ASTM F3005-2014 Standard Specification for Batteries for Use in Small Unmanned Aircraft Systems &40 sUAS&41 《小型无人航空器系统40 sUAS41用电池的标准规范》.pdf
《ASTM F3005-2014 Standard Specification for Batteries for Use in Small Unmanned Aircraft Systems &40 sUAS&41 《小型无人航空器系统40 sUAS41用电池的标准规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM F3005-2014 Standard Specification for Batteries for Use in Small Unmanned Aircraft Systems &40 sUAS&41 《小型无人航空器系统40 sUAS41用电池的标准规范》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F3005 14Standard Specification forBatteries for Use in Small Unmanned Aircraft Systems(sUAS)1This standard is issued under the fixed designation F3005; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last r
2、evision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This standard defines the requirements for batteries usedin small Unmanned Aircraft Systems (sUAS).1.2 This standard does no
3、t define requirements for thesystems in which sUAS battery packs may be utilized.1.3 This standard is subordinate to Specification F2910.1.4 If allowed by a nations GAA, certain sUAS may beexempt from this standard and may use commercial off-the-shelf (COTS) batteries. Air transport regulations stil
4、l shall beadhered to when air transport is used for COTS cells orbatteries in bulk.1.5 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and
5、determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2F2910 Specification for Design, Construction, and Test of aSmall Unmanned Aircraft System (sUAS)2.2 Other Standards:UL 1642 Standard for Lithium Batteries33. Terminology3.1 Definitions and
6、AcronymsThe standard terminologyfor sUAS as defined in higher level standards applies in generalto this standard except as noted below.3.2 Definitions of Terms Specific to This Standard:3.2.1 C-rating, nmaximum steady-state current (amps) atwhich the battery cell or pack may be discharged withouthav
7、ing pack temperature exceed the temperature that results inpermanent damage, loss of capacity or reduction in cell life.C-rating is expressed as a multiple of the capacity. Forexample, a battery with a nominal capacity of 4 Ah may havea C-rating of 5C, meaning that 20 A would be considered itsmaximu
8、m safe current.3.2.2 depth of discharge, DOD, nratio of cell or packcapacity expended relative to its nominal capacity.3.2.3 pack, na single cell or composition of battery cellsconnected in series or in parallel or both plus monitoringelectronics, structure, and connector(s).3.2.4 pack assembler, nt
9、hat supplier which performs themanufacturing processes which integrate the essential compo-nents into a functional pack. In the event that multiple suppliersare involved in the assembly process, the pack assembler is thatsupplier which performs the final electrical connection(s). Onesupplier may wel
10、d solderable tabs to batch of cells, a secondsupplier may connect circuitry, wiring and a connector, and yeta third may install the assembly in a plastic housing. In thisexample, the second supplier would be the pack assembler.3.2.5 shall versus should versus may, vuse of the word“shall” implies tha
11、t a procedure or statement is mandatory andmust be followed to comply with this standard, “should”implies recommended, and “may” implies optional at thediscretion of the supplier, manufacturer, or operator. Since“shall” statements are requirements, they include sufficientdetail needed to define comp
12、liance (for example, thresholdvalues, test methods, oversight, reference to other standards).“Should” statement are provided as guidance toward theoverall goal of improving safety and could include onlysubjective statements. “Should” statements also represent pa-rameters that could be used in safety
13、 evaluations and could leadto development of future requirements. “May” statements areprovided to clarify acceptability of a specific item or practiceand offer options for satisfying requirements.3.2.6 small unmanned aircraft system, sUAS, ncomposedof the small unmanned aircraft (sUA) and all requir
14、ed on-boardsubsystems, payload, control station, other required off-boardsubsystems, any required launch and recovery equipment, and1This specification is under the jurisdiction of ASTM Committee F38 onUnmannedAircraft Systems and is the direct responsibility of Subcommittee F38.01on Airworthiness.C
15、urrent edition approved Jan. 15, 2014. Published February 2014. DOI:10.1520/F3005-14.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary
16、page onthe ASTM website.3Applicable only to 5.1 on cell suppliers.Available from Underwriters Laboratories (UL), 2600 N.W. Lake Rd., Camas,WA 98607-8542, http:/.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1command and control (C2)
17、links between the sUA and thecontrol station. Since any one of the preceding subsystems mayaffect reliability and thus safety of the sUAS, batteries used inthose subsystems shall comply with this standard unless failureof the battery will not compromise safety. For purposes of thisstandard sUAS is s
18、ynonymous with small Remotely PilotedAircraft System (sRPAS), and SUA is synomymous with asmall Remotely Piloted Aircraft (sRPA).3.2.7 supplier, nany entity engaged in the design orproduction of a battery pack or any component of a packintended for used in a sUAS. The cell supplier is the manu-factu
19、rer of the fundamental cell(s) constituent in a battery core.Various suppliers contribute to the production of a pack, andany differences between them are described both explicitly andby context throughout the document.3.3 Acronyms:3.3.1 COTSCommercial off the Shelf3.3.2 DODDepth of Discharge3.3.3 I
20、CInternal Combustion3.3.4 LiLithium3.3.5 LiFeLithium Ferrite3.3.6 LiFePO4Lithium Iron Phosphate3.3.7 LiPoLithium Polymer3.3.8 MSDSMaterial Safety Data Sheet3.3.9 NiCdNickel Cadmium3.3.10 NiMHNickel Metal Hydride3.3.11 PCMProtective Circuit Module3.3.12 SLASealed Lead Acid3.3.13 sUASSmall Unmanned Ai
21、rcraft System3.3.14 UASUnmanned Aircraft System4. Applicability4.1 This standard relates to and is referenced by other sUASstandards at the sUAS system level as listed in Section 2. Thisstandard is mandatory at any point in the sUAS system inwhich batteries are used, except for payload downlinks tha
22、thave no effect on flight safety.4.2 This standard is written for all sUAS that are permittedto operate over a defined area and in airspace defined by anations GAA. Unless otherwise specified by a nations GAA,this standard applies only to UA that have a maximum takeoffgross weight of 55 lb/25 Kg.4.3
23、 Criticality of this standard is derived from safety riskanalysis. The following failures are critical and are listedhierarchically, the first being the most critical:4.3.1 Loss of independent power for flight termination byany means requiring battery power, resulting in inability toterminate the fl
24、ight safely;4.3.2 Failure of primary power for the FCS resulting in lossof control to permit safe flight or recovery;4.3.3 Failure of ignition power (if a battery is utilizedinstead of a magneto, alternator, generator or the like forinternal combustion) or primary power for electric propulsion,creat
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