Drives and Control Solutions

Motors, Control Solutions, Power Transmission and Advanced Motion Technology                                                                 

November 5, 2019

The V1000 is a world-class compact current vector drive that defines a new world standard. Demands for efficient production and better maintainability are on the rise, spurred by global competition. Yaskawa pays off the promise of being in control with products that make businesses move. The optimum balance of energy input, product output, maintenance risk, and long life is reached with Yaskawa. The V1000 provides a world of power in the palm of your hand! 

The V1000 is the flagship drive of the V1000 Family, which also includes the V1000-4X.

Highlights:

  • Up to 30% smaller than the competition
  • Current vector control, open loop
  • RoHS compliance
  • On-line tuning
  • Induction motor (IM) or permanent magnet motor (PM) operation
  • Function Block Diagram (FBD) programming via DriveWorksEZ™
  • Side-by-side installation due to patented hybrid heatsink
  • Removable terminal block with parameter backup function
  • One-touch copy function with verify
  • Super-fast 2 ms scan cycle with dual CPU
  • EN954-1 Safety Cat. 3, Stop Cat. 0
  • Increased vibration resistance, from 20 Hz to 50 Hz (0.65G)
  • 1 in 10,000 failure rate
  • Swing PWM function to decrease noise at low carrier frequencies
  • Pre-maintenance function
  • Modbus communication
  • Cooling fan replacement without tools
  • MTBF: 28 years
  • Short Circuit Current Rating (SCCR): 30kA rms symmetrical
  • Common programming with all other Yaskawa drives
  • DriveWizard software available at no extra cost

Source


Editor's Pick: Featured Article


Motor Duty CyclesWhat Are Motor Duty Cycles?

When selecting a motor, it is important to consider the required duty cycle to ensure the motor can meet the needs of the application.  This blog post and the accompanying light board video will provide a basic introduction to motor duty cycles and a few of the most common types of duty cycles.

The International Electrotechnical Commission (IEC) defines eight classifications for duty cycle which are grouped by continuous, short term, or periodic cycles.  These cycles refer to the sequence and durations in time of all aspects of a typical operation, including starting, running with no load, running with full load, electric braking, and rest. 

Read More

 

 

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Servo MotorsThe ability to size servo motors correctly is imperative for motion-controlled applications, and it can be much more involved than sizing AC induction motors. Acceleration, deceleration, and running torque must still be taken into account, but the servo’s ability to dynamically control the load’s speed and position is also important. During acceleration and deceleration, peak and nominal running torque measurements must be calculated to ensure that the servo motor does not overheat during use. In addition, inertia matching between the motor and load is necessary to ensure optimum response and system performance.

 

 

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