VU2A0056FAA-134 V1000 Yaskawa VFD 15 hp 11.2 kW 240 V
$2,729.31VU2A0056FAA-134 Yaskawa variable frequency drive, V1000 series, 15 hp / 11.2 kW, 220-240 V, 3 phase, 47 Amps (heavy duty output), 1,167 Hz (high frequency).
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Yaskawa V1000 drives are compact industrial NEMA 1 current vector microdrives for AC spindle motors. The V1000 series of Yaskawa variable frequency drives offer an optimum balance of energy input, product output, maintenance risk, and long life. Please note, 400 Hz and 1000 Hz options are available.

VU2A0056FAA-134 Yaskawa variable frequency drive, V1000 series, 15 hp / 11.2 kW, 220-240 V, 3 phase, 47 Amps (heavy duty output), 1,167 Hz (high frequency).

VU2A0069FAA-134 Yaskawa variable frequency drive, V1000 series, 20 hp / 14.9 kW, 200-240 V, 3 phase, 60 Amps (heavy duty output), 1,167 Hz (high frequency).

VU4A0009FAA-134 Yaskawa variable frequency drive, V1000 series, 4 hp / 3 kW, 380–480 V, 3 phase, 7.2 Amps (heavy duty output), 1,167 Hz (high frequency).

VU4A0011FAA-134 Yaskawa variable frequency drive, V1000 series, 5 hp / 3.7 kW, 380–480 V, 3 phase, 9.2 Amps (heavy duty output), 1,167 Hz (high frequency).

VU4A0018FAA-134 Yaskawa variable frequency drive, V1000 series, 7.5 hp / 5.6 kW, 380–480 V, 3 phase, 14.8 Amps (heavy duty output), 1,167 Hz (high frequency).

VU4A0023FAA-134 Yaskawa variable frequency drive, V1000 series, 10 hp / 7.5 kW, 380-480 V, 3 phase, 18 Amps (heavy duty output), 1,167 Hz (high frequency).

VU4A0031FAA-134 Yaskawa variable frequency drive, V1000 series, 15 hp / 11.2 kW, 380–480 V, 3 phase, 24 Amps (heavy duty output), 1,167 Hz (high frequency).

VU4A0038FAA-134 Yaskawa variable frequency drive, V1000 series, 20 hp / 14.9 kW, 380–480 V, 3 phase, 31 Amps (heavy duty output), 1,167 Hz (high frequency).
Contact our CNC router service technicians for assistance in cross-referencing the correct variable frequency drive for your application. We offer free telephone support to end users.
Yaskawa V1000 software support tools can be used for uploading and downloading drive parameters, calculating energy savings, creating application programs by arranging function block icons, as a programming simulator, or identifying how to reduce your operating costs and meet the harmonics compliance requirements.