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  • Inquire: Call 0086-755-23203480, or reach out via the form below/your sales contact to discuss our design, manufacturing, and assembly capabilities.
  • Quote: Email your PCB files to Sales@pcbsync.com (Preferred for large files) or submit online. We will contact you promptly. Please ensure your email is correct.
Drag & Drop Files, Choose Files to Upload You can upload up to 3 files.

Notes:
For PCB fabrication, we require PCB design file in Gerber RS-274X format (most preferred), *.PCB/DDB (Protel, inform your program version) format or *.BRD (Eagle) format. For PCB assembly, we require PCB design file in above mentioned format, drilling file and BOM. Click to download BOM template To avoid file missing, please include all files into one folder and compress it into .zip or .rar format.

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XC4036XLA-4HQ208C: Xilinx XC4000XLA Series FPGA – Full Specifications & Buying Guide

Product Details

The XC4036XLA-4HQ208C is a high-performance field-programmable gate array (FPGA) from the Xilinx XC4000XLA family, manufactured by AMD (formerly Xilinx). Designed for logic-intensive applications requiring fast, reliable programmable logic, this device offers 36,000 usable gates, a 208-pin HQFP package, and a –4 speed grade — making it a strong choice for embedded systems, communications, signal processing, and industrial control designs.

If you are sourcing Xilinx FPGA components for your next PCB design, the XC4036XLA-4HQ208C delivers the proven reliability and logic density that engineers have trusted for decades.


XC4036XLA-4HQ208C Overview

The XC4036XLA-4HQ208C belongs to the XC4000XLA product family — an enhanced, low-voltage variant of Xilinx’s widely used XC4000 series. The “XLA” designation indicates an advanced low-voltage architecture optimized for 3.3V operation with improved speed and power efficiency compared to earlier XC4000E and XC4000XL devices.

Key Highlights

Feature Value
Manufacturer AMD (Xilinx)
Part Number XC4036XLA-4HQ208C
Product Family XC4000XLA
Logic Gates ~36,000 usable gates
CLBs (Configurable Logic Blocks) 1,536
Speed Grade –4 (fastest in XLA family)
Package Type HQFP (Heat-sink Quad Flat Pack)
Pin Count 208
Supply Voltage (VCC) 3.3V
Operating Temperature 0°C to +85°C (Commercial)
I/O Standards Supported LVTTL, LVCMOS, PCI (3.3V)

Detailed Technical Specifications

Logic Resources

Parameter Specification
Usable Gates 36,000
CLBs 1,536
Flip-Flops 3,072
LUT Width 4-input
Distributed RAM 12,288 bits
Maximum User I/Os 144
Global Clock Buffers 4

Speed and Timing

The –4 speed grade represents the fastest performance tier within the XC4036XLA series. This grade is suitable for designs that demand low propagation delays and high clock frequencies.

Timing Parameter Value (–4 Speed Grade)
Maximum System Clock (tSYSCLK) ~80 MHz (typical)
CLB-to-CLB Propagation Delay ~3.5 ns
IOB Input Setup Time ~2.7 ns
IOB Clock-to-Output ~5.0 ns

Note: Exact timing values depend on design implementation, routing congestion, and junction temperature. Always refer to the official Xilinx XC4000XLA data sheet for worst-case corner analysis.

Power Specifications

Parameter Value
Core Supply Voltage (VCCINT) 3.3V
I/O Supply Voltage (VCCO) 3.3V
Quiescent Current (IQ) ~25 mA (typical)
Maximum Power Dissipation Application-dependent

Package & Physical Information

Parameter Value
Package HQFP-208
Package Body 28mm × 28mm
Lead Pitch 0.5 mm
Mounting Type Surface Mount Technology (SMT)
Moisture Sensitivity Level (MSL) 3
RoHS Status Contact supplier — legacy device

XC4036XLA-4HQ208C Part Number Decoder

Understanding the part number structure helps verify that you are ordering the correct variant:

Segment Meaning
XC Xilinx FPGA
4036 Logic capacity: ~36,000 gates
XLA Product family: XC4000 eXtra Low-voltage Advanced
4 Speed grade: –4 (fastest)
HQ Package: HQFP (Heat Sink Quad Flat Pack)
208 Pin count: 208 pins
C Temperature grade: Commercial (0°C to +85°C)

Comparison: XC4036XLA-4HQ208C vs. Related Variants

When selecting an FPGA for your design, it is helpful to compare the XC4036XLA-4HQ208C against nearby parts in the XC4000XLA family:

Part Number Gates Package Pins Speed Grade Temp Grade
XC4036XLA-09HQ240C ~36,000 HQFP 240 –09 Commercial
XC4036XLA-4HQ208C ~36,000 HQFP 208 –4 Commercial
XC4028XLA-4HQ208C ~28,000 HQFP 208 –4 Commercial
XC4044XLA-4HQ240C ~44,000 HQFP 240 –4 Commercial

The –4 speed grade in the XC4036XLA-4HQ208C delivers noticeably faster performance than the –09 variant, making it the preferred choice for high-frequency designs. The 208-pin package offers a more compact PCB footprint than the 240-pin version while still providing up to 144 user I/Os.


XC4036XLA-4HQ208C: Typical Applications

The XC4036XLA-4HQ208C is well-suited for a broad range of embedded and industrial applications:

#### Communications & Networking

  • Protocol bridging (UART, SPI, I²C, PCI)
  • Data serialization and deserialization (SERDES)
  • Network packet filtering and routing logic

#### Industrial Control Systems

  • Motor control state machines
  • PLC (Programmable Logic Controller) I/O expansion
  • Real-time sensor fusion and data acquisition

#### Signal Processing

  • FIR/IIR digital filter implementations
  • FFT co-processors
  • Video and image processing pipelines

#### Embedded System Acceleration

  • Hardware accelerators for microcontroller or DSP systems
  • Custom bus interfaces and glue logic
  • Memory controller designs

XC4000XLA Architecture: What Makes It Reliable

The XC4000XLA architecture is built around a symmetrical array of Configurable Logic Blocks (CLBs), each containing two 4-input lookup tables (LUTs), two D-type flip-flops, and dedicated carry and arithmetic logic. This structure makes the XC4036XLA-4HQ208C particularly efficient for:

  • Arithmetic-intensive designs (fast carry chains accelerate adders, counters, and multipliers)
  • Distributed memory (LUTs can be configured as 16×1 or 32×1 RAM/ROM cells)
  • Flexible clocking (four global clock buffers with low-skew distribution networks)

Surrounding the CLB array, the I/O Blocks (IOBs) support programmable input and output slew-rate control, optional pull-up/pull-down resistors, and 3-state outputs — giving designers full flexibility to interface with a wide range of external components.


Design & Programming Notes

FPGA Configuration Method

The XC4036XLA-4HQ208C supports SRAM-based configuration, which means the bitstream is loaded at power-up from an external configuration source such as:

  • Serial PROM (e.g., Xilinx XC17V series)
  • Parallel NOR Flash
  • Master/Slave Serial or SelectMAP (Parallel) modes via a microcontroller

EDA Tool Support

Tool Version Notes
Xilinx ISE Design Suite Fully supported (ISE 14.x and earlier)
FPGA Editor Supported for placement and routing inspection
ModelSim / Questa For RTL and gate-level simulation
Synplify / Synopsys DC For logic synthesis targeting XC4000XLA

Important: The XC4036XLA-4HQ208C is not supported in Xilinx Vivado Design Suite, which targets newer 7-Series and UltraScale devices. Use Xilinx ISE 14.7 for this device family.


Ordering Information

Attribute Detail
Full Part Number XC4036XLA-4HQ208C
Manufacturer AMD / Xilinx
Package HQFP-208
Speed Grade –4
Temperature Grade Commercial (0°C to +85°C)
Lifecycle Status Not Recommended for New Designs (NRND)
Typical Lead Time Check with distributor; may require allocation

Authorized Distributors

This part is typically available through:

  • DigiKey Electronics
  • Mouser Electronics
  • Avnet
  • Arrow Electronics
  • PCBSync and other specialty FPGA component suppliers

Because the XC4036XLA-4HQ208C is a legacy device, availability may be limited. It is strongly recommended to confirm stock and date codes with your distributor before committing to a design.


Frequently Asked Questions (FAQ)

What is the difference between XC4036XLA and XC4036XL?

The XLA variant operates at 3.3V core voltage and offers improved speed grades and lower power consumption compared to the older XL family, which also runs at 3.3V but uses an earlier process node. The XLA delivers better logic utilization and faster timing.

Is the XC4036XLA-4HQ208C lead-free (RoHS compliant)?

The XC4036XLA-4HQ208C is a legacy part and may be available in both leaded (SnPb) and lead-free (Pb-free) versions depending on the date code and distributor stock. Verify with your supplier.

Can the XC4036XLA-4HQ208C replace the XC4036XLA-09HQ208C?

Yes. The –4 speed grade is faster than the –09, so the –4 device can drop in as a functional replacement for the –09 in most designs. Always verify setup and hold times in your system-level timing analysis.

What configuration PROM should I use?

Xilinx XC17V256, XC17V512, or XC18V512 serial PROMs are commonly used with the XC4036XLA family. Refer to Xilinx Application Note XAPP069 for detailed configuration circuit recommendations.


Summary

The XC4036XLA-4HQ208C is a reliable, well-characterized FPGA delivering ~36,000 gates of programmable logic in a compact 208-pin HQFP package at the –4 (fastest) speed grade. While it is a legacy device best suited for maintenance of existing designs, its proven architecture, rich I/O feature set, and strong tool support under Xilinx ISE make it a dependable choice whenever the XC4000XLA platform is specified.

For a wide selection of Xilinx legacy and current-generation devices, visit Xilinx FPGA to source the right part for your application.

Contact Sales & After-Sales Service

Contact & Quotation

  • Inquire: Call 0086-755-23203480, or reach out via the form below/your sales contact to discuss our design, manufacturing, and assembly capabilities.

  • Quote: Email your PCB files to Sales@pcbsync.com (Preferred for large files) or submit online. We will contact you promptly. Please ensure your email is correct.

Drag & Drop Files, Choose Files to Upload You can upload up to 3 files.

Notes:
For PCB fabrication, we require PCB design file in Gerber RS-274X format (most preferred), *.PCB/DDB (Protel, inform your program version) format or *.BRD (Eagle) format. For PCB assembly, we require PCB design file in above mentioned format, drilling file and BOM. Click to download BOM template To avoid file missing, please include all files into one folder and compress it into .zip or .rar format.