R67GENA-HS-NS-NV-00

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The R67GENA-HS-NS-NV-00 solenoid valve features an aluminum body, NBR (Buna-N) seals, a flow rate of 0.7 cv, and operates within a pressure range of 0.15-0.7 MPa. Part of the R Servomotors series by Pacific Scientific, it boasts an IP65 rating and 24 VDC voltage, ensuring reliable performance in various conditions.

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Product Description:

Pacific Scientific made the R67GENA-HS-NS-NV-00, a brushless servo motor that is perfect for tasks that need fine torque control and high efficiency. For automation use, the product works well and reliably, and it does not need a holding brake or a shaft seal. The motor's design makes it best for jobs that need high torque and accuracy.

The voltage constant of the R67GENA-HS-NS-NV-00 brushless servo motor is 164 V/Krpm, and the torque constant is 13.8 lb-in/A. This makes sure that the motor always works well. The motor has enough power for tough jobs, with a constant stall current rating of 13.8 A and a peak current rating of 82 A at peak torque. For the servo motor, the type of winding used is "G," which makes sure that energy is used efficiently and costs are kept low. With a resistance of 1.50 ? and an inductance of 18.2 mH, the motor loses very little energy and responds quickly when it is working. The motor also has a shaft and fitting design that meets English standards, which means it can work with most systems.

The R67GENA-HS-NS-NV-00 brushless servo motor is made with parts that are meant to keep it from breaking and make it last longer. The system is easy to build and keep up because there is no holding brake. The product does not have any extra windings, so the wiring is easy. Only 6 inches wide, the motor is small enough to be used in a lot of different situations where great efficiency is needed. Because it has low resistance and inductance, the motor is a good choice for devices that control motion.

Actuation Type
Solenoid
Body Material
Aluminum (Standard)
Flow Rate (cv)
0.7
Ip Rating
IP65
Manual Override
Non-locking
Motor Width
6 inches
Mounting
Sub-base
Power Consumption
3.0 W
Pressure Range
0.15-0.7 MPa
Product Series
R67
Seal Material
NBR (Buna-N)
Temperature Range
-10 degrees C to +50 degrees C
Valve Type
General Purpose Solenoid Valve
Voltage
24 VDC
  • R67-GENA-HS-NS-NV-00
  • R67GENA HS NS NV 00
  • R67GENA-H5-N5-NV-00
  • R67GENAHSNSNV00

Frequently Asked Questions about R67GENA-HS-NS-NV-00:

Q: Why does the R67GENA-HS-NS-NV-00 have a 164 V/Krpm voltage constant?

A: The 164 V/Krpm voltage constant ensures efficient operation by balancing the speed-to-voltage ratio, providing optimal performance for high-precision control in systems that require fine motor tuning.

Q: Does the R67GENA-HS-NS-NV-00 include a holding brake option?

A: No, the R67GENA-HS-NS-NV-00 does not include a holding brake, which simplifies design and eliminates the need for maintenance or wear typically associated with brake components in systems.

Q: How does the 13.8 lb-in/A torque constant benefit the R67GENA-HS-NS-NV-00?

A: The 13.8 lb-in/A torque constant provides a balanced torque-to-current ratio, making the motor efficient for tasks requiring consistent torque output without excessive current draw, optimizing energy use.

Q: Why is the R67GENA-HS-NS-NV-00 designed with a 1.50 ? resistance?

A: A resistance of 1.50 ? ensures the motor runs efficiently, allowing for optimized power transfer and reduced energy loss, which contributes to lower heating and longer operational lifespan.

Q: How does the 18.2 mH inductance value impact the performance of the R67GENA-HS-NS-NV-00?

A: The 18.2 mH inductance allows the motor to respond quickly to control signals, minimizing delay and ensuring precise motion control, which is crucial for high-performance industrial applications.


Internal Product Review

  • ‘‘The R67GENA-HS-NS-NV-00 is a brushless servo motor with no shaft seal and no holding brake. It has a 13.8 lb-in/A torque constant, 1.5 ? resistance, and 82 A peak torque. The motor is ideal for applications requiring precise control and stability. The low inductance of 18.2 mH enhances response time in motion systems.’’

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