lcd module for 50a dc pwm motor speed controller assembled in stock
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Control the speed of a DC motor without sacrificing torque. This Pulse-Width-Modulation (PWM) DC motor controller can provide up to a maximum continuous current of 50A to your DC motor or other DC load thanks to a digital microcontroller based (PIC) design and highly efficient High-Power 202A MOSFET for cooler operation. Canakit UK1133
An optional LCD module (LCD1133) is also available that will precisely indicate the currently set frequency and duty cycle for accurate control of the PWM signal.
The controller has two modes of operation: Fixed or Variable frequency. The fixed frequency mode of operation runs the controller at 100 Hz. In the variable frequency mode of operation, the frequency is adjustable from 244 Hz to 3.125 KHz. Duty cycle is fully adjustable from 0% to 100% in both modes.
The controller also offers built-in soft-start feature that greatly reduces the mechanical stress on the motor as well as the electrodynamic stress on the attached cables and battery therefore extending the life span of the whole system. When power is connected to the circuit, the duty cycle will start from 0% and go up to the preset value in about 1 to 1.5 seconds.
A 12V DC fan is included with the motor controller for robust reliable continued operation under heavy loads. Please note that DC fan is only designed to work with a supply voltage of up to 12V DC. For higher voltage operation, the DC fan will need to be replaced accordingly.
Control the speed of a DC motor without sacrificing torque. This Pulse-Width-Modulation (PWM) DC motor controller can provide up to a maximum continuous current of 50A to your DC motor or other DC load thanks to a digital microcontroller based (PIC) design and highly efficient High-Power MOSFET for cooler operation.An optional LCD module (CanaKit part # LCD1133) is also available that will precisely indicate the currently set frequency and duty cycle for accurate control of the PWM signal.The controller has two modes of operation: Fixed or Variable frequency. The fixed frequency mode of operation runs the controller at 100 Hz. In the variable frequency mode of operation, the frequency is adjustable from 244 Hz to 3.125 KHz. Duty cycle is fully adjustable from 0% to 100% in both modes.The controller also offers built-in soft-start feature that greatly reduces the mechanical stress on the motor as well as the electrodynamic stress on the attached cables and battery therefore extending the life span of the whole system. When power is connected to the circuit, the duty cycle will start from 0% and go up to the preset value in about 1 to 1.5 seconds.A 12V DC fan is included with the motor controller for robust reliable continued operation under heavy loads. Please note that DC fan is only designed to work with a supply voltage of up to 12V DC. Applications: Motor Control, HHO, DC / LED Light Dimmer, Heating Control, etc.Dimensions: 4.03" x 2.82"
Description:This motor controller, from Cana Kit, allows you to control the speed of a DC motor without sacrificing torque. This Pulse-Width-Modulation (PWM) DC motor controller can provide up to a maximum continuous current of 50A to your DC motor or other DC load thanks to a digital microcontroller based (PIC) design and highly efficient High-Power 202A MOSFET for cooler operation.
The controller has two modes of operation: Fixed or Variable frequency. The fixed frequency mode of operation runs the controller at 100 Hz. In the variable frequency mode of operation, the frequency is adjustable from 244 Hz to 3.125 KHz. Duty cycle is fully adjustable from 0% to 100% in both modes.
The controller also offers built-in soft-start feature that greatly reduces the mechanical stress on the motor as well as the electrodynamic stress on the attached cables and battery therefore extending the life span of the whole system. When power is connected to the circuit, the duty cycle will start from 0% and go up to the preset value in about 1 to 1.5 seconds.
A 12V DC fan is included with the motor controller for robust reliable continued operation under heavy loads. Please note that DC fan is only designed to work with a supply voltage of up to 12V DC. For higher voltage operation, the DC fan will need to be replaced accordingly.
Control the speed of a DC motor without sacrificing torque. This Pulse-Width-Modulation (PWM) DC motor controller can provide up to a maximum continuous current of 50A to your DC motor or other DC load thanks to a digital microcontroller based (PIC) design and highly efficient High-Power 202A MOSFET for cooler operation.An optional LCD module is also available that will precisely indicate the currently set frequency and duty cycle for accurate control of the PWM signal. The controller has two modes of operation: Fixed or Variable frequency. The fixed frequency mode of operation runs the controller at 120 Hz. In the variable frequency mode of operation, the frequency is adjustable from 400 Hz to 3 KHz. Duty cycle is fully adjustable from 0% to 100% in both modes. A DC fan is included with the motor controller for robust reliable continued operation under heavy loads. Please note that DC fan is only designed to work with a supply voltage of up to 12V DC. For higher voltage operation, the DC fan will need to be replaced.
Use the MX033 to control the speed of your electric motor or brightness of a DC light bulb. Obtain low speed from a DC motor without sacrificing torque. The MX033 is a small assembled device with an on-board pot to control the pulse width modulator output.
Seems that there are a few that do not understand convection cooling. The module has no fan, so it relies on air movement to carry the heat away from the transistors and traces. If you enclose this module in a housing you must provide a way for the heat to escape or be forced out, with a fan.
The hotter the module runs the shorter its life span, you need to check your setup under load and make sure the heat does not build up during use. Although this module is rated for 15 amps, it cannot operate at this current continously if the heat builds up and is not removed. Bigger is always better when it comes to driving inductive loads, so always go bigger. With a 10 amp load this module generates a bit of heat and requires some sort of air movement over the PCB and heat sinks. 15 Amps requires a fan, and best not used for this type of load with a high duty cycle or long run times, one of the most popular uses is for heated clothing, and the best enviroment for the module as its cool out.
Keep in mind that you should determine how hot the unit gets. If it gets too hot it will fail. In order to be able to carry high amperage for extended periods of time, you will need to provide additional cooling. The unit will carry up to 15 amps but not for long periods of time. Use common sense when powering large loads.
In April 2013 we tested this module with a 18 Amp load, %95 On time and a short off time, and fan assisted air flow. The module performed perfectly. If you want to keep things cooler, add an extra an EMF suppression diode externally across your inductive load. This will allow you to carry full current with little heat build up.
This has been a very popular module for Hydrogen Fuel cells. Use this module to regulate the amount of current going into your Hydrogen fuel cell to prevent overheating.
Has a jumper selection for 12 or 24 Volt operation. Large spades for ease of connection. Use crimp on or push on connectors (not supplied) or solder directly to the spades.
First thing"s first, when dealing with high current applications, it is highly recommended to wire a high current fuse in series with your circuit that is rated for slightly less than the maximum current of the motor controller. It is cheaper to replace a $15 250A fuse than a $400 motor controller. As long as the circuit"s current is kept below the motor controller"s top rating, you should never have to worry about frying your control electronics.
After the fuse, the next component that should be wired in series is called a main contactor (sometimes also confusingly called a "solenoid"). When dealing with such large motors, it is assumed that power to the motor controller is going to be toggled on and off with a high current main contactor.
This component is essentially just a really large relay. When an electromagnet within the main contactor is energized, a solenoid inside of it toggles a switch which allows high current DC electricity to flow to the motor. When the coil is not energized, the switch is reversed and no electricity can flow.
This, of course, assumes that you are using a 200A main contactor. If you are using a larger contactor, you should check the datasheet for the appropriate diode.
The second necessary component is a high current 250 ohm 10W pre-charge resistor connected across the high current contacts. This resistor allows voltage to bypass the contactor and charge the very large capacitors within the motor controller. The reason you want to do this is because if engage the solenoid without pre-charging the capacitors, there will be an inrush of current as capacitors will try to draw as much current as they possibly can. Such a large current across the contactor terminals can potentially spot weld them shut in the "on" position. In simpler language, your main contactor will not be able to turn off, and power to your motor will be stuck turned on.
*The purchaser is solely responsible for the design and application and assumes all risks.It is the purchaser"s responsibility to properly protect the unit from overload.BatterySpace.com shall not be liable for any damages to equipment, any bodily harm or responsible for units damaged by improper hook up or overloading! If BatterySpace.com inspection determines a unit to be defective, we will either repair, replace or refund the purchase price at our option. Final warranty lies with original manufacturer of the product module.
UNLIMITED VARIABLE SPEED: Briidea Governor with embedded 12 high-performance MOS tubes, allowing you to easily achieve accurate, fast, stable and smooth 0-100% motor variable speed, and with LED screen, accurate and real-time display of the rotation value
EXCELLENT WATERPROOF PERFORMANCE: Compared to the market products, Briidea Governor with IP65 level waterproof performance, so you can easily face water damage, puddles, rainwater and other situations, ideal for trolling boat engines, and built-in high-efficiency thermal conductivity sheet to extend the product life
EASY TO CONNECT: You can connect this product directly with wires without the need to make terminals connect. Support up to 6AWG wire access, suitable for most trolling boat engines. Note: The positive and negative terminals of the power supply cannot be reversed, otherwise it will be damaged
SWITCH FUNCTION: Briidea Governor comes with a high-power speed switch, is more adaptable, and provides positive and negative motion keys, easily changing the direction of the motor
WIDELY USED: The product is used to control DC brush motors, supporting DC12-48V voltage access, continuous current 35A, peak 60A, which meets the specifications of most devices containing brush motors, such as: trolling boat engines, blowers, fans, electric weeders, etc
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The following speed controllers are suited only for Brushed type DC Motors (permanent magnet types), our range does not apply to brushless which uses a completely different method to control motor speed than a brushed motor does!
The purpose of a motor speed controller is to take a signal representing speed from some sort of adjustable control (for example a Potentiometer or a Hall effect device) and to drive a motor at that speed.
When it comes to speed controls, we believe in delivering a good quality product with our every day low prices. You won"t find plastic cases or low quality parts used in the construction of our units, nor will you find non genuine components used to save cost. Do it once, nd do it right. Available models are wireless, HHO (Hydrogen), Single direction speed controls, and bi-directionl motor controllers.