EX256-PCS100

Features: • High-Performance, Low-Power Antifuse FPGA• LP/Sleep Mode for Additional Power Savings• Advanced Small-footprint Packages• Hot-Swap Compliant I/Os• Single-Chip Solution• Nonvolatile• Live on power up• Power-Up/Down Friendly (No Sequencing ...

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EX256-PCS100 Picture
SeekIC No. : 004339379 Detail

EX256-PCS100: Features: • High-Performance, Low-Power Antifuse FPGA• LP/Sleep Mode for Additional Power Savings• Advanced Small-footprint Packages• Hot-Swap Compliant I/Os• Single-Ch...

floor Price/Ceiling Price

Part Number:
EX256-PCS100
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Month Sales

268 Transactions

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Upload time: 2024/12/26

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Product Details

Description



Features:

• High-Performance, Low-Power Antifuse FPGA
• LP/Sleep Mode for Additional Power Savings
• Advanced Small-footprint Packages
• Hot-Swap Compliant I/Os
• Single-Chip Solution
• Nonvolatile
• Live on power up
• Power-Up/Down Friendly (No Sequencing Required for Supply Voltages)
• Configurable Weak-Resistor Pull-Up or Pull-Down for Tristated Outputs during Power Up 1149.1 (JTAG)
• Individual Output Slew Rate Control
• 2.5V, 3.3V, and 5.0V Mixed Voltage Operation with 5.0V Input Tolerance and 5.0V Drive Strength
• Software Design Support with Actel Designer Series and Libero Tools
• Up to 100% Resource Utilization with 100% Pin Locking
• Deterministic Timing
• Unique In-System Diagnostic and Verification Capability with Silicon Explorer II
• Boundary Scan Testing in Compliance with IEEE Standard 1149.1 (JTAG)
• Secure Programming Technology Prevents Reverse Engineering and Design Theft



Specifications

Symbol

Parameter

Limits

Units

VCCI

DC Supply Voltage

0.3 to +6.0

V

VCCA

DC Supply Voltage

0.3 to +3.0

V

VI

Input Voltage

0.5 to +5.5

V

VO

Output Voltage

0.5 to +VCCI + 0.5

V

TSTG

Storage Temperature

65 to +150

°C




Description

The eX family of FPGAs is a low-cost solution for low-power,high-performance designs. The inherent low power attributes of the antifuse technology, coupled with an additional low static power mode, make these devices ideal for power-sensitive applications. Fabricated with an advanced 0.22µ CMOS antifuse technology, these devices achieve high performance with no power penalty.




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