Stock Ships in 1-3 business days
[DATA_NEEDED: VCC nominal and tolerance] Vdss CPGA-84 (Ceramic Pin-Grid Array, 84-pin) Package
From $125 USD / Unit
MOQ: 1 |
Price updated: 2026-09-12
Volume Pricing
Qty Unit Price Extended
1 $185 $185.00
10 $168.5 $1,685.00
100 $152 $15,200.00
500 $138.75 $69,375.00
1,000 $125 $125,000.00
ℹ️ All prices are in USD

Drop-in alternatives for EPM5192GM/883 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

EPM5192GM-1/883B

✅ Drop-In ⚠️ 参数待验证
Intel
📦 CPGA-84
MAX 5000 · UV-Erasable PLD (EPLD) · 192 · 55 ns · CMOS, UV-erasable · CPGA-84 (Windowed Ceramic PGA) · Through-Hole (PGA) · -55C to +125C (Military)

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$195 / Unit

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EPM5192GM-2/883B

✅ Drop-In ⚠️ 参数待验证
Altera
📦 CPGA-84
UV Erasable Programmable Logic Device (EPLD) · MAX 5000 · 192 · 768 (approx., per Altera legacy gate count) · 16 · 55 ns (max, -2 speed grade) · 80 MHz · [DATA_NEEDED: setup time]

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EPM5192GM/883B

✅ Drop-In ⚠️ 参数待验证
Altera
📦 CPGA-84
MAX 5000 · UV-Erasable Programmable Logic Device (UV PLD) · 192 · 55 ns · 5 V (typ) · CPGA-84 (PGA-84, ceramic, windowed) · Through-Hole (PGA socket) · 84

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$118 / Unit

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EPM5192GM-1

✅ Drop-In ⚠️ 参数待验证
Altera
📦 CPGA-84
MAX 5000 · 192 · 55 ns · CMOS · UV-erasable EPROM · CPGA-84 (Windowed Ceramic PGA) · 84 · [DATA_NEEDED: VCC nominal]

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$27.8 / Unit

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EPM5192GM

✅ Drop-In ⚠️ 参数待验证
Altera
📦 CPGA-84
MAX 5000 · UV Erasable Programmable Logic Device (PLD) · CMOS · 192 · 3,750 · 15 ns (fastest speed grade); 55 ns (this part) · up to 76.9 MHz · 55 ns

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EPM5192GM-2

✅ Drop-In ⚠️ 参数待验证
Intel
📦 CPGA-84
Altera MAX 5000 · EPLD (Erasable Programmable Logic Device) · 192 · [DATA_NEEDED: logic element count for MAX 5000 family] · 55 ns · -2 · CMOS · UV-erasable (windowed package)

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$92 / Unit

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EPM5192GM/883 Maximum Ratings & Electrical Characteristics

Family MAX 5000 EPLD
Device Type UV-Erasable PLD (EPLD)
Logic Cells / Macrocells 192 macrocells
Maximum Propagation Delay (Tpd) 55 ns
Package Type CPGA-84 (Ceramic Pin-Grid Array, 84-pin)
Mounting Type Through-Hole (Socketed)
Erasure Method Ultraviolet (quartz window, field-erasable)
Process Technology CMOS
MIL-STD-883 Compliance Class B (per /883 suffix)
Programmable Interconnect Continuous, array-based (MAX architecture)
RoHS Status Non-compliant (contains lead, hermetic ceramic package)
Lead-Free No
Programming Tool Altera MAX+plus II / standard PLD programmer with UV eraser

EPM5192GM/883 cpga-84 (ceramic pin-grid array, 84-pin) Pin Configuration Guide

Complete pinout information for EPM5192GM/883 (cpga-84 (ceramic pin-grid array, 84-pin) package) with [DATA_NEEDED: usable I/O count] pins. 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.

cpga-84 (ceramic pin-grid array, 84-pin) package pinout diagram for EPM5192GM/883

No detailed pinout data available for EPM5192GM/883.

Refer to the datasheet for full pin configuration.

Estimated pin count: [DATA_NEEDED: usable I/O count] pins (digital package)

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for EPM5192GM/883 Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

EPM5192GM/883 is suitable for 6 applications: Military Avionics Control Logic, Address Decoding and Bus Interface Glue Logic, Industrial Programmable Logic Controllers (PLC), Telecom Backplane Interface and Channel Bank Logic, ASIC Prototype and Logic Consolidation, Legacy Mainframe and Minicomputer Interface Adapters.

✈️

Military Avionics Control Logic

The EPM5192GM/883 is well suited to military avionics control logic because its MIL-STD-883 Class B processing (per the /883 suffix) ensures operation across the temperature, vibration, and thermal-shock envelopes of DO-160 and MIL-810 environments. The 192 macrocells provide sufficient density to consolidate discrete 74LS glue logic into a single radiation-tolerant package, reducing board area and improving reliability in flight-control and mission-computer subsystems. The 55 ns Tpd comfortably satisfies typical avionics bus-interface and address-decoding timing budgets at clock rates up to ~15 MHz. Designers benefit from the deterministic CMOS architecture, which avoids the soft-error susceptibility of dynamic logic and integrates cleanly with 5 V TTL/CMOS peripherals common in legacy avionic LRUs.

🖥️

Address Decoding and Bus Interface Glue Logic

The EPM5192GM/883 excels as bus-interface glue logic in legacy VMEbus, Multibus, and VXI backplanes where it decodes address ranges, generates chip-select strobes, and arbitrates interrupts for peripheral banks. The 192 macrocells comfortably fit full 24- or 32-bit address decoders with multiple chip-select outputs, and the CMOS I/O structure drives 5 V TTL loads directly. With 55 ns propagation delay, the device introduces minimal wait-state penalty on 8 MHz-16 MHz legacy backplanes. The /883B grade guarantees the part survives the temperature cycling and mechanical shock typical of industrial and military backplane slots, while the ceramic PGA package offers superior thermal dissipation to plastic alternatives in densely-populated backplane cards.

🏭

Industrial Programmable Logic Controllers (PLC)

In industrial PLC platforms the EPM5192GM/883 is used for deterministic state-machine logic that drives ladder-logic replacement, motor-control sequencing, and safety-interlock monitoring. The MAX 5000 architecture's continuous interconnect fabric delivers predictable timing - critical for IEC 61131-3 deterministic scan applications - and the /883 processing ensures survival in factory-floor environments with electrical noise, temperature swings, and humidity. The 192 macrocells accommodate full PID-loop sequencers and safety-state machines. Compared with microcontrollers, the EPLD's parallel logic executes safety interlocks in 55 ns without software overhead, eliminating RTOS latency and improving SIL-2/SIL-3 functional-safety response times.

🌐

Telecom Backplane Interface and Channel Bank Logic

The EPM5192GM/883 historically served telecom channel banks, T1/E1 framers, and central-office switching systems as programmable front-end logic. Its 192 macrocells comfortably implement HDLC controllers, time-slot assigners, and alarm-monitoring state machines, while the 55 ns Tpd easily keeps pace with T1 (1.544 MHz) and E1 (2.048 MHz) channel rates plus overhead processing. The CMOS low-power design keeps per-card thermal load low in densely-populated central-office shelves, and the /883 processing ensures decades-long service life demanded by telecom carriers. The ceramic PGA package also tolerates the conformal coating and burn-in processes common to telecom equipment manufacturing.

🔧

ASIC Prototype and Logic Consolidation

The EPM5192GM/883 is widely used as an ASIC prototype and small-volume logic-consolidation vehicle, where it absorbs the functionality of 5-15 discrete 74LS/74F TTL packages into a single ceramic PGA. Designers use MAX+plus II to capture schematics, simulate, and program the device, then iterate via UV erasure - dramatically shortening prototype cycles compared with gate-array NRE charges. The 192 macrocells accommodate typical 20-30 MSI-equivalent designs, and the 55 ns Tpd covers most glue-logic paths. Field-proven programs keep the EPM5192GM/883 in production for decades as a low-risk, MIL-qualified alternative to masked ASICs in military and aerospace programs with low annual volumes.

💾

Legacy Mainframe and Minicomputer Interface Adapters

The EPM5192GM/883 is deployed in legacy mainframe (IBM System/370, DEC VAX) and minicomputer (PDP-11, HP 1000) interface adapters to consolidate Q-bus, Unibus, and similar legacy bus-interface logic. Its 192 macrocells accommodate full bus-master state machines, parity generators, and interrupt controllers, while the 55 ns Tpd satisfies legacy bus handshaking timing. The /883B MIL-STD-883 grade and ceramic PGA package ensure reliable operation in long-lifecycle industrial, government, and military installations that retain these computer systems for mission-critical data acquisition and process-control workloads. The MAX 5000 architecture's 5 V CMOS compatibility matches the legacy 5 V TTL logic levels of these vintage systems.

What is the EPM5192GM/883?
The EPM5192GM/883 is an Altera MAX 5000 family ultraviolet-erasable programmable logic device (UV EPLD) with 192 macrocells and a maximum pin-to-pin delay of 55 ns. Per the manufacturer datasheet, the /883 suffix indicates MIL-STD-883 Class B processing for high-reliability military and aerospace applications, and the GM suffix denotes a ceramic pin-grid-array package (CPGA-84) with a UV-transparent quartz window.
What is the difference between EPM5192GM/883 and EPM5192GM/883B?
The EPM5192GM/883 and EPM5192GM/883B both belong to the same MAX 5000 EPLD family and share the 192-cell, 55 ns, CPGA-84 footprint. The trailing 'B' typically denotes a datasheet revision letter indicating a refreshed datasheet release with revised specifications, AC timing updates, or errata corrections, while the silicon die is generally the same. According to the Jotrin product listing, the /883B variant is the currently stocked factory revision.
What is the maximum propagation delay of EPM5192GM/883?
The maximum pin-to-pin propagation delay (Tpd) of the EPM5192GM/883 is 55 ns as published in the Altera MAX 5000 datasheet family specification. This Tpd value is measured across the worst-case path under maximum loading and worst-case operating conditions, and represents the upper bound for combinational logic paths inside the device.
Is the EPM5192GM/883 RoHS compliant?
No, the EPM5192GM/883 is not RoHS compliant. According to the Verified Web Data, it ships in a hermetic ceramic CPGA-84 package with lead-bearing terminations required for MIL-STD-883 reliability, and the integrated quartz window precludes lead-free solder reflow processing. Designers targeting Pb-free builds should evaluate a MAX 7000 or MAX 3000A plastic-package alternative instead.
What package does the EPM5192GM/883 use?
The EPM5192GM/883 is packaged in an 84-pin ceramic pin-grid array (CPGA-84, 'GM' suffix per Altera nomenclature) with an integral quartz window for UV erasure. The CPGA-84 package is through-hole mounted and requires a PGA socket or PCB with plated-through-hole land pattern; surface-mount assembly is not supported by this package style.
How do you program and erase the EPM5192GM/883?
Program the EPM5192GM/883 using an Altera-compatible PLD programmer and the MAX+plus II (or equivalent legacy) design toolchain; erase by removing the device and exposing the quartz window to a calibrated UV eraser for the manufacturer-specified dose (typically 20-30 minutes at 12,000 µW/cm²). The device is field-erasable and re-programmable, but erasure requires physical removal from the socket - there is no in-system electrical erase.
What is the best drop-in replacement for the EPM5192GM/883?
The best drop-in replacement for the EPM5192GM/883 is the EPM5192GM-1/883B (or EPM5192GM-2/883B), which shares the identical 84-pin ceramic PGA footprint and 192-cell MAX 5000 architecture. The -1 and -2 suffixes denote speed-grade variants of the same silicon family and pinout. For functionally equivalent but not pin-compatible replacements, the MAX 7000S family in PLCC-84 is the modern equivalent.
What is the difference between EPM5192GM and EPM5192GM-1?
The EPM5192GM and EPM5192GM-1 share the same 192-cell MAX 5000 architecture and CPGA-84 package, but the -1 suffix indicates a faster speed grade with a tighter propagation delay. According to Altera MAX 5000 ordering nomenclature, the base GM part is the standard 55 ns Tpd, while -1 typically denotes an improved speed grade (commonly 40 ns). Both are drop-in compatible at the PCB footprint level.
Where to buy EPM5192GM/883 online?
The EPM5192GM/883 is available from authorized Altera/Intel legacy distributors and independent stockists including Octopart-listed vendors, Jotrin Electronics, TAMS Semiconductor, and Veswin Electronics. As of 2026-09-12, prices are quoted per distributor and minimum-order quantities vary; lead time for factory-fresh /883B material is typically 8-12 weeks from authorized channels.
What is the price of EPM5192GM/883?
As of 2026-09-12, distributor pricing for the EPM5192GM/883 ranges approximately $125-$185 per unit depending on quantity, with the qty-1 single-unit price around $185 and qty-1000 volume pricing near $125. These prices reflect obsolete/EOL inventory premiums typical of MIL-STD-883 Class B ceramic-packaged EPLDs; consult live distributor quotes for current authoritative pricing.
What is the lead time for EPM5192GM/883?
Lead time for the EPM5192GM/883 is highly variable as of 2026-09-12 because the part is factory-obsolete and not actively produced. Authorized-channel lead times range from 4-12 weeks depending on whether the stock is factory-fresh (with date code) or broker/aftermarket. Independent distributors such as Jotrin and Veswin typically quote 1-3 days for in-stock inventory.
Where can I download the EPM5192GM/883 datasheet PDF?
The EPM5192GM datasheet PDF is publicly mirrored at https://www.alldatasheet.com/datasheet-pdf/pdf/122504/ALTERA/EPM5192.html as of 2026-09-12, and an EPM5192 programming manual is available at https://www.aipcba.com/datasheet/pdf/epm5192gm-cm1540342733.html. The original Altera datasheet reference may also be reachable via the Intel FPGA legacy product archive.
What is the pinout of the EPM5192GM/883 CPGA-84 package?
The EPM5192GM/883 pinout in the CPGA-84 package follows Altera's standard 84-pin ceramic PGA pinout for the MAX 5000 family, with pins arranged in an 11x11 PGA grid minus three missing corner positions. Because the exact per-pin name list is not in the provided data, the per-pin assignment table is marked as needing verification against the manufacturer's CPGA-84 pinout diagram; consult the datasheet before PCB layout.
Is the EPM5192GM/883 suitable for new military/aerospace designs?
The EPM5192GM/883 is suitable for new military/aerospace designs only when the program requires MIL-STD-883 Class B processing and accepts UV-erase-based programming. According to the datasheet family description, the part's lifecycle status is obsolete as of 2026, so new programs with long sustainment horizons should also evaluate modern Altera/Intel MAX 10, MAX V, or Microsemi/ProASIC3 equivalents that offer in-system programmability and ongoing factory support.
Can the EPM5192GM/883 be replaced by a modern MAX 7000 device?
Yes, the MAX 7000S family (for example EPM7128SLC84) is a functionally equivalent modern replacement that offers in-system programmability via JTAG, but it is NOT a drop-in pin-compatible replacement for the CPGA-84 EPM5192GM/883 because the MAX 7000S uses a plastic PLCC-84 or TQFP-100 package, not a ceramic PGA. According to the cross-reference data, the only drop-in alternatives are other EPM5192 speed-grade variants such as EPM5192GM-1/883B and EPM5192GM-2/883B.

Engineering reference data for EPM5192GM/883 — comparison, design guidance, and compliance information.

Selection Guide

Choose the EPM5192GM/883 when your design requires MIL-STD-883 Class B processed, ceramic-packaged, UV-erasable programmable logic for military, aerospace, or other high-reliability programs that must run at the standard 55 ns Tpd speed grade. If you need tighter timing margins, select the EPM5192GM-1/883B (~40 ns) or EPM5192GM-2/883B (~30 ns) speed-grade drop-in alternatives without changing the PCB. If your application does not require MIL-STD-883 processing, the commercial EPM5192GM (55 ns), EPM5192GM-1 (~40 ns), or EPM5192GM-2 (~30 ns) variants offer identical silicon at lower cost. Avoid replacing the EPM5192GM/883 with MAX 7000S parts (EPM7128SLC84) unless you can rework the PCB to a PLCC-84 or TQFP-100 footprint, because the MAX 7000S is not pin-compatible with the ceramic PGA. Note that all EPM5192 variants are factory-obsolete as of 2026, so for new long-lifecycle programs consider modern Altera/Intel MAX 10 or MAX V CPLDs that offer in-system programmability and ongoing factory support.

Comparison with Alternatives

Parameter This Product EPM5192GM-1/883B EPM5192GM-2/883B EPM5192GM/883B EPM5192GM-1 EPM5192GM EPM5192GM-2
Brand Altera Altera Altera Altera Altera Altera Altera
Package CPGA-84 (Ceramic PGA, UV window) CPGA-84 - same CPGA-84 - same CPGA-84 - same CPGA-84 - same CPGA-84 - same CPGA-84 - same
Logic Cells / Macrocells 192 192 192 192 192 192 192
Maximum Tpd (ns) 55 ns ~40 ns ~30 ns 55 ns ~40 ns 55 ns ~30 ns
MIL-STD-883 Processing Yes (Class B) Yes (Class B) Yes (Class B) Yes (Class B) No (commercial) No (commercial) No (commercial)
Erasure Method UV (quartz window) UV (quartz window) UV (quartz window) UV (quartz window) UV (quartz window) UV (quartz window) UV (quartz window)
RoHS Compliance Non-compliant Non-compliant Non-compliant Non-compliant Non-compliant Non-compliant Non-compliant
Process Technology CMOS CMOS CMOS CMOS CMOS CMOS CMOS
Lifecycle Status Obsolete Obsolete Obsolete Obsolete Obsolete Obsolete Obsolete

Key Differentiators

  • MIL-STD-883 Class B processing with same-die drop-in variants available (vs EPM5192GM (commercial))
  • Datasheet revision 'B' reflects refreshed AC timing and errata (vs EPM5192GM/883 (original revision))
  • Identical 192-cell CPGA-84 footprint across all speed grades (vs MAX 7000S EPM7128SLC84)

Design Notes

The CPGA-84 ceramic package provides superior thermal dissipation compared with plastic alternatives, but in a sealed enclosure without forced-air cooling, derate the device per the datasheet's thermal-resistance curve. Estimated: at 25 C ambient and 1.0 W dissipation, the junction temperature stays within the -55 C to +125 C military range; above 1.5 W, attach the package to a heatsink or use a metal-frame socket that conducts heat to the PCB ground plane.

The CPGA-84 requires a through-hole land pattern with plated-through-hole pads on a 2.54 mm (100 mil) pitch grid; surface-mount assembly is not supported. Use a PGA socket (e.g., AMP 84-pin machined-pin) to allow UV erasure without desoldering, and ensure the socket retains the device against shock and vibration per MIL-STD-883 mechanical-stress requirements. Provide a keep-out area above the package for the UV eraser access path during field reprogramming.

Do not assume the EPM5192GM/883 is in-system programmable - it requires a UV eraser (typically 20-30 minutes at 12,000 µW/cm²) and physical removal from the socket. Plan for an EPROM eraser in field-service kits. Also, do not use 'normal' commercial MAX 5000 datasheet AC timings without derating for the /883B military temperature range; verify timing closure at -55 C and +125 C. Finally, confirm date code and lot traceability on incoming parts to avoid counterfeit risk in the obsolete/EOL supply chain.

Compliance Information

RoHS
Non Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
No
Halogen Free
Unknown
Conflict Minerals
Unknown

Hermetic ceramic CPGA-84 package with lead-bearing terminations; not RoHS compliant per Verified Web Data. MIL-STD-883 Class B processing (/883 suffix) is the primary compliance attribute; reach, halogen-free, and conflict-minerals data are not published in the available sources.

Data verified on: 2026-09-12 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Altera Intel (Altera legacy) EPM5192GM/883 EPM5192GM/883B EPM5192GM-1/883B EPM5192GM-2/883B EPM5192GM EPM5192GM-1 EPM5192GM-2 MAX 5000 EPLD UV PLD ultraviolet-erasable programmable logic device programmable logic device PLD ceramic pin-grid array CPGA-84 MIL-STD-883 Class B processing CMOS macrocell MAX+plus II Altera legacy CPLD
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