Updates-on-RTCA-DO-160-Lightning-Test.pdf
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1、1The world leader in serving scienceRTCA DO-160F Lightning TestingOverview, updates, changes and whats coming next!Michael Hopkins2RTCA DO 160? RTCA is the Radio Technical Commission for Aeronautics Publishes DO 160 Latest is DO 160F, issued in December 2007 and now available for downloading Section
2、 22 is “Lightning Induced Transient Susceptibility” Serves the Aerospace, Automobile, Commercial Vehicle and Motorsport industries AE-2 is responsible for Section 22 of RTCA DO 160 Also responsible for Section 23 “Lightning Direct Effects? Fuel ignition and physical damage And P-Static buildup of ch
3、arge on an airframe and its effects23Driving forces to requirements? Revisions E and F of DO 160 are driven by the use of composite materials used for airframe construction. Boeing 787 Dreamliner Airbus A380 Embraer Bombardier And others.? Many composites dont conduct lightning currents the way meta
4、l airframes do; hence, the possibility of higher voltages and currents getting into cables and equipment on the aircraft.4Mil Std 461? It was the intention that parts or all of DO-160 Section 22 would be included in Mil Std 461F; however, due to disagreements between the Navy and Air Force regarding
5、 pin injection testing, it didnt happen? SAE and RTCA were told in early 2007 that it would be 5 years before Rev G could be considered.? In May, the story changed and it was reported that not only havethe Navy and Air Force come to some agreement regarding pin injection testing, a revision of 461 t
6、o include DO-160 testing would be possible by the end of 2008!vs.35Mil Std 461? In January 2008, it was sadly announced that due to the necessity of doing a 5 year review on Mil 464, the changes to Mil 461 would have to wait.? The latest word is that the review of Mil 464 will take 2 years and that
7、the revision of 461 could begin by the Spring of 2010.6Section 22 Basics? There are 5 Test Levels and 6 Waveforms Single stroke, multi-stroke, and multi-burst applications? 2 primary methods of testing Pin Injection Direct Inductive coupling Ground Injection Cable Bundle Inductive coupling Ground In
8、jection47Test Levels? Level 1 Equipment and wiring are installed in a well protected environment? Level 2 Equipment and wiring are in a partially protected environment? Level 3 Equipment and wiring are in a moderately protected environment? Level 4 and 5 Equipment and wiring are in severe electromag
9、netic environments8Waveforms? Waveform 1 - Current Double exponential 6.4us X 69us (to 50%)? Waveform 2 Voltage Double exponential 100ns X 6.4us (at zero crossing)? Waveform 3 Voltage/Current Ringing wave, sine or cosine 1MHz and 10MHz? Waveform 4 Voltage Double Exponential 6.4us x 69us (to 50%) Sam
10、e shape as Waveform 1 except this ones voltage? Waveform 5A Voltage/Current Double Exponential 40us X 120us (to 50%)? Waveform 5B Voltage/Current Double Exponential 50us X 500us (to 50%)59Waveform Application? Multiple Stroke(Multi-Stroke)? Multiple Burst(Multi-Burst)10Safety issues? The waveforms u
11、sed for lightning testing in DO-160 Section 22 contain considerable energy enough to be lethal under the right conditions.? It is imperative that labs doing this kind of testing take all the necessary measures to insure safety procedures are observed. Grounding Electrical codes Floating Scopes ? - N
12、EVER! Exposed components and circuits ever see a capacitor explode ? Restricted access to the test area is it ? One hand in your pocket ?611Available Testers? Prior to this year, there was only one commercially available test system for Section 22 of DO-160.? As a result, there is a lot of home-brew
13、 equipment in use today similar to the telecom industry in the early 80s. Much of the equipment in use today may have some of the same problems the telecom industry had before moving towards commercially available testers.12Available Testers? Before the telecom industry moved toward commercial teste
14、rs for lightning, they were experiencing a range of problems, including: Exposed components Difficult to maintain Time consuming to use due to set-up requirements Requires engineers to run the tests Availability of high energy components in small quantities limited Ceramic power resistors, large sto
15、rage caps, large inductors, magnetics Lack of correlation between testers Sometimes standards written loosely to accommodate construction problems SAFETY - Biggest issue713Changes from DO-160E to DO-160FThere were a number of changes made to Section 22 of Rev F, both technical and editorial.Ill high
16、light some of the main points in the following slides.1422.1 Purpose?Two clarifications added to the Purpose (22.1) Rev E: stated the procedures “apply idealized waveforms to verify the capability of equipment to withstand the effects of lightning induced electrical transients.” Rev F: modified to s
17、ay the procedures are, “provided to verify the capability of equipment to withstand a selection of transients defined in this section which are intended to represent the effects of lightning.”The Note at the end of 22.1 was in italics for emphasis, but the italics have been removed, and references t
18、o different tests being performed was removed.The intent of the change is to make it clear Section 22 testing doesnt necessarily guarantee it will survive in the aircraft -81522.2 Definitions? Local Ground Limited what can be considered “local” ground to equipment connected via a ground strap of les
19、s than 1 meter. Rev E only specified that the equipment be bonded or connected to the same part of the airframe structure.? Added a definition for “Transfer Impedance” as the ratio of core wire open-circuit voltage to the shield current. Z = Voc/IAccording to 22.5.2 section c., for cable bundle test
20、ing, if the bundle contains shielded cables and those shields cannot be disconnected for testing (they are needed for correct operation), then you must determine the “transfer impedance” so that one can decide what levels to test at and what waveforms to use V or I. Transfer impedance was never defi
21、ned in Rev E.1622.3 Categories? B3G43 (An example) B = Pin test Waveform Set using Waveform B (must be A or B) 3 = Pin test Level 3 could be 1 through 5 G = Cable Bundle Test using Waveform Set G (must be C thru K) 4 = Level 4 for Cable Bundle tests, which requires both single stroke and multiple st
22、roke tests could be 1 through 5 and need not be the same as for pin injection tests 3 = Level 3 for Cable Bundle tests using multi-burst (could be other levels)? A sentence was added to make it clear that the Pin test waveforms and level need not be the same, as indicate in the above example.91722.3
23、 Categories? Table 22-1 listing Test Requirements has been split In Rev E, there is one table Covers both Pin Injection and Cable Bundle Testing In Rev F, the table is split into Table 22-1.1 for Pin Injection Test Requirements Table 22-1.2 for Cable Bundle Test Requirements? This is more consistent
24、 with Table 22-2, Test Levels, is already split in a similar way.18Table 22-1.1 and 22-1.2Aperture coupling is coupling induced through openings in a metal airframe.Resistance coupling is due to voltages developed on the surfaces of composite material airframes.A, C, E, G and J for aperture coupling
25、B, D, F, H, and K for resistance couplingC through F for cable bundle single strokeG through K for cable bundle single, multi-stroke and multi-burstZ means other tests were conducted1019Table 22-1.2 Changes1. Waveform 4 removed from Category C and G.2. Waveform 4 replaces Waveform 5A in D and H.3. W
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