• 1kW / 1.036 KWh portable power station
  • 1kW / 1.036 KWh portable power station
1kW / 1.036 KWh portable power station
discuss personally
Model
WN-1000
Basic info
Brand Wone
Model NO. 1kW / 1.036 kWh portable power station
输出功率 1000W
Energy capacity 1036Wh
Series Portable power station
Product Detail

Description:

This 1kW / 1.036 kWh portable power station can support up to 12 devices simultaneously, is easy to carry (11kg), and ideal for outdoor activities as well as emergency power supply for homes. This is a lifestyle change-maker and the dream device for adventurers.

Feature:

  • 3- Level Brightness.

  • SOS Function.

  • Equipped with 2 Wireless Charging Pads.

  • Capable to Charge 12 Devices Simultaneously.

  • Big Capacity in Small Box.

Basic parameters:

image.png

Electrical Parameters:

image.png

How are portable charging stations overcharged protected?

Voltage Detection:

  • Function: The Battery Management System (BMS) continuously monitors the voltage of each battery cell.

  • Principle: When the voltage of a battery cell reaches or approaches the preset upper limit (for example, the upper limit of a lithium-ion battery is usually 4.2V), the BMS will trigger overcharge protection.

Current Detection:

  • Function: The BMS monitors the charging current.

  • Principle: If the charging current exceeds the preset safety threshold, the BMS will reduce the charging current or completely cut off the charging circuit.

Temperature Detection:

  • Function: The BMS monitors the temperature of the battery.

  • Principle: If the battery temperature exceeds the preset safety threshold (for example, 60°C), the BMS will reduce the charging current or completely cut off the charging circuit to prevent dangers caused by overheating.

Logic Control:

  • Function: The BMS makes logical judgments based on the data of voltage, current, and temperature to decide whether to activate overcharge protection.

  • Principle: The microprocessor built into the BMS will judge whether the battery is in an overcharged state according to the preset algorithms and thresholds. If overcharge conditions are detected, the BMS will execute corresponding protection measures.

Protection Measures:

  • Cutting off the Charging Circuit: The BMS cuts off the charging circuit by controlling the charging relay or MOSFET (Metal Oxide Semiconductor Field Effect Transistor) to prevent the current from continuing to flow into the battery.Reducing the Charging Current: In some cases, the BMS may first reduce the charging current to observe the changes in the battery state. If the battery voltage still rises, then the charging circuit will be completely cut off.

  • Alarm Notification: The BMS can issue an alarm through the display screen or indicator light to remind the user that the battery has reached a full charge state and the charger needs to be disconnected.


Know your supplier
Wone
Main Categories
High Voltage Electrical Apparatus/Low Voltage Electrical Apparatus/Wire cable/Instrument meters/New energy/Tester/Production equipment/Generator/Electrical fittings/Integrated Electrical Equipment
Business Type
Design/Manufacture/Sales
Highest Annual Export (USD)
$50,000,000
Professional Experience
1 years
Workplace
65666m²m²
占位
占位
Related Products
Related Knowledges
Ensuring Reliability: A Deep Dive into Transformer Maintenance
Ensuring Reliability: A Deep Dive into Transformer Maintenance
IntroductionElectric transformers are the backbone of modern power distribution systems, silently enabling the reliable delivery of electricity to homes, businesses, and industries. As these critical assets age and the demand for uninterrupted power grows, the importance of diligent transformer maintenance has never been greater. This essay explores the essential role of transformer maintenance, highlighting the value of proactive care, the impact of advanced diagnostic technologies, and the tra
Vziman
09/03/2025
How does a transformer work?
How does a transformer work?
Transformer Operation PrincipleA transformer is an electrical device that operates on the principle of electromagnetic induction to transfer electrical energy from one circuit to another. It enables the adjustment of voltage levels within an alternating current (AC) system, either stepping up (increasing) or stepping down (decreasing) voltage while maintaining the same frequency.Working Principle:Basic ComponentsA transformer consists of two coils, known as windings—the "primary winding" connect
Rockwell
09/03/2025
Constant testing of high-voltage cable lines
Constant testing of high-voltage cable lines
1. Definition of High-Voltage Cable Line Constant TestingHigh-voltage cable line constant testing refers to the systematic measurement, using specialized instruments, of electrical parameters such as resistance, inductance, capacitance, and conductance before a cable line is commissioned or after major maintenance. The aim is to obtain fundamental data characterizing the electromagnetic properties of the cable, serving as a critical testing phase that provides accurate parameter support for powe
Oliver Watts
09/03/2025
Technical Analysis of 220 kV High-Voltage Cable Construction in Winter
Technical Analysis of 220 kV High-Voltage Cable Construction in Winter
1.Work Environment Requirements and Safeguard MeasuresBased on technical requirements for cable equipment storage, laying, transportation, laying, transposition, testing, and cable terminations, the project owner and construction units have conducted extensive trials and implemented protective measures regarding ambient temperature, humidity, bending radius, traction control, and route optimization. These measures ensure high-voltage cable quality and on-site safety under harsh winter conditions
James
09/03/2025
Withstand voltage test of high-voltage cables
Withstand voltage test of high-voltage cables
Withstand voltage test is an insulation test, but it is a destructive test that can reveal insulation defects difficult to detect in non-destructive testing.The test cycle for high-voltage cables is three years, and it must be conducted after non-destructive tests. In other words, the withstand voltage test is performed only after all non-destructive tests have been passed.Most high-voltage cables used today are cross-linked polyethylene (XLPE) cables, which can have large cross-sections and cov
Oliver Watts
09/03/2025
Analysis of Abnormal Causes of High-Voltage Cable Grounding Circulation and Typical Cases
Analysis of Abnormal Causes of High-Voltage Cable Grounding Circulation and Typical Cases
I. Introduction to Cable Grounding Loop CurrentCables rated 110 kV and above use a single-core structure. The alternating magnetic field generated by the operating current induces a voltage on the metallic sheath. If the sheath forms a closed circuit through the earth, a grounding loop current will flow on the metallic sheath. Excessive grounding loop current (loop current exceeding 50 A, more than 20% of the load current, or a ratio of maximum-to-minimum phase current greater than 3) not only a
Felix Spark
09/03/2025
×
Inquiry
Download
IEE-Business is dedicated to serving the personnel in the global power industry.
Join IEE-Business, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!