Logistics / Mapping / Fire-Fighting / Emergency Response Super High Voltage High Rate Cell

Logistics / Mapping / Fire-Fighting / Emergency Response Super High Voltage High Rate Cell

The Super High Voltage High Rate Cell redefines energy density benchmarks with a 4.45V ultra-high voltage lithium cobalt oxide cathode paired with a silicon-carbon anode, achieving over 300Wh/kg — a 40%+ improvement over traditional graphite systems. Nanoscale silicon particles combined with porous carbon coating technology keep expansion coefficients at ≤120%, while delivering a cycle life of ≥800 times at 80% DOD with 100% capacity retention. A low internal resistance lamination process and high-temperature resistant electrolyte cut discharge temperature rise by 30% versus conventional lithium batteries, enabling sustained high-rate output without attenuation. A stable discharge platform median voltage of ≥3.75V with an end-of-discharge voltage drop of <5% ensures consistent, strong power delivery. Available from 3,000mAh for miniaturized applications including drones and wearable devices.

Description

The Super High Voltage High Rate Cell is MidlandsPower most advanced high-energy LiPo solution, engineered for applications where maximum energy density, thermal stability, and long cycle life must coexist in a compact, lightweight form factor.

At its core, a 4.45V ultra-high voltage lithium cobalt oxide cathode works in synergy with a silicon-carbon anode to push energy density beyond 300Wh/kg — delivering more than 40% greater energy storage compared to conventional graphite-based systems. This breakthrough enables significant reductions in battery size and weight without compromising runtime, making it ideal for next-generation drones, wearables, and other miniaturised high-performance devices.

Longevity and structural integrity are addressed through nanoscale silicon particle engineering combined with porous carbon coating technology. This advanced architecture limits the expansion coefficient to ≤120%, while sustaining a cycle life of ≥800 cycles at 80% depth of discharge with a 100% capacity retention rate — ensuring the cell performs as powerfully at the end of its service life as it does on day one.

Thermal management is built into the cell’s fundamental design. A low internal resistance lamination process paired with a high-temperature resistant electrolyte reduces discharge temperature rise by 30% compared to traditional lithium batteries, allowing continuous high-rate output without performance attenuation — even under prolonged, demanding workloads.

Voltage stability further sets this cell apart. With a discharge platform median voltage of ≥3.75V and an end-of-discharge voltage drop of less than 5%, it delivers consistent, sustained power throughout the entire discharge cycle — eliminating the performance drop-off that plagues lesser cells at low states of charge.

Accepting custom orders from 3,000mAh, the Super High Voltage High Rate Cell is precisely tailored for miniaturized, high-demand scenarios where every milliamp-hour and every gram counts.

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