EPM570F256C5NRR vs EPM570F256C3N Comparison

Detailed side-by-side comparison of EPM570F256C5NRR by Intel and EPM570F256C3N by Intel. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.

Intel
EPM570F256C5NRR EPM570F256C5NRR - MAX II CPLD, 570 LEs, 256-BGA | Intel

EPM570F256C5NRR - MAX II CPLD, 570 LEs, 256-BGA | Intel

EPM570F256C5NRR βœ“ Active
Intel
EPM570F256C3N

EPM570F256C3N - MAX II CPLD, 570 LEs, 256-FBGA | Intel / Altera

EPM570F256C3N βœ“ Active

Specification Comparison

Parameter EPM570F256C5NRR EPM570F256C3N
Brand Intel Intel
Category FPGA & CPLD FPGA & CPLD
Lifecycle Status Active Active
Stock Status In Stock In Stock
Unit Price (USD) $10.90 $13.75
Series MAX II β€”
Family MAX II (CPLD) MAX II
Logic Elements 570 β€”
Macro Cells 440 β€”
Pin-to-Pin Delay (tPD) 8.7 ns (C5 speed grade) β€”
Internal fMAX 201.1 MHz β€”
User Flash Memory (UFM) 8 Kbytes 8 Kbits
Maximum User I/O Pins 212 (typical, 256-BGA) β€”
Operating Supply Voltage - Core (VCCINT) 2.5 V (3.3 V tolerant) β€”
Operating Supply Voltage - I/O (VCCIO) 2.5 V or 3.3 V β€”
Process Technology 0.18 Β΅m flash CMOS 0.18 um, 6-layer-metal flash CMOS
Package 256-ball FBGA (FineLine BGA) 256-ball FBGA (FineLine BGA)
Mounting Type Surface Mount Surface Mount
Operating Temperature 0 Β°C to +85 Β°C (commercial, C-speed grade) β€”
Programming Interface JTAG (IEEE 1149.1), in-system programmable JTAG (IEEE 1532 / IEEE 1149.1) + ISP
Configuration Memory On-chip non-volatile flash β€”
RoHS Status Compliant Compliant (per DigiKey listing)
Logic Elements (LEs) β€” 570
Equivalent Macrocells β€” 440
Maximum Operating Frequency β€” 304 MHz
Core Voltage β€” 2.5 V / 3.3 V
I/O Voltage Support (MultiVolt) β€” 1.5 V, 1.8 V, 2.5 V, 3.3 V
User I/O Count β€” [DATA_NEEDED: confirm exact user-IO count for F256 package]
Operating Temperature (C3 grade) β€” 0 C to +85 C (commercial)
MSL Level β€” [DATA_NEEDED: MSL level not stated in provided data]
Lead-Free β€” Yes (per suffix 'N' convention)
Typical Macroscopic Functions β€” Glue logic, bus bridging, I/O expansion, power sequencing

Datasheets & Resources

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