EPF10K130EQC240-1N vs EPF10K130EQC240-3N Comparison

Detailed side-by-side comparison of EPF10K130EQC240-1N by Intel and EPF10K130EQC240-3N by Intel. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.

Intel
EPF10K130EQC240-3N EPF10K130EQC240-3N - 130K Gate FLEX-10KE FPGA, 240-PQFP | Intel

EPF10K130EQC240-3N - 130K Gate FLEX-10KE FPGA, 240-PQFP | Intel

EPF10K130EQC240-3N โš  Last Time Buy

Specification Comparison

Parameter EPF10K130EQC240-1N EPF10K130EQC240-3N
Brand Intel Intel
Category FPGA & CPLD FPGA & CPLD
Lifecycle Status Obsolete Last_time_buy
Stock Status In Stock In Stock
Unit Price (USD) $88.40 $19.80
Family FLEX 10KE FLEX-10KEยฎ
Logic Elements 6,656 6,656
System Gates (typical) 130,000 โ€”
Maximum System Gates 342,000 โ€”
Total RAM Bits 65,536 65,536 bits
Embedded Memory 64 Kbit (4 ร— EAB, 2,048 bits each) โ€”
Logic Array Blocks (LABs) 832 832
User I/Os 186 โ€”
Number of I/O Pins 240 (package pin count) 186
Supply Voltage (VCCINT) 2.375 V to 2.625 V (2.5 V nominal) โ€”
Process Technology 0.22 ยตm CMOS (some sources cite 0.25 ยตm) โ€”
Maximum Internal Frequency 333.33 MHz โ€”
Program Memory Type SRAM (volatile, reload on power-up) โ€”
Package 240-BFQFP / 240-PQFP, 32 ร— 32 mm 240-BQFP (PQFP), 32 x 32 mm
Speed Grade -1 (fastest grade for FLEX 10KE family) โ€”
Suffix Code N (lead-free / Pb-free reflow profile) โ€”
Operating Temperature 0 ยฐC to +70 ยฐC commercial (per -1 grade) 0 ยฐC to +70 ยฐC (Commercial)
Mounting Type Surface Mount (gull-wing leads) Surface Mount
RoHS Status Compliant (Pb-free) Compliant
Part Status Obsolete (per Arrow listing) โ€”
Series โ€” FLEX 10KE
Number of Gates โ€” 342,000 (typical 49,152)
Maximum Frequency โ€” 200 MHz
Core Voltage โ€” 2.5 V (2.375 V to 2.625 V)
Technology โ€” 0.22 ยตm CMOS, SRAM-based
Lead Finish โ€” Gull-wing, lead-free (per Altera datasheet)
Configuration Method โ€” SRAM (volatile, requires external PROM)
PLLs โ€” 4
Embedded Multipliers โ€” Yes (EABs configurable as multipliers)
Supply Voltage I/O โ€” 3.3 V LVTTL/LVCMOS, 5 V tolerant inputs

Datasheets & Resources

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