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Home > Products > Drives & Motion Control > Captain X Series General-purpose Frequency Converter Inverter Drive 0.2KW-7.5KW Single-phase and Three-phase

Captain X Series General-purpose Frequency Converter Inverter Drive 0.2KW-7.5KW Single-phase and Three-phase

Product Details

Place of Origin: Japan

Model Number: Captain X

Payment & Shipping Terms

Minimum Order Quantity: 1

Price: USD80-350

Delivery Time: 3-5WorkDay

Payment Terms: T/T,Western Union,L/C,D/A,D/P,MoneyGram

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Highlight:

Captain X Series frequency inverter drive

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single-phase frequency converter 0.2KW-7.5KW

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three-phase inverter drive with warranty

Type:
Frequency Converter Inverter
IP Level:
IP20
Rated Power:
0.2KW-7.5KW
Pakage:
Original Pakage
Quality Guarantee:
Original Manufacturer's Warranty
Shipping Term:
International Express(DHL/FEDEX/TNT/UPS/ARAMEX)/sea Freight / Air Freight / International Special Line
Type:
Frequency Converter Inverter
IP Level:
IP20
Rated Power:
0.2KW-7.5KW
Pakage:
Original Pakage
Quality Guarantee:
Original Manufacturer's Warranty
Shipping Term:
International Express(DHL/FEDEX/TNT/UPS/ARAMEX)/sea Freight / Air Freight / International Special Line
Captain X Series General-purpose Frequency Converter Inverter Drive 0.2KW-7.5KW Single-phase and Three-phase
Captain X Series General-purpose Frequency Converter
The Captain X Series Low-Voltage Inverter features advanced vector control algorithm technology, delivering superior performance, intuitive operation, and ultra-compact design. This versatile drive integrates control technologies for both asynchronous motors and permanent magnet synchronous motors, meeting diverse motor control requirements across various industrial applications.
Key Features
  • Simple, reliable, and user-friendly operation
  • Superior control performance with precision vector control
  • Excellent adaptability to various operating conditions
  • Optimized EMC design for strong anti-interference capability
  • Compact thermal-optimized design for space-efficient installation
Technical Specifications
Power Supply Type Single-phase, Three-phase AC
Operating Temperature -10 to +40℃; Derated use between 40 to 50℃
Altitude 0 to 2000m; Derated above 1000m
Operating Voltage 200V, 400V, 690V
Power Range 0.2KW - 7.5KW
Maximum Output Frequency 599 Hz
Protection Degree IP20
Electrical Safety IEC 61800-5-1
Application Scenarios
General Industrial Production
  • Machine Tools: CNC machine tools and machining centers for spindle and feed axis speed regulation
  • Material Handling: Belt conveyors and screw conveyors requiring low-frequency high-torque output
  • Fans & Pumps: Central air conditioning fans, industrial water pumps, and booster pumps
  • Compressors: Air compressors and screw compressors for periodic load changes
Specialized Manufacturing
  • Textile Machinery: Spinning machines and looms requiring high-precision speed control
  • Printing & Packaging: Printing machines, laminating machines, and labeling machines
  • Food & Beverage: Filling machines, sterilizers, and conveyors for humid environments
  • Plastic Machinery: Injection molding machines and extruders for precise pressure control
Building & Commercial Applications
  • HVAC Systems: Air conditioning units and fresh air handling units
  • Water Supply Systems: Constant pressure water supply for mid-rise/high-rise buildings
  • Elevator Equipment: Elevator door operators and equipment room ventilation fans
Renovation & Upgrade Solutions
  • Energy-saving Retrofit: Replacement of traditional power frequency control systems
  • Multi-motor Coordination: Synchronous speed regulation for production line equipment
Frequently Asked Questions
How to optimize Captain X inverter parameters for improved dynamic response in vector control mode?
Adjust speed loop gain and current loop gain parameters based on motor characteristics. Properly increasing gain values enhances responsiveness to speed/torque changes while ensuring precise coordination between drive and motor.
What are the differences when driving permanent magnet synchronous motors vs asynchronous motors?
For PMSMs, input accurate motor parameters including pole pairs, flux linkage, and d/q-axis inductance. Select PMSM vector control mode and enable anti-cogging torque function if needed to reduce low-speed jitter.
How to ensure communication stability in multi-inverter network configurations?
Use industry-standard protocols like Modbus RTU or Profibus-DP with consistent baud rates and addresses. Employ shielded twisted-pair cables, keep communication lines away from high-voltage cables, and enable communication error retry functions.
What solutions exist for overvoltage faults beyond extending deceleration time?
Check grid voltage stability, install surge protectors if needed. For high-inertia loads, add external braking resistors. Adjust overvoltage suppression coefficient and ensure DC bus capacitor condition.
How does the compact design handle heat dissipation in high-temperature environments?
The inverter features optimized thermal layout with high-efficiency heat sinks. Ensure adequate ventilation, clean heat sinks regularly, and consider derating output power or adding external cooling fans for temperatures above 40°C.