Portable Mobile EV Charger 20kw DC Fast Charger Electric Car Charging Station

Customization: Available
Charge Method: Quick Charge
Installation: Mobile

Product Description

Basic Information

Model NO.
XC20750HG
Location
Public Use
Charging Interfaces
One Pile with One Charge
Transport Package
Plywood Wood Box
Specification
L86*W54*H56cm
Trademark
MAX POWER
Origin
China
HS Code
8504409999
Production Capacity
500

Product Description

In the future, private cars will become the main force in electric vehicle ownership. With the construction of electric vehicle charging infrastructure, compared with large public charging stations, residential charging stations such as residential communities and industrial parks will gradually become the mainstay of private car charging.

Low-Power DC Charging: Due to the resident charging scenario, its outstanding features are tight power capacity, long charging time, and high safety requirements. It features "relatively low power and schedulable output" and "real-time grasp of electric vehicle battery data," matching the core demands of resident scenarios.

All electric vehicle batteries need to be charged with direct current, that is, no matter which method is used, the alternating current needs to be rectified into direct current to charge the electric vehicle.

The essential difference between AC charging and DC charging is that the AC charging rectification process is realized by the on-board charger (OBC) of the electric vehicle, while DC charging is realized by the charging pile, which means that the loss of electric energy is borne by the user during the AC charging process, and by the charging operator during the DC charging process.

Frequently Asked Questions

What is the main advantage of low-power DC charging for residential use?
Low-power DC charging offers schedulable output and real-time battery data monitoring, which perfectly matches the tight power capacity and high safety requirements of residential and industrial park scenarios.
How does DC charging differ from AC charging in terms of rectification?
In AC charging, the rectification (converting AC to DC) happens inside the vehicle's on-board charger (OBC). In DC charging, this process is handled by the charging pile itself.
Who bears the energy loss during the charging process?
During AC charging, the energy loss from rectification is borne by the user. In contrast, during DC charging, this loss is typically borne by the charging operator.
What are the physical specifications of the XC20750HG model?
The model dimensions are L86*W54*H56cm, and it is shipped in a sturdy plywood wood box for maximum protection.
Is this charger suitable for public use?
Yes, the XC20750HG is designed for public use, making it ideal for community parking lots, industrial parks, and public charging stations.
What is the production capacity for this specific EV charger?
The current production capacity for this model is 500 units.

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