CATEGORIES
BLDC Actuator

Introduction:
AOITEC Brushless DC (BLDC) Actuator – Engineered for efficiency, durability, and reliability. With high energy savings, minimal heat generation and advanced protection.
FEATURED PRODUCTS
Features & Benefits

High Energy Efficiency Ratio: Achieves energy savings of 20%–60%, offering significant cost reductions in long-term operation.
Continuous Operation with Minimal Heat: Designed to generate less heat, enabling uninterrupted operation without the need for overheating protection mechanisms.
Overload Protection: Equipped with advanced overload protection to ensure the safety and longevity of both the actuator and the valve.
Multi-Power Source Compatibility: Supports a wide range of input voltages: DC12V, DC24V, AC24V, AC110V, and AC220V, providing flexibility for diverse applications.
Extended Lifespan: Brushless motor technology, combined with low heat output, results in superior durability and reliability.
Low Current Models: Capable of producing low-current, low-speed models that reduce line losses and decrease the electrical burden, enhancing overall system reliability.
Compact and Lightweight Design: Smaller size and reduced weight make transportation more cost-effective and installation easier.
Improved Safety: Unlike traditional DC motors, BLDC actuators eliminate sparks, and compared to AC motors, they generate less heat, ensuring safer operation.
Ease of Maintenance: DC motors are simpler to replace and maintain compared to AC motors, reducing downtime and maintenance costs.
Enhanced Waterproofing: The motor is suspended in the hollow section of the actuator, preventing water ingress even in the presence of minor internal condensation, effectively improving the waterproof performance.
Products
Diagrams & Drawings
Diagram:

Wiring:

Specifications

Notes:
BLDC*P refers to 2-position actuator, designed for on-off operation.
BLDC*M refers to a modulating actuator, designed for precise regulation.
Wide Voltage: Supports AC85–265V, internationally certified for stable performance under both undervoltage and overvoltage conditions.