|Part Life Cycle Code||Active|
|Supply Voltage-Nom||1.2 V|
|Number of Inputs||246|
|Number of Outputs||246|
|Number of Logic Cells||2000|
|Number of CLBs||125|
|Programmable Logic Type||FIELD PROGRAMMABLE GATE ARRAY|
|Power Supplies||1.2 V|
|Supply Voltage-Max||1.25 V|
|Supply Voltage-Min||1.15 V|
|Qualification Status||Not Qualified|
|Moisture Sensitivity Level||3|
|Operating Temperature-Max||125 °C|
|Operating Temperature-Min||-40 °C|
|Peak Reflow Temperature (Cel)||NOT SPECIFIED|
|Time@Peak Reflow Temperature-Max (s)||NOT SPECIFIED|
|Number of Terminals||324|
|Package Body Material||PLASTIC/EPOXY|
|Package Equivalence Code||BGA324,18X18,32|
|Package Style||GRID ARRAY|
|Terminal Pitch||800 µm|
|Seated Height-Max||1.55 mm|
|Ihs Manufacturer||INTEL CORP|
|Reach Compliance Code||compliant|
10M02DCU324A7G Datasheet Download
The chip model 10M02DCU324A7G is a high-performance, low-power FPGA solution from Intel. It is suitable for a wide range of applications, such as high-performance digital signal processing, embedded processing, image processing, and more. It is designed to handle the most demanding applications, and it requires the use of HDL language.
The chip model 10M02DCU324A7G has many advantages over its competitors. It has a high-speed transceiver, which allows for fast data transfer and low power consumption. It also has a large number of programmable logic elements, which makes it suitable for a variety of applications. Additionally, the model is designed to be compatible with a wide range of tools, making it easy to use.
The chip model 10M02DCU324A7G is expected to be in high demand in the near future as more and more industries are looking for high-performance solutions. With its low power consumption and high-speed transceiver, the model is ideal for applications such as artificial intelligence, robotics, and machine learning. These applications require a high degree of processing power and the chip model 10M02DCU324A7G is well-suited to meet these needs.
The chip model 10M02DCU324A7G can be applied to the development and popularization of future intelligent robots. It has the capabilities to support a variety of functions, such as image processing, speech recognition, and machine learning. To use the model effectively, a strong technical background in HDL language is required. Additionally, knowledge of robotics and artificial intelligence is beneficial, as these are the areas that the chip model 10M02DCU324A7G is most suitable for.
In conclusion, the chip model 10M02DCU324A7G is a powerful and versatile solution for a variety of applications. It is expected to be in high demand in the near future and can be used to develop and popularize future intelligent robots. To use the model effectively, a strong technical background in HDL language is required, as well as knowledge of robotics and artificial intelligence.
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