In a lithium battery pack system, the battery cells, BMS, cables, and connectors all play important roles in determining overall safety and reliability. While many engineers focus on battery capacity and BMS functions, the importance of the power connector is often overlooked.
As a critical component in battery systems, connectors must withstand high current output, frequent plugging and unplugging, vibration, and demanding operating environments. Choosing the right connector directly affects the safety, efficiency, and service life of the entire battery system.
Le Amass XT Series connectors have become a popular choice for lithium battery packs, electric vehicles, drones, robots, and industrial equipment due to their high reliability, anti-reverse design, low contact resistance, and excellent current-carrying capability.
This article introduces the features of the Amass XT Series and explains the differences and applications of popular models including XT30, XT60, and XT90.

Part 1.What Are Amass XT Series Connectors?
The Amass XT Series is a range of high-performance power connectors designed for battery and motor power transmission applications.
Ils sont largement utilisés dans :
- Lithium battery packs
- Vélos électriques
- Motos électriques
- Drones
- RC models
- AGV/AMR robots
- Équipements industriels
- High-power electronic devices
Compared with traditional DC plugs or simple wiring solutions, XT Series connectors provide a safer and more stable power connection solution.
Part 2.Key Advantages of Amass XT Series Connectors
1. Anti-Reverse Design for Improved Safety
Lithium batteries require correct polarity connections. Incorrect connection may cause:
- BMS damage
- Controller failure
- Court-circuit
The XT Series features a unique anti-reverse structure that helps:
- Prevent incorrect polarity connection
- Reduce installation errors
- Improve battery system safety
This makes them ideal for:
- Removable batteries
- Battery swapping systems
- Portable power equipment
2. Low Contact Resistance for Reduced Energy Loss
In high-current applications, connector resistance directly affects:
- Voltage stability
- Heat generation
- Energy efficiency
High-quality XT connectors use optimized metal terminals to provide:
- Meilleure conductivité
- Lower power loss
- Réduction de la production de chaleur
Stable current transmission is especially important for:
- Véhicules électriques
- Robots
- Machines industrielles
3. High Current-Carrying Capability
Different XT models are designed for different power levels.
Common models include:
| Modèle | Current Level | Main Features |
|---|---|---|
| XT30 | Low current applications | Compact and lightweight |
| XT60 | Medium to high current applications | Most widely used |
| XT90 | High current applications | Designed for high-power systems |
Actual current performance depends on:
- Cable size
- Température de fonctionnement
- Application environment
- Continuous operating time
Part 3.XT30 vs XT60 vs XT90: Key Differences
XT30 Connector
Product Features
XT30 is one of the smallest connectors in the XT Series. It is designed for applications where space and weight are critical.
Avantages :
✅ Compact size
✅ Conception légère
✅ Easy installation
✅ Suitable for miniaturized products
XT30 Applications
1. Small Drones
Drones are highly sensitive to weight.
XT30 is commonly used in:
- Consumer drones
- FPV drones
- Aerial photography equipment
Avantages :
- Reduces overall weight
- Provides stable power connection
2. Small Robots
Parmi les applications, on peut citer :
- Educational robots
- Robots de service
- Smart devices
XT30 provides reliable power transmission while saving internal space.
3. RC Models
Y compris :
- RC aircraft
- RC cars
- RC boats
XT60 Connector
XT60 is one of the most widely used power connectors in lithium battery applications.
Product Features
Avantages :
✅ Higher current capability
✅ Excellent reliability
✅ Wide application range
✅ Good cost-performance balance
XT60 is often considered a standard power connector solution for many battery-powered devices.
XT60 Applications
1. Electric Bicycle Batteries
Exemples :
- 36V battery systems
- 48V battery systems
- 52V battery systems
Applications :
- Battery output connection
- Controller connection
- Motor power connection
Avantages :
- Supports higher power output
- Stable structure
- Suitable for long-term operation
2. Electric Motorcycles
Compared with standard electric bikes, electric motorcycles require:
- Puissance de sortie plus élevée
- Higher startup current
XT60 can support:
- Acceleration current
- Continuous power delivery
3. AGV / AMR Robots
Warehouse robots require:
- Reliable power connection
- Frequent operation
- Entretien facile
XT60 can be used for:
- Main battery output
- Quick-disconnect battery systems
4. Industrial Battery Packs
Parmi les applications, on peut citer :
- Cleaning robots
- Automation equipment
- Mobile machines
XT90 Connector
XT90 is designed for higher-power applications.
Product Features
Avantages :
✅ Larger conductive surface
✅ Lower temperature rise
✅ Higher current capability
✅ Suitable for high-power output
XT90 Applications
1. High-Performance Electric Vehicles
Exemples :
- High-power electric motorcycles
- Modified electric vehicles
- Performance EV systems
Conditions requises :
- High current output
- High peak power
2. Industrial Robots
Applications :
- Heavy-duty robots
- Automated equipment
- Industrial AGVs
Conditions requises :
- Longues heures de fonctionnement
- Stable power supply
3. Large-Capacity Lithium Battery Systems
Exemples :
- 72V battery packs
- High-power energy storage systems
- Special-purpose vehicles
Part 4.XT30 vs XT60 vs XT90 Application Guide
| Application | Recommended Connector |
|---|---|
| Small drones | XT30 |
| RC models | XT30 |
| Small robots | XT30 |
| Scooters électriques | XT60 |
| Vélos électriques | XT60 |
| Motos électriques | XT60 |
| Robots AGV | XT60 / XT90 |
| Industrial vehicles | XT90 |
| High-power equipment | XT90 |
Part 5.How to Select the Right XT Connector for Lithium Battery Packs?
1. Maximum Operating Current
Calculation:
Power (W) ÷ Voltage (V) = Current (A)
Exemple :
48V 1000W motor:
1000W ÷ 48V ≈ 21A
However, battery pack design should also consider:
- Startup current
- Acceleration current
- Peak load current
A proper safety margin is recommended.
2. Operating Environment
Different applications require different connector features.
Outdoor Equipment
Réfléchissez à ceci :
- Water resistance
- Dust protection
- Plage de températures
Industrial Equipment
Réfléchissez à ceci :
- Plugging cycles
- Résistance aux vibrations
- Fiabilité à long terme
3. Cable Size Matching
The connector should match the cable specification.
- Lower current → Smaller cable size
- Higher current → Larger cable size
Une mise en correspondance incorrecte peut entraîner :
- Cable overheating
- Voltage drop
- Power loss
Part 5.Value of Amass XT Connectors for OEM Battery Pack Manufacturing
For lithium battery manufacturers and equipment companies, selecting the right connector can improve:
Product Reliability
Stable connections reduce failure risks.
Production Efficiency
Standardized connectors simplify assembly.
User Experience
Quick installation and maintenance become easier.
System Safety
Reduced risk of connection errors and overheating.
Conclusion: Choosing the Right XT Connector for Better Battery Performance
Amass XT Series connectors provide a reliable, efficient, and safe power connection solution for lithium battery packs.
- XT30: Ideal for lightweight and low-power applications such as drones and small robots.
- XT60: Suitable for mainstream power applications including electric bikes, electric motorcycles, AGVs, and robots.
- XT90: Designed for high-power and high-current systems such as industrial vehicles and performance electric vehicles.
Although connectors are a small component in a battery pack, they directly affect the safety and reliability of the entire system. Selecting the correct XT Series connector based on power requirements, current demand, and operating environment is an essential step in building a high-performance lithium battery system.
