RS485, 4-18

multidrop using RS485/RS422, 4-18 specifications, 8-4

S

Safety Notice, 1-2

Saving setup information, 6-29 Scale, selecting, 6-7

Serial port, 4-16

connecting serial Baldor HMI panels, 4-19 Servo axis, 6-11

adjusting KPROP, 6-25

eliminating steady-state errors, 6-21 testing the demand output, 6-11 tuning for current control, 6-16 tuning for velocity control, 6-22

Specifications, 8-1 analog inputs, 8-1

analog outputs (demands), 8-1 CAN interface, 8-5

digital inputs, 8-2 digital outputs, 8-3 encoder inputs, 8-4 environmental, 8-5 error output, 8-3, 8-4 power, 8-1

relay, 8-4 serial port, 8-4 stepper outputs, 8-4

weights and dimensions, 8-5 Status display, 7-2

Stepper axis, 6-10 control outputs, 4-13 testing the output, 6-10

T

Testing

servo axis, 6-11 stepper axis, 6-10 Troubleshooting, 7-1 Baldor CAN, 7-8 CANopen, 7-6

communication, 7-4 help file, 6-3 motor control, 7-4 problem diagnosis, 7-1

status display, 7-2 SupportMe, 7-1 WorkBench v5, 7-6

Tuning

adjusting KPROP, 6-25

axis for velocity control, 6-22 calculating KVELFF, 6-22 critically damped response, 6-20 eliminating steady-state errors, 6-21 overdamped response, 6-19 selecting servo loop gains, 6-16 underdamped response, 6-18

U

Underdamped response, 6-18 Units and abbreviations, 2-4

USB

installing the driver, 6-2 port, 4-15

W

Weights and dimensions, 8-5 WorkBench v5, 6-3

digital input/output configuration, 6-27 help file, 6-3

loading saved information, 6-30 saving setup information, 6-29 starting, 6-4

X

X1 screw terminal block non-isolated backplane, 5-11 opto-isolated backplanes, 5-30

X2 Encoder1 D-type connector non-isolated backplane, 5-12 opto-isolated backplanes, 5-31

X3 Encoder0 D-type connector non-isolated backplane, 5-11 opto-isolated backplanes, 5-30

X4 Serial connector non-isolated backplane, 5-12 opto-isolated backplanes, 5-31

X5 screw terminal block non-isolated backplane, 5-7 opto-isolated backplanes, 5-26

MN1928

Index

Page 121
Image 121
Baldor MN1928 installation manual Usb

MN1928 specifications

The Baldor MN1928 is a highly regarded motor designed for a variety of industrial applications, known for its durability and efficiency. This motor is part of Baldor’s extensive range of products, which are engineered to meet the demands of heavy-duty operations.

One of the key features of the Baldor MN1928 is its robust construction. Built with high-quality materials, this motor is designed to withstand harsh environmental conditions often found in industrial settings. The steel frame is not only resilient, but it also enhances the motor's cooling capabilities, enabling it to perform effectively over extended periods.

The MN1928 is equipped with advanced technologies that optimize its performance. One notable technology is the use of high-efficiency induction motor design. This reduces energy consumption significantly and contributes to lower operational costs. The motor is also designed with a continuous duty rating, making it capable of running for long hours without compromising its functionality or lifespan.

In terms of characteristics, the Baldor MN1928 features a reliable ball bearing design, which minimizes friction and wear, ensuring smoother operation and increased reliability. With a horsepower rating that suits a range of applications, it provides the necessary torque and speed to power various machinery effectively. The multi-voltage design allows for versatile installation options, accommodating different electrical systems while ensuring efficient performance.

Another important characteristic of this motor is its ease of maintenance. The design allows for straightforward access to components, making it simple for technicians to perform routine checks and maintenance. This is particularly beneficial in industrial settings where downtime can be costly.

Safety is also a priority in the design of the Baldor MN1928. Equipped with thermal overload protection, it prevents overheating, reducing the risk of damage caused by excessive temperatures during operation. Additionally, the motor complies with various industry standards, ensuring safe operation within diverse environments.

In summary, the Baldor MN1928 stands out as a reliable choice for industrial applications, offering a combination of durability, efficiency, and advanced technology. Its robust construction, high-efficiency design, and safety features make it a preferred option for many enterprises seeking dependable motor solutions.