EPM9400RC208-20 vs EPM9320RI208-20N Comparison

Detailed side-by-side comparison of EPM9400RC208-20 by Altera and EPM9320RI208-20N by Altera. Compare key specifications, electrical parameters, packaging, lifecycle status, pricing, and availability to determine the best component for your design requirements.

Altera
EPM9400RC208-20

EPM9400RC208-20 - MAX 9000 CPLD 400 Macro Cells 20ns | Altera

EPM9400RC208-20 Obsolete
Altera
EPM9320RI208-20N

EPM9320RI208-20N - MAX 9000 CPLD 320 Macrocell 208-PQFP | Altera

EPM9320RI208-20N Nrnd

Specification Comparison

Parameter EPM9400RC208-20 EPM9320RI208-20N
Brand Altera Altera
Category FPGA & CPLD FPGA & CPLD
Lifecycle Status Obsolete Nrnd
Stock Status In Stock In Stock
Unit Price (USD) $60.49 $0.00
Family MAX 9000 β€”
Programmable Type In System Programmable (ISP) β€”
Macro Cells 400 β€”
Usable Gates 8,000 β€”
Pin-to-Pin Propagation Delay 20 ns β€”
Maximum Operating Frequency 100 MHz β€”
Supply Voltage (Internal) 4.75 V to 5.25 V β€”
Configuration Technology EEPROM-based (non-volatile) β€”
JTAG Interface IEEE Std. 1149.1 IEEE Std. 1149.1 compliant
Package 208-pin RQFP (28x28 mm) 208-pin PQFP (Plastic Quad Flat Pack)
Supplier Device Package 208-RQFP β€”
Mounting Type Surface Mount Surface Mount
Operating Temperature [DATA_NEEDED: operating temperature range] β€”
Number of I/O Pins [DATA_NEEDED: user I/O count] β€”
RoHS Status [DATA_NEEDED: RoHS compliance] [DATA_NEEDED: RoHS status]
MSL Level [DATA_NEEDED: moisture sensitivity level] β€”
Speed Grade -20 (20 ns) β€”
Device Family β€” MAX 9000 (EPM9320)
Logic Type β€” EEPROM-based Complex Programmable Logic Device (CPLD)
Macrocells β€” 320
Flip-Flops β€” 484
Propagation Delay (tPD) β€” 20 ns
Supply Voltage (VCC) β€” 5.0 V
I/O Voltage Tolerance β€” 3.3 V or 5 V configurable
Package Lead Pitch β€” 0.500 mm
Number of Terminals β€” 208
Operating Temperature Range β€” -40C to +85C (Industrial)
In-System Programmability β€” Yes, 5.0 V ISP via JTAG
Configuration Memory β€” EEPROM (non-volatile)
Dedicated Input Pins β€” 4 (low-skew global distribution)
Minimum DC Input on I/O Pins β€” -0.5 V
Minimum DC Input on Dedicated Inputs β€” -0.3 V
Input Undershoot/ Overshoot β€” -2.0 V / 7.0 V for <20 ns (no-load)

Datasheets & Resources

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