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DMC-2240 CMB-21002 DMC-2000 GALIL Motion Controller Card
Brand/Manufacturer | GALIL /USA |
Part Number | DMC-2240 CMB-21002 DMC-2000 |
Alternate Part Number | DMC-2240 |
Description | Motion Controller Card |
Dimennsions | 18.5 cm x 14.8cm x 4.1 cm |
Weight | 0.46kg |
Product Details
The DMC-2x00 can provide the following types of motor control:
1. Standard servo motors with +/- 10 volt command signals
2. Brushless servo motors with sinusoidal commutation
3. Step motors with step and direction signals
4. Other actuators such as hydraulics - For more information, contact Galil.The user can configure each axis for any combination of motor types, providing maximum flexibility.
Standard Servo Motor with +/- 10 Volt Command Signal The DMC-2x00 achieves superior precision through use of a 16-Bit motor command output DAC and a sophisticated PID filter that features velocity and acceleration feed forward, an extra pole filter and integration limits.The controller is configured by the factory for standard servo motor operation. In this configuration,the controller provides an analog signal (+/- 10 volts) to connect to a servo amplifier. This connection is described in Chapter 2.Brushless Servo Motor with Sinusoidal Commutation The DMC-2x00 can provide sinusoidal commutation for brushless motors (BLM).
If the amplifier generates the sinusoidal commutation signals, only a single command signal is required and the controller should be configured for a standard servo motor (described above).Sinusoidal commutation in the controller can be used with linear and rotary BLMs. However, the motor velocity should be limited such that a magnetic cycle lasts at least 6 milliseconds with a standard update rate of 1 millisecond. For faster motors, please contact the factory.To simplify the wiring, the controller provides a one-time, automatic set-up procedure. When the controller has been properly configured, the brushless motor parameters may be saved in non-volatile memory
Moore News
Metallurgical Industry Capability
Blast furnace ironmaking is the use of iron-containing raw materials (sinter, pellet or iron ore), fuel (coke, coal powder, etc.) and other auxiliary materials (limestone, dolomite, manganese ore, etc.)
The blast furnace is charged into a certain proportion, and hot air is blown into the blast furnace to help the coke burn, and the raw materials and fuel are lowered as the smelting process in the furnace progresses.
In the process of falling material and gas rising, heat transfer, reduction, melting and decarbonization occur successively to produce pig iron.
The impurities in the iron ore raw material are combined with the flux added to the furnace to form a slag, and the molten iron at the bottom of the furnace is intermittently discharged into the molten iron tank.
Sent to the steel mill. At the same time, it produces blast furnace gas and slag two by-products. After blast furnace slag water quenching, all of them are used as raw materials for cement production.
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