|Part Life Cycle Code||Active|
|Supply Voltage-Nom||3 V|
|Number of Inputs||500|
|Number of Outputs||500|
|Number of Logic Cells||50000|
|Number of CLBs||3125|
|Programmable Logic Type||FIELD PROGRAMMABLE GATE ARRAY|
|Additional Feature||ALSO OPERATES AT 3.3 V NOMINAL SUPPLY|
|Power Supplies||3/3.3 V|
|Supply Voltage-Max||3.15 V|
|Supply Voltage-Min||2.85 V|
|Qualification Status||Not Qualified|
|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||144|
|Package Body Material||PLASTIC/EPOXY|
|Package Equivalence Code||HQFP144,.87SQ,20|
|Terminal Form||GULL WING|
|Terminal Pitch||500 µm|
|Seated Height-Max||1.65 mm|
|Ihs Manufacturer||INTEL CORP|
|Reach Compliance Code||compliant|
10M50SCE144A7G Datasheet Download
The chip model 10M50SCE144A7G is a high-performance and low-power integrated circuit developed by Altera Corporation. It is designed to meet the needs of advanced communication systems in terms of speed, power efficiency, and cost. It has a wide range of applications and can be used for a variety of tasks, such as high-speed data transmission, data processing, and signal analysis.
The 10M50SCE144A7G chip model is based on a 14-layer stackable architecture and is equipped with a high-speed transceiver. It features an integrated hard logic module, a high-speed memory controller, and a high-performance DSP module. It also has a high-speed I/O interface and a low-power consumption design. It can achieve a maximum operating frequency of up to 1.2GHz and a maximum data rate of up to 10Gbps.
The 10M50SCE144A7G chip model has the potential to be upgraded in the future. It can be used to develop advanced communication systems and can be used in a variety of applications such as high-speed data transmission, data processing, and signal analysis. It can also be used to develop and popularize future intelligent robots.
To use the 10M50SCE144A7G chip model effectively, certain technical talents are required. These include knowledge of digital design, circuit design, signal processing, and embedded systems. Knowledge of communication systems and software engineering is also beneficial.
Case studies have been conducted to demonstrate the practicality of the 10M50SCE144A7G chip model. It has been used successfully in a variety of applications, such as high-speed data transmission, data processing, and signal analysis. It has also been used in the development and popularization of future intelligent robots.
When using the 10M50SCE144A7G chip model, certain precautions should be taken. The chip model should be used in accordance with the instructions provided by Altera Corporation. It should also be operated within the specified temperature range and with adequate cooling. The chip model should also be tested regularly to ensure that it is functioning properly.
In conclusion, the 10M50SCE144A7G chip model is an advanced integrated circuit developed by Altera Corporation. It is designed to meet the needs of advanced communication systems in terms of speed, power efficiency, and cost. It has the potential to be upgraded in the future and can be used to develop and popularize future intelligent robots. Certain technical talents are required to use the model effectively, and certain precautions should be taken when operating the model.
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