توضیحات
JIEYO All-In-One Home Energy Storage System — 5/10/15 kW Hybrid, 51.2 V LiFePO₄, MPPT, 6000+ Cycles
The JIEYO All-In-One Home Energy Storage System integrates a high-safety LiFePO₄ (LFP) battery, hybrid inverter/charger, and MPPT solar controller inside a single cabinet. It is engineered for residential and light-commercial sites that need dependable backup, PV self-consumption, and peak-shaving—without the wiring complexity of separate boxes. With 51.2 V LFP cells, 6000+ cycle longevity, and CAN/RS485/RS232 communications to mainstream energy gateways, it forms a stable, code-friendly backbone for off-grid, hybrid, or on-grid backup systems.
High-Performance LFP Platform (51.2 V)
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Chemistry: Lithium Iron Phosphate (LiFePO₄ / LFP) for inherently stable thermal behavior and long service life.
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Nominal system voltage: 51.2 V (16S LFP).
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Rated energy options: ≈ 10.24 / 12.8 / 15.36 / 16.07 kWh* per cabinet (model-dependent).
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Cycle life: 6000+ cycles at typical residential DoD profiles.
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Round-trip efficiency: high (typ. > 95% with modern hybrids).
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Low self-discharge: holds charge during seasonal or emergency standby.
*Exact usable capacity depends on model, DoD setting, and environmental conditions.
Why LFP for home storage? Compared with NMC and lead-acid, LFP offers superior cycle life, flatter voltage curve, better thermal stability, and lower lifetime cost per kWh, translating into predictable performance across seasons.
Integrated Power Electronics & AC Output
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Built-in pure sine wave inverter/charger: 5 kW / 10 kW / 15 kW rated (model-dependent).
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AC form factor: single-phase 220–240 V 50/60 Hz or 110–120 V 60 Hz (regional variant).
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Fast transfer to backup output during outages (ATS/UPS behavior; model-dependent).
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Surge capability sized for household compressors & motors (exact values per model).
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Clean power for sensitive loads: IT, networking, AV, medical accessories, and appliances.
PV Input & MPPT Harvest
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Integrated MPPT controller(s): high-efficiency tracking for day-long solar harvest.
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PV input window (typical): 120–450 Vdc MPPT, ≤ 500 Vdc absolute max (model-dependent).
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PV power budget: up to 6–10 kW per cabinet depending on tracker count/rating.
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Flexible strings: supports series strings sized to the MPPT window; combiner/OV protection per code.
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Self-consumption logic: prioritize PV→load→battery; export rules configurable where permitted.
Smart BMS & System Communications
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Pack monitoring: cell voltage/current/temperature/SOC with active balancing.
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Protections: over/under-voltage, over/under-temperature, over-current, short-circuit, charge/discharge cutoff.
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Interfaces: CAN / RS485 / RS232 for closed-loop integration with hybrid inverters and gateways.
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Event logs & alarms: streamline diagnostics and after-sales support.
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Protocol mapping: profiles for popular inverter brands available on request.
Grid Connection Modes
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Off-grid: autonomous power with PV + battery where utility is unavailable.
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Hybrid grid: self-consumption, peak-shaving, and time-of-use arbitrage; PV charges battery by day, discharge at peak.
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On-grid backup: maintain essential circuits via backup output/ATS during outages (per local code).
Mechanical & Environmental Engineering
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Cabinet: powder-coated steel/alloy with front service access; floor-standing indoor/outdoor placement.
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Protection class: up to IP55 (model-dependent) for dust/splash resistance.
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Thermal design: air-cooled path for quiet, long-life operation; temperature-aware charge/discharge.
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Serviceability: modular power & battery bays; field-replaceable submodules reduce downtime.
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Footprint: compact ≈ 45 × 45 × 60 cm envelope (reference size; varies by power/energy option).
Safety by Design
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EV-grade LFP cells with ceramic separators; pack-level fusing and contactors.
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Pre-charge circuits protect inverter DC link and busbars.
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Isolation & insulation validated to relevant standards; creepage/clearance respected.
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Compliance documents: CE / RoHS / UN38.3 / MSDS available for logistics and market entry.
Typical Electrical Characteristics*
(*Representative values; request a datasheet for final regional specs.)
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Battery: LiFePO₄, 51.2 V nominal; options ≈ 10.24–16.07 kWh per cabinet.
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Inverter/charger: 5 / 10 / 15 kW rated pure sine; grid-tie/backup modes per model.
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AC output: single-phase 220–240 V 50/60 Hz or 110–120 V 60 Hz.
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PV MPPT: window typ. 120–450 Vdc; PV power ≤ 6–10 kW.
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Round-trip efficiency: > 95% (battery + power electronics, typ.).
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Cycle life: ≥ 6000 (typical residential DoD).
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Operating temps (typ.): charge 0–45 °C, discharge −10–55 °C.
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Protection class: IP55 (cabinet variant).
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Comms: CAN / RS485 / RS232; vendor protocol selectable by DIP/firmware.
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Mass (reference): ≈ 45 kg per cabinet (varies with energy/power option).
Applications & Use Cases
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Residential backup: keep routers, lighting, refrigeration, pumps, PCs online through outages.
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Solar self-consumption: store daytime PV for evening peaks; reduce grid imports.
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Small business: peak-shaving and load-shifting for shops, offices, studios.
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Remote cabins & weak-grid sites: reliable hybrid/off-grid power without fuel.
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Essential circuits micro-UPS: fast transfer to protected loads for sensitive electronics.
System Sizing Examples (Illustrative)
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5 kW / ~10 kWh: apartments & small homes; Wi-Fi, lighting, IT, refrigeration.
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10 kW / ~12.8–15.36 kWh: family homes; longer autonomy for fridges, WFH setups, circulation pumps.
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15 kW / ~16.07 kWh: larger homes/light-commercial; supports heavier simultaneous loads.
Runtime estimate:
Runtime (h) ≈ Capacity (Wh) × DoD × system efficiency / average load (W).
E.g., 16.07 kWh × 0.9 × 0.92 ≈ 13.3 kWh usable → ~13 h at 1 kW average.
Installation & Commissioning Notes
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Location: place on level floor; allow front/side clearance for airflow and service.
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AC/DC wiring: follow polarity and torque specs; use rated DC isolators, fuses, and breakers per code.
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Grounding: bond enclosure and neutral/ground as required by local electrical codes.
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PV sizing: keep strings within MPPT window and absolute voltage limits; include surge/OV protection.
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BMS addressing/firmware: confirm inverter profile (CAN/RS485) and DIP settings; update firmware where applicable.
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SOC sync: first-run full charge to 100% for BMS balancing and SOC calibration.
Maintenance & Storage
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Quarterly checks: inspect vents, verify busbar torque, review logs for alarms.
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Thermal care: keep vents clear; avoid sealed closets in hot climates.
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Long-term storage: maintain 40–60% SOC, top-up every 2–3 months.
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Firmware: apply approved updates for compatibility and optimizations.
What’s in the Crate (Typical)
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JIEYO All-In-One cabinet (battery + inverter/charger + MPPT)
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AC/DC installation kit: lugs, gland plates, fasteners (model-dependent)
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PV/COM cables: CAN/RS485 lead to inverter/gateway (where applicable)
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User manual & quick-start guide; basic ATS/backup wiring diagram
(Contents vary by region and selected accessories.)
Certifications & Quality
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Safety & transport: MSDS, UN38.3
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Market compliance: CE / RoHS (others on request)
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Factory QA: incoming cell screening, module aging, full functional test with BMS logs; inverter burn-in.
OEM / ODM Services
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Branding & labeling: logo, color accents, nameplates, packaging.
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Electrical: socket standards, cable lengths, PV/communication connectors, fuse ratings, shutdown interface.
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Mechanical: custom cabinets, dust filters, outdoor kits, wall-mount or pedestal variants.
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Protocol mapping: CAN/RS485 profiles for specific inverter brands; installer integration guides.
Key Attributes (Snapshot)
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Product type: All-in-one hybrid ESS cabinet
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Battery: 51.2 V LiFePO₄, ≈ 10–16 kWh per cabinet
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Power electronics: 5/10/15 kW pure sine inverter/charger, MPPT solar controller
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Protection class: up to IP55
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Communications: RS485 / CAN / RS232
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Cycle life: 6000+ cycles (typ.)
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Use: Residential / Commercial / Industrial backup & PV self-consumption
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Origin: Guangdong, China
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OEM/ODM: Available
Who It’s For
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Homeowners seeking quiet, safe backup with PV integration and room to grow.
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Installers standardizing on a single-cabinet 51.2 V platform that cuts wiring time.
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Project buyers requiring documented LFP safety and CAN/RS485 integration.
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Businesses aiming to reduce bills via peak-shaving and time-of-use strategies.