Baldor MN2412 manual Receptacle Connections, Frame Ground Connection

Page 15

Electrical Connections Continued

Table 3-1 Single Phase Power Receptacle Description

Model

Electrical Connection Information (Receptacle Provided at Panel)

 

 

 

 

 

 

Straight 120VAC

Twist Lock 120VAC

Twist Lock 120/240VAC

Rated Watts/

 

(20Amp)

(30Amp)

(30Amp)

(Full load Amps

 

 

 

 

120/240)

 

 

 

 

 

PC30H

3- 15AMP 120VAC

 

 

3000 / (22.5/-)

PC40H

2- 5-20R GFCI 120VAC

1- L5-30R 120VAC

1- L14-30R 120/240VAC

4000 / (33.3/16.7)

PC50H

2- 5-20R GFCI 120VAC

1- L5-30R 120VAC

1- L14-30R 120/240VAC

5000 / (33.3/16.7)

PC60H

2- 5-20R GFCI 120VAC

1- L5-30R 120VAC

1- L14-30R 120/240VAC

6000 / (45.8/22.9)

PC90VE

2- 5-20R GFCI 120VAC

1- L5-30R 120VAC

1- L14-30R 120/240VAC

9000 / (66.7/33.4)

Note: GFCI is Ground Fault Protected power.

Class 1 wiring methods must be used for field wiring connections to terminals of a Class 2 circuit.

Figure 3-2 Receptacle Connections

 

W

 

(GOLD)

 

(SILVER)

 

 

G

X

 

 

 

NEMA

 

NEMA

 

L5-30R

 

L14-30R

 

125V

125/250V

 

30A

 

30A

G

X

Y

W

NEMA 5-20R

(GOLD)

(GOLD)

(SILVER)

125V 20A

 

 

 

Frame Ground Connection

WARNING: Be sure the system is properly grounded before applying power. Do not apply AC power before you ensure that grounds are connected. Electrical shock can cause serious or fatal injury. NEC requires that the frame and exposed conductive surfaces (metal parts) be connected to an approved earth ground. Local codes may also require proper grounding of generator systems.

The NEC requires that the frame and exposed metal surfaces be at local ground reference potential to avoid electrical shock hazard. A local ground reference may require a driven earth ground conductor at the generator installation site. Make the ground connection as shown in Figure 3-3. Use the appropriate size wire (normally 6 AWG) as required by NEC and local codes. The local reference ground is normally a copper clad earth ground rod driven into the earth at least 8 feet.

WARNING: Do not connect the generator output neutral to the frame or local ground. The generator output is isolated from ground. NEC and local codes require that the generator output remain isolated from local ground reference.

MN2412

Receiving & Installation 3-3

Image 15
Contents PowerchiefR POW’R Products Generator California Proposition 65 Warning Table of Contents Ii Table of Contents MN2412 Read This Manual Thoroughly Section Product Safety InformationPrecaution Statements Used In This Manual PropertyOperation Operation Warning Statements Burn Installation Maintenance Product Safety Information MN2412 Limited Warranty Warranty Period Generator Series Labor PartsSection General Information General Information MN2412 PowerchiefR Generators Storage Section Receiving & InstallationPhysical Location Frame Ground Connection Receptacle ConnectionsEngine Oil Use of Electric Motor Loads Battery ConnectionsSeries PC Recommended Engine Oil and Battery TypeOperator Control Panel Section OperationStart-Up Procedure Electric Start Stopping ProcedureRecoil Start Section Troubleshooting and Maintenance GeneralEngine Problems and Solutions Troubleshooting GuideService Figure A-1 PC30H Operator Panel Appendix a PowerchiefR SeriesTable A-1 Generator Set Parts List Replacement PartsReceptacle, 125VAC at 15 Amps Figure A-5 PC30H Wiring Diagram Figure A-6 PC40H Wiring Diagram Figure A-7 PC50H Wiring Diagram Figure A-8 PC60H Wiring Diagram Figure A-9 PC90VE Wiring Diagram Baldor District Offices Baldor Generators

MN2412 specifications

The Baldor MN2412 is a premier electric motor known for its high efficiency, rugged construction, and advanced features that cater to various industrial and commercial applications. This motor exemplifies Baldor's commitment to quality, durability, and performance, making it an ideal choice for demanding environments.

One of the most notable characteristics of the MN2412 is its efficiency. Engineered to meet stringent NEMA Premium Efficiency standards, the motor reduces energy consumption, thereby lowering operational costs and contributing to a more sustainable environment. The efficient design minimizes heat generation, allowing the motor to operate at safe temperatures even under heavy loads.

The MN2412 features a robust construction made of high-grade materials that ensure longevity. It is equipped with high-quality bearings that provide excellent load-carrying capabilities and extended service life. The enclosure is typically made of durable cast iron, offering protection against dust and moisture while ensuring the motor can withstand harsh operating conditions.

In terms of technology, the Baldor MN2412 incorporates advanced winding designs that enhance performance and efficiency. The windings are coated for enhanced insulation, which helps to resist electrical shorts and prolong the motor's lifespan. Furthermore, the motor is designed with a removable fan cover, making maintenance and repair tasks straightforward and efficient.

Variety in design is another key feature of the MN2412. It is available in various configurations, including different voltages and horsepower ratings, allowing it to be suitable for a wide range of applications—from pumps and fans to conveyors and compressors. Additionally, the MN2412 supports dual-voltage operation, which provides flexibility in installation, allowing it to operate on different power supply systems.

Another significant advantage of the MN2412 is its low noise level. The engineering team has meticulously designed the motor to minimize vibration and operational noise, making it suitable for environments where noise reduction is essential.

The Baldor MN2412 is also integrated with capabilities for use in variable frequency drive (VFD) applications, enhancing its versatility in speed control and operational efficiency. With its adaptability and high performance, the MN2412 stands out as a reliable choice for industries requiring precision and reliability.

In summary, the Baldor MN2412 electric motor combines efficiency, durability, flexibility, and advanced technology, making it an exceptional choice for a variety of industrial applications. Its design ensures maximum uptime and minimal maintenance, contributing to overall operational success.