Grade A 5000 Cycles 3.2V 100Ah LFP Prismatic Cells Lithium Iron Phosphate Battery
- 5,000 Deep Cycles @ 80% DOD
- Prismatic Cell Architecture
- 12V / 24V / 48V Modular Array
Direct factory custom battery packs designed with advanced Smart BMS telemetry, severe-duty vibration resistance, and certified for seamless integration into AGVs, AMRs, solar energy storage, and industrial telemetry.
As Peru advances its national industrial strategy—driven by rapid modernization across mining (such as the Southern Copper belt, Antamina, Cerro Verde, and Las Bambas), automated port logistics in Callao and Chancay, and expanding food and beverage processing clusters in Lurín and Arequipa—the demand for ultra-reliable energy storage systems has surged. Modern industrial automation relies on unyielding electrical output. Standard commercial lithium-ion batteries frequently fail when exposed to the severe environmental stress factors encountered across Peru's unique geographic topography.
At elevations exceeding 3,500 meters above sea level (ASL)—common in Andean mining operations such as Cerro de Pasco or Puno—air pressure drops by over 35%, significantly impairing traditional convection cooling. Standard battery enclosures experience accelerated thermal buildup during high-current discharge rates. Our custom industrial battery architecture integrates solid-state conduction heat sinking and phase-change materials (PCM) alongside derated high-altitude MOSFET power boards, ensuring uncompromised heat dissipation without relying on low-density atmospheric convection.
Historically, industrial facilities in Peru depended on heavy lead-acid or gel battery arrays to power Automated Guided Vehicles (AGVs), remote SCADA telemetry nodes, and uninterruptible power supply (UPS) backups. However, traditional lead-acid technology imposes severe operational bottlenecks on modern Peruvian industrial operators:
By transitioning to engineered Lithium Iron Phosphate (LiFePO4) prismatic cell modules, Peruvian enterprise clients achieve over 5,000 continuous cycles, 1-hour fast-charging capability, a 60% reduction in physical weight, and zero routine maintenance requirements—resulting in a dramatic reduction in Total Cost of Ownership (TCO) over a 10-year operational lifecycle.
Selecting the appropriate battery chemistry requires balancing gravimetric energy density, volumetric footprint, thermal runaway limits, and total capital expenditure. Below is an engineering comparison matrix evaluated under Peruvian industrial operational metrics:
| Performance Metric | Excell Custom LiFePO4 | Standard NMC Lithium | Conventional Lead-Acid | Lithium Titanate (LTO) |
|---|---|---|---|---|
| Cycle Life (80% DOD) | 5,000 – 7,000 Cycles | 1,500 – 2,500 Cycles | 400 – 800 Cycles | 15,000+ Cycles |
| Thermal Runaway Temp | +270°C (Ultra Safe) | +150°C (Thermal Volatile) | +60°C (Gas Venting) | +300°C (Ultra Safe) |
| Altitude Derating (4500m ASL) | Zero Capacity Loss (PCM Cooling) | Requires Active Liquid Cooling | Severe Electrolyte Loss | Minimal Derating |
| Fast Charging Rate | 1C to 2C (0 to 100% in 50 min) | 0.5C to 1C | 0.1C (Requires 8-10 Hours) | 5C (10 Minutes) |
| Capital Cost per kWh/Cycle | Lowest TCO ($0.02 / cycle) | Moderate ($0.07 / cycle) | High TCO ($0.15 / cycle) | Extremely High Upfront |
At our manufacturing facility, we do not merely assemble battery cells; we engineer fully integrated electro-mechanical energy systems tailored to the operational demands of Peruvian industry.
To withstand seismic shocks and bumpy transport across Peru's unpaved mountain access roads, our packs feature laser-welded copper busbars, anti-vibration cell spacers, and reinforced aluminum alloy chassis engineered to IEC 62133 and UN 38.3 vibration standards.
Every battery unit features a proprietary Battery Management System (BMS) supporting industrial communication protocols (Modbus RTU, CANopen, Ethernet/IP). This allows Peruvian plant engineers to monitor real-time Cell Voltage, State of Charge (SOC), State of Health (SOH), and thermal maps via SCADA dashboards.
Featuring IP67 hermetic sealing and anti-corrosion conformal coatings on all internal PCBs, our industrial battery packs prevent moisture ingress and salt spray degradation in coastal maritime ports like Callao and Matarani.
Our specialized battery solutions power key automation verticals throughout Peru, engineered to resolve distinct regional and physical operational challenges:
Peru’s expanding logistics centers require AGVs and Autonomous Mobile Robots (AMRs) operating 24/7 with zero unscheduled downtime. Our high-rate LiFePO4 battery modules support fast opportunity charging during brief 10-minute shift breaks. Integrated CANbus communication ensures seamless integration with Siemens, Omron, and Mitsubishi industrial robot controllers.
Open-pit and subterranean mining operations across Peru rely on autonomous environmental monitoring sensors, automated explosive detesting rigs, and remote-controlled haulage equipment. Operating under extreme temperature swings (from -15°C at night to +25°C during the day), our custom packs utilize self-heating thermal ribbons powered by internal energy before charging, protecting the cells from lithium plating during freezing cycles.
Peru’s booming agricultural export sector (asparagus, avocados, blueberries) relies on high-speed automated sorting, washing, and packaging lines. Brief power dropouts can result in expensive batch rejections. Our high-voltage stacked battery racks provide instant zero-ms transfer backup power, shielding critical PLC automation controllers from grid fluctuations.
Peruvian enterprise procurement officers must navigate evolving regulatory mandates, sustainability targets, and technological trends when selecting industrial power suppliers:
| Industry Macro Trend | Operational Impact on Peruvian Enterprise | Excell Engineering Solution |
|---|---|---|
| Green Mining Mandates (ESG) | Mandatory reduction of diesel emissions in underground shafts. | Zero-emission high-power LiFePO4 electrification kits for underground utility vehicles. |
| Mega-Port Automation (Chancay/Callao) | High-density container terminal cranes operating on automated battery power. | Heavy-duty 512V / 300Ah modular energy banks built for continuous high-C discharge cycles. |
| Transition to Industry 4.0 Telemetry | Requirement for real-time Cloud/Edge monitoring of plant auxiliary power. | IoT-enabled Smart BMS featuring RS485/Modbus telemetry for predictive battery maintenance. |
| High-Altitude Infrastructure Expansion | Increased automated remote solar microgrids across the Peruvian Andes. | Wide-temperature, long-cycle energy storage containers designed for high-altitude solar integration. |
With over four decades of engineering legacy, our parent organization and ISO 9001 certified manufacturing facilities maintain strict quality controls across every stage of production:
Addressing common technical, logistical, and customs queries from Peruvian procurement directors, plant managers, and industrial automation engineers.
Our battery packs engineered for high-altitude Peruvian deployment incorporate specialized heat-conductive aluminum heat sinks and solid-state MOSFET circuit protection instead of relying on atmospheric convection. Furthermore, sealed IP67 enclosures prevent low-pressure air expansion stress on cell casing, eliminating altitude-induced capacity derating.
We provide full DG (Dangerous Goods) shipping documentation packages, including certified UN 38.3 test reports, Material Safety Data Sheets (MSDS), Official Certificates of Origin, UN-approved hazard packaging certification, and HS Code classification (typically 8507.60) to ensure rapid, hassle-free clearance through SUNAT customs.
Yes. Our Smart BMS units support standard industrial protocols including Modbus RTU (RS485), CANopen, and Ethernet/IP. We supply custom register maps and configuration files so your plant automation engineers can map battery SOC, temperature, voltage, and alarm status directly into your central SCADA or HMI systems.
Standard prototype samples require 2 to 3 weeks for engineering design and assembly. Full production batches generally ship within 4 to 6 weeks. Air freight delivery to Jorge Chávez International Airport (LIM) takes approximately 5 to 7 days, while ocean freight shipping to the Port of Callao takes 22 to 30 days depending on the vessel route.
Standard lithium batteries cannot safely accept a charge below 0°C without risk of permanent cell damage. For freezing environments in Peru, we equip our battery packs with internal thermal management wraps. The Smart BMS automatically redirects incoming charge power to heat the internal cell core to +5°C before initiating the main charging cycle, guaranteeing safe, maximum cell longevity.
Absolutley. We specialize in custom OEM engineering. Our mechanical design team creates custom metal enclosures (stainless steel, powder-coated steel, or anodized aluminum) configured with exact mounting points, handles, and heavy-duty industrial connectors (such as Anderson, REMA, or Amphenol) to fit directly into your existing machine battery bays.
Consult directly with our senior application engineers. We provide comprehensive battery design proposals, CAD modeling, thermal simulation reports, and rapid prototyping for industrial automation projects across Peru.