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1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY

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    Buy cheap 1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY from wholesalers
     
    Buy cheap 1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY from wholesalers
    • Buy cheap 1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY from wholesalers
    • Buy cheap 1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY from wholesalers
    • Buy cheap 1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY from wholesalers

    1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY

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    Brand Name : Yasakawa
    Model Number : SJME-01AMC41-OY
    Price : negotiable
    Payment Terms : T/T, Western Union
    Supply Ability : 100
    Delivery Time : 2-3 work days
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    1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY

    1PC Yaskawa Electric 3000r/min NEW ORIGINAL SERVO MOTOR 100W SJME-01AMC41-OY


    Specifications

    Current: 0.84A

    Volatge: 200V
    Power : 100W
    Rated Torque: 0.318N-m
    Max speed: 3000rpm
    Encoder: 17bit Absolute encoder
    Load Inertia JL kg¡m2¢ 10−4: 0.026
    Shaft: straight without key


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    This application note describes the design of a 3-phase AC Induction Motor (ACIM) vector control drive with position encoder coupled to the motor shaft. It is based on Freescale’s 56F80x and 56F8300 dedicated motor control devices. The software design takes advantage of Processor ExpertTM (PE) software.


    AC induction motors, which contain a cage, are very popular in variable-speed drives. They are simple, rugged, inexpensive and available at all power ratings. Progress in the field of power electronics and microelectronics enables the application of induction motors for high-performance drives, where traditionally only DC motors were applied. Thanks to sophisticated control methods, AC induction drives offer the same control capabilities as high performance four-quadrant DC drives.


    This drive application allows vector control of the AC induction motor running in a closed-speed loop with the speed / position sensor coupled to the shaft. The application serves as an example of AC induction vector control drive design using a Freescale hybrid controller with PE support. It also illustrates the use of dedicated motor control libraries that are included in PE.


    Advantages and Features of Freescale’s Hybrid Controller The Freescale 56F80x (56800 core) and 56F8300 (56800E core) families are well-suited for digital motor control, combining the DSP’s calculation capability with an MCU’s controller features on a single chip. These hybrid controllers offer many dedicated peripherals, including a Pulse Width Modulation (PWM) unit, an Analog-to-Digital Converter (ADC), timers, communication peripherals (SCI, SPI, CAN), on-board Flash and RAM. Generally, all the family members are appropriate for use in AC induction motor control. The following sections use a specific device to describe the family’s features.



    As the sinusoidally-distributed flux density wave produced by the stator magnetizing currents sweeps past the rotor conductors, it generates a voltage in them. The result is a sinusoidally-distributed set of currents in the short-circuited rotor bars. Because of the low resistance of these shorted bars, only a small relative angular velocity, ωr, between the angular velocity, ωs, of the flux wave and the mechanical angular velocity ω of the two-pole rotor is required to produce the necessary rotor current. The relative angular velocity, ωr, is called the slip velocity. The interaction of the sinusoidally-distributed air gap flux density and induced rotor currents produces a torque on the rotor. The typical induction motor speed-torque characteristic is shown in Figure 3-2.

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