Genie SD9500, AR90, AR85 user manual Ii J

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5.Press ENTER. The LEDs will now w be lit according to how you placed

the DIP switches. If the LEDs match your original garage door opener’s DIP switches, press ENTER again to store your code. The green LED will light for three seconds then the GDK will power OFF. Your garage door code has now been saved in the GDK’s memory.

NOTE: If you have made a mistake and one or more of the LEDs are not matching your DIP switches, use the 4- (STORE) or --+ (0) keys to move the blinking LED to the DIP that was incorrectly set. Using the UP, MID and DOWN keys, match the remaining LEDs to the DIP switches on your original garage door opener. Once the LEDs march your original garage door opener’s DIP switches, press ENTER to store your code.

6.Now test your GDK. Press any key other than EXIT, your garage door should open.

7.Repeat steps 1 - 5 to add a second or third garage door to the memory of the GDK,

IMPORTANT: With some Sears Craftsman model transmitters, the DIP switch numbering begins with the number "2.” When programming the GDK to Operate one of these models, please use the DIP (near the head unit) rather than the DIP switches inside your original Transmitter. The radio receiver can be found on or near the garage door opener motor head mounted on your garage ceiling. The DIP switches are usually located near the point where the electrical wires enter the garage door opener head or on the externally mounted radio receiver.

Some Genie openers do not have DIP switches. They have “knockout” or “punch out” switches to set the transmitter code. Where the hole is “punched out” on the original transmitter, the GDK’s LEDs should be set in the DOWN position (OFF). Where the hole is NOT “punched out”, the GDK’s LEDs should be set in the UP position (ON). On these models, the GDK’s LEDs (I-9) should never be in the MIDDLE position (BLINKING).

If you own a Genie AR85 Garage Door Opener, do not set LED number 9 in the UP position (ON).

If you own a Genie AR90 Garage Door Opener, do not set more than eight LEDs (out of 12) in the UP position (ON).

If the GDK will not operate your Stanley opener, try setting the LEDs (1-10) to the opposite positions of your original transmitter. For example, if you set all 10 of the LEDs to the UP position (ON) to match your original Stanley transmitter, then reverse the LEDs to the DOWN position (OFF) and test the GDK again.

Some Stanley openers do not have DIP switches. They have even numbered wires located in both the original transmitter and the head unit. Notice that there are no odd numbered wires. To program the GDK to operate one of these wired units:

Place all of the LEDs (1-12) in the GDK in the down position (OFF). Now locate the uncut wires in the original transmitter or head unit and, using the +- (STORE) or --) (0) keys on the GDK, move the blinking LED to the first number that matches the first uncut wire in your original transmitter. Using the UP key, place the LED in the UP position (ON). Continue to place all of the uncut wires in the UP position (ON). On these models, the GDK’s LEDs (1-9) should never be in the MIDDLE position (BLINKING).

If your "Smart" or “Learning” garage door opener has DIP switches in the original transmitter, set the #1 LED on the GDK to the opposite setting of the #1 DIP switch in your original transmitter. Set the remaining LEDs (2-9) to the exact same position as your original transmitter. If your original transmitter does not have DIP switches, continue on to Step 2.

2.Reach the motor head unit and remove the plastic cover. Find the “Smart” or “Learn” button on the head unit. The button should have an LED (Light Emitting Diode) next to it.

3.After setting the manufacturer’s code, set the LEDs on the GDK to any position you like, and store the code to DOOR1, DOOR2 or DOOR3 as described in the “SETTING UP THE SECURITY CODE TO OPERATE YOUR GARAGE DOOR” section.

4.Press and hold the button on your GDK where you stored your code. While holding down that button, press the “Smart” or “Learn“ button, see Figure 5 (below), on the head unit. After the light on the head unit flashes, release both buttons.

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5.Test the GDK by pressing any button other than EXIT. Your garage door should respond.

Please Note: You have now added the access code of your GDK to the radio receiver. However, your original transmitter may nor be able to communicate wirh the opener. If this is the case, erase the memory of your radio receiver by pressing and holding the “Smart” or “Learn” button on the head unit for approximately 10 seconds. Now, relearn your original transmitter by pressing and holding the button on your original transmitter. While holding down that button, press the “Smart” or “Learn” button on the head unit. After the light on the head unit flashes, release both buttons. Then, relearn the GDK. If this fails to make both transmitters compatible with your garage door opener, then erase the memory of your radio receiver and relearn the original transmitter and march the GDK’s LEDs to the D/P switches in the original transmitter.

Smarthome.com, Inc. (800) SMART-HOME (949) 221-9200 http://smarthome.com

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Contents Genie One For All Wireless Universal Garage RemoteStanley Automatic Doorman Vemco II J Insert Screw CU E R S a L Electronics

AR90, AR85, SD9500 specifications

The Genie SD9500, AR85, and AR90 are three advanced machines designed for specific applications in various industries, including construction, maintenance, and warehousing. Each of these models showcases the commitment of Genie to innovation, quality, and safety, catering to the diverse needs of their operators.

The Genie SD9500 is a robust scissor lift that is designed for heavy-duty performance. One of its standout features is its impressive lifting capacity which allows it to safely raise significant loads to heights of up to 32 feet. The SD9500 is equipped with a durable hydraulic system that ensures smooth and efficient operation. Its expanded platform size enhances work area accessibility, making it a favorite in large maintenance tasks. The machine’s all-terrain capabilities, reinforced with rugged tires and a stable base, allow it to navigate various surfaces, ensuring optimal performance in challenging environments. Additionally, the model incorporates advanced safety features such as guardrails and an emergency descent system, emphasizing Genie’s focus on user safety.

Moving on to the Genie AR85, this articulated boom lift exemplifies versatility and maneuverability. It can reach working heights of up to 85 feet with exceptional horizontal outreach, making it ideal for tasks that require precision at height. One of its key technologies is the articulated arm, which enables operators to easily navigate around obstacles and access hard-to-reach areas. The AR85 is powered by an efficient electric motor, making it environmentally friendly for indoor use while maintaining high performance. The lift's compact design allows it to fit through standard doorways, enhancing its usability in tight spaces. Moreover, the AR85 is equipped with advanced control systems that provide intuitive operations, allowing for easy maneuvering.

The Genie AR90 takes versatility a step further with its enhanced capabilities. It boasts an extended reach, with working heights exceeding 90 feet, and offers a wider array of articulation for even better access. This model is equipped with a dual-fuel engine, facilitating operation in both electric and gas modes, providing flexibility depending on job site requirements. The AR90 also features advanced stabilization technology, ensuring secure operation on uneven terrain. Its spacious platform can accommodate more personnel and equipment, making it ideal for larger projects where productivity is essential.

In summary, the Genie SD9500, AR85, and AR90 are powerful machines that incorporate modern features and technologies to enhance lifting operations across various sectors. With their focus on safety, performance, and adaptability, these models showcase the innovative spirit of Genie and their commitment to meeting the needs of operators while ensuring maximum efficiency and safety on the job.