Academic literature on the topic '12-Volt Lead Acid Battery'

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Journal articles on the topic "12-Volt Lead Acid Battery"

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Sylvester, Tirones. "Automatic 12-Volt Battery Charge Controller for Telecommunication Systems." International Journal of Inventive Engineering and Sciences (IJIES) 12, no. 5 (2025): 25–31. https://doi.org/10.35940/ijies.E1104.12050525.

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<strong>Abstract:</strong> Everyday electronic applications rely on electric energy to perform work. The growing use of electrical appliances has significantly increased electricity demand. In remote areas where electronic systems are deployed, DC power is essential, making batteries vital for energy storage. Rechargeable batteries are widely used as backup power sources in applications requiring continuous operation, but without appropriate chargers, they become ineffective. Telecommunication systems, crucial for transmitting and receiving information, depend on reliable power. A battery char
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Sylvester, Tirones. "Automatic 12-Volt Battery Charge Controller for Telecommunication Systems." International Journal of Inventive Engineering and Sciences (IJIES) 12, no. 5 (2025): 25–31. https://doi.org/10.35940/ijies.E1104.12050525/.

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<strong>Abstract: </strong>Every day, electronic applications rely on electric energy to perform work. The growing use of electrical appliances has significantly increased electricity demand. In remote areas where electronic systems are deployed, DC power is essential, making batteries vital for energy storage. Rechargeable batteries are widely used as backup power sources in applications requiring continuous operation, but without appropriate chargers, they become ineffective. Telecommunication systems depend on reliable power, which is crucial for transmitting and receiving information. A ch
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Tirones, Sylvester, and Raj Kumar. "Automatic 12-Volt Battery Charge Controller for Telecommunication Systems." International Journal of Inventive Engineering and Sciences 12, no. 5 (2025): 25–31. https://doi.org/10.35940/ijies.e1104.12050525.

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Every day, electronic applications rely on electric energy to perform work. The growing use of electrical appliances has significantly increased electricity demand. In remote areas where electronic systems are deployed, DC power is essential, making batteries vital for energy storage. Rechargeable batteries are widely used as backup power sources in applications requiring continuous operation, but without appropriate chargers, they become ineffective. Telecommunication systems depend on reliable power, which is crucial for transmitting and receiving information. A charger matched to the batter
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Asrol, Muhammad, Endang Djuana, Christian Harito, Arief S. Budiman, and Fergyanto E. Gunawan. "Developing an Inference Engine for Estimating State of Charge of the Lead Acid Battery." IOP Conference Series: Earth and Environmental Science 1169, no. 1 (2023): 012001. http://dx.doi.org/10.1088/1755-1315/1169/1/012001.

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Abstract Lead acid battery efficiency is affected by huge uncertainty features. An inference engine is required to monitor the uncertainty of the battery state of charge. The objective of the research is to design an inference system to predict the lead acid battery state of charge. A Relief algorithm and Pearson correlation were applied to pre-process the real-world dataset. A fuzzy inference system was adopted to design the inference engine of the state of charge. This research found four main features which had significant impact to lead acid state of charge, including: export power, temper
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Ewing, Robert, Ben Brokesh, Phillip Shults, and Lee W. Cohnstaedt. "Are You Still Using 6-Volt Batteries for Your Insect Traps?" Journal of the American Mosquito Control Association 39, no. 1 (2023): 61–64. http://dx.doi.org/10.2987/22-7061.

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ABSTRACT The most prevalent insect sampling and surveillance problem is powering insect traps in the field. Most modern light traps use 6-V power supplies such as the Centers for Disease Control and Prevention (CDC) suction trap. Buck converter modules efficiently reduce 12-V direct current power to 6-V, which permits the use of higher voltage batteries with lower voltage traps, resulting in longer operational duration and reduced labor requirements associated with replacing and recharging batteries in the field. We evaluated several battery configurations of 6- and 12-V lead-acid batteries in
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PAMBUDI, WAHYU SETYO, RIZA AGUNG FIRMANSYAH, TITIEK SUHETA, and NUR KUKUH WICAKSONO. "Analisis Penggunaan Baterai Lead Acid dan Lithium Ion dengan Sumber Solar Panel." ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika 11, no. 2 (2023): 392. http://dx.doi.org/10.26760/elkomika.v11i2.392.

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ABSTRAKBaterai merupakan bagian penting dari sistem PLTS off-grid. Kendala yang sering terjadi pada baterai adalah siklus yang pendek dan rugi-rugi karena pengaruh internal resistance sehingga tidak optimal pada saat charging atau discharging. Pada penelitian ini dilakukan pengujian untuk membandingkan karakteristik jenis baterai Lead-Acid 12 Ah dan baterai Lithium-Ion 12 Ah pada sistem Off-Grid panel surya 120 Wp. Pengujian charging maksimal 5 jam, discharging dengan beban adjustable resistor 12 Ohm dengan maksimal pengujian 12 jam (Cut Off). Metode yang digunakan adalah modified Coulomb Coun
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Yahaya, Y. and Hassan, N. Y. "Design, Construction and Evaluation of 5A AC-DC Portable Lead Acid Battery Charger with an Inbuilt Automatic Shut OFF." International Journal of Science for Global Sustainability 6, no. 2 (2020): 8. http://dx.doi.org/10.57233/ijsgs.v6i2.116.

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Battery charger is a system that restores battery after being discharged. It is well known that battery can be destroyed for being discharged below its manufacturers specified discharge voltage limit, when left for some hours. A single switch fly back buck converter that enables battery charging from the alternating current (AC) supply is designed, and constructed. To prevent the battery from overcharging an automatic charge controller was added to the design. Size of the charger was minimised by designing it to operate at higher frequency. It has an input potential difference (PD) from 80 to
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Kurriawan, Budi Pranata, Triasari Yuni, Khairati Nur, Istiroyah, Ariesto Pamungkas Mauludi, and Ghufron Muhammad. "Experimental study of capacity and electrode structure of six cell dynamic lead acid battery." TELKOMNIKA (Telecommunication, Computing, Electronics and Control) 19, no. 4 (2021): 1369–78. https://doi.org/10.12928/telkomnika.v19i4.17845.

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The six cells of the dynamic lead acid battery (DLAB) series have been made to resemble the accumulator with sulfuric acid single electrolyte. The tank was filled with 1200 mL of 30% sulfuric acid and circulated through each unit cell by a minipump during charge-discharge process. Experiments were carried out by providing a charging current of 2A, while the discharge current was varied at 0.5 A, 0.6 A, 0.7 A, 0.8 A for 10 continuous cycle to obtain the battery with the best characteristics. The experimental results show that all batteries have a working voltage of 10.8-14.4 volt. The dischargi
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Afrida, Yenni, Jeckson J, and Ubaidah U. "Studi Penentuan State Of Charge (SOC) pada Baterai Valve Regulated Lead Acid NP7-12 Menggunakan MATLAB." Electrician : Jurnal Rekayasa dan Teknologi Elektro 17, no. 2 (2023): 146–50. http://dx.doi.org/10.23960/elc.v17n2.2481.

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Abstract — To maintain battery performance, it is necessary to have a battery monitoring system that functions to determine several parameters in the battery, such as voltage, current, capacitance and battery capacity. The technology for knowing battery capacity is often known as state of charge (SOC). State of charge (SOC) is the ratio of the remaining energy to the maximum energy capacity of the battery. State of charge values ​​are often expressed in percentage form, 0 percent -100 percent. Estimating the value of the state of charge is quite important in battery monitoring technology. The
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Meliala, Selamat, Saifuddin Muhammad Jalil, Wahyu Fuadi, and Asran Asran. "Application of Off-Grid Solar Panels System for Household Electricity Consumptions in Facing Electric Energy Crisis." International Journal of Engineering, Science and Information Technology 2, no. 1 (2021): 30–37. http://dx.doi.org/10.52088/ijesty.v2i1.199.

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At this time the cost of electricity is very expensive which is felt by the community because the government is still exploring oil and natural gas which is the need for non-renewable energy sources that are running low. This non-renewable energy still dominates for power generation in the thousands of Mega Watts. To anticipate the problem of non-renewable energy that is so big, you can use the On Grid-Tie System, sunlight is converted into DC voltage through the Solar Module, a pure DC voltage that comes out of the solar module. And Off Grid-Tie System namely sunlight is converted into DC vol
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Dissertations / Theses on the topic "12-Volt Lead Acid Battery"

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Kopuletý, Ondřej. "Rychlonabíječ olověných akumulátorů 12 V." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2019. http://www.nusl.cz/ntk/nusl-401971.

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This Master thesis deals with modification of lead battery charger connection. In particular, changes are made to the control board. The theoretical part describes the principle of charging lead batteries and the description of the basic types of switching power supplies. Furthermore, the dimensioning of important components in the circuit together with the optimization of the switching frequency and the parameters of the high-frequency transformer are also presented. At the end of the thesis is the procedure of assembling the whole charger.
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Books on the topic "12-Volt Lead Acid Battery"

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Commission, United States International Trade. 12-volt lead-acid type automotive storage batteries from the Republic of Korea: Determination of the Commission in investigation no. 731-TA-261 (preliminary) under the Tariff Act of 1930, together with the information obtained in the investigation. U.S. International Trade Commission, 1985.

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United States International Trade Commission. 12-volt lead-acid type automotive storage batteries from the Republic of Korea: Determination of the Commission in investigation no. 731-TA-261 (preliminary) under the Tariff Act of 1930, together with the information obtained in the investigation. U.S. International Trade Commission, 1985.

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United States International Trade Commission. 12-volt lead-acid type automotive storage batteries from the Republic of Korea: Determination of the Commission in investigation no. 731-TA-261 (preliminary) under the Tariff Act of 1930, together with the information obtained in the investigation. U.S. International Trade Commission, 1985.

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Book chapters on the topic "12-Volt Lead Acid Battery"

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Torabi, Farschad, and Pouria Ahmadi. "Lead–acid batteries." In Simulation of Battery Systems. Elsevier, 2020. http://dx.doi.org/10.1016/b978-0-12-816212-5.00010-6.

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"Lead-Acid Battery Manufacturing Equipment." In Lead-Acid Battery Technologies. CRC Press, 2015. http://dx.doi.org/10.1201/b18665-12.

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Torabi, Farschad, and Pouria Ahmadi. "Experimental tests for lead–acid batteries." In Simulation of Battery Systems. Elsevier, 2020. http://dx.doi.org/10.1016/b978-0-12-816212-5.00014-3.

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Warm, A., and M. Denlinger. "Dual battery systems for 12-V automotive power supply." In Lead-Acid Batteries for Future Automobiles. Elsevier, 2017. http://dx.doi.org/10.1016/b978-0-444-63700-0.00015-5.

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Conference papers on the topic "12-Volt Lead Acid Battery"

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Van Tiem, Ryan A., Craig J. Hoff, and K. Joel Berry. "Modeling of a Fuel Cell Hybrid Electric Vehicle." In ASME 2005 3rd International Conference on Fuel Cell Science, Engineering and Technology. ASMEDC, 2005. http://dx.doi.org/10.1115/fuelcell2005-74139.

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This paper explains the method by which a small “Neighborhood” fuel cell hybrid electric vehicle (FCHEV) was modeled using Matlab/Simulink and validated using National Instruments Data Acquisition equipment and a chassis dynamometer. The vehicle is a modified four-passenger Global Electric Motorcar (GEM), which was designed for city or neighborhood operation where maximum speed limits do not exceed 35 mph. The stock 72-Volt shunt wound GE motor is powered by six 12-Volt Trojan lead-acid batteries. The vehicle was converted to a FCHEV by integrating a Ballard Nexa™ fuel cell module and a Spectr
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Ferguson, Scott, Candice Brenner, Jasmine Cox, Ben Foote, Keith Hensley, and Nicole Ruth. "Saft’s Xcelion 6T<sup>®</sup> 28V Lithium Ion Battery for Military Vehicles." In 2024 NDIA Michigan Chapter Ground Vehicle Systems Engineering and Technology Symposium. National Defense Industrial Association, 2024. http://dx.doi.org/10.4271/2024-01-3623.

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&lt;title&gt;ABSTRACT&lt;/title&gt; &lt;p&gt;Saft has developed a competitively-priced lithium-ion replacement for the traditional lead-acid batteries for use in the next generation of military vehicles. Saft’s 24 volt Xcelion 6T&lt;sup&gt;®&lt;/sup&gt; delivers power at high rate that surpasses the delivered capacity of two lead-acid batteries. The battery design is tailored to support high rates, even at extreme cold temperatures, to support the mission needs for silent watch and starting for military vehicles. The product is now industrialized and commercially available for integration in t
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Nagode, C., M. Ahmadian, and S. Taheri. "Axle Generator for Freight Car Electric Systems." In 2012 Joint Rail Conference. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/jrc2012-74069.

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As the desire to implement more electronic devices such as measuring or tracking systems on freight cars grows, having a source of power to rely on becomes an issue. An innovative and practical solution to keep batteries charged is presented. Placed on the car axle, the system uses the rotation of the wheelset as input motion. Friction wheels roll on the outside of the car axle, transferring the power to a generator through a set of gears. Designed to be easily implemented, the system can be installed or removed conveniently and quickly. The first laboratory tests showed that the system is cap
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Ferguson, Scott, Candice Brenner, Jasmine Cox, Keith Hensley, and Nicole Ruth. "Saft’s Xcelion 6T<sup>®</sup> 28V Lithium Ion Batteries." In 2024 NDIA Michigan Chapter Ground Vehicle Systems Engineering and Technology Symposium. National Defense Industrial Association, 2024. http://dx.doi.org/10.4271/2024-01-3705.

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&lt;title&gt;ABSTRACT&lt;/title&gt; &lt;p&gt;Saft has continued to develop lithium-ion replacement batteries for the traditional lead-acid batteries for use in military vehicles. Saft’s 24 volt Xcelion 6T&lt;sup&gt;®&lt;/sup&gt; delivers power at high rate that surpasses the delivered capacity of two lead-acid batteries. The battery design is tailored to support high rates, even at extreme cold temperatures, to support the mission needs for silent watch and starting for military vehicles. An additional design variant is now available, the Xcelion 6T Energy, to provide 30% more energy while sti
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Luciani, Sara, Stefano Feraco, Angelo Bonfitto, Nicola Amati, Andrea Tonoli, and Maurizio Quaggiotto. "Artificial Intelligence Based State of Health Estimation With Short-Term Current Profile in Lead-Acid Batteries for Heavy-Duty Vehicles." In ASME 2022 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2022. http://dx.doi.org/10.1115/detc2022-89512.

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Abstract The State of Health (SOH) estimation for automotive batteries is currently assessed with different techniques which may involve long testing procedure or require costly hardware to be implemented. This paper aims at contributing to this domain by exploiting the response of a lead-acid battery with respect to a short-term current profile using an Artificial Neural Network (ANN) classifier for SOH estimation. The method is applicable onboard the vehicle and no additional instrumentation is required on the retained vehicle. The design and validation of a SOH method with a short-term curr
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Craig, Andrew, Xiaokuan Li, Patrick Sesker, Alex Mcinerny, Thomas DeAgostino, and Christopher Depcik. "Small-Scale Smart Electrical Grid Design, Construction, and Analysis." In ASME 2016 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/imece2016-65219.

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As society moves into the digital age, the expectation of instantaneous electricity at the flip of a switch is more prominent than ever. The traditional electric grid has become outdated and Smart Grids are being developed to deliver reliable and efficient energy to consumers. However, the costs involved with implementing their infrastructure often limits research to theoretical models. As a result, an undergraduate capstone design team constructed a small-scale 12 VDC version to be used in conjunction with classroom and research activities. In this model Smart Grid, two houses act as resident
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Gruenstern, Robert G., and M. Eric Taylor. "High Temperature Application Accelerated Cycle Life Test for 12 Volt Lead-Acid SLI Automotive Storage Batteries." In SAE World Congress & Exhibition. SAE International, 2007. http://dx.doi.org/10.4271/2007-01-0637.

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