Parameters |
Factory Lead Time |
1 Week |
Surface Mount |
YES |
Published |
2016 |
Part Status |
Active |
Number of Terminations |
780 |
HTS Code |
8542.39.00.01 |
Subcategory |
Field Programmable Gate Arrays |
Technology |
CMOS |
Terminal Position |
BOTTOM |
Terminal Form |
BALL |
Peak Reflow Temperature (Cel) |
NOT SPECIFIED |
Supply Voltage |
0.9V |
Terminal Pitch |
1mm |
Time@Peak Reflow Temperature-Max (s) |
NOT SPECIFIED |
JESD-30 Code |
S-PBGA-B780 |
Number of Outputs |
360 |
Qualification Status |
Not Qualified |
Operating Temperature (Max) |
100°C |
Operating Temperature (Min) |
-40°C |
Supply Voltage-Max (Vsup) |
0.93V |
Power Supplies |
0.9V |
Temperature Grade |
INDUSTRIAL |
Supply Voltage-Min (Vsup) |
0.87V |
Number of Inputs |
360 |
Programmable Logic Type |
FIELD PROGRAMMABLE GATE ARRAY |
Number of Logic Cells |
480000 |
Height Seated (Max) |
3.35mm |
Length |
29mm |
Width |
29mm |
RoHS Status |
Non-RoHS Compliant |
This SoC is built on core processor(s).
A power supply with a 0.9V rating is recommended.There is no safe voltage for the SoCs wireless above 0.93V.At least 0.87V can be supplied as a power source.A re-configurable FIELD PROGRAMMABLE GATE ARRAY can be used for a variety of designing purposes.It is really beneficial to have system on a chip since there are 780 terminations in total.This system on a chip is just as capable as any other high-quality Field Programmable Gate Arrays.Using this SoC chip, you have the option of having 360 outputs.You will need to provide 0.9V power supplies in order to run system on chip.There are 360 inputs available on the SoC chip.There are 480000 logic cells in the logic system on chips.There is a possibility that the performance of this SoC on chip will be compromised if the temperature rises over 100°C.In the event that the temperature fall below -40°C, there is the possibility of this system on a chip SoC malfunctioning.
processor.
There are a lot of Altera
10AS048E3F29I2LG System On Chip (SoC) applications.
- Smartphones
- Robotics
- Published Paper
- Wireless sensor networks
- Remote control
- Flow Sensors
- Functional safety for critical applications in the automotive
- Efficient hardware for inference of neural networks
- Communication interfaces ( I2C, SPI )
- Industrial Pressure