AT6003-4QI

IC FPGA 108 I/O 132BQFP
Part Description

AT6000(LV) Field Programmable Gate Array (FPGA) IC 108 1600 132-BQFP Bumpered

Quantity 1,089 Available (as of May 5, 2026)
Product CategoryField Programmable Gate Array (FPGA)
ManufacturerMicrochip Technology
Manufacturing StatusObsolete
Manufacturer Standard Lead TimeRFQ
Datasheet

Specifications & Environmental

Device Package132-BQFP (27.44x27.44)GradeIndustrialOperating Temperature-40°C – 85°C
Package / Case132-BQFP BumperedNumber of I/O108Voltage4.5 V - 5.5 V
Mounting MethodSurface MountRoHS ComplianceRoHS non-compliantREACH ComplianceREACH Unaffected
Moisture Sensitivity Level3 (168 Hours)Number of LABs/CLBsN/ANumber of Logic Elements/Cells1600
Number of Gates9000ECCN3A991DHTS Code8542.39.0001
QualificationN/A

Overview of AT6003-4QI – AT6000(LV) Field Programmable Gate Array (FPGA) IC 108 1600 132-BQFP Bumpered

The AT6003-4QI is an SRAM-based FPGA from the AT6000(LV) family designed for reconfigurable coprocessors and compute‑intensive logic. Its symmetrical cell array and flexible busing network enable adaptive hardware designs that can implement cache logic and hardware acceleration.

Built for industrial environments, the device combines high-speed timing, programmable clocking and configurable I/O with low standby and operating currents to support deployed systems requiring reliable, field-reconfigurable logic.

Key Features

  • Core performance — System speeds above 100 MHz and flip-flop toggle rates greater than 250 MHz; input delays of 1.2 ns / 1.5 ns and output delays of 3.0 ns / 6.0 ns enable high-speed logic paths.
  • Logic capacity — 1,600 logic elements (cells) and approximately 9,000 usable gates with up to 1,600 registers (series value shown for this device class).
  • I/O flexibility — 108 user I/Os with independently configurable I/O supporting TTL/CMOS input thresholds, open-collector/tristate outputs, programmable slew-rate control and an I/O drive of 16 mA (combinable to 64 mA).
  • Reconfiguration and architecture — Supports complete and partial in-system reconfiguration without loss of data or machine state; symmetrical array and sector-based busing provide flexible routing and efficient cell-to-cell communication.
  • Programmable clocking — Independently controlled column clocks and resets with clock skew of less than 1 ns across the chip for tightly synchronized designs.
  • Power characteristics — Low-power design with standby currents as low as 200 μA / 500 μA (series values) and typical operating current for this device class in the 25–45 mA range; supports 4.5 V to 5.5 V supply operation.
  • Package and reliability — Surface-mount 132‑BQFP bumpered package (27.44 × 27.44 mm) and industrial grade rating with an operating temperature range of −40 °C to 85 °C.

Typical Applications

  • Reconfigurable coprocessors — Offload compute‑intensive functions to adaptive hardware implementations for performance acceleration.
  • Hardware acceleration — Implement cache-logic and custom hard macro functions to speed algorithmic workloads in deployed systems.
  • I/O expansion and bridging — Leverage 108 configurable I/Os for interface bridging, protocol adaptation and complex peripheral aggregation.
  • Industrial embedded systems — Use in industrial designs requiring an industrial temperature grade and a compact surface-mount package.

Unique Advantages

  • Field reconfigurability: Complete and partial in-system reconfiguration enables updates and feature changes without system downtime.
  • High-speed timing: System speeds >100 MHz and low input/output delays support latency-sensitive designs.
  • Flexible I/O options: Independently configurable I/O with TTL/CMOS thresholds and programmable drive/slew control simplifies interfacing to a wide range of peripherals.
  • Low-power operation: Standby currents in the microamp range and modest operating currents support energy-conscious deployed applications.
  • Industrial-ready packaging: 132-BQFP bumpered surface-mount package and −40 °C to 85 °C rating ease integration into industrial product designs.

Why Choose AT6003-4QI?

The AT6003-4QI delivers a balanced combination of reconfigurability, performance and I/O flexibility suited to compute‑intensive and adaptive hardware tasks. Its AT6000(LV) architecture—symmetrical cell array, efficient busing network and programmable clocks—lets engineers implement custom acceleration and cache-logic while maintaining predictable timing and low power draw.

Ideal for engineers building reconfigurable coprocessors, industrial embedded controllers, and systems requiring extensive I/O, the AT6003-4QI offers a compact 132‑BQFP package and industrial temperature rating for robust deployment and straightforward PCB integration.

Request a quote or contact sales to discuss availability and pricing for the AT6003-4QI.

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