The test method (per IEC 62153-4-3 or MIL-STD-1344A Method 3008) uses a triaxial fixture: the cable under test is mounted inside a larger outer tube (the triax), forming a two-conductor structure; a current is injected on the cable's outer shield and the voltage. The test method (per IEC 62153-4-3 or MIL-STD-1344A Method 3008) uses a triaxial fixture: the cable under test is mounted inside a larger outer tube (the triax), forming a two-conductor structure; a current is injected on the cable's outer shield and the voltage. As discussed in the previous chapter, electronic cables and connectors contribute to system EMI and EMC problems as (1) emitters that radiated part of the con ducted signal and (2) receptors that are susceptible to ambient electromagnetic fields. Therefore, the shielding objective is to confine EMI. ond is a near field electromagnetic field. The normal, or along with, setup, this would be the signal generator. TEMPEST security is a function of the TEMPEST characteristics of. How can you verify that cable shielding is continuous and effective along its entire length? To verify that cable shielding is continuous and effective along its entire length, use the following methods: 1. Visual Inspection Inspect the cable for visible damage, cuts, or kinks that could compromise. How do I test the shielding effectiveness of a cable assembly using the transfer impedance method? Testing the shielding effectiveness of a cable assembly using the transfer impedance (Z_t) method quantifies the cable shield's ability to prevent external electromagnetic fields from inducing signals. The CCC01 is based on the design described in IEC 96-1 Amendment 2:1993, also used in IEC 62153-4-6:2006 and mandated for the line injection method in EN 50289-1-6.