The Redodo Deep Cycle LiFePO4 Battery excels in real-world applications due to its stable voltage output, high energy density, and robust thermal management. It maintains 90% capacity after 3,000+ cycles, operates efficiently in -20°C to 60°C temperatures, and features a built-in Battery Management System (BMS) for overcharge/discharge protection. Its modular design supports scalable setups for solar, marine, and RV use.
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What Is the Cycle Life of the Redodo LiFePO4 Battery?
The battery achieves 3,500-5,000 cycles at 80% Depth of Discharge (DoD), outperforming lead-acid’s 300-500 cycles. Cycle life halves with 100% DoD usage. At 25°C and 0.5C discharge, lab tests show 92% capacity retention after 2,000 cycles. Real-world solar setups report 7-10 years of daily cycling before reaching 80% capacity.
Cycle life is heavily influenced by discharge patterns. For example, shallow discharges (20-30% DoD) can extend cycles to 7,000+, making the battery ideal for applications requiring daily partial cycling, such as backup power systems. The table below illustrates the relationship between DoD and cycle longevity:
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Depth of Discharge | Estimated Cycles |
---|---|
20% | 8,000+ |
50% | 6,000 |
80% | 4,500 |
100% | 2,200 |
Users can optimize cycle life by pairing the battery with smart inverters that limit DoD to 80% during normal operation. Additionally, avoiding full discharges during extreme temperatures preserves electrode integrity. Field data from off-grid cabins shows a 12% longer lifespan when operating within 15-35°C versus marginal temperatures.
Is the Redodo Battery Compatible With Existing Solar Systems?
Yes, it integrates with 12V/24V/48V solar configurations via standard MC4 connectors. The BMS auto-detects voltage inputs from 10-60V, supporting PWM and MPPT controllers. Parallel connections allow up to 4 units (48V 400Ah max) without voltage drop issues. Built-in low-resistance terminals minimize energy loss (<2%) during transmission.
Compatibility extends to hybrid systems combining solar and grid power. The battery’s rapid charge acceptance (up to 100A) ensures solar arrays can refill storage during peak production hours. For example, a 5kW solar array with four Redodo 12V 200Ah batteries can store 9.6kWh daily, sufficient for medium-sized households. Key integration steps include:
System Component | Compatibility Notes |
---|---|
MPPT Controllers | Supports Victron, Renogy, and Outback models |
Inverters | Works with 12V-48V pure sine wave inverters up to 6kW |
Charge Controllers | Auto-senses voltage; no manual configuration needed |
Users report 18-22% higher solar harvesting efficiency compared to AGM batteries due to the Redodo’s lower internal resistance. The BMS also prevents reverse currents during nighttime, eliminating the need for external diodes. For retrofits, existing wiring and charge controllers typically require no modifications unless exceeding 60V input.
How Does the Redodo Battery’s Charging Process Compare to Lead-Acid?
With 95-98% charge efficiency, Redodo batteries absorb solar/AC power faster than lead-acid. The 100A max charge current refills 100Ah in 1.5 hours (vs. 8+ hours for AGM). Adaptive three-stage charging (bulk/absorption/float) prevents gassing or sulfation. Compatibility with MPPT controllers optimizes renewable energy harvesting.
Expert Views
“Redodo’s hybrid cathode material—a blend of lithium iron phosphate and nano-coated graphite—boosts energy density without compromising safety,” says Dr. Elena Torres, a battery electrochemist. “Their stacked electrode design reduces internal impedance, allowing sustained high currents. For off-grid applications, it’s a game-changer against legacy systems prone to thermal runaway.”
FAQ
- Q: Can Redodo batteries be used in series?
- A: Yes, up to 4 units for 48V systems. The BMS synchronizes voltage across units.
- Q: Does partial charging harm the battery?
- A: No. LiFePO4 chemistry lacks memory effect, enabling partial charges without degradation.
- Q: How to store Redodo batteries long-term?
- A: Store at 50% charge in 15-25°C environments. The BMS maintains a 2-3% monthly self-discharge rate.