Step 3

With the gate in the fully closed position and the opener retracted, swing the opener to the gate. Mark reference points for bolt holes on gate cross member through middle of gate bracket slots. The opener must be level. (Some vertical adjustment

is possible by sliding the post bracket assembly up and down.) Drill 3/8" holes into the gate cross member as marked. Fasten gate bracket to cross member using (2) 3/8" x 3" bolts, washers, lock washers, and nuts. Attach the opener to the post bracket assembly and gate bracket using clevis pins, bushings, and hairpins clips.

Fence Post

Gate Post and Gate Cross Member

 

(In Closed Position)

LEVEL

Operator

LEVEL

POST PIVOT BRACKET level with the horizontal surface of the GATE BRACKET

LEVEL

Step 4

Make sure the control box power switch is OFF. Use a small screwdriver to move the Number 4 DIP switch from the factory setting (OFF / Pull-To-Open) to ON for Push-To-Open. Turn power switch ON. The control board is now configured to push the gate open.

Step 5

Install the second gate opener on the other gate in the same manner. Then refer to the CONTROL BOARD SETTINGS on page 25 for gate sequencing and other programming steps before proceeding.

1

2

3

4

5

6

7

ON

ON

 

 

 

 

 

 

 

1

2

3

4

5

6

7

OFF

DIP#4

ON

Push-to-open operation.

OFF

Pull-to-open operation (factory setting).

Setting the Open Position Limit

Step 1

Confirm that the power switch is in the ON position, and the gates are in the CLOSED POSITIONS.

Step 2

Activate your openers by pressing the entry transmitter button. Your gates should now be moving from the closed positions toward their open position. Prepare to STOP gates by pressing the entry transmitter button again when the first gate reaches the desired open position. This step may be repeated until desired open position is achieved. Once the desired OPEN position has been achieved, proceed to step 3.

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GTO 2502, 2550 installation manual Setting the Open Position Limit

2502, 2550 specifications

The GTO 2502 and GTO 2550 are advanced machine models recognized for their high efficiency and performance in various industrial applications. Designed with modern manufacturing needs in mind, these machines exemplify technological innovation and superior engineering.

The GTO 2502 model is designed for remarkable precision and reliability. It operates with an emphasis on energy efficiency, minimizing power consumption without sacrificing performance. The machine is equipped with a cutting-edge control system that simplifies operation and enhances the user experience. This control system includes a user-friendly interface, allowing operators to monitor performance metrics easily and optimize settings in real time.

On the other hand, the GTO 2550 takes efficiency and productivity a step further. This model boasts an extended operational range and supports a wider variety of materials, making it a versatile choice for manufacturers in different sectors. The GTO 2550 is engineered with upgraded components to enhance speed and durability, ensuring that it can handle demanding workloads day in and day out.

Both models incorporate advanced technologies such as real-time monitoring and diagnostics, enabling users to predict maintenance needs and reduce downtime. Their robust construction ensures longevity, making them a worthwhile investment for businesses looking to improve their operational efficiency.

Another key feature of the GTO 2502 and GTO 2550 is their modular design, which allows for easy upgrades and scalability. This means businesses can adapt to changing production demands without the need for entirely new machines. Furthermore, both models are equipped with eco-friendly technologies, helping companies reduce their carbon footprint while maintaining high production levels.

In summary, the GTO 2502 and GTO 2550 are designed to meet the high standards of modern manufacturing with their advanced features and technologies. They offer a combination of precision, efficiency, and adaptability that is essential in today’s competitive market. As industries continue to evolve, these models stand out as prime examples of innovation in machinery design, making them invaluable assets for any manufacturing operation.