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YASKAWA AC DRIVES
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Catalog excerpts

YASKAWA AC DRIVES - 7

Global Field Networks Option cards and option units for communications provide support for all major field networks. Easily connect to hosts and PLCs, reduce wiring, and implement centralized management of production equipment. MiaMBflaiia . SI-232/J . Standard Standard +Option Unit +Option Unit +Option Card +Option Card +Option Card Note: The name of each field bus is a registered trademark of its respective manufacturer.

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YASKAWA AC DRIVES - 8

Standard Specifications *1: Drives with a single-phase power supply input have three-phase output. Single-phase motors cannot be used. *2: The motor capacity (kW) refers to a Yaskawa 4-pole, 60 Hz, 200 V motor. The rated output current of the drive output amps should be equal to or greater than the motor rated current. *3: Rated output capacity is calculated with a rated output voltage of 220 V *4: This value assumes a carrier frequency of 2 kHz. Increasing the carrier frequency requires a reduction in current. *5: Value inside parenthesis is for a single-phase drive. *6: This value assumes...

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YASKAWA AC DRIVES - 9

Compact Vector Control V1000 *1: Heavy Duty (3.7 kW) only. *2: Drives with a single-phase power supply input have three-phase output. Single-phase motors cannot be used. *3: The motor capacity (kW) refers to a Yaskawa 4-pole, 60 Hz motor. The rated output current of the drive output amps should be equal to or greater than the motor rated current. *4: Rated output capacity is calculated with a rated output voltage of 220 V. *5: This value assumes a carrier frequency of 2 kHz. Increasing the carrier frequency requires a reduction in current. *6: Value inside parenthesis is for a single-phase...

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YASKAWA AC DRIVES - 10

Common Specifications *11: Speed control accuracy may vary slightly depending on installation conditions or motor used. *12: Momentary average deceleration torque refers to the deceleration torque from 60 Hz down to 0 Hz. This may vary depending on the motor. *13: If L3-04 is enabled when using a braking resistor or braking resistor unit, the motor may not stop within the specified deceleration time.

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YASKAWA AC DRIVES - 11

High Performance Vector Control A1000 The motor capacity (kW) refers to a Yaskawa 4-pole, 60 Hz motor. The rated output current of the drive output amps should be equal to or greater than the motor rated current. Rated output capacity is calculated with a rated output voltage of 220 V. This value assumes a carrier frequency of 2 kHz. Increasing the carrier frequency requires a reduction in current. This value assumes a carrier frequency of 8 kHz. Increasing the carrier frequency requires a reduction in current. This value assumes a carrier frequency of 5 kHz. Increasing the carrier...

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YASKAWA AC DRIVES - 12

Common Specifications *8: Requires a drive with recommended capacity. *9: Speed control accuracy may vary slightly depending on installation conditions or motor used. Contact Yaskawa for details. *10: Momentary average deceleration torque refers to the deceleration torque from 60 Hz down to 0 Hz. This may vary depending on the motor. *11: If L3-04 is enabled when using a braking resistor or braking resistor unit, the motor may not stop within the specified deceleration time. Drives of 200/400 V 30 kW (CIMR-AD2A0138/AD4A0072) or less have a built-in braking transistor. *12: Removing the top...

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YASKAWA AC DRIVES - 13

Advanced Vector Control Inverter VaNSpeeCl G7 The motor capacity (kW) refers to a Yaskawa 4-pole motor. The rated output current of the inverter output amps should be equal to or greater than the motor rated current. Select a motor that does not exceed the maximum output specifications for the drive. The setting range for Open Loop Vector Control 2 is 0 to 66 Hz (for PROG: 103D, 0 to 132 Hz). The power supply for the cooling fan used in 200 V 30 kW inverters and larger is three-phase 200/208/220 V 50 Hz, and 200/208/220/230 V 60 Hz. Transformer is required for the cooling fan power supply...

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YASKAWA AC DRIVES - 14

Environmentally Friendly Motor Drive Matrix Converter Varispeed AC *1: The motor capacity (kW) refers to a Yaskawa 4-pole motor. The rated output current of the MxC output amps should be equal to or greater than the motor rated *2: The rated current will vary in accordance with the values of the voltage or impedance of the power supply (including the power transformer, the input reactor, and *3: Carrier frequency and control method setting may require output current derating. *4: Rotational Auto-Tuning must be performed prior to operating in Open Loop Vector and Flux Loop Vector Control in...

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YASKAWA AC DRIVES - 15

Compact and Energy Efficiency ECOiPM Drive Flange-mounted type: Frame numbers up to 63B, Foot-mounted type: Frame numbers over 71 Totally-enclosed externally fan-cooled (IP44) Rated Speed* Speed Control Range 1:10 (variable torque) Note: Contact your Yaskawa representative for constant torque applications. Time Rating Insulation Class B: Frame numbers up to 80, F: Frame numbers from 90A Ambient Temperature Ambient Humidity Indoors, non-explosion proof area (free from corrosive or explosive gas or vapor) Rotation Direction Counter clockwise from coupling (bidirectional possible) Direct drive...

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YASKAWA AC DRIVES - 16

Super Compact and Environmentally VIOOOpico Drive Note: For details on the drive specifications, refer to the cataloq for AC Drive V1000 (cataloq no. KAEPC71060608).

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YASKAWA AC DRIVES - 17

Application Specific *1: The motor capacity (kW) refers to a Yaskawa 4-pole induction motor (200 V, 60 Hz). The rated output current of the drive output amps should be equal to or greater than the motor rated current. *2: Rated output capacity is calculated with a rated output voltage of 220 V *3: Carrier frequency is set to 8 kHz. Current derating is required in order to raise the carrier frequency. *4: Carrier frequency is set to 5 kHz. Current derating is required in order to raise the carrier frequency. *5: Rated output capacity is calculated with a rated output voltage of 440 V. *6:...

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YASKAWA AC DRIVES - 18

Energy-Saving Unit Power Regenerative Sine Wave PWM Converter VS-656DC5 * Use the VS-656RC5 unit with larger output capacity if the imbalance rate between phases exceeds 2%. Imbalance rate between phases can be calculated using the following formula (in conformance with IEC1800-3). Imbalance rate between phases [%] Three-phase average voltage Notes 1: Use one VS-656RC5 regenerative unit with one inverter. Do not connect more than one inverter. 2: Use a VS-656RC5 regenerative unit whose capacity is equal to or greater than that of the inverter to be connected. 3: Use the specified AC reactor...

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