Quantum 3214, 3314, 3414, 3316 user manual Installing Deluxe Wireless Wall Station if included

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Step 9: Installing Deluxe Wireless Wall Station (if included)

Install all wall controls out of the reach of children and in a location where the door can be seen before activating. Do not mount push buttons near or next to ga- rage door.

Locate a convenient place to mount wall station. To keep wall sta- tion out of the reach of children, measure at least five feet up from the floor and secure wall station base into wood wall framing using

(2)Phillips head screws. Pilot drill mounting holes using a 3/32" bit. Use 2 of 3 holes that best align with wood framing.

CAUTION: Over tightening the screws could deform plastic base and interfere with circuit board snaps.

NOTE: Insert bottom of circuit board behind bottom snap of wall station base. Pivot circuit board up until board snaps into place. For best results, press on circuit board between battery terminals.

Insert battery onto circuit board being careful to match (+) positive battery marking with (+) circuit board marking. Align wall station cover/button assembly with base. Press cover assembly over base until cover snaps into place. A uniform seam between the cover and base indicates a proper installation.

Step 10: Install Entrapment Warning Label

Install Entrapment Warning Label next to wall station in a prominent location

Install Entrapment Warning Label next to Wall Station as illustrated. If label adhesive will not adhere to the sur- face, secure the label by additional mechanical means such as staples, nails or screws.

Step 11: Install Wireless Infrared Safety Sensor Quick-Install (QI) Mounting Bracket. (If Opener is Equipped with Wired Infrared Safety Sensor Go to Step 15)

Use the following instructions if your door tracks come pre-punched for using QUICK-INSTALL brackets otherwise go to step 12.

Each bracket is marked either L or R just below the slide lock. (L & R refers to left and right side of ga- rage door as viewed from inside the garage).

Start with the right side bracket as illustrated. Slip the Slide Lock tab of the QI bracket into the door track mounting slot near the bottom of the door track. Slide the bracket downward until it seats at the bottom of the slot. Repeat the same step for the left vertical track using the left Quick Install Bracket. You should encounter some resistance when pushing down on the QI-bracket. If needed, use a flat blade screwdriver against the top edge of the bracket and gently tap into position with a hammer.

NOTE: It is very important that both brackets are mounted at the same height so sensors align.

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Contents Owner Installation Important Installation Instructions Page Features Important PRE-ASSEMBLY Check Positioning and Installing Front Wall Bracket Attaching Motor Power Head Unit to RailAttach Unit to Front Wall Bracket Positioning the Motor End of OperatorMounting Motor End of Opener Installing Light Installing Wired Wall Station if includedMounting Door Bracket Install Entrapment Warning Label Installing Deluxe Wireless Wall Station if includedInstall Wireless Infrared Safety Sensor Install Wireless Infrared Safety Sensor BracketInstall Wired Infrared Safety Sensor Wall Mounting Brackets Connecting Wired Infrared Safety Sensor to Opener Install Wiring for Wired Infrared Safety SensorConnecting Electrical Power Mount Wired Infrared Safety SensorsChanging Wireless Wall Station Code Wireless Wall Station Security Code Change and ProgrammingAlignment of the Wireless Infrared Safety Sensors Transmitter Security Code Change and Programming Alignment of the Wired Infrared Safety SensorsSetting Trolley Close Position Connecting Cushion Arm to TrolleyIMPORTANT! Test Contact Obstruction Sensing Feature Connecting Door Arm to DoorInfrared Safety Sensor Obstruction Test Setting Door Opening TravelInstalling Wireless Keyless Entry If Included Programming Wireless Keyless Entry If IncludedAdjustment # 1 Opening and Closing Force AdjustmentsAdjustment # 3 Positive Mechanical Door Lock Adjustment # 2 Contact Obstruction Sensing Closing DirectionImportant Safety Instructions Operation of Your Opener HOW to Operate the Wireless Keyless Entry if IncludedOpener Power Head Controls HOW to Operate the Wireless Wall Station If IncludedPage Once a Month Twice a YearOnce a Year Trouble Shooting Section Parts Breakdown Rail Assembly All Models Parts Breakdown Power Head Assembly All Models Quantum Accessories Cut Template to Aid in Keyless Entry Installation See Step Limited Lifetime Warranty

3316, 3314, 3214, 3414 specifications

Quantum 3414, 3316, 3214, and 3314 represent a series of cutting-edge technologies that have emerged in the field of quantum computing and advanced materials science. Each of these models offers unique features and capabilities designed to push the boundaries of computational power and efficiency.

The Quantum 3414 is distinguished by its robust architecture and high-performance qubit system. It utilizes superconducting qubits, which provide exceptional coherence times and operational fidelity. This model is particularly well-suited for complex algorithm implementations, making it an attractive choice for researchers focused on quantum simulations and machine learning applications. Its innovative design integrates quantum error correction mechanisms that enhance reliability and reduce error rates.

Following closely, the Quantum 3316 emphasizes versatility and scalability. This model introduces a modular approach to quantum systems, enabling users to expand their computational resources as their needs grow. It features a hybrid quantum-classical architecture, allowing for greater flexibility in algorithm execution while leveraging classical computing's strengths. The 3316 is ideal for industries looking to optimize operational efficiency through quantum-enhanced processes.

The Quantum 3214 focuses on user accessibility and simplified integration into existing technological ecosystems. This model is equipped with an intuitive interface and user-friendly programming capabilities, catering to both seasoned quantum developers and newcomers. The 3214 also adopts cutting-edge quantum networking technologies, facilitating the remote connection of quantum systems for collaborative research and development.

Lastly, the Quantum 3314 combines power and compactness. Though smaller in form factor, this model does not compromise on performance. It employs advanced cryogenic technology to maintain optimal operating conditions for qubits, thus enhancing thermal stability and minimizing noise. The 3314 is particularly suitable for environments where space is limited yet high performance is essential, such as academic laboratories and research institutions.

Overall, the Quantum 3414, 3316, 3214, and 3314 each present a variety of sophisticated features tailored to specific applications within the quantum domain. From research and development to practical industrial applications, these models signify a significant leap forward in harnessing quantum technologies for future advancements. Their unique characteristics make them valuable tools for overcoming the challenges faced in the ever-evolving landscape of computing and science.