Parker Products OEM350X, OEM650X manual Motor Size Current Resistor

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INSTALLATION • OEM650/OEM650X

 

 

 

 

 

 

Motor Size

Current

Resistor

Voltage

OEM57-40-MOS

2.65A

21.0 k

48 - 75VDC

OEM57-40-MOP

5.3A

5.76 k

24 - 48VDC

OEM57-51-MOS

3.3A

15.8 k

48 - 75VDC

OEM57-51-MOP

6.6A

2.05 k

24 - 48VDC

OEM57-83-MOS

3.8A

12.7 k

48 - 75VDC

OEM57-83-MOP

7.5A

0.00 k

24 - 48VDC

OEM83-62-MO*

4.4A

9.53 k

24 - 75VDC

OEM83-93-MO*

5.6A

4.87 k

24 - 75VDC

OEM83-135-MO*

6.9A

1.27 k

24 - 75VDC

S: Series Configuration

P: Parallel Configuration

 

*34 size motors are internally wired in parallel

Table 2-7. OEM Drive Motor Current (Compumotor Motors)

If you use a non-Compumotor motor, carefully follow the motor manufacturer's instructions regarding motor wiring and the proper operating current. Compumotor recommends a motor inductance of 2 mH measured in series or parallel (0.5 mH - 10 mH is acceptable). Table 2-8 shows resistor values that you must use to properly set motor current when using the OEM650/ OEM650X with a non-Compumotor motor. When the motor current range jumper (jumper 1—see Figure 2-1) is installed, the drive can generate 2.5 to 7.5 amps. When jumper 1 is removed, the drive can generate 0.83 to 2.5 amps. If you use the OEM350/ OEM350X, use Table 2-9 for resistor and current values to use with high-inductance (10 mH to 80 mH), low current motors.

 

Jumper #1 Installed

 

 

Jumper #1 Removed

Current

Resistance

Current

Resistance

 

Current

Resistance

 

(Amps)

(Ohms)

(Amps)

(Ohms)

 

(Amps)

(Ohms)

 

7.5

0

 

4.9

7.32 k

 

2.5

0

 

7.4

205

4.8

7.68 k

2.4

619

7.3

412

4.7

8.06 k

2.3

1.27 k

7.2

619

4.6

8.45 k

2.2

2.05 k

7.1

825

4.5

8.87 k

2.1

2.80 k

7.0

1.02 k

4.4

9.53 k

2.0

3.57 k

6.9

1.27 k

4.3

10.0 k

1.9

4.53 k

6.8

1.54 k

4.2

10.5 k

1.8

5.49 k

6.7

1.78 k

4.1

10.0 k

1.7

6.49 k

6.6

2.05 k

4.0

11.5 k

1.6

7.68 k

6.5

2.26 k

3.9

12.1 k

1.5

8.87 k

6.4

2.55 k

3.8

12.7 k

1.4

10.5 k

6.3

2.80 k

3.7

13.3 k

1.3

12.1 k

6.2

3.09 k

3.6

13.7 k

1.2

13.7 k

6.1

3.32 k

3.5

14.3 k

1.1

15.8 k

6.0

3.57 k

3.4

15.0 k

1.0

18.2 k

5.9

3.92 k

3.3

15.8 k

0.9

20.5 k

5.8

4.22 k

3.2

16.5 k

0.83

22.6 k

5.7

4.53 k

3.1

17.4 k

 

 

 

5.6

4.87 k

3.0

18.2 k

 

 

 

5.5

5.11 k

2.9

19.1 k

 

 

 

5.4

5.49 k

2.8

20.0 k

 

 

 

5.3

5.76 k

2.7

20.5 k

 

 

 

5.2

6.19 k

2.6

21.5 k

 

 

 

5.1

6.49 k

2.5

22.6 k

 

 

 

5.0

6.81 k

 

 

 

 

 

 

Table 2-8. OEM650/650X Resistor Selection for Motor Current

8

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Contents Compumotor 88-013157-02A Important User InformationContents InstallationIntroduction Tuning & Specifications TroubleshootingIndex Assumptions How To Use This User GuideUser Guide Contents Installation Process OverviewSoftware Reference Manual Installation PreparationOverview OEM650/OEM650X OEM350/350X Description Chapter ObjectiveOEM650 Description OEM650X DescriptionFeatures OEM650/OEM650X Ship kit Chapter ObjectivesEvaluation kits Quick Test OEM650/OEM650XOEM650/OEM650X Jumpers Top View Size 23 OEM650 Motors Parallel WiringSize 34 OEM Series Motors Parallel Wiring Motor Size Current Resistor Reversing VDC+ and VDC- can seriously damage the drive Quick Test OEM650 with Separate Indexer Quick Test OEM650X CompumotorIndexerLD3 OEM650/OEM650X Mounting OEM650/OEM650X DimensionsMounting Without a Heatsink Panel LayoutDrive Current Over-Temperature ProtectionMounting With OEM-HS1 13. OEM-HS1 DimensionsPanel layout for minimum depth is shown in Figure Mounting With OEM-HS2 16. OEM-HS2 DimensionsJumpers #2 #5 Motor Resolution Jumper FunctionsJumper #1 Motor Current Range Jumpers #9 #10 Auto Standby Jumpers #6 #8 Motor Waveform ShapeJU9 Jumper #11 Auto TestAngular Misalignment Motor MountingAttaching the Load Parallel MisalignmentRigid Coupling CouplingsSingle-Flex Coupling Double-Flex CouplingStep Pulse Input Step Input Signal SpecificationDirection Input Signal Specification OEM650 Inputs and OutputsRemote Input Fault OutputStep Signal 1 & Direction Signal 2 Outputs OEM650X Inputs and OutputsGear Shift Input Output #1 Signal 10 and Output #2 Signal CW Signal 3 & CCW Signal 4 Limit InputsHome Position Input Signal Reserved SignalClosed Loop Operation Sequence Inputs #1 #3 Signals 11RS-232C-Tx Signal 14, Rx Signal 15, and Ground Signal Shutdown Output SignalTrigger Inputs #1 #3 Signals 20 Address Signals #1 #3 Signals 23Encoder Inputs A, B, Z Signals Daisy Chaining 20. Daisy Chain ConfigurationMotor Type Sizing Power SupplyConnection CalculationsCurrent Amps Power DumpMid-Range Instability Tuning ProceduresShort-Circuit Protection ResonanceStethoscope Method Gauging Motor ResonanceTachometer Method Sounding Board MethodTuning the Drive to the Motor Motor WaveformsTouch Method Performance Specifications OEM650/OEM650X with OEM57-83-MOS OEM57 Motors Parallel Configuration OEM83 Motors Tuning & Specifications OEM650/OEM650X Reducing Electrical Noise Drive MaintenanceMotor Maintenance Problem IsolationFront Panel LEDs Common Problems and SolutionsSymptoms Possible Causes Solutions Symptoms Probable Causes Solutions RS-232C Problems Testing the MotorReturning the System Software Debugging TipsOEM650/OEM650X Troubleshooting Troubleshooting OEM650/OEM650X Index Index OEM650/OEM650X OEM650X Inputs & Outputs Screw Terminal Connections OEM650 Inputs & Outputs, and Internal Connections

OEM650X, OEM650, OEM350, OEM350X specifications

Parker Products provides an exceptional lineup of industrial-grade portable adhesive applicators, including the OEM350X, OEM350, OEM650, and OEM650X. These models are designed to meet the demands of various manufacturing processes, delivering reliable and precise adhesive application for diverse industries such as automotive, woodworking, and packaging.

The OEM350 series, including both OEM350 and OEM350X, is characterized by its lightweight yet durable construction, allowing for ease of handling and transport. This series is particularly known for its versatility in handling various adhesive types, including polyurethane, hot melt, and cyanoacrylate adhesives. The OEM350 features a robust performance with a maximum output of 350 lbs per hour, ensuring efficient production rates while maintaining high-quality bonding. The OEM350X variant enhances these features with advanced temperature control technology, enabling users to maintain optimal adhesive viscosity for different applications.

On the other hand, the OEM650 and OEM650X models are designed for heavier-duty applications. The OEM650 can deliver up to 650 lbs of adhesive per hour, making it suitable for high-volume manufacturing processes. Its larger tank capacity and efficient heating mechanism allow for extended operational periods between refills, which significantly boosts productivity. The OEM650X takes performance a notch higher with integrated smart technology, which provides real-time monitoring of adhesive quality and system health, helping to reduce downtime and maintain efficiency in production.

All models in this range are equipped with user-friendly interfaces for easy operation. The control panels allow operators to set precise temperature and pressure settings, which can be adjusted to fit particular production needs. Additionally, the equipment is built with safety features such as automatic shut-offs and alarm systems, ensuring safe operation in busy manufacturing environments.

Parker Products’ OEM series stands out not only for its performance but also for its commitment to innovation. With advancements like modular design for easy maintenance and scalability, these applicators are designed to grow with your business. The robust performance, versatile application, and advanced technologies of the OEM350X, OEM350, OEM650, and OEM650X make them invaluable tools in the modern manufacturing landscape, driving efficiency and quality in adhesive applications.