5410-008

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The Pacific Scientific 5410-008, part of the 5000 Stepper Motors series, operates with a Two-Phase Bipolar Chopper circuit and supports Driver Voltage Input ranging from 18 to 75 VDC. It has a rated phase current of 5.0A in full step mode and 3.5A in microstep mode. The motor includes microstepping modes such as full, 1/2, and 1/25.

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Product Description:

Pacific Scientific manufactured the 5410-008, representing the 5000 Stepper Motors series and provides operational advantages through its design traits. Equipped with the microstep current boost, the module simply delivers a peak current 1.4 times its rated value to enhance torque production at lower speeds. This drive can hold its position direction stability for 25 us due to the direction hold time specification. Further, its rated phase current of 5.0 Ampere during full step operation increases performance efficiency in repetitive movements across a range of tasks.

With various capabilities, the model steps up performance in industrial applications. It utilizes an Opto TTL/Open Collector Step Pulse input type that allows compatibility across diverse systems. This device adopts a flexible Optoisolator voltage regime, which accepts 5 to 30 VDC to adapt to system power needs. The 80,000 pulses/s at half step maximum pulse rate fosters fast and precise positioning in dynamic setups. Another noteworthy feature is its nominal 20 kHz chopper frequency which also facilitates stable performance by preventing motor overheating.

Featuring the 5410-008 advanced capabilities ensure stellar working outputs. The voltage input range is 18 to 75 VDC providing freedom in power supply selection. Its minimum ramp time of 50 ms secures the integrity and consistency of motions and further cuts down on mechanical wear. Additionally, the motor’s direction setup time at 100 us guarantees quick responses to control signals. Each microstep setting rated at up to 3.5 A with microstepping modes effectively renders a smoother and quieter operation.

Chopper Frequency
20 kHz (nominal)
Circuit Type
Two-Phase Bipolar Chopper
Driver Voltage Input
18–75 VDC
Logic Power Input Current
200 mA (max)
Logic Power Input Voltage
12 VDC ±5%
Maximum Pulse Rate (full Step)
40,000 pulses/s
Maximum Pulse Rate (half Step)
80,000 pulses/s
Maximum Pulse Rate (microstep)
500,000 pulses/s (1/5–1/125)
Microstep Current Boost
1.4× Rated Microstep Current
Minimum Ramp Time
50 ms
Minimum Step Pulse Width
1.0 µs
Rated Phase Current (full Step)
5.0 A
Rated Phase Current (microstep)
3.5 A
Required Step Input Sink Current
10 mA
Step Pulse Input Type
Opto TTL/Open Collector
  • 541O-OO8
  • 54I0-008
  • 5410008

Frequently Asked Questions about 5410-008:

Q: What is the purpose of the logic power requirements for the 5410-008 driver?

A: The device power requirements of 12 VDC ±5% ensure that the stepper motor operates within the required performance limits and also protects it from irregular voltage supply.

Q: What happens if the sink of required step input current for 5410-008 is not met?

A: If the requirement step input sink current of 10 mA is not met possibly, the 5410-008 may not register pulses which leads to accuracy problems.

Q: How do changes in control direction affect the 5410-008 stepper module?

A: The changes in control direction are registered in the 5410-008 due to the direction setup time of 100 µs which significantly reduces any form of lag in switch in directions.

Q: Does the 5410-008 motor's pulse width influence its operation?

A: The 5410-008 requires a minimum step pulse width of 1.0 µs and that can accept adequately programmed control signals without causing any errors in output.

Q: What microstepping modes does the 5410-008 motor use?

A: The 5410-008 drive offers 5 microstepping modes, including Full, 1/2, 1/5, 1/25 and 1/125, and hence providing flexibility in speed and torque performance during operations.


Internal Product Review

  • ‘‘This Pacific Scientific 5410-008 unit basically achieves smooth operation using its two-phase bipolar chopper design. Its exceptional longevity and reliable performance make this model a sound investment in high demand industrial applications.’’

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