Pacific Scientific

Pacific Scientific 6410-012-C-H-N Microstepping Drive Kollmorgen

PACIFIC SCIENTIFIC service drive system has high performance, high stiffness, high positioning accuracy, higher throughput, tight mechanical grouping, flat rate, zero maintenance and silent operation, etc., which can enhance your application cost-effective, improve productivity and design freedom, and is the ideal easy-to-setup, high-performance motion control solution for metallurgy, packaging and other industry users. Representative Models:PC833-001-N-BA,6410-024-N-N-N,6410-001-C-H-K,PCE800SC903NN-001-01、PD2400DSC754A-001-01.

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FROM:Mr. Wei
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6410-012-C-H-N Microstepping Drive Kollmorgen / Pacific Scientific
6410-012-C-H-N Microstepping Drive Kollmorgen / Pacific Scientific
6410-012-C-H-N Microstepping Drive Kollmorgen / Pacific Scientific
Servo drives (servo drives), also known as “servo controller”, “servo amplifier”, is used to control servo motors, a controller, its role is similar to the role of the inverter in the ordinary AC motor, belongs to a part of the servo system! It is mainly used in positioning system. Generally through the position, speed and torque three ways to control the servo motor, realize the positioning of the drive system, is the product of transmission technology.
6410-001-C-H-N
6410-001-N-N-K
6410-009-N-N-N
6410-024-N-N-N
PC833-001-N-BA
PC834-101-N
PC842-001-T
PC844-XYZ-N
SC322A-001-01
SC903TN-001-01
SC953TN-501-01
Mainstream servo drives are using digital signal processor (DSP) as the control core, which can achieve more complex control algorithms, digital, networked and intelligent. Power devices are generally used to intelligent power module (IPM) as the core design of the drive circuit, IPM internal integrated drive circuit, at the same time with over-voltage, over-current, overheating, under-voltage and other fault detection and protection circuits, in the main circuit is also added to the soft-start circuit to reduce the start-up process on the impact of the drive. The power driver unit first rectifies the input three-phase power or utility power through a three-phase full-bridge rectifier circuit to obtain the corresponding DC power. After the rectified three-phase power or utility power, then through the three-phase sinusoidal PWM voltage inverter frequency to drive three-phase permanent magnet synchronous AC servo motor. The whole process of the power drive unit can be simply said to be the process of AC-DC-AC. The main topology circuit of the rectifier unit (AC-DC) is a three-phase full-bridge uncontrolled rectifier circuit.

Single power input
Input voltage from 24 to 75 VDC for a variety of power supplies
Output current adjustable via 3-position DIP switches with RMS values ranging from 0.625 to 5 amps
4-phase bipolar chopper drive for current regulation and low ripple current
DIP switch selectable microstep resolution up to 51,200 steps per revolution
Lower idle current reduces motor heat in many applications
Optional stepper filter eliminates noise on stepper inputs
Fault protection:
Line-to-line and line-to-neutral shorts
Internal power supply undervoltage
Bus overvoltage
Compact design

Servo drive is an important part of modern motion control, which is commonly used in industrial robots and CNC machining centers and other automation equipment. In particular, servo drives applied to control AC permanent magnet synchronous motors have become a hot research topic at home and abroad. The current AC servo drive design is generally based on vector control current, speed, position 3 closed-loop control algorithm. The algorithm in the speed closed-loop design is reasonable or not, for the entire servo control system, especially the speed control performance plays a key role.

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Control Systems (DCS, PLC/SPS, CNC): Panel Controllers, HMI and Display Panels, Industrial PCs, Drives (Inverters and Servo Systems), Motors, Power Supplies
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