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EPCQ4ASI8N-TR

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EPCQ4ASI8N-TR

Configuration Memory, 512KX8, PDSO8

Manufacturer: Intel

Categories: Flash Memories

Quality Control: Learn More

Intel EPCQ4ASI8N-TR is a 4Mbit serial configuration memory device organized as 512K x 8. This CMOS technology component operates synchronously with a maximum clock frequency of 100 MHz. It features a 20-year data retention and boasts an endurance of 100,000 program/erase cycles. The EPCQ4ASI8N-TR is housed in an 8-lead PDSO (Small Outline Package) with a 1.27mm terminal pitch, designed for surface mounting. Operating across a temperature range of -40°C to +85°C, it requires a supply voltage between 2.7V and 3.6V. This memory solution is utilized in various industrial applications, including telecommunications and consumer electronics, where reliable configuration data storage is critical. The device offers 3-state output characteristics and a low standby current of 50µA.

Additional Information

Series: EPCQ4RoHS Status: RoHS CompliantManufacturer Lead Time: Product Status: ActivePackaging: Datasheet:
Technical Details:
Length4.9000
Width3.9000
TechnologyCMOS
Clock_Frequency_Max100.00000
Data_Retention_Time_Min20
Endurance100000.000000000000000
JESD_30_CodeR-PDSO-G8
Memory_Density4194304.0000000000000000
Memory_IC_TypeCONFIGURATION MEMORY
Memory_Organization512KX8
Memory_Width8
Number_of_Functions1
Number_of_Terminals8
Number_of_Words524288.0000000000000000
Number_of_Words_Code512k
Operating_ModeSynchronous
Operating_Temperature_Max85.0
Operating_Temperature_Min-40.0
Output_Characteristics3-State
Package_Body_MaterialPLASTIC/EPOXY
Package_CodeSOP
Package_Equivalence_CodeSOP8,.25
Package_ShapeRectangular
Package_StyleSMALL OUTLINE
Parallel_SerialSerial
Seated_Height_Max1.7500
Standby_Current_Max0.000050000000000
Supply_Current_Max5.000000000000000
Supply_Voltage_Max3.60000
Supply_Voltage_Min2.70000
Supply_Voltage_Nom3.3
Surface_MountYes
Terminal_FormGull Wing
Terminal_Pitch1.270
Terminal_PositionDual

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Intel FAQs

Intel manufactures semiconductor components primarily focused on processors, computing hardware, and connectivity solutions.

Intel’s core components include:

  • CPUs (central processing units) for desktops, laptops, and servers
  • GPUs (graphics processing units) for visual computing and AI workloads
  • Chipsets and system-on-chip (SoC) solutions
  • FPGAs (field-programmable gate arrays) through its Altera division
  • Networking and connectivity components for data centers and telecom
  • Memory and storage technologies, including SSDs

Intel also develops AI accelerators and edge computing hardware, supporting high-performance and data-driven applications.

Intel serves multiple industries that rely on high-performance computing, data processing, and connectivity.

Intel’s main industries include:

These industries depend on Intel for scalable computing power, reliability, and real-time performance.

Intel is known for its industry-leading processor and computing product lines used across consumer, enterprise, and industrial applications.

Key Intel product lines include:

  • Intel Core - processors for consumer laptops and desktops
  • Intel Xeon - processors for servers and data centers
  • Intel FPGA (Altera) – customizable programmable logic solutions
  • Intel Cyclone - cost optimized FPGA’s for low-power applications
  • Intel Arria - FPGAs for mid-range performance and efficiency
  • Intel Stratix - FPGAs for high-performance and data-intensive applications
  • Intel MAX 10 - FPGAs for low power and integrated nonvolatile applications
  • Intel Agilex - FPGAs for high performance and advanced heterogeneous applications
Integrated Circuit FAQs

An integrated circuit (IC) is a semiconductor chip that contains transistors, resistors, capacitors, and other electronic components on a single silicon substrate. ICs are the foundation of modern electronics and power devices such as smartphones, computers, automotive systems, and industrial equipment.

Integrated circuits work by routing electrical signals through microscopic semiconductor components fabricated onto a silicon chip. Depending on the design, ICs can process, amplify, store, or control electronic data.

Integrated circuits are used in:

The different types of integrated circuits include:

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