AMD XC2C384-10TQ144I

XC2C384-10TQ144I


  • Manufacturer: AMD
  • CONEVO NO: XC2C384-10TQ144I
  • Package: 100-LQFP
  • Datasheet: PDF
  • Stock: In stock
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Tags

Parameters
Series CoolRunner II
Moisture Sensitivity Level (MSL) 3 (168 Hours)
RoHS Status RoHS non-compliant
Package / Case 100-LQFP
Mfr AMD
Mounting Type Surface Mount
Operating Temperature -40°C ~ 85°C (TA)
Supplier Device Package 100-TQFP (14x14)
Number of I/O 118
Number of Gates 9000
Programmable Type In System Programmable
Voltage Supply - Internal 1.7V ~ 1.9V
Number of Logic Elements/Blocks 24
Delay Time tpd(1) Max 9.2 ns
Number of Macrocells 384
Package Tray
Product Status Active
Conevo-Key Programmable Not Verified
Base Product Number XC2C384
REACH Status REACH Unaffected
Standard Package 60
ECCN EAR99
HTSUS 8542.39.0001
XC2C384-10TQ144I Highest density CoolRunner-II CPLD, 384-macrocell programmable logic

The XC2C384-10TQ144I represents the pinnacle of Xilinx's CoolRunner-II CPLD series, delivering 384 macrocells in a compact 144-pin TQFP package. This 1.8V core voltage device combines high-density programmable logic with ultra-low power consumption, featuring 10ns pin-to-pin delays for complex digital systems. Engineered for mission-critical applications, it maintains the series' signature non-volatile Flash technology for instant-on operation without external configuration memory. With an industrial temperature rating (-40°C to +100°C) and 108 user I/O pins, this CPLD excels in automotive electronics, industrial automation, and high-reliability embedded systems where logic density and power efficiency are paramount.

Typical Applications and Use Cases

1. Automotive systems: Domain controller logic, electric vehicle power management, ADAS sensor fusion

2.  Industrial controls: Multi-axis robotics control, safety-certified PLCs, HMI interfaces

3. Medical equipment: Diagnostic imaging control, patient monitoring systems

4. Communications: Baseband processing, network switching fabric control

5. Aerospace/defense: Avionics data routing, mission computer interfaces

6. Test/measurement: High-speed data acquisition timing control

Particularly valuable in distributed control architectures, the XC2C384-10TQ144I consolidates functions that would typically require multiple smaller CPLDs or a mid-range FPGA, significantly reducing board space and system complexity. Its instant-on capability makes it indispensable in fail-safe systems where immediate operation after power disruption is critical.

Advantages and Selection Benefits

●Density Leadership: Replaces 6-8 smaller CPLDs or a costly FPGA+configuration solution

●Power Efficiency: Consumes 70% less power than comparable FPGA implementations

●Reliability Advantage: Zero boot time and single-chip solution enhance system robustness

●Cost Optimization: Eliminates need for configuration memory, voltage sequencers, and reset circuits

●Design Security: Military-grade bitstream protection safeguards IP

●Longevity Assurance: Xilinx's 15-year longevity commitment for industrial applications

For applications demanding high logic density, deterministic timing, and ultra-low power operation, this CPLD outperforms FPGA alternatives while avoiding their power penalty, configuration complexity, and boot time limitations.

Alternative/Competitive Devices Comparison

1. Altera MAX V 5M240Z

2. Lattice MachXO3-6900

3. Microchip ProASIC3 A3P400

4. Xilinx XC9500XL-384

The XC2C384-10TQ144I maintains clear superiority in power-sensitive, high-reliability applications, particularly where instant-on operation, industrial temperature range, and design security are critical requirements. While alternatives may offer different feature combinations, none match its optimal balance of density, power efficiency, and reliability.

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