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  2. Lithium iron phosphate battery - Wikipedia

    en.wikipedia.org/wiki/Lithium_iron_phosphate_battery

    2 cell, the CoO 2 undergoes non-linear expansion that affects the structural integrity of the cell. The fully lithiated and unlithiated states of LiFePO 4 are structurally similar which means that LiFePO 4 cells are more structurally stable than LiCoO 2 cells. [citation needed] No lithium remains in the cathode of a fully charged LFP cell. In a ...

  3. Lithium iron phosphate - Wikipedia

    en.wikipedia.org/wiki/Lithium_iron_phosphate

    The original ratio of Ni to Mn to Co was 3:3:3, whereas today, cells are being made with ratios of 8:1:1 or 6:2:2, whereby the Co content has been drastically reduced. LiFePO 4 batteries are comparable to sealed lead acid batteries and are often being touted as a drop-in replacement for lead acid applications.

  4. List of battery sizes - Wikipedia

    en.wikipedia.org/wiki/List_of_battery_sizes

    LiFePO4 3.2 V. Slightly taller version of the 38120 cells, most often used in electric bikes. Height including the screw terminals: 154 mm [citation needed] 40152: 40152s 15,000 40: 152 LiFePO4 3.2 V. Largest cylindrical LiFePO4 cells. Height including the screw terminals: 167 mm [citation needed] 4680: 46800 [citation needed] 9,000 [citation ...

  5. A123 Systems - Wikipedia

    en.wikipedia.org/wiki/A123_Systems

    A123 Systems, LLC, a subsidiary of the Chinese Wanxiang Group Holdings, is a developer and manufacturer of lithium iron phosphate batteries and energy storage systems.. The company was founded in 2001 by Yet-Ming Chiang, Bart Riley, and Ric Fulop.

  6. Molicel - Wikipedia

    en.wikipedia.org/wiki/Molicel

    It was founded in 1998 and focused on producing high capacity energy cells for notebook computers, high-end electronics and networking communication devices under the "Molicel" brand. In 2004, it partnered with Milwaukee Electric Tool to develop a high energy power cell for cordless power tools, with its first power tool model introduced in 2005.

  7. CATL - Wikipedia

    en.wikipedia.org/wiki/CATL

    The company employs the cell-to-pack method to reduce the inactive weight of its batteries. It increases volume utilization rate by 15% to 20%, doubles the production efficiency and reduces the number of parts for a battery pack by 40%, while the energy density of a battery pack jumps from 140 to 150 Wh/Kg to 200 Wh/Kg.

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