Franklin 2007 manual Single-Phase Control Boxes, Checking and Repairing Procedures Power On

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Maintenance Single-Phase Motors & Controls

Identification Of Cables When Color Code Is Unknown (Single-Phase3-Wire Units)

If the colors on the individual drop cables cannot be found with an Ohmmeter, measure:

Cable 1 to Cable 2

Cable 2 to Cable 3

Cable 3 to Cable 1

Find the highest resistance reading.

The lead not used in the highest reading is the yellow lead.

Use the yellow lead and each of the other two leads to get two readings:

Highest is the red lead.

Lowest is the black lead.

EXAMPLE:

The Ohmmeter readings were:

Cable 1 to Cable 2—6 ohms

Cable 2 to Cable 3—2 ohms

Cable 3 to Cable 1— 4 ohms

The lead not used in the highest reading (6 ohms) was

Cable 3—Yellow

From the yellow lead, the highest reading (4 ohms) was

To Cable 1—Red

From the yellow lead, the lowest reading (2 ohms) was

To Cable 2—Black

Single-Phase Control Boxes

Checking and Repairing Procedures (Power On)

WARNING: Power must be on for these tests. Do not touch any live parts.

A. VOLTAGE MEASUREMENTS

Step 1. Motor Off

1.Measure voltage at L1 and L2 of pressure switch or line contactor.

2.Voltage Reading: Should be ± 10% of motor rating.

Step 2. Motor Running

1.Measure voltage at load side of pressure switch or line contactor with pump running.

2.Voltage Reading: Should remain the same except for slight dip on starting. Excessive voltage drop can be caused by loose connections, bad contacts, ground faults, or inadequate

power supply.

3.Relay chatter is caused by low voltage or ground faults.

B. CURRENT (AMP) MEASUREMENTS

1.Measure current on all motor leads.

2.Amp Reading: Current in red lead should momentarily be high, then drop within one second to values in table 13. This verifi es relay or solid state relay operation. Current in black and yellow leads should not exceed values in table 13.

3.Relay or switch failures will cause red lead current to remain high and overload tripping.

4.Open run capacitor(s) will cause amps to be higher than normal in the black and yellow motor leads and lower than normal in the red

motor lead.

5.A bound pump will cause locked rotor amps and overloading tripping.

6.Low amps may be caused by pump running at shutoff, worn pump, or stripped splines.

7.Failed start capacitor or open switch/relay are indicated if the red lead current is not momentarily high at starting.

CAUTION: The tests in this manual for components such as capacitors, relays, and QD switches should be regarded as indicative and not as conclusive. For example, a capacitor may test good (not open, not shorted) but may have lost some of its capacitance and may no longer be able to perform its function.

To verify proper operation of QD switches or relays, refer to operational test procedure described above in Section B-2.

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Contents Submersible Motors Important Information for Installers of this Equipment Commitment to Quality Page Submersible Motors Application Installation Maintenance ManualMounting Position Application All MotorsStorage Frequency of StartsTorque Required Examples Transformer Capacity Single-Phase or Three-PhaseEffects of Torque Transformer CapacityKVA Use of Engine Driven Generators Single-Phase or Three-PhaseUse of Check Valves Engine Driven GeneratorsMotor Water Temperature and FlowFlow Inducer Sleeve Required Cooling FlowMinimum gpm l/m Required for 3 ft/s .91 m/sec Flow Rate Head Loss From Flow Past MotorHot Water Applications Standard Motors Head Loss in Feet Meters at Various Flow RatesHeat Factor Multiplier at 3 ft/s .91 m/sec Flow Rate Service Factor HorsepowerMaximum Water Temperature Hot Water Applications ExampleControl Box and Panel Environment Drawdown SealsGrounding Control Boxes and Panels Grounding Surge ArrestorsQD Relays Solid State Application Single-Phase MotorsWire Control Boxes Wire Motor Solid State Controls250 120180 200Actual Length Formula Two or More Different Cable Sizes Can Be UsedSingle-Phase Motor Specifications 60 Hz 3450 rpm Single-Phase Motor Fuse Sizing Buck-Boost Transformers Auxiliary Running CapacitorsBuck-Boost Transformer Sizing Application Three-Phase Motors Three-Phase 60 C Cable 450 140 220150 240 250 400280 150200 250 260Three-Phase 75 C Cable 340 400 490 120 180130 340 420Efficiency % Locked Rotor Amps Three-Phase Motor Specifications 60 HzFull Load Maximum Amps Watts575 Three-Phase Motor Fuse SizingEfficiency % KW Volts Amps Watts100 150 200 175 250 225 125 110 300 17.5 Efficiency Locked Rotor Amps Rating Full Load MaximumDual Element Furnas 60 Hz 4 MotorsHeaters for Overload Relays60 Hz 6 Motors Nema Heaters for AdjustableFootnotes for Tables 28, 29, Submersible Pump Installation Check List Date Filled In By Pump MotorIncoming Voltage Power SupplyTransformers Control PanelControls and Protective Devices InstallationVoltage To Motor Insulation CheckAmps To Motor 60 Hz 8 Motors Recommended Adjustable Overload RelaysMotor Kvar Required for PF SubMonitor Three-Phase ProtectionPower Factor Correction KVAR Required 60 HzLine Voltage Control Three-Phase Starter DiagramsChecking and Correcting Rotation and Current Unbalance Three-Phase Power UnbalancePhase Converters Three-Phase Motor Lead IdentificationInline Booster Pump Systems Reduced Voltage StartersFeed Water Temperature C AIR Franklin Cable chart See 12. WiringSource of Cable Ampacity Availability Variable Speed Submersible Pump Operation, Inverter Drives Dimensions Standard Water Well Installation All MotorsSubmersible Leads and Cables Tightening Motor Lead Connector Jam NutPump to Motor Coupling Shaft Height and Free End PlayMotor Starts Too Often Maintenance All MotorsSystem Troubleshooting Motor Does Not StartMotor Runs But Overload Protector Trips Motor Runs ContinuouslyResistance Preliminary Tests All Sizes Single- and Three-PhaseResistance of Drop Cable ohms Insulation Resistance ReadingsNormal ohm and Megohm Values Between All Leads and Ground Checking and Repairing Procedures Power On Single-Phase Control BoxesOhmmeter Tests QD, Solid State Control Box Power OffOverload Kits 60 Hz QD Relay Replacement Kits QD Capacitor Replacement KitsQD Control Box Parts 60 Hz Control BOX Model no Capacitors MFD Volts Integral Horsepower Control Box Parts 60 HzOverload Relay Integral hp Contactor Replacement Kits Integral hp Capacitor Replacement KitsIntegral hp Overload Replacement Kits Integral hp Voltage Relay Replacement Kits1 hp QD Relay Control Box Wiring DiagramsHp Standard Hp Deluxe 282 201 Hp X-LARGE Unit Appears Dead Maintenance Electronic ProductsPumptec-Plus Troubleshooting During Installation Pumptec-PlusPumptec-Plus Troubleshooting After Installation QD Pumptec and Pumptec QD Pumptec & Pumptec TroubleshootingSubDrive75, 150, 300, MonoDrive, & MonoDrive XT SubDrive/MonoDrive TroubleshootingSubMonitor SubMonitor TroubleshootingSubtrol-Plus Obsolete See SubMonitor Subtrol-Plus Troubleshooting After InstallationGreen Off Time Light on Igbt AbbreviationsPage Page Page Toll Free Help from a Friend