درایور استپر موتور TMC2130 V1.1

  • کد محصول: TMC2130 V1.1
  • موجودی: 4
  • بازدید: 3780
  • قیمت : 358,621 تومان

درایور استپر موتور TMC2130 V1.1 یک درایور فوق العاده بی صدا است وجریان رو تا 1.2 آمپر پشتیبانی می کندو باعث حرکت استپر موتور با دقت قوق العاده بالا می شود ویژگی مهم این درایور میکرواستپ بالا و تا 256 میکرواستپ می باشد درایور TMC2130 V1.0 با انواع مختلف بردها مانندبردهای MKS ،Ramps کاملا همخوانی و هماهنگی دارد و با آنها ارتباط برقرار می کند . درایور TMC2130 V1.0 در پرینترهای سه بعدی ،دوربین ها ،اسکنرها و.. استفاده می شود.همراه این درایور یکعدد پیچ گوشتی نیز ارائه می شود


Specifications
    Voltage range (VM): 5.5V to 45V
    Voltage range (VIO): 3.3V to 5V
    Maximum current: 1.2A per phase (continuous, with cooling), 2.5A peak per phase
    Works with 3.3V and 5V signals
    Current limit that can be set with the potentiometer
    Supports up to 1/256-step
    Supported configuration via CFG pins or SPI
    SPI pins are soldered upwards for easy access
    Has StealthChop ™ technology for quieter stepper motors
    Has SpreadCycle ™ technology for smoother movements
    Has CoolStep ™ technology for optimum power for motors
    Has StallGuard2 ™ technology for motor load detection (can replace end stop)
    Protection built in for high temperatures, high currents, low voltage (UVLO) and short circuit
    Comes with a cooling block for better cooling (cooling block must be placed on the side without components!)
    Pin names are listed on the top of the module   Comes with 20 cm female-female dupont / jumper cables (4 wires) and small screwdriver for potentiometer adjustment
This stepper motor driver module is suitable for controlling stepper motors with a voltage up to 45V. Version 1.1 has soldered the SPI pins on the top so that they are accessible from the top.

Exploring the Features of the TMC2130 V1.1 Stepper Driver:

These TMC2130 V1.1 Stepper Drivers from Trinamic offer a good range of features and “Stepping Modes” to accommodate the various applications that the drivers can be used for. The first, of course, is “StealthChop”, which is designed for low-velocity stepping, and operates with as little noise as possible. This makes the StealthChop mode ideal for prints that you can afford to take your time on, although it may not be the best option if you’re strapped for time. But let’s explore some of the other features that make these drivers even more valuable:

    SpreadCycle: This is a clever mode that is particularly effective in high load situations, as it spreads the current drive into four stages. This helps to smooth out the steps and eliminate skipped steps, but comes at the cost of higher noise levels – although the driver can in fact switch between StealthChop and SpreadCycle as necessary when set up in Hybrid Mode, offering the best of both worlds.
    StallGuard: This fantastic feature is designed to stop the motor if the load becomes too great, and this can even be programmed into Marlin in order for you to set your own criteria to ensure minimal motor or driver damage. This is excellent for applications with variable loads, but can also be used in unique and very clever ways. One such way is to use this feature is to utilise the automatic limiter in place of physical or inductive end stops on 3D printers, removing some of the complexity of the machine and reducing overall wear and tear on the system.
    CoolStep: This “Cool” feature, compared to standard operations, utilises variable current ratings depending on the load resistance, so as to reduce overall power consumption at low loads while allowing for peak current throughput when the load resistance gets high. The only setback of this feature is that it tends to use more power when the load resistance is high, making the feature excellent for short bursts or inconsistent stop/start operations, but it may be less efficient if the motor is constantly running at high loads.
    DcStep: This final extra feature that has been squeezed onto the module caters to the common problem of missed steps during overload situations, which many other drivers fall victim to. It achieves this by slowing down the motor when it’s presented with an overload situation, and whilst many other drivers would simply try to pick up on the steps following the missed steps, this driver slows the speed so that it can maintain precision step accuracy throughout. A bonus of this feature is that it also allows for auto-ramping and max-speed motor rotation in actual load situations, without you having to carefully calculate exactly how fast it can go before it begins to miss steps.


So as you can see, this little yet surprisingly versatile TMC2130 V1.1 Stepper Driver offers an endless amount of value, with amazing applications in more than just 3D Printing. And with multiple different modes of operations, as well as a unique hybrid mode that offers the best of both worlds, you can rest assured that these driver modules will offer more than just a few benefits.






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