The AMP Blog

Insights on Industrial
Lithium Power

Practical guides, chemistry deep-dives, and total-cost analysis for engineers specifying batteries for AGVs, AMRs, forklifts, and autonomous equipment.

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Thermal · Pt 1
Thermal Series

Pack Temperature and Lifespan: How Heat and Cold Age a Lithium Battery

Why sustained heat ages a lithium pack, why cold changes how fast you can safely charge, and what good thermal design does about it.

Jul 10, 2026·7 min read
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Thermal · Pt 2
Thermal Series

Pack Temperature and Internal Resistance: The Feedback Loop Inside Every Battery

How temperature and internal resistance drive each other, why resistance turns current into heat, and why resistance climbs as a pack ages.

Jul 9, 2026·6 min read
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Thermal · Pt 3
Thermal Series

How Hot Will a Pack Get? Estimating Temperature Rise from Resistance and Thermal Mass

A simple, first-order way to estimate how much a lithium pack heats up under load, using its internal resistance and thermal mass, and why current matters more than you would expect.

Jul 8, 2026·6 min read
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Cell Design

Cylindrical, Prismatic, or Pouch: Choosing a Cell Format for Industrial Packs

A practical look at the three lithium cell formats, what each is good for, and why AMP builds industrial packs primarily with prismatic cells.

Jul 6, 2026·6 min read
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Chemistry

Why Multi-Chemistry Matters: Matching Cell Technology to Your Application

A practical framework for choosing between LFP, NMC, LTO, and sodium-ion for industrial equipment.

Mar 18, 2026·8 min read
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Chemistry

Sodium-Ion Batteries: What They Are and Where They Fit

How sodium-ion works, its strengths and trade-offs, and the industrial applications where it fits best.

Mar 4, 2026·7 min read
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Thermal Series — 3 connected articles on how heat governs a lithium pack. Read them in order, or jump straight to the one you need.
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