Intel 10M02DCU324I7G

10M02DCU324I7G


  • Manufacturer: Intel
  • CONEVO NO: 10M02DCU324I7G
  • Package: 324-LFBGA
  • Datasheet: PDF
  • Stock: In stock
  • Description: 10M02DCU324I7G(Kg)

Details

Tags

Parameters
Series MAX® 10
Moisture Sensitivity Level (MSL) 3 (168 Hours)
RoHS Status RoHS Compliant
Package / Case 324-LFBGA
Mfr Intel
Mounting Type Surface Mount
Operating Temperature -40°C ~ 100°C (TJ)
Supplier Device Package 324-UBGA (15x15)
Number of I/O 160
Voltage - Supply 1.15V ~ 1.25V
Number of Logic Elements/Cells 2000
Number of LABs/CLBs 125
Total RAM Bits 110592
Package Tray
Product Status Active
Conevo-Key Programmable Not Verified
REACH Status REACH Unaffected
Standard Package 119
ECCN 3A991D
HTSUS 8542.39.0001

The Intel 10M02DCU324I7G is a MAX® 10 series FPGA (Field Programmable Gate Array) product manufactured by Intel Corporation. Intel 10M02DCU324I7G belongs 

to the MAX® 10 FPGA product family, a high-performance FPGA device manufactured using a 55 nm process technology. It provides up to 2000 logical elements, a 

maximum number of user I/ OS up to 246, and supports multiple I/O standards such as LVCMOS, LVDS, and more. In addition, it has 2 structures and an I/O phase-locked 

loop (PLL), a maximum embedded memory of 108 Kb, and supports digital signal processing (DSP) format. The device also features user-erasable memory and built-in 

configuration storage, making it ideal for applications that require field programmable flexibility.

10M02DCU324I7G Features:

- Number of logical elements: 2000

- Number of PLLS: 2

- Maximum embedded memory: 108 Kb

- Maximum LVDS pair: 15

- Encapsulation Options: Supports multiple encapsulation modes, such as U324

- User erasable memory: Yes

- Built-in configuration storage: Yes

10M02DCU324I7G Application:

Due to its flexibility and programmability, Intel 10M02DCU324I7G FPGA devices can be used in a variety of fields, including but not limited to communications, industrial 

control, video processing, signal processing, military and avionics. They are particularly suitable for applications that require high-speed data processing and complex 

logic implementations, providing customized solutions to meet specific performance requirements.

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