XC4006E-3PG156C

IC FPGA 125 I/O 156CPGA
Part Description

XC4000E/X Field Programmable Gate Array (FPGA) IC 125 8192 608 156-BCPGA

Quantity 287 Available (as of May 5, 2026)
Product CategoryField Programmable Gate Array (FPGA)
ManufacturerAMD
Manufacturing StatusObsolete
Manufacturer Standard Lead TimeRFQ
Datasheet

Specifications & Environmental

Device Package156-CPGA (42.16x42.16)GradeCommercialOperating Temperature0°C – 85°C
Package / Case156-BCPGANumber of I/O125Voltage4.75 V - 5.25 V
Mounting MethodThrough HoleRoHS ComplianceRoHS non-compliantREACH ComplianceREACH Unaffected
Moisture Sensitivity Level3 (168 Hours)Number of LABs/CLBs256Number of Logic Elements/Cells608
Number of Gates6000ECCNEAR99HTS Code8542.39.0001
QualificationN/ATotal RAM Bits8192

Overview of XC4006E-3PG156C – XC4000E FPGA, 608 Logic Elements, 8,192‑bit RAM, 125 I/O, 156‑BCPGA

The XC4006E-3PG156C is an AMD Field Programmable Gate Array (FPGA) provided in a 156‑pin BCPGA package. It offers a compact programmable logic resource set including 608 logic elements and 8,192 bits of embedded RAM, with 125 user I/O pins and support for a 4.75 V to 5.25 V supply.

Targeted at commercial‑grade applications, this device is suitable for designers who need configurable digital logic capacity, moderate on‑chip memory, and a robust pin count in a through‑hole 156‑CPGA package.

Key Features

  • Logic Capacity — 256 LABs (logic array blocks) and 608 logic elements provide the core programmable resources for implementing custom digital functions.
  • Embedded Memory — 8,192 bits of on‑chip RAM for small data buffers, registers, and state storage.
  • I/O — 125 user I/O pins enable multiple interfaces and peripheral connections without external multiplexing.
  • Gate Count — Equivalent to 6,000 gates to help estimate integration level for legacy gate‑equivalent designs.
  • Power Supply — Operates from a 4.75 V to 5.25 V supply to align with standard 5 V logic systems.
  • Package & Mounting — 156‑CPGA (42.16 × 42.16 mm) package in a through‑hole mounting style for prototyping and board assembly approaches that prefer socketed or robust mounting.
  • Temperature & Grade — Commercial grade device with an operating temperature range of 0 °C to 85 °C.
  • Environmental Compliance — RoHS compliant.

Typical Applications

  • Custom Digital Interfaces — Implement glue logic, protocol translation, and parallel/serial interfacing using the device’s 125 I/O pins and programmable logic.
  • Embedded Control — Create control state machines and small control subsystems leveraging the 608 logic elements and embedded RAM for registers and buffers.
  • Prototyping and Evaluation — Through‑hole 156‑CPGA packaging supports prototyping workflows and socketed evaluation on development boards.

Unique Advantages

  • Balanced Logic and Memory — The combination of 608 logic elements and 8,192 bits of RAM supports modest logic complexity with sufficient on‑chip storage for control and buffering.
  • High I/O Count — 125 user I/O pins reduce the need for external I/O expanders and simplify board-level interfacing.
  • 5 V Supply Compatibility — Native operation from a 4.75 V to 5.25 V supply makes integration straightforward in 5 V systems.
  • Through‑Hole Packaging — 156‑CPGA through‑hole format eases prototyping, replacement, and robust mechanical retention on development hardware.
  • Commercial‑Grade Reliability — Specified for 0 °C to 85 °C operation to match typical commercial environments.
  • RoHS Compliant — Meets lead‑free environmental requirements for modern electronics assemblies.

Why Choose XC4006E-3PG156C?

The XC4006E-3PG156C positions itself as a compact, programmable solution for commercial electronic designs that require a moderate amount of logic, embedded RAM, and a substantial number of I/O pins in a through‑hole 156‑CPGA package. Its 5 V supply compatibility and RoHS compliance make it practical for existing 5 V systems and contemporary environmental requirements.

This device is well suited to designers and teams seeking a reliable, reconfigurable building block for custom interface logic, embedded control functions, and prototyping scenarios where through‑hole mounting and easy replacement are advantageous.

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