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EP2AGX45CU17I3N

EP2AGX45CU17I3N

EP2AGX45CU17I3N

Intel

FPGAs Arria II GX Series 358-LFBGA, FCBGA

SOT-23

EP2AGX45CU17I3N Datasheet

non-compliant

In-Stock: 1846 items
Specifications
Name Value
Type Parameter
Mounting Type Surface Mount
Package / Case 358-LFBGA, FCBGA
Operating Temperature -40°C~100°C TJ
Packaging Tray
Series Arria II GX
JESD-609 Code e1
Part Status Obsolete
Moisture Sensitivity Level (MSL) 3 (168 Hours)
Terminal Finish Tin/Silver/Copper (Sn/Ag/Cu)
Voltage - Supply 0.87V~0.93V
Peak Reflow Temperature (Cel) NOT SPECIFIED
Time@Peak Reflow Temperature-Max (s) NOT SPECIFIED
Base Part Number EP2AGX45
Number of I/O 156
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Number of Logic Elements/Cells 42959
Total RAM Bits 3517440
Number of LABs/CLBs 1805
RoHS Status RoHS Compliant
Pricing & Ordering
Quantity Unit Price Ext. Price
90 $480.00022 $43200.0198
EP2AGX45CU17I3N Product Details

EP2AGX45CU17I3N Overview


As part of the 358-LFBGA, FCBGA package, it is included. This kind of FPGA is composed of FIELD PROGRAMMABLE GATE ARRAY. A total of 156 I/Os allow data to be transferred in a more coherent manner. A fundamental building block consists of 42959 logic elements/cells. With a Surface Mount connector, this FPGA module can be attached to the development board. In order to operate it, it requires a voltage supply of 0.87V~0.93V . It is a type of FPGA that belongs to the Arria II GX series of FPGAs. Fpga chips is important to maintain the operating temperature wFpga chipshin the range of -40°C~100°C TJ when operating the machine. In order to save space, this FPGA model has been contained in Tray. This device has 3517440 RAM bits, which is the number of RAM bits that this device offers. Its base part number EP2AGX45 can be used to find parts that are related to it. The FPGA consists of 1805 LABs/CLBs.

EP2AGX45CU17I3N Features


156 I/Os
Up to 3517440 RAM bits


EP2AGX45CU17I3N Applications


There are a lot of Intel
EP2AGX45CU17I3N FPGAs applications.


  • Bioinformatics
  • Device controllers
  • Software-defined radio
  • Random logic
  • ASIC prototyping
  • Medical imaging
  • Computer hardware emulation
  • Integrating multiple SPLDs
  • Voice recognition
  • Cryptography

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