U.S. Motors DJ10P2HM Close Coupled Pump Motor Three Phase ODP Horizontal - Footed Motor - DJ10P2HM

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Brand: U. S. Motors
SKU: DJ10P2HM
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U.S. Motors DJ10P2HM Close Coupled Pump Motor Three Phase ODP Horizontal - Footed Motor - DJ10P2HM

The U.S. Motors DJ10P2HM is a three-phase close coupled pump motor ideal for various pumping applications. This motor operates at ten horsepower and runs at an impressive 1800 RPM. Its design is suitable for horizontal footed mounting, making it easy to install in different setups.

Product Highlights

This pump motor is designed for continuous duty and is built to last in demanding environments. The 200 voltage rating and ODP enclosure ensure reliable operation, while the 215JM frame supports various mounting requirements.

Features
  • Three-phase motor with efficient performance
  • Open drip-proof (ODP) enclosure for easy access
  • Compatible with standard pump systems
Specifications
Brand U.S. Motors
Model Number (MPN) DJ10P2HM
Voltage Rating 200 V
Phase Three Phase
Full Load Amps 28.1 A
RPM 1800 RPM
Efficiency 91.7%
Insulation Class F
Frame Size 215JM
Service Factor 1.15
What our Experts Think
  • High-Efficiency Power Output

  • Delivers 10 horsepower at 1800 RPM for heavy-duty pump applications

  • Designed for 200V, 3-phase operation with excellent efficiency (91.7%) and a full-load current of 28.1A

  • Rugged & Reliable Build

  • Constructed with a 215JM rolled steel frame and cast aluminum end-shields

  • JM-style stainless steel shaft enhances corrosion resistance in wet pump environments

  • Open Drip Proof (ODP) enclosure provides effective cooling in clean, dry locations

  • Built for Demanding Use

  • Features Class F insulation and a 1.15 service factor for continuous operation

  • Thermal overload protection prevents overheating and extends motor life

  • Reversible rotation adds flexibility for different pump configurations

  • Ideal for Pump Applications

  • Engineered for close-coupled centrifugal pumps where the impeller is mounted directly on the motor shaft

  • Stable and secure mounting with rigid base design

  • Operates in ambient temperatures up to 40°C for diverse industrial environments

Q&A

Q: What is the U.S. Motors DJ10P2HM motor used for?
A: This motor is designed for close-coupled pump systems, where the pump impeller mounts directly to the motor shaft. It's ideal for fluid handling in industrial and commercial environments.

Q: What are the key specifications of the DJ10P2HM motor?
A: The motor provides 10 horsepower at approximately 1760 RPM, runs on 200V three-phase power, and features a 215JM frame with a horizontal footed mount.

Q: What type of enclosure does this motor have?
A: It comes with an Open Drip Proof (ODP) enclosure, which provides adequate ventilation while being suitable for clean, dry indoor locations.

Q: What is the service factor of the DJ10P2HM?
A: The motor features a 1.15 service factor, meaning it can handle brief overload conditions up to 15% beyond its rated horsepower.

Q: Can this motor be used with a variable frequency drive (VFD)?
A: Yes, it is VFD-compatible, allowing for variable speed control in applications requiring flexibility in flow or pressure.

Maintenance Tips
  • Ensure Proper Ventilation: Install the motor in a well-ventilated area to prevent overheating.

  • Inspect Electrical Connections: Regularly check wiring for signs of wear, corrosion, or loose connections to prevent electrical faults.

  • Monitor Operating Voltage: Confirm that the motor operates within its rated voltage range (200V) to avoid damage.

  • Lubricate Bearings: Apply lubricant to bearings as specified by the manufacturer to reduce friction and prevent wear.

  • Keep the Motor Clean: Remove dust and debris from the motor and surrounding area to maintain efficiency and prevent overheating.

  • Test Thermal Overload Protection: Ensure the motor's thermal overload protection is functioning correctly to prevent overheating.

  • Monitor Ambient Temperature: Operate the motor within the recommended ambient temperature range to prevent overheating and ensure efficient operation.

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