Engineering Design Handbook - Hardening Weapon Systems

The aim of this 1972 guide is to take the wealth of data amassed via the military over a interval of years with regards to hardening weapon platforms opposed to RF power and to make this knowledge to be had to the clothier. a lot of the information during this instruction manual is in chart or desk shape for swift retrieval. even though this guide used to be ready for the fashion designer of weapon platforms it may even be of profit to these engaged in designing try courses for settling on the hardening of weapon platforms.

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Extra info for Engineering Design Handbook - Hardening Weapon Systems against RF Energy:

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And upper limits can be set on the amount of energy that they can extract from a given incident field over large portions of the 3-& AMCP 706-235 frequency spectrum. Design concepts can be developed from this treatment such that the maximum energy extracted from the field is minimized. Often techniques of this type result in various electrical and mechanical design guides such as balanced circuits, twisted pair wiring, etc. These protection techniques are dictated by analysis that usually cover only part of the frequency band that may be of concern for weapon system protection; hence, if a wide frequency band is of concern, there can be some confusion as to which techniques should be used.

Fig. 2-7 shows the static electricity on helicopters and B-707 jet aircraft. From this figure it can be seen that the most effective type of passive discharger lowers the voltage to about 7,000 V which exceeds the level desired. Corona discharge occurs when the potential at a point ionizes the air around it, thereby allowing the charge on the body to leak into the air. One of the techniques used for a forced or active discharge device is to lower the potential needed to ionize the air around the discharge element.

Fig. 2-12 demonstrates the time sequence of these events that are the dynamics of the lightning phenomena. The formation of the stepped leader, the first return streamer, and then dart leaders and subsequent return strokes (which are repeated) are shown. The time values shown are approximate; there is considerable debate over the time duration and velocity of propagation of the stroke. More is said later concerning the stroke velocity in par. 5. ooo n EED INPUT SHIELDED CABLE > s::: (') "'0 ......

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