EP4CE6E22C8 vs EP4CE6E22C6N Comparison

Detailed side-by-side comparison of EP4CE6E22C8 by Intel and EP4CE6E22C6N by Intel. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.

Intel
EP4CE6E22C8

EP4CE6E22C8 - Cyclone IV E FPGA 6K LEs EQFP-144 | Intel

EP4CE6E22C8 βœ“ Active
Intel
EP4CE6E22C6N

EP4CE6E22C6N - Cyclone IV E FPGA, 6K LE, 144-EQFP | Intel / Altera

EP4CE6E22C6N βœ“ Active

Specification Comparison

Parameter EP4CE6E22C8 EP4CE6E22C6N
Brand Intel Intel
Category FPGA & CPLD FPGA & CPLD
Lifecycle Status Active Active
Stock Status In Stock In Stock
Unit Price (USD) $13.65 $11.20
Device Family Cyclone IV E β€”
Logic Elements (LEs) 6,272 6,272
Logic Array Blocks (LABs) 392 [DATA_NEEDED: LAB count]
Embedded Memory (Kbits) 270 β€”
Embedded 18x18 Multipliers 15 15
PLLs 2 2
Maximum User I/Os 91 91
Package EQFP-144 (E22), 22 x 22 mm, 0.5 mm pitch 144-pin EQFP (Plastic Enhanced QFP, 22 x 22 mm, 0.5 mm pitch)
Core Voltage (VCCINT) 1.2 V 1.2 V
I/O Voltage (VCCIO) 1.2 V to 3.3 V (per bank) 1.2 V / 1.5 V / 1.8 V / 2.5 V / 3.0 V / 3.3 V
Operating Junction Temperature 0C to +85C (commercial) β€”
Speed Grade C8 (-8 corner) β€”
Maximum Internal Clock Frequency [DATA_NEEDED: max fMAX per logic] β€”
Configuration Modes JTAG, Active Serial (EPCS), Passive Serial JTAG, AS (Active Serial), PS (Passive Serial)
Process Technology 60 nm low-power CMOS 60 nm
RoHS Status Compliant Lead-Free / Compliant
Lead-Free / Halogen-Free Yes / [DATA_NEEDED: halogen-free status] β€”
Mounting Type Surface Mount Surface Mount
Family β€” Cyclone IV E
Device β€” EP4CE6
Embedded Memory (M9K blocks) β€” [DATA_NEEDED: M9K block count]
Embedded Memory (Bits) β€” 270 Kbits
Global Clock Networks β€” 10
I/O Banks β€” 4
Operating Temperature β€” -40 C to +85 C (industrial, C6 speed grade)
Lead-Free β€” Yes

Datasheets & Resources

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