ABB JCAP-02 Inverter Driver Board: Industrial Control Module
The ABB JCAP-02 Inverter Driver Board offers advanced power control for industrial applications, ensuring high efficiency and reliability in motor drive systems.
The ABB JCAP-02 Inverter Driver Board offers advanced power control for industrial applications, ensuring high efficiency and reliability in motor drive systems.
Product Type:Inverter Driver Board
Model Number:JCAP-02
Manufacturer:ABB
Power Rating:Up to 500kW
Operating Voltage:380V to 480V AC
Frequency Range:40Hz to 60Hz
Communication Protocol:Modbus RTU
Environmental Conditions:-20°C to +50°C operating temperature
Dimensions (WxHxD):230mm x 178mm x 140mm
Weight:Approximately 3.5kg
Introducing the ABB JCAP-02 Inverter Driver Board, a premium choice for industrial settings requiring precise and efficient power management. This board is meticulously engineered to deliver superior performance and reliability in challenging environments.
Featuring advanced control algorithms, the ABB JCAP-02 ensures smooth operation and energy-efficient performance across a wide range of industrial applications. Its robust design withstands harsh conditions, ensuring continuous operation without compromise.
Equipped with a high-capacity AC input of 220V ± 10%, this inverter driver board can handle heavy loads with ease. With an output power of 1500W, it provides ample power supply for most industrial machinery and equipment.
The JCAP-02 comes with an operating frequency of 50Hz, providing stable power output even under varying load conditions. Its protection class IP20 safeguards against dust and splashes, making it suitable for indoor industrial environments.
In terms of current handling, the ABB JCAP-02 boasts an input current of 30A and an output current of 50A, ensuring efficient power transfer and control. Moreover, its response time of ≤ 1ms guarantees quick adjustments to maintain optimal performance.
The ABB JCAP-02 Inverter Driver Board offers advanced power control for industrial applications, ensuring high efficiency and reliability in motor drive systems.