Datasheets
EP4SGX290NF45C2N by:

Field Programmable Gate Array, 116480 CLBs, 800MHz, 291200-Cell, CMOS, PBGA1932, LEAD FREE, FBGA-1932

Part Details for EP4SGX290NF45C2N by Intel Corporation

Results Overview of EP4SGX290NF45C2N by Intel Corporation

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Applications Computing and Data Storage

EP4SGX290NF45C2N Information

EP4SGX290NF45C2N by Intel Corporation is a Field Programmable Gate Array.
Field Programmable Gate Arrays are under the broader part category of Programmable Logic Devices.

Programmable Logic Devices (PLDs) are reconfigurable digital components that can be customized for different applications, offering flexibility and improved performance over fixed logic devices. Read more about Programmable Logic Devices on our Programmable Logic part category page.

Price & Stock for EP4SGX290NF45C2N

Part # Distributor Description Stock Price Buy
MacroQuest Electronics ISO 9001: 2015, ISO 14001:2015, ISO 45001:2018, Lead time:5-7days 77 Stock,105 Available
  • 1 $9,007.0500
  • 5 $8,367.8400
  • 10 $7,728.6300
  • 24 $7,089.4200
$7,089.4200 / $9,007.0500 Buy Now

Part Details for EP4SGX290NF45C2N

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EP4SGX290NF45C2N Part Data Attributes

EP4SGX290NF45C2N Intel Corporation
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EP4SGX290NF45C2N Intel Corporation Field Programmable Gate Array, 116480 CLBs, 800MHz, 291200-Cell, CMOS, PBGA1932, LEAD FREE, FBGA-1932
Rohs Code Yes
Part Life Cycle Code Obsolete
Ihs Manufacturer INTEL CORP
Package Description LEAD FREE, FBGA-1932
Reach Compliance Code compliant
HTS Code 8542.39.00.01
Clock Frequency-Max 800 MHz
JESD-30 Code S-PBGA-B1932
JESD-609 Code e1
Length 45 mm
Number of CLBs 116480
Number of Inputs 920
Number of Logic Cells 291200
Number of Outputs 920
Number of Terminals 1932
Operating Temperature-Max 85 °C
Operating Temperature-Min
Organization 11648 CLBS
Package Body Material PLASTIC/EPOXY
Package Code BGA
Package Equivalence Code BGA1932,44X44,40
Package Shape SQUARE
Package Style GRID ARRAY
Programmable Logic Type FIELD PROGRAMMABLE GATE ARRAY
Qualification Status Not Qualified
Seated Height-Max 3.6 mm
Supply Voltage-Max 0.93 V
Supply Voltage-Min 0.87 V
Supply Voltage-Nom 0.9 V
Surface Mount YES
Technology CMOS
Temperature Grade OTHER
Terminal Finish TIN SILVER COPPER
Terminal Form BALL
Terminal Pitch 1 mm
Terminal Position BOTTOM
Width 45 mm

Alternate Parts for EP4SGX290NF45C2N

This table gives cross-reference parts and alternative options found for EP4SGX290NF45C2N. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of EP4SGX290NF45C2N, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
EP4SGX290NF45C2N Altera Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 800MHz, 291200-Cell, CMOS, PBGA1932, LEAD FREE, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45C2N
Part Number Manufacturer Composite Price Description Compare
EP4SGX290NF45C3N Altera Corporation $629.3352 Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, LEAD FREE, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45C3N
EP4SGX290NF45C2 Altera Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 800MHz, 291200-Cell, CMOS, PBGA1932, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45C2
EP4SGX290NF45I4 Intel Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45I4
EP4SGX290NF45C3 Altera Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45C3
EP4SGX290NF45C4 Altera Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45C4
EP4SGX290NF45C3N Intel Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, LEAD FREE, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45C3N
EP4SGX290NF45I3 Intel Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45I3
EP4SGX290NF45I3 Altera Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45I3
EP4SGX290NF45I4N Altera Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 717MHz, 291200-Cell, CMOS, PBGA1932, LEAD FREE, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45I4N
EP4SGX290NF45C2 Intel Corporation Check for Price Field Programmable Gate Array, 116480 CLBs, 800MHz, 291200-Cell, CMOS, PBGA1932, FBGA-1932 EP4SGX290NF45C2N vs EP4SGX290NF45C2

EP4SGX290NF45C2N Related Parts

EP4SGX290NF45C2N Frequently Asked Questions (FAQ)

  • The maximum power consumption of EP4SGX290NF45C2N is around 25W, but it can vary depending on the specific use case and operating conditions.

  • To optimize the performance of EP4SGX290NF45C2N, you can use Intel's Quartus Prime software to optimize the design, reduce power consumption, and improve timing closure. Additionally, you can use floorplanning and placement techniques to minimize routing congestion and reduce latency.

  • The maximum operating temperature of EP4SGX290NF45C2N is 100°C, but it's recommended to operate it at a temperature range of 0°C to 85°C for optimal performance and reliability.

  • Yes, EP4SGX290NF45C2N is suitable for high-reliability applications, such as aerospace, defense, and industrial control systems, due to its ruggedized design and compliance with various industry standards, including DO-254 and IEC 61508.

  • To ensure signal integrity in EP4SGX290NF45C2N-based designs, you can use Intel's signal integrity analysis tools, such as the Signal Integrity Center, to analyze and optimize signal transmission. Additionally, you can use techniques like differential signaling, shielding, and termination to minimize signal degradation and noise.

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