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ARMY - MIL-C-71044 - CIRCUIT CARD, BATTERY TEST: 11784531 Organization: ARMY
Date: 1992-02-06
Description: This specification covers the requirements and tests for the Battery Test Card, which is a component in the Electronic Control Unit (ECU).
NPFC - MIL-H-16384 - HYDROMETER SETS AND PARTS, SYRINGE, LEAD-ACID STORAGE BATTERY TESTING Organization: NPFC
Date: 1988-10-19
Description: This specification covers hydrometer sets and replacement parts for use in measuring the specific gravity of electrolyte in submarine, portable, radio, and aircraft lead-acid storage batteries and for measuring mixing acid used for electrolyte in such batteries. Hydrometer sets shall be of the following types as specified (see 6.2).
ARMY - MIL-C-71044 CANC NOTICE 1 - CIRCUIT CARD, BATTERY TEST: 11784531 Organization: ARMY
Date: 1996-06-03
NAVY - MIL-T-22007A - TEST SET, BATTERY AN/AMM-1 Organization: NAVY
Date: 1973-11-28
Description: The equipment covered by this specification shall be capable of functioning as a d-c power source for Radiosonde Set AN/AMT-11(), as a resistive load for activation of Battery BA-353/AM, and as a current and voltage monitor of the d-c power required for operation of Radiosonde Set AN/AMT-11(). The Test Set, Battery AN/AMM-1 shall be of one type and shall consist of the following: Maximum Maximum Allowable Allowable Type Size(Inches) Weight Applicable Unit Designation W H/D L (Pounds) Paragraph Test Set, Battery TS-1101/AM 9 7-½ 12 19 3.5 Cable, Power W-1 48 0.5 3.5 Cable, Radiosonde W-2 39 0.5 3.5
SAE J2380 - VIBRATION TESTING OF ELECTRIC VEHICLE BATTERIES Organization: SAE
Date: 2013-12-01
Description: This SAE Recommended Practice describes the vibration durability testing of a single battery (test unit) consisting of either an electric vehicle battery module or an electric vehicle battery pack.
SAE J240 - LIFE TEST FOR AUTOMOTIVE STORAGE BATTERIES Organization: SAE
Date: 2012-12-01
Description: The SAE Standard applies to 12 V, flooded lead acid automotive storage batteries of 180 minutes or less reserve capacity using cast positive grid technology only. This life test simulates automotive service when the battery operates in a voltage regulated charging system.
DS/EN 60952-1 - AIRCRAFT BATTERIES - PART 1: GENERAL TEST REQUIREMENTS AND PERFORMANCE LEVELS Organization: DS
Date: 2013-10-15
Description: IEC 60952-1:2013 defines test procedures for the evaluation, comparison and qualification of batteries and states minimum performance and environmental levels for airworthiness.
IEC 60952-1 - AIRCRAFT BATTERIES – PART 1: GENERAL TEST REQUIREMENTS AND PERFORMANCE LEVELS - EDITION 3.0 Organization: IEC
Date: 2013-07-01
Description: This part of the IEC 60952 series defines test procedures for the evaluation, comparison and qualification of batteries and states minimum performance and environmental levels for airworthiness.
CEI EN 60952-1 - AIRCRAFT BATTERIES PART 1: GENERAL TEST REQUIREMENTS AND PERFORMANCE LEVELS Organization: CEI
Date: 2014-05-01
Description: This part of the IEC 60952 series defines test procedures for the evaluation, comparison and qualification of batteries and states minimum performance and environmental levels for airworthiness.
CENELEC - EN 60952-1 - AIRCRAFT BATTERIES - PART 1: GENERAL TEST REQUIREMENTS AND PERFORMANCE LEVELS Organization: CENELEC
Date: 2013-10-01
Description: This part of the IEC 60952 series defines test procedures for the evaluation, comparison and qualification of batteries and states minimum performance and environmental levels for airworthiness.
JSA - JIS D 1303 - ELECTRIC VEHICLES - BATTERIES - TEST METHOD OF CHARGING EFFICIENCY Organization: JSA
Date: 2004-03-20
CENELEC - EN 50342-7 - LEAD ACID STARTER BATTERIES - PART 7: GENERAL REQUIREMENTS AND METHODS OF TESTS FOR MOTORCYCLE BATTERIES Organization: CENELEC
Date: 2015-07-01
Description: This European Standard is applicable to lead-acid batteries used primarily as a power source for the starting of internal combustion engines, lighting and ignition of motorcycles, power sport vehicles and all-terrain vehicles up to a maximum capacity of 35 Ah (C10) (further on referred as batteries). The nominal voltage is 12 V or 6 V. Test definitions and criteria in this document are written for batteries with a nominal voltage of 12 V only.
CEI - EN 50342-7 - LEAD ACID STARTER BATTERIES PART 7: GENERAL REQUIREMENTS AND METHODS OF TESTS FOR MOTORCYCLE BATTERIES Organization: CEI
Date: 2016-03-01
Description: This European Standard is applicable to lead-acid batteries used primarily as a power source for the starting of internal combustion engines, lighting and ignition of motorcycles, power sport vehicles and all-terrain vehicles up to a maximum capacity of 35 Ah (C10) (further on referred as batteries). The nominal voltage is 12 V or 6 V. Test definitions and criteria in this document are written for batteries with a nominal voltage of 12 V only.
NAVY - OPNAV 1532.1 - (BUMED-M3B4) U.S. NAVY AND MARINE CORPS AVIATION SELECTION TEST BATTERY Organization: NAVY
Date: 2008-03-13
Description: This instruction applies to the control and administration of all materials pertaining to the subject test battery, the verification and management of test scores, and the definition of minimum qualifying scores for acceptance to aviation training.
DS/EN 14035-4 - FIREWORKS - PART 4: BANGERS AND BANGER BATTERIES - SPECIFICATION AND TEST METHODS Organization: DS
Date: 2003-07-18
Description: This standard specifies requirements for the construction, performance, primary packaging and labelling of bangers and banger batteries and the corresponding test methods. It is applicable to fireworks which are classified as bangers and banger batteries in catagories 1, 2 and 3 according to EN 14035-2 and which contain pyrotechnic report composition that is black powder only.
DS/EN 14035-4/AC - FIREWORKS - PART 4: BANGERS AND BANGER BATTERIES - SPECIFICATION AND TEST METHODS Organization: DS
Date: 2005-02-24
Description: This standard specifies requirements for the construction, performance, primary packaging and labelling of bangers and banger batteries and the corresponding test methods. It is applicable to fireworks which are classified as bangers and banger batteries in catagories 1, 2 and 3 according to EN 14035-2 and which contain pyrotechnic report composition that is black powder only.
NAVY - SECNAV 1532.1 CH-1 - (ASN(M&RA)) U.S. NAVY AND MARINE CORPS AVIATION SELECTION TEST BATTERY Organization: NAVY
Date: 2016-11-02
Description: Purpose Change the retest interval for the Aviation Selection Test Battery from 90 full calendar days to 30 full calendar days between the date of completion of a test attempt and the start date of a subsequent retest
DS/EN 14035-12 - FIREWORKS - PART 12: FLASH BANGERS AND FLASH BANGER BATTERIES - SPECIFICATION AND TEST METHODS Organization: DS
Date: 2003-07-18
Description: This standard specifies requirements for the construction, performance, primary packaging and labelling of flash bangers and flash banger batteries and the corresponding test methods. It is applicable to fireworks which are calssified as flash bangers and flash banger batteries in categories 1, 2 and 3 in EN 14035-2 which contain pyrotechnic report composition that is nitrate/metal-based or perchlorate/metal-based.
DS/EN 14035-12/AC - FIREWORKS - PART 12: FLASH BANGERS AND FLASH BANGER BATTERIES - SPECIFICATION AND TEST METHODS Organization: DS
Date: 2005-02-24
Description: This standard specifies requirements for the construction, performance, primary packaging and labelling of flash bangers and flash banger batteries and the corresponding test methods. It is applicable to fireworks which are calssified as flash bangers and flash banger batteries in categories 1, 2 and 3 in EN 14035-2 which contain pyrotechnic report composition that is nitrate/metal-based or perchlorate/metal-based.
SAE J1495 - TEST PROCEDURE FOR BATTERY FLAME RETARDANT VENTING SYSTEMS Organization: SAE
Date: 2013-02-01
Description: This SAE Standard details procedures for testing lead-acid SLI (starting, lighting, and ignition), Heavy-Duty, EV (electric vehicle) and RV (recreational vehicle) batteries to determine the effectiveness of the battery venting system to retard the propagation of an externally ignited flame of battery gas into the interior of the battery where an explosive mixture can be present.

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