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J12
Part No
Manufacturer
Parts specification
Quantity
262543
Part No
J120F06J
Manufacturer
TOSHIBA
Parts specification
Quantity
5664
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262544
Part No
J123
Manufacturer
TOSHIBA
Parts specification
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5664
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262545
Part No
J126
Manufacturer
TOSHIBA
Parts specification
Quantity
5665
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262546
Part No
J12933
Manufacturer
TOSHIBA
Parts specification
Quantity
5665
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369596
Part No
J12
Manufacturer
TI
Parts specification
Quantity
6207
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369597
Part No
J121A2
Manufacturer
TI
Parts specification
Quantity
6207
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2489421
Part No
J121FDT
Manufacturer
STM
Parts specification
Quantity
7065
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2494212
Part No
J12
Manufacturer
STM
Parts specification
Quantity
6904
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2546797
Part No
J127G
Manufacturer
STM
Parts specification
Quantity
5050
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2546883
Part No
J122G
Manufacturer
STM
Parts specification
Quantity
5116
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XCZU2CG-1SBCVJ478E
Manufacturer
:
XILINX
Part No
:
XCZU2CG-1SBVA484E
Order Code
:
2760177
Product Range
:
Zynq UltraScale+ MPSoC Family
Series
:
MPSoC
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Product Overview
The Xilinx Zynq® UltraScale+™ MPSoC family provide 64bit processor scalability while combining real-time control with soft, hard engines for graphics, video, waveform and packet processing. Built on a common real-time processor and programmable logic equipped platform, 3 distinct variants include dual (CG), quad application processor and GPU (EG) and video codec (EV) devices, creating unlimited possibilities for 5G wireless, next generation ADAS, industrial IoT applications. The CG devices hasheterogeneous processing system comprised of dual-core Cortex™-A53, dual-core Cortex™-R5 real-timeprocessing unit.
- Zynq® UltraScale+™ MPSoCs are available in -3, -2, -1 speed grades
- Innovative ARM® + FPGA architecture for differentiation, analytics & control
- Extensive OS, middleware, stacks, accelerators and IP ecosystem
- Multiple levels of hardware and software security, architected to deliver low system power
- Integration delivering the de facto All Programmable platform
- Up to 5X system level performance per watt over Zynq®-7000 SoCs
- Industry leading design tools, C/C++, open CL design abstractions