Panasonic PANADAC 332A – P332AZ 1.5KW Inverter Module
The Panasonic PANADAC 332A P332AZ 1.5KW Inverter Module is an efficient solution for power conversion, designed to deliver high performance in industrial control applications, ensuring reliability and energy efficiency.
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Content details
Operating Voltage:380V~480V
Output Power:1.5KW
Maximum Speed:3000 RPM
Control Protocol:Modbus, Ethernet, USB
Overload Protection:Soft Start, Thermal Overload
Motor Compatibility:Up to 5HP AC Motors
Operating Temperature:-20°C to +50°C
Dimensions (WxHxD):150mm x 100mm x 200mm
Weight:2.5kg
The Panasonic PANADAC 332A P332AZ (1.5KW) boasts an advanced control algorithm that ensures smooth operation and reduces energy consumption. Its robust design withstands harsh industrial environments, ensuring prolonged service life and minimal maintenance requirements.
Featuring a modular architecture, this motor driver allows for easy integration with existing control systems through its versatile communication protocols, including Modbus, Ethernet, and USB. This flexibility caters to diverse industrial settings, from manufacturing floors to processing plants.
Equipped with soft start technology and thermal overload protection, the PANADAC 332A P332AZ (1.5KW) safeguards against sudden power surges and overheating, guaranteeing reliable operation even under heavy loads. Its efficient cooling system maintains optimal performance across a broad temperature range.
Compatible with a variety of AC motors up to 5HP, this motor driver offers a seamless integration solution for a wide array of applications. Whether it’s conveyor systems, packaging machines, or material handling equipment, the PANADAC 332A P332AZ (1.5KW) adapts to meet the specific needs of your industrial process.
Designed with user convenience in mind, the intuitive interface facilitates quick setup and configuration, enabling operators to adjust parameters effortlessly. Comprehensive diagnostic features provide real-time feedback on operational status, enabling proactive maintenance and minimizing downtime.