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Question #: 13857

Question: When will the 2.2kw 110v inverter be in stock?

Current Solution

It's actually difficult to say when we will get our 2.2kW 110v VFDs (Variable Frequency Drives) in stock. The problem of predicting inventory stock with fluctuating sales is a challenge, especially at the price we offer. Please consider the 220v VFD, even if a 220 outlet is needed to be installed. We have found that the 220v VFD units performance to be better than the 110v VFD units.

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Other Possible Solutions to this Question

  • Your 2.2kw spindle w/inverter is out of stock for 110v, do you anticipate on offering these soon?

    We may deprecate these units as we had too many issues with them.

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    Your 2.2kw spindle w/inverter is out of stock for 110v, do you anticipate on offering these soon?

  • Is a 110v 20a circuit sufficient to run the spindle (2.2kw w/110v inverter)?

    t might be a better idea to increase the circuit breaker above 20 as 2200/110 is exactly 20. You will not have a buffer there in case you need it. Alternatively, you can decrease the current draw of the spindle in the VFD programming process.

    Click the link to respond:
    Is a 110v 20a circuit sufficient to run the spindle (2.2kw w/110v inverter)?

  • When will you have the 4kw spindle package back in stock?

    We are depreciating the 4 kW spindle. The size of this spindle is very large and heavy and our supplier is not carrying them anymore. The 2.2 kW spindle is such a good spindle for power and size that the 4 kW spindle is overkill for most of how we use machine, and for the general market that we are in at the moment.

    Click the link to respond:
    When will you have the 4kw spindle package back in stock?

  • When will your 20mm guide rails be in stock?

    (6/10/2018) Transports from China take quite a while unfortunately. I don't actually have a date of arrival as they typically produce documents for transport and we have not seen them yet. When the documents arrive, it will take about 2 to 3 week from that time to actually reach the US.

    Click the link to respond:
    When will your 20mm guide rails be in stock?

  • What is the rpm range of the 2.2kw spindle and inverter?

    The VFD is capable of a maximum of 400 Hz frequency. That converts to 24,000 RPM for the spindle. The minimum frequency is 100 Hz which is 6000 RPM.

    Click the link to respond:
    What is the rpm range of the 2.2kw spindle and inverter?

  • 2.2kW Spindle with 110V Inverter, can I get a collet for 1/2 router bits for this spindle

    Absolutely. You can have 1/2" collets used in 2.2kW spindles.

    Here is a link for the ER-20 1/2"ID Collet:
    https://www.buildyourcnc.com/item/spindle-collet-!5-er20-spindle-collet

    Click the link to respond:
    2.2kW Spindle with 110V Inverter, can I get a collet for 1/2 router bits for this spindle

  • My VFD/inverter is showing an er.04 er 04 on the display when the spindle starts spinning

    The Er.04 (if you are using the YL VFD), generally refers to the ramping up and ramping down of the spindle, but it can be a result of a short circuit between the VFD and the spindle. You can increase the time the spindle accelerates (ramps up to the set rpm/frequency).

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    My VFD/inverter is showing an er.04 er 04 on the display when the spindle starts spinning

  • Hello, I bought your 110v 2.2kw spindle and vfd. When I turn it on it reaches the full 24000 rpm, but will not let me decrease the speed. How Can I fix this?

    Are you using the control panel (front panel with the speed control knob known as he potentiometer)? Or are you attempting to use the computer to control the speed?

    Additional Information:
    I am using the control panel, however there is no knob on mine, just buttons.

    Click the link to respond:
    Hello, I bought your 110v 2.2kw spindle and vfd. When I turn it on it reaches the full 24000 rpm, but will not let me decrease the speed. How Can I fix this?

  • I want to know when the second video on vfd (YL-600 2.2KW 220V) parameter will be available?

    We will be starting that video shortly. We want to make sure we convey the information clearly. The parameters on the VFD are extremely extensive and is difficult to explain the parameters that will make sense to the average customer. We pride ourselves on making videos that send a clear message to customers and viewers that have never seen this technology before. Making an educational video of this topic is difficult.

    Click the link to respond:
    I want to know when the second video on vfd (YL-600 2.2KW 220V) parameter will be available?

  • When will the 2000 mm HIWIN Spec Linear Guide rail be available?

    That is difficult to tell at this time. Right when we get them in, they go fast. These items come from China and the units are shipped in via freight on ship, so there are many factors on the delivery such as weather.

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    When will the 2000 mm HIWIN Spec Linear Guide rail be available?

  • I would like to know what the lowest rpm that can be acheived with the 2.2kw spindle and inverter and still have enough torque to drill

    According to the supplier of the 2.2 kW spindle, the safest operating speed for the spindle is 6000 RPM. The supplier also stated that theoretically, the spindle can operate from 0 to 24,000 RPM. I am continuing a dialog with the supplier to delve deeper into understanding the configurations and ramifications of such configurations for operations outside of the safe boundaries into the "theoretical" ranges.

    Additional Information:
    20

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    I would like to know what the lowest rpm that can be acheived with the 2.2kw spindle and inverter and still have enough torque to drill

  • what does it mean when my spindle VFD inverter shows OC-2?

    Remember, steps to correct and troubleshoot issues with any electrical devices should be done by a professional electrician.

    If you have an HY series VFD, the fault codes are below:

    OC-1: Over-current during ramp up or over-current at constant speed.
    Recommended actions: 1, 2, 3, 4

    OC-1: Over-current during ramp up or over-current at constant speed.
    Recommended actions: 1, 2, 5, 6

    OC-2: Over-current at deceleration or over-current at stop.
    Recommended actions: 1, 7, 2, 9, 10

    dL: Output short circuit.
    Recommended actions: 11, 1, 10

    Ou-1 or 2: Over-voltage at stop, over-voltage at acceleration, over-voltage at constant speed or over-voltage at deceleration
    Recommended actions: 12, 13

    Fb: Fuse break.
    Recommended actions: 14, 10

    Lu: Low voltage.
    Recommended actions: 15, 16, 17

    OH: Over heat of inverter.
    Recommended actions: 18, 19, 20

    OL-1: Inverter overload 150% per minute
    Recommended actions: 2, 21, 22

    OL-2: Motor overload 150% per minute.
    Recommended actions: 21, 23, 24, 25, 26, 21

    dT: Motor over-torque
    Recommended actions: 21, 23

    E.b.S.A or E.b.S.n or E.b.S.d or E.b.S.S: No feedback from the auxiliary coil or the lectromagnetic contactor
    Recommended action: 27

    bt: Braking transistor damage.
    Recommended action: 27

    CPu: CPU fault.
    Recommended action: 27

    E.E.E.S or E.E.E.n or E.E.E.d or E.E.E.A: EEPROM fault
    Recommended action: 27


    List of recommended actions:
    If error shows at ramp up or at constant speed:
    1. Check for a short circuit or partial short circuit and the insulation of the output wire is sufficient.
    2. Increase the capacity or the inverter if it is too small. Replace with an inverter that has a larger capacity
    3. Extend the ramp-up time
    4. Decrease the torque and increase the set value.
    5. Check if the motor is blocked and if there is a sudden change in load.
    6. Check if there is a sudden chance in the power supply voltage.
    7. Extend ramp down time
    9. DC breaking is too high. Decrease DC breaking
    10. Replace the inverter.
    11. Check to see if there is a short circuit with the connection wire of the motor.
    12. Extend the ramp-down time or add a breaking resistor.
    13. Check the mains supply voltage and insure there isn't ant sudden change in voltage.
    14. Send the inverter for repair.
    15. Check whether the input voltage is normal
    16. check whether there is a sudden change in load.
    17. Check whether there is any phase missing.
    18. Check the fan in the inverter. Is it spinning? Is it blocked? Does it have any foreign matter stuck on the fins of the fan? If so, clear the fan.
    19. Check the ambient temperature in the space that the inverter is placed.
    20. Check for adequate ventilation for the inverter where it is placed.
    21. Check for jamming or any sudden change with respect to mechanical load.
    22. Set the V/F curve correctly.
    23. The motor is too small.
    24. The motor is hot and the insulation of the motor degraded.
    25. Check if the voltage has a large variance.
    26. Check if there is a phase missing.
    27. Contact the supplier

    Additional Information:
    I have cnc wood carving machine 1325 the inverter showing error 0006

    Additional Information:
    What is uc3 error

    Additional Information:
    My inverter read error oc-1 high frequency how you can help me please


    Additional Information:
    My inverter read error oc-1 high frequency how you can help me please


    Additional Information:
    203

    Additional Information:
    E2 error

    Additional Information:
    Hello , I have an Redsail cnc and I get the following error " UC3 "after that the spindle stops arter a small knocking sound ,would there be an solution to this ?

    Additional Information:


    Additional Information:
    what does it mean when my spindle VFD shows E o and stops.

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    what does it mean when my spindle VFD inverter shows OC-2?

  • wiring the Huajiang yl6000 inverter to mach 3

    1) Acquire a 5 or 6 conductor wire cable of generous length to fit between your Mach30 controller and your VFD (Variable Frequency Drive). The wire gauge should be somewhere between 18GA and 22GA. Maximum current draw will be under 20 milliamps. Cable may also be shielded and/or twisted pairs.
    2) Wire #1 from controller ground to VFD XGND (DC ground)
    4) Wire #2 from controller output defined as (MACH3 output#2) to VFD FWD input
    Note This will give you the ability to start and top the spindle.
    5) Wire #3 from controller analog ground (Speed circuit) to VFD GND.
    6) Wire #4 from controller analog speed output to VFD VI1 (Speed control voltage).
    7) Wire #5 from controller Analog speed 10V or 12V input to VFD 10V or VFD 13V output. (Analog supply voltage).
    8) Program the VFD to accept external start and stop control with front panel STOP.
    9) Program the VFD to accept external analog speed control for zero to ten volts input.
    The above wiring will allow you to start and stop the spindle, and set the spindle speed. You will have control both from G-Code and Mach3 front panel control, including manual On/OFF and percentage control.
    Note: Modbus control is very difficult and fussy to set up, and you lose mach3 front panel manual control.

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    wiring the Huajiang yl6000 inverter to mach 3

  • HOW TO HOOK UP THE VFD INVERTER WALL OUTLET?

    Input to VFD:
    240V Active - R
    240V Neutral - S
    Ground - E

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    HOW TO HOOK UP THE VFD INVERTER WALL OUTLET?

  • HOW DO YOU HOOK UP THE SPINDLE TO INVERTER?

    U - Pin1
    V - Pin2
    W - Pin3
    Pin4 Dead

    Additional Information:
    My home made cnc is a big problem with my NC connection. When in start my spindle it will be gone wrong. It will be limith switch problem anytime. Need help thanks.

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    HOW DO YOU HOOK UP THE SPINDLE TO INVERTER?

  • HOW DO YOU SETUP THE SPINDLE INVERTER VFD?

    Change PD001 Source of Run Commands to '1'
    Change PD005 Max operating frequency to 400hz
    Change PD004 base frequency to 400hz
    Change PD003 Main frequency to 400hz
    Change PD006 Intermediate frequency to 2.5
    Change PD008 max voltage to 220v
    Change PD009 Intermediate voltage to 15v
    Change PD010 Min voltage to 8
    Change PD011 frequency lower limit to >100hz (120hz to start)
    Change PD142 7 Amps
    Change PD143 2
    Change PD144 3000

    Note: PD001 had to be changed back to 0 to allow for keypad control.
    Note2: I had to reverse U and V to get the spindle to go forward in FWD. (reverse any two wires, u&v or w&v for example)

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    HOW DO YOU SETUP THE SPINDLE INVERTER VFD?

  • any info on when my breakout board will be shipped or if you even received the order?

    Your order has been received and is in our system. Log in and click on the "[My Account]" at the top of the page to see your order and the shipping status when we ship.

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    any info on when my breakout board will be shipped or if you even received the order?

  • HOW DO YOU CONNECT THE INVERTER TO AC?

    Input to VFD:
    240V Active - R
    240V Neutral - S
    Ground - E

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    HOW DO YOU CONNECT THE INVERTER TO AC?

  • HOW DO YOU SETUP THE SPINDLE INVERTER?

    Change PD001 Source of Run Commands to '1'
    Change PD005 Max operating frequency to 400hz
    Change PD004 base frequency to 400hz
    Change PD003 Main frequency to 400hz
    Change PD006 Intermediate frequency to 2.5
    Change PD008 max voltage to 220v
    Change PD009 Intermediate voltage to 15v
    Change PD010 Min voltage to 8
    Change PD011 frequency lower limit to >100hz (120hz to start)
    Change PD142 7 Amps
    Change PD143 2
    Change PD144 3000

    Note: PD001 had to be changed back to 0 to allow for keypad control.
    Note2: I had to reverse U and V to get the spindle to go forward in FWD. (reverse any two wires, u&v or w&v for example)

    Click the link to respond:
    HOW DO YOU SETUP THE SPINDLE INVERTER?