Built for Controlled Battery Charging and Swap Operations
The 12-cabin charging and swapping cabinet is designed for operators who need a dependable, high-throughput solution for battery management across commercial fleets, rental networks, delivery platforms, and energy service points. As a professional dc charger system, it combines charging, storage, access control, and swap coordination in one structured platform, helping reduce manual handling while improving station efficiency. Its precise compatibility supports wide battery adaptability, making it well-suited for businesses managing mixed equipment or expanding service coverage. For buyers evaluating dc ev charger manufacturers, this cabinet offers a practical balance of operational control, charging speed, and scalable deployment value in demanding environments.
Smart Control, Protection, and Charging Management
The cabinet supports multiple control methods and safe lock control, enabling operators to manage user access and battery handling with greater accuracy and security. Intelligent charging management helps optimize battery charging behavior, while the power-off memory function preserves operational status to support stable recovery after interruptions. Remote management adds another level of oversight by allowing administrators to supervise equipment status, coordinate usage, and respond more efficiently across distributed sites. Combined with flexible pricing settings and comprehensive protection functions, the system aligns well with commercial charging strategies that require both revenue control and equipment safety. For enterprises comparing a custom dc power supply, fixed-site dc charger infrastructure, or integrated battery service equipment, this cabinet provides clear evidence of operational reliability and controlled energy management.
Well-Suited for Fleet Hubs, Rental Networks, and Urban Energy Service Points
In real-world use, this 12-cabin cabinet fits battery swap and rapid charging scenarios where uptime, user turnover, and centralized supervision matter most. It is a strong option for e-bike operators, light EV service providers, campus mobility systems, logistics depots, and urban charging stations seeking an efficient alternative to fragmented charging workflows. Businesses that already source from dc ev charger manufacturers can integrate this solution as part of a broader charging ecosystem, while those exploring compact field options such as a portable ev charger can position this cabinet as a fixed operational hub for higher-volume sites. With wide battery compatibility, remote administration, and monetization flexibility, it delivers measurable value for commercial operators looking to improve service capacity, reduce handling risk, and deploy a stable dc charger platform across multiple locations.
Structured 12-Cabin Design
The 12-cabin layout supports organized battery charging and swapping in high-frequency operating sites where uptime and process control matter. Each cabin is built for precise compatibility, which helps operators reduce mismatch risk across battery types and maintain stable cabinet utilization. For fleet managers and site operators evaluating a dc charger solution, this structure improves daily handling efficiency, supports practical asset allocation, and makes large-scale charging management more predictable.
Stable Control and Maintenance Efficiency
With multiple control methods, intelligent charging management, power-off memory, and remote management, the cabinet is well-suited for industrial environments that require stable performance over long operating cycles. Comprehensive protection and safe lock control help reduce operational faults and support safer unattended use, while flexible pricing settings assist commercial deployment. For buyers comparing a custom dc power supply, a dc ev charger manufacturers offering, or a cabinet-based alternative to a portable ev charger, this system provides practical maintenance convenience and dependable charging control.
Product Overview
The 12-Cabin Charging and Swapping Cabinet is a high-performance intelligent energy supply solution designed for electric two/three-wheelers. It adopts advanced IoT technology and multi-layer safety protection mechanisms, supporting fast battery swapping and flexible charging management.
With an IP54 protection rating and UL790-Class C fire rating, the cabinet ensures stable operation in both indoor and outdoor environments. Equipped with 12 independent electromagnetic lock cabins, it realizes automatic power-off when the door is opened and intelligent resumption after power recovery.
General Specifications
| Basic Parameters |
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| Wire Inlet/Outlet Mode | Bottom Inletger |
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| Maintenance Direction | Front | |||||
| Installation mode | Floor-standing | |||||
| Overall Dimension (HWD) | 1930*1500*600mm | |||||
| Single Cabin Dimension (HWD) | 380*350*450mm | |||||
| Internal Communication Interface | CAN/RS485 | |||||
| External Communication Interface | 4G | |||||
| Input Characteristic |
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| Rated Input Voltage | AC220V (50Hz) |
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| Rated Input Current of Whole Machine | 50A (AC220Vac) |
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| Rechargeable Battery Specification | Universal |
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| Maximum Input Power of Whole Machine | 9900W |
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| Input power factor | >0.96 (AC220V Input, Full Load Output) | |||||
| Output Characteristic |
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| Rated Output Power | Determined by Charger Power |
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| Rated Output Voltage | 24V~96V | |||||
| Constant Voltage Charging Voltage | Determined by Charger Power | |||||
| Maximum Charging Time | Determined by Charger Power | |||||
| Maximum Charging Current | 10A |
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| Maximum Output Power per Cabin | 1000W | |||||
| Typical Efficiency | ≥90 (@Maximum Output Power) | |||||
| Quality and Protective Characteristic |
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| Certification Requirement | Third-party Certification |
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| Fire Rating | UL790-Class C |
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| Service Life | 5-8 Years | |||||
| Insulation Resistance | >20MΩ (DC 500V applied between power input terminal and accessible metal parts of the cabinet shell) | |||||
| Touch Current | ≤3.5mA (Effective Value) | |||||
| Grounding Resistance | ≤0.1Ω (Between power protection grounding terminal and components requiring connection; no damage to the protective connecting conductor after the test) |
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| Enivromental Condition |
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| Working Temperature | -20~60 |
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| Working Environment | Indoor/Outdoor, IP54 |
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| Relative Humidity | ≤98%, No Condensation |
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| Low Temperature Operation Test | Conducted in accordance with GB/T 2423.1 Test Ab: Place the product in a low-temperature test chamber, adjust the temperature to -20±2 (temperature change rate in the chamber ≤1K/min). After the temperature stabilizes, power on and operate for 2h, then conduct tests immediately. After the test, allow the product to recover for no less than 1h |
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| High Temperature Operation Test | Conducted in accordance with GB/T 2423.2 Test Bd: Place the product in a high-temperature test chamber, adjust the temperature to 60±2 (temperature change rate in the chamber ≤1K/min). After the temperature stabilizes, power on and operate for 2h, then conduct tests immediately. The product shall support normal QR code scanning for charging. After the test, allow the product to recover for no less than 1h. |
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| Charging Cabin Technical Parameters |
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| AC Power Frequency | 50 Hz |
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| Noise | <50 dB | |||||
| Static Power | 30 W | |||||
| Full Load Power of Whole Machine | 8800 W | |||||
| Internal Communication Interface | RS485/CAN | |||||
| MachineExtemal Communication Interface | Ethernet, 4G |
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