መድረክ መረጃ መጨረሻ

Why are serial connections faster?

  1. ምንጭ እንደ ሆነ ኤሌክትሮኖች በተያያዘ ይጓዙ እና የሚከሰቱትን ማበረታታት ይቀንሳሉ።
  2. ምክንያቱም በቀጣይ ካብሊንግ የተደገፉ ናቸው።
  3. ምንጭ እንደ እንቅስቃሴ የሚያደርጉ ኤሌክትሮን የኤሌክትሪክ መስመሮች እንደ ማስተካከል ይታወቃሉ።
  4. ለምን ቢት ወደ ተቀባይ በተደጋጋሚ ይደርሳሉ እና ከide የተያያዘ የአንደኛ ደረጃ ኤሌክትሪክ/ ማግኔቲክ መሠረት ይፈጥራሉ።
  5. ለምን ኤሌክትሮኖች በተመሳሳይ በርካታ ይንቀሳቀሱ እና እንደ አይ.ዲ.ኢ ውስጥ የማይታወቅ የማግኔቲክ ወይም የኤሌክትሪክ መስኮች የማይተገኙ ናቸው።
  6. ምንጭ መረጃዎች (2-4 ፒን) በተደጋጋሚ በመምጣት የማንግነት እና የኤሌክትሪክ መስክ ይሰሩ።
  7. ምክንያቱም ከኤሌክትሮን የተለያዩ የኤሌክትሮማግኔቲክ እንቅስቃሴ ይታወቃል።
  8. because the bits travel one after the other, without the electric and magnetic fields interfering with each other.
  9. because the movement of charges is not hindered by the interference of the magnetic field
  10. there is no interference from the electromagnetic fields of moving electrons
  11. there are fewer interferences
  12. because they create less interference
  13. because electrons travel in series, that is, one behind the other, and in this way the interference created by the electric and magnetic fields perpendicular to the path is reduced.
  14. because they interfere less with magnetic and electric fields, so electrons move faster.
  15. less interference is created between the magnetic fields
  16. because no interference is created due to the magnetic fields induced by the flow of current
  17. because they create less electromagnetic interference compared to parallel ones
  18. because s-ata transmits electrons asynchronously through a smaller number of pins, which means that the electrons create less interference as they pass, increasing the transmission of information
  19. in sata connections, electrons travel in packets of 3-4 pins and generate less intense magnetic fields that do not cause interference.
  20. why do electrons travel in series?
  21. because electrons travel one at a time, electromagnetic fields are formed that are less powerful than parallel connections.
  22. less interference
  23. because there is less interference.
  24. there are no interferences between the electromagnetic fields of the electrons.