Multi-Voltage E-Bike and E-Scooter Battery Charger 29.4 V to 71.4 V

YDCHARGE Multi-Voltage E-Bike and E-Scooter Battery Charger is a compact AC/DC lithium-ion battery charger designed for micromobility and light electric mobility products, including e-bikes, e-scooters, balance vehicles and compact mobility devices.

Output Platforms
29.4 V, 42.0 V, 54.6 V, 58.8 V, 67.2 V, 71.4 V
Current & Power Range
2.0 A to 4.0 A | 142.8 W Max
Customization Scope
AC Input, Plugs & DC Connectors
System Features
Multi Protection | OEM & ODM

The charger supports 29.4 V, 42.0 V, 54.6 V, 58.8 V, 67.2 V and 71.4 V output platforms, with selected current options from 2.0 A to 4.0 A and an output power range of approximately 109.2 W to 142.8 W. It supports project-based AC input versions, AC plug options, DC connector customization, multiple protection functions and OEM/ODM configurations for micromobility charging applications.

YDCHARGE Multi-Voltage E-Bike and E-Scooter Battery Charger

YDCHARGE Multi-Voltage E-Bike and E-Scooter Battery Charger is developed for compact lithium-ion battery-powered products that require stable AC/DC charging performance in an external desktop charger format. With an approximate housing size of 175.2 × 76.2 × 34.5 mm, it is suitable for OEM/ODM equipment brands, battery pack suppliers, replacement charger programs and compact micromobility product manufacturers.

Output Configurations and Battery Mapping

Multi-Voltage Output Platforms

The charger supports multiple DC output configurations, including 29.4 V, 42.0 V, 54.6 V, 58.8 V, 67.2 V and 71.4 V. These output voltages can be used for selected nominal lithium-ion battery platforms such as 24 V, 36 V, 48 V, 52 V, 60 V and 62 V class packs, depending on cell series configuration, chemistry, battery management system design and charging profile.

Current Calibration Options

Available charging current options include 2.0 A, 3.0 A and 4.0 A according to the selected output voltage and battery system.

Grid Input Parameters and Global AC Plugs

AC Input Grid Architecture:

The charger can be configured with different AC input versions according to the target market and project requirements. Available input configurations may include a wide-input AC 90 to 264 V version or an AC 180 to 240 V version for 220 to 240 V markets, subject to final electrical design. AC plug selection must always match the charger’s rated input voltage and the target market’s electrical system.

Regional Plug Integration Support:

For 100 to 120 V markets, US plug options such as NEMA 1-15P or NEMA 5-15P may be selected according to grounding design and project configuration. For 220 to 240 V markets, available AC plug options may include Schuko / CEE 7/7, UK plug, UK BS 1363 plug, Australian / New Zealand plug, Swiss plug, South African plug, Brazilian plug and other market plug options, only with a matching 220 to 240 V or wide-input charger version.

DC Connector Options and System Integration

DC connector options can be selected according to the battery pack and device interface. Available DC connector configurations may include GX16-3 connector, DC 5.5 × 2.1 mm, DC 5.5 × 2.5 mm, 3-pin DC connector, 4-pin DC connector, 3-pin XLR female, 3-pin waterproof connector and other sealed DC connector options.

Engineering Evaluation Factors:

The final connector selection should be confirmed according to battery pack voltage, charging current, touch protection, pin assignment, polarity, locking structure, sealing requirement and mechanical fit.

Safety Protections and Control Logic

The charger integrates multiple protection functions to support stable charging operation. Protection functions may include short-circuit protection, over-voltage protection, over-current protection, over-temperature protection, charging timeout protection, automatic shut-off and charge restart control logic, depending on selected configuration and control design.

Compliance Support and Regulatory Paths

Global Safety Verification

Available compliance support may include UL / cULus certification for selected North American configurations, CE compliance documentation, CB, KC, FCC, RoHS and third-party testing support according to selected model, target market and certificate scope. For EU projects, CE conformity may involve LVD, EMC and RoHS requirements, subject to final product configuration.

North American Safety Evaluation Path

For North American projects, Class 2 applicability and the UL evaluation route should be confirmed according to the final output rating, protection design, insulation system, enclosure design, cable configuration, end-use application and certificate scope. Because the listed configurations are in a higher output power range, Class 2 applicability should be reviewed carefully. A non-Class 2 evaluation path such as UL 1012 or another applicable standard may be required according to final design and end use.

Certification Verification Clause:

Certification claims should always be confirmed against the final model, rating label, plug configuration, output rating, test report and certificate scope.

OEM/ODM Project Customization Scope

This product is designed for OEM/ODM customization. YDCHARGE can support project-based customization of the following architecture parameters:

AC input version
AC plug type
DC connector type
Cable length
Housing color
Logo integration
Label specifications
Output voltage configuration
Output current calibration
Market-specific compliance

Specify your required nominal pack chemistry, destination AC grid voltage constraints, and structural pinout configurations to interface with our micromobility deployment teams.

YDCHARGE Multi-Voltage E-Bike and E-Scooter Battery Charger Technical Specifications

Electrical Input and Output Specifications
Product Type AC/DC Lithium-Ion Battery Charger for Micromobility Applications
Input Voltage Wide-input AC 90 to 264 V version or AC 180 to 240 V version, subject to project configuration
Output Options 29.4 V 4.0 A / 42.0 V 3.0 A / 54.6 V 2.0 A / 58.8 V 2.0 A / 67.2 V 2.0 A / 71.4 V 2.0 A
Output Power Range Approx. 109.2 W to 142.8 W, depending on output configuration
Protection Functions Short-circuit protection, over-voltage protection, over-current protection, over-temperature protection, charging timeout protection, automatic shut-off, charge restart control logic
Mechanical, Housing and Interface Parameters
Housing Size Approx. 175.2 × 76.2 × 34.5 mm
AC Plug Options Project-based selection according to rated input voltage and target market requirements
100 to 120 V Plug Options US plug options such as NEMA 1-15P or NEMA 5-15P, subject to grounding design and project configuration
220 to 240 V Plug Options Schuko / CEE 7/7, UK plug, UK BS 1363 plug, Australian / New Zealand plug, Swiss plug, South African plug, Brazilian plug and other market plug options, only with matching 220 to 240 V or wide-input charger version
DC Connector Options GX16-3 connector, DC 5.5 × 2.1 mm, DC 5.5 × 2.5 mm, 3-pin / 4-pin DC connector, 3-pin XLR female, 3-pin waterproof connector and other sealed DC connector options
Applications, Customization and Compliance Support
Applications E-bike, e-scooter, balance vehicle, compact mobility devices and selected compatible battery-powered equipment
Compliance Support UL / cULus certification for selected configurations; CE, CB, KC, FCC, RoHS and third-party testing support, subject to selected model and certificate scope
EU Compliance Route CE conformity may involve LVD, EMC and RoHS requirements, subject to final product configuration
North American Safety Evaluation Class 2 applicability and UL evaluation route to be confirmed according to final output rating, end use and certificate scope
OEM/ODM Supported
Specifications may vary by input voltage version, output voltage, output current, AC plug type, DC connector type, cable length, housing design, control logic and certification scope. Please confirm the final datasheet and certificate scope before ordering.

Application Scenarios

E-Bikes and E-Scooters

This charger is suitable for lithium-ion battery packs used in e-bikes and e-scooters that require selected DC charging outputs from 29.4 V to 71.4 V according to battery configuration.

Balance Vehicles and Compact Micromobility

The compact external charger design is suitable for balance vehicles, compact mobility devices and other light electric mobility products requiring stable AC/DC lithium-ion battery charging.

Selected Battery-Powered Equipment Projects

With project-based connector selection and output configuration, the charger can be adapted for selected compatible battery-powered equipment applications, subject to battery voltage, charging current, connector polarity, charging profile and safety requirements.

OEM/ODM Charger Projects

YDCHARGE supports charger customization for equipment brands, battery pack suppliers and micromobility manufacturers, including AC input version, plug type, connector type, cable length, label, logo, housing and compliance configuration.

Specify your required nominal pack chemistry, destination AC grid voltage constraints, and structural pinout configurations to interface with our micromobility deployment teams.

Multi-Voltage E-Bike and E-Scooter Battery Charger FAQs

B2B OEM/ODM Frequently Asked Questions

Q1. What is this battery charger designed for?
It is designed for micromobility and light electric mobility products, including e-bikes, e-scooters, balance vehicles and selected compatible battery-powered equipment.
Q2. What output versions are available?
Available output configurations include 29.4 V 4.0 A, 42.0 V 3.0 A, 54.6 V 2.0 A, 58.8 V 2.0 A, 67.2 V 2.0 A and 71.4 V 2.0 A. The suitable version depends on battery pack voltage, cell chemistry, BMS design, charging current limit and device requirements.
Q3. What is the output power range?
The output range is approximately 109.2 W to 142.8 W, depending on the selected output voltage and current.
Q4. What input voltage does the charger support?
The charger can be configured with a wide-input AC 90 to 264 V version or an AC 180 to 240 V version, depending on project requirements. The final input voltage rating must be confirmed before production and must match the selected AC plug and target market.
Q5. Can the AC plug be customized?
Yes. AC plug customization is available, but the selected plug must match the charger’s rated input voltage. A 180 to 240 V only charger should not be supplied for 100 to 120 V markets, and a 100 to 120 V only charger should not be supplied with 220 to 240 V market plugs.
Q6. Can the DC connector be customized?
Yes. DC connector options can include GX16-3 connector, DC barrel connectors, 3-pin or 4-pin DC connectors, 3-pin XLR female and sealed DC connector options. Final connector selection should be confirmed according to touch protection, pin assignment, polarity, current rating, locking structure and mechanical fit.
Q7. Is this charger waterproof?
The product can be configured with selected sealed DC connectors, but the complete charger should not be described as waterproof unless the final housing, cable entry, connector and certification configuration support the required IP rating. An IP rating should only be claimed for the complete final product configuration.
Q8. What protection functions are available?
Depending on configuration, the charger can support short-circuit protection, over-voltage protection, over-current protection, over-temperature protection, charging timeout protection, automatic shut-off and charge restart control logic.
Q9. What compliance support can be provided?
Available compliance support may include UL / cULus certification for selected North American configurations, CE compliance documentation, CB, KC, FCC, RoHS and third-party testing support according to selected model, plug type, output rating and target market. For EU projects, CE conformity may involve LVD, EMC and RoHS requirements.
Q10. Can this charger be evaluated for UL or cULus certification?
Yes. UL / cULus-oriented project evaluation can be provided according to the selected model and target market. The applicable UL route should be confirmed according to the final output rating, protection design, end-use application and certificate scope. Because the listed configurations are in a higher output power range, Class 2 applicability should be reviewed carefully. A non-Class 2 evaluation path may be required according to final design and end use.
Q11. Can this charger be used in micromobility system-level certification projects?
Yes. The charger can be integrated into micromobility or light electric vehicle system-level certification projects, subject to complete equipment design, battery system, charger integration method, target market and system-level testing.
Q12. Can YDCHARGE provide OEM/ODM customization?
Yes. YDCHARGE supports OEM/ODM customization, including AC input version, AC plug, DC connector, cable length, housing color, logo, label, output voltage, output current and market-specific compliance configuration.
Q13. What should be confirmed before ordering?
Customers should confirm input voltage, output voltage, output current, battery pack type, charging profile, connector polarity, AC plug type, cable length, target market, certification requirements and housing or label customization before ordering.

Specify your required nominal pack chemistry, destination AC grid voltage constraints, and structural pinout configurations to interface with our micromobility deployment teams.