SERVICE ELECTRICAL

3. Slide back red cover (C) and disconnect positive (+) battery cable (D).

4.Loosen nut on front long carriage bolt (E).

5.Remove rear long carriage bolt (F) and nut.

6.Lift and slide battery (G) out from back of battery tray (H).

7.Inspect isolator pad (I). Replace as needed.

Installing:

1.Place isolator pad (I) in battery tray (H). Ensure that isolator pad is on the bottom and sides of battery tray.

2.Install battery (G) in battery tray (H) with positive terminal in rear.

3.Install rear long carriage bolt (F) and nut. Do not overtighten.

4.Tighten nut on long carriage bolt (E) to secure battery (G) in battery tray

(H). Do not overtighten.

5.Apply dielectric grease to terminals to prevent corrosion.

6.Connect the positive (+) battery cable (D) and install cover (C).

7.Connect negative (-) battery cable (B) and install cover (A).

Cleaning Battery and Terminals

1.Park machine safely. (See Parking Safely in the SAFETY section.)

2.Disconnect and remove battery.

3.Wash battery with solution of four tablespoons of baking soda to one gallon of water. Be careful not to get the soda solution into the cells.

4.Rinse the battery with plain water and dry.

5.Clean terminals and battery cable ends with wire brush until bright.

6.Apply general purpose grease or silicone spray to terminal to prevent corrosion.

7.Install battery.

Using Booster Battery

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CAUTION: Avoid injury! The battery produces a flammable and explosive gas. The battery may explode:

Do not smoke or have open flame near battery.

Wear eye protection and gloves.

Do not jump start or charge a frozen battery. Warm battery to 16°C (60°F).

Do not connect the negative (-) booster cable to the negative (-) terminal of the discharged battery. Connect at a good ground location away from the discharged battery.

A - Booster Battery

B - Disabled Vehicle Battery

1.Connect positive (+) booster cable to booster battery (A) positive (+) post (C).

2.Connect the other end of positive (+) booster cable to the disabled vehicle battery (B) positive (+) post (D).

3.Connect negative (–) booster cable to booster battery negative (–) post

(E).

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IMPORTANT: Avoid Damage! Electric charge from booster battery can damage machine components. Do not install negative booster cable to machine frame. Install only to the engine block.

Install negative booster cable away from moving parts in the engine compartment, such as belts and fan blades.

4.Connect the other end (F) of negative (–) booster cable to a metal part of the disabled machine engine block away from battery.

5.Start the engine of the disabled machine and run machine for several minutes.

6.Carefully disconnect the booster cables in the exact reverse order: negative cable first and then the positive cable.

Replacing Fuse

The electric start circuit is protected by one 20 Amp fuse.

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IMPORTANT: Avoid Damage! Help prevent machine circuit damage. Make sure replacement fuse is the correct size.

1. Locate electric start fuse holder under console on right side of machine.

• Open fuse holder (A) and remove socket with fuse.

Service Electrical - 27

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Great Dane GSRKW2352S, GSRKA1952S manual Using Booster Battery, Replacing Fuse, Installing, Cleaning Battery and Terminals

GSRKW2352S, GSRKA1952S specifications

The Great Dane GSRKA1952S and GSRKW2352S are robust, state-of-the-art vehicles engineered for efficiency and performance in the demanding environment of the transportation industry. Renowned for their cutting-edge design and advanced technologies, these models are poised to meet the needs of modern logistics operations.

Both the GSRKA1952S and GSRKW2352S are equipped with powerful engines that deliver exceptional horsepower and torque, ensuring they can handle heavy loads with ease. The GSRKA1952S features a diesel engine that emphasizes fuel efficiency while maintaining optimal performance levels. In contrast, the GSRKW2352S comes with an advanced hybrid powertrain that combines the benefits of electric and diesel power, significantly reducing emissions and fuel consumption without compromising power.

The chassis design of both models incorporates high-strength materials that enhance durability while reducing overall weight, contributing to improved fuel efficiency and handling. The suspension systems are finely tuned, offering superior ride quality and stability, which is particularly beneficial when navigating uneven road surfaces common in freight transport.

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The exterior design reflects a commitment to aerodynamics, significantly reducing drag and enhancing fuel efficiency at highway speeds. The innovative use of materials and engineering in these vehicles ensures they are not only efficient but also resilient against the rigors of daily use.

In summary, the Great Dane GSRKA1952S and GSRKW2352S stand out in the competitive world of transportation vehicles. With their blend of power, efficiency, safety features, and advanced technology, these models are perfect for businesses looking to optimize their logistics operations while minimizing their environmental impact. They exemplify the evolution of commercial vehicles, marrying tradition with innovation for a sustainable future in transportation.