AMPR 2+4 MALE 6 WIRE CAN L-500MM (+GST 18%)
Product Price
₹399
Description
Chakori/Chogori AMPR 2+4 Male CAN Connector with 6 Wires (500mm Cable) – High-Performance
The Chakori/Chogori AMPR 2+4 Male CAN Connector with 6 Wires (500mm Cable) is a premium-quality, durable, and high-performance electrical connector designed for electric vehicles (EVs), Battery Management Systems (BMS), and industrial applications. This connector is equipped with 6 pre-attached wires and a 500mm cable, offering easy installation and reliable power and data transmission. Engineered for CAN communication, it ensures a stable connection in harsh environments while supporting high-current and high-voltage applications.
Key Features
- 2+4 Pin Configuration: Provides a 2-pin power and 4-pin signal setup for dual-functionality.
- 6 Pre-Attached Wires (500mm Cable): Comes with six high-quality wires for quick and efficient installation.
- Secure & Stable Connection: Designed for vibration resistance, ensuring a consistent connection in dynamic environments.
- Premium Build Quality: Constructed from high-grade plastic and corrosion-resistant metal contacts for long-lasting durability.
- Weatherproof Design: IP67-rated for waterproof and dustproof protection, suitable for outdoor and industrial use.
- CAN Communication Compatibility: Supports Controller Area Network (CAN) systems, ideal for EV applications.
- High Power & Data Capacity: Handles high-current and high-voltage requirements without compromising signal integrity.
- Industry Safety Compliance: Built to international safety standards for secure and reliable electrical performance.
Technical Specifications
- Product Name: Chakori/Chogori AMPR 2+4 Male CAN Connector with 6 Wires (500mm Cable)
- Connector Type: Male
- Pin Configuration: 2+4 (2 Power, 4 Signal)
- Number of Wires: 6 Wires (Pre-Attached)
- Cable Length: 500mm
- Wire Type: High-Quality Silicone-Coated Copper Wire
- Current Rating: Supports high-current loads
- Voltage Range: Suitable for low and high-voltage applications
- Material: Durable Plastic Housing & Corrosion-Resistant Metal Contacts
- Weatherproof Rating: IP67 – Waterproof and Dustproof
- Temperature Range: -40°C to +125°C
- Compatibility: Works with Chakori/Chogori female connectors and CAN communication systems
Applications of Chakori/Chogori AMPR 2+4 Male CAN Connector
This versatile connector is suitable for a range of automotive, industrial, and renewable energy applications, including:
- Electric Vehicles (EVs): Ideal for motor controllers, battery packs, and charging systems.
- Battery Management Systems (BMS): Ensures stable and secure power and data transfer.
- CAN Communication Systems: Compatible with Controller Area Network for data transmission.
- Renewable Energy: Suitable for solar and wind power systems.
- Industrial Equipment: Supports high-power and data transmission in automation and robotics.
- E-Bikes & E-Scooters: Ensures reliable and durable performance in micro-mobility systems.
Benefits of Chakori/Chogori AMPR 2+4 Male CAN Connector
- Reliable Power & Signal Transmission – Supports dual functionality for power and data.
- Easy Installation – Pre-attached 6 wires with 500mm length for quick setup.
- Weatherproof Durability – IP67 protection from dust, water, and corrosion.
- Stable Connection – Shockproof and vibration-resistant design for dynamic applications.
- Safety Compliance – Built to industry standards for safe and secure operation.
- Wide Compatibility – Works seamlessly with CAN communication systems and EV components.
Why Choose the Chakori/Chogori AMPR 2+4 Male CAN Connector?
- Premium Quality Materials: Built from robust plastic and corrosion-resistant metal for enhanced longevity.
- High Performance: Handles high-current and high-voltage applications while ensuring signal accuracy.
- User-Friendly Design: Comes with pre-attached wires for quick and easy installation.
- Reliable in Harsh Conditions: Operates in extreme temperatures and is resistant to vibrations.
- Versatile Applications: Perfect for EVs, industrial equipment, and renewable energy systems.