By Thas J. A.
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Extra resources for 3-regularity in generalized quadrangles of order (s, s2)
The loop is 19 AWG wire and a current level of 1 A is maintained. The connection of the earth return circuit to the cable shield and its armor must be made very carefully. It is important to uniformly solder the connections around the circumference of the shields. This is not easily achieved with complete cable samples since damage is possible. Because this method is sensitive to the method of connection, the measurement is unfortunately not a measure of the shield alone. It is also very important that the physical layout of the system remain constant during the tests.
This combination has been found to be more than adequate for most applications. An insulated jacket should be placed over the shield. The shield should be grounded at one end only. 13 Twisted pairs for transmission of high-speed data Shielding is added to twisted pairs to confine the electric and magnetic fields. In this way any susceptibility to EMI is further reduced. However, there is an important side effect on the pair's loss of signal per unit length (attenuation). For high-speed digital signals (half a megabit per second or more) the attenuation, α, of the shielded pair is well approximated by: C db α = 14 ⋅ 24R ---- ------L km where R C L is the high-frequency (skin effect) resistance of the pair, Ω/km is mutual capacitance, F/km is inductance, H/km Adding a shield to a twisted pair confines the electric and magnetic fields associated with the signal voltage and current to a smaller volume, thereby increasing the capacitance C and reducing the inductance L.
NOTE—Sometimes “bonded” is used to describe the grounding of the shield. Usually, the shield represents a lower total impedance throughout its length, and its impedance to the common grounding medium at either end is lower than that of the inner conductors. The shield must be grounded continuously over its length and at both ends so that there are no random paths established through the electronic components. With a lower loop impedance, the shield can develop a greater induced “noise” or surge current than the inner conductors.