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Home > products > Flash Memory IC Chip > EP2C20F484C8N EP2C35F484C6N EP2C5F256I8 Programmable Logic ICS Field Programmable Gate Array FPGA - Cyclone II 1172

EP2C20F484C8N EP2C35F484C6N EP2C5F256I8 Programmable Logic ICS Field Programmable Gate Array FPGA - Cyclone II 1172

manufacturer:
Manufacturer
Description:
Cyclone® II Field Programmable Gate Array (FPGA) IC 315 239616 18752 484-BGA
Category:
Flash Memory IC Chip
Price:
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Payment Method:
Paypal, Western Union, TT
Specifications
Number Of Logic Elements:
18752
Number Of Logic Array Blocks - LABs:
1172
Number Of I/Os:
315 I/O
Operating Supply Voltage:
1.15 V To 1.25 V
Minimum Operating Temperature:
0 C
Maximum Operating Temperature:
+ 70 C
Highlight:

logic integrated circuits

,

programmable logic array ic

Introduction

EP2C20F484C8N EP2C35F484C6N EP2C5F256I8 Programmable Logic ICS Field Programmable Gate Array FPGA - Cyclone II 1172 LABs 315 IOs

 

Cyclone II devices support the Nios II embedded processor which allows you to implement custom-fit embedded processing solutions. Cyclone II devices can also expand the peripheral set, memory, I/O, or performance of embedded processors. Single or multiple Nios II embedded processors can be designed into a Cyclone II device to provide additional co-processing power or even replace existing embedded processors in your system. Using Cyclone II and Nios II together allow for low-cost, high-performance embedded processing solutions, which allow you to extend your product's life cycle and improve time to market over standard product solutions.

 

Low-Cost Embedded Processing Solutions

(1) The EP2C15A is only available with the Fast On feature, which offers a faster POR time. This device is available in

both commercial and industrial grade.

(2) The EP2C5, EP2C8, and EP2C20 optionally support the Fast On feature, which is designated with an “A” in the

device ordering code. The EP2C5A is only available in the automotive speed grade. The EP2C8A and EP2C20A

devices are only available in industrial grade.

(3) This is the total number of 18 × 18 multipliers. For the total number of 9 × 9 multipliers per device, multiply the

total number of 18 × 18 multipliers by 2.


 

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