Lincoln 1455-000-E Fuse Holder Replacement, BEARING, Conveyor Replacement, EMI Filter Replacement

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(included with the oven control) by pushing the extensions onto the four set buttons on control.

F.Reassemble in reverse order and check system operation.

G.Set the oven control for the proper operating mode. The 1400 series ovens use a single temperature control system. The oven control must be set to the proper operating mode. Set the control as follows: With the oven power switch “off”, depress the “time” and “up” buttons and turn the oven “on”. Control will indicate

“Imp I or Imp II” Release the buttons. Press the “up” or “down” button until “Imp I” and “temp to store” appears on the display. Press the “temp” button. The control is now set for Impinger I conveyor and single burner operation.

FUSE HOLDER – REPLACEMENT

1.Shut off power at main breaker.

2.Remove control box cover.

3.Remove all wiring from fuse holder and mark for reassembly.

4.Remove mounting nut for fuse holder and remove fuse holder.

5.Reassemble in reverse order and check system operation.

BEARING, CONVEYOR – REPLACEMENT

1.Remove conveyor from oven and place on flat work surface.

2.Remove connecting links from conveyor belt. See Installation and operations manual.

3.Remove conveyor belt from conveyor. Remove drive sprocket from drive shaft if required.

4.Move shaft toward end of conveyor, and shaft with bearings will now slip out of holding bracket.

5.Replace bearing and reassemble in reverse order.

HEAT CONTACTOR – REPLACEMENT

1.Shut off power at main breaker.

2.Remove control box cover and front panel.

3.Remove all wiring from contactor and mark for reassembly.

4.Remove mounting screws and remove contactor.

5.Reassemble in reverse order and check system operation. NOTE: be sure that contactor is not mounted upside down, as this will cause a constant “on” condition.

HI-LIMIT CONTACTOR – REPLACEMENT

See “HEAT CONTACTOR – REPLACEMENT”

EMI FILTER – REPLACEMENT

1.Shut off power at main breaker.

2.Remove control box cover and front panel.

3.Remove all wiring from filter and mark for reassembly.

4.Remove mounting screws and remove filter.

5.Reassemble in reverse order and check system operation.

HEATING ELEMENT – REPLACEMENT

1.Shut off power at main breaker.

2.Remove back cover.

3.Disconnect wiring from heating element and mark wires for reassembly.

4.Disconnect motor wiring and mark for reassembly.

5.Remove oven back assembly from oven.

6.Remove fan shroud.

7.Remove heating element from oven back.

8.Reassemble in reverse order and check system operation. NOTE: Be sure heating element connections are tight.

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Impinger I -–Adv Digital – Electric Service Manual - International

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Contents Impinger Conveyor Ovens Phase Power SupplyTemperature Control Control BOX AutoSchematic Diagram Serial Number N28654 and Above Serial Number N28654 and Above Troubleshooting Guide Symptom Possible Cause Evaluation With Power on and Thermocouple Before Removing or Installing ANY Component in the Impinger Oven be Sure to Disconnect Electrical Power and GAS SupplyImpinger Advantage Series Belt JAMFAN Spider FAN HUB Cone Made from Cone to FAN Spider THERMOSTAT, Oven Cavity HI-LIMIT Replacement AIR Pressure Switch ReplacementThermocouple Type K Replacement Thermocouple Measurment Temperature Millvolts ApproxControl Transformer Replacement Conveyor Drive Motor ReplacementCAPACITOR, Conveyor Motor Replacement Reversing Switch ReplacementFuse Holder Replacement BEARING, Conveyor ReplacementHeat Contactor Replacement HI-LIMIT Contactor ReplacementTHERMOSTAT, Control BOX HI-LIMIT Replacement General View Advantage Series Letter Part Number DescriptionPage Control BOX Letter DescriptionPage Oven Back GAS and ElectricPage Conveyor SeriesPage This page intentionally left blank This page intentionally left blank

1454-000-E, 1455-000-E specifications

Lincoln 1455-000-E and 1454-000-E represent two cutting-edge welding machines that have been designed to meet the demanding needs of modern industrial environments. With their advanced features and robust technologies, they cater to a wide range of welding applications, making them an ideal choice for professionals seeking efficiency and reliability.

The Lincoln 1455-000-E is equipped with a high-performance inverter technology, ensuring that it provides a stable and consistent arc. This feature significantly enhances the precision of welds, minimizing defects and ensuring high-quality outputs. The inverter system also lends itself to a more lightweight and compact design, making the machine easy to transport and maneuver, which is a crucial factor in many job sites.

On the other hand, the Lincoln 1454-000-E model focuses on versatility and adaptability. This machine supports multiple welding processes, including MIG, TIG, and stick welding, which allows users to switch between methods seamlessly based on their project demands. This flexibility is built upon a user-friendly control panel that simplifies process adjustments and settings, enabling welders of all skill levels to operate the machine efficiently.

Both models boast a robust construction, designed to withstand harsh working conditions typically found in industrial settings. They are equipped with thermal overload protection, which prevents damage and ensures longevity even during prolonged use. Additionally, these machines feature an integrated cooling system that enables extended operational periods without overheating.

Connectivity is another key feature of both models. They are designed with modern technological integration in mind, offering options for remote monitoring and control through dedicated software. This capability allows operators to track performance metrics in real-time and make necessary adjustments on the fly, optimizing their welding processes.

Furthermore, safety is a top priority in the design of the Lincoln 1455-000-E and 1454-000-E. Both machines come with built-in safety mechanisms, including voltage reduction features to protect the user from potential electrical hazards.

In conclusion, the Lincoln 1455-000-E and 1454-000-E are exemplary machines that combine advanced welding technologies with robust features, making them suitable for a variety of industrial applications. Their design emphasizes efficiency, ease of use, and safety, appealing to both professionals and novices in the welding industry.