Reasons why lithium-ion batteries enhance productivity on-site.
【A Must-See for Those Who Want to Maximize the Operational Efficiency of Industrial Vehicles Such as AGVs and AMRs】 Are you struggling with "power shortages at the end of operations," "frequent battery replacements or purchases," and "maintenance workload" in your existing lead battery operations? This document clearly explains, with illustrations, why switching from lead batteries to lithium-ion batteries can dramatically improve productivity on-site. ■ Issues Addressed in This Document: Extension of Operating Time: Prevent "power down" due to voltage drop and maintain full speed until the end. Optimization of Investment Efficiency: Eliminate the limitation of 70% Depth of Discharge (DOD) and utilize nearly 100% effective capacity. Reduction of Total Cost of Ownership (TCO): Significantly reduce replacement costs due to a lifespan over four times that of lead batteries. ■ Featured Topics (Partial): The decisive difference in "actual operating time" indicated by discharge curves The relationship between "effective capacity" and DOD Cost simulations over 5 and 10-year spans Before-and-after implementation in AGVs and transport equipment Please use this document as a proposal for on-site improvements or as foundational material for internal approval processes.
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Data: Lead-Acid Batteries vs Lithium-Ion Batteries Comprehensive Comparison Guide PDF Format / Total of 2 Pages (Double-Sided) Target Devices: AGV, AMR, Industrial Robots, etc. Comparison Items: Discharge Characteristics (Voltage Drop), Depth of Discharge (DOD), Cycle Life, Total Cost
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Industrial vehicles (AGV, AMR), industrial robots
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