Quantum 1107 Swing-away Footrests, Elevating Leg Rests Optional, Multi-Axis Foot Plate

Models: 1107

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V . C O M F O R T A D J U S T M E N T S

Swing-away Footrests

 

Swing-away Footrests (SFRs) enable you to rotate the

 

footrests to the side before you transfer onto or off of

RELEASE LEVER A

your power chair.

 

 

 

RELEASE LEVER B

To rotate the SFRs:

 

1.

Push in the release lever. See figure 24.

 

2.

Rotate the SFRs.

LEG REST

 

 

EXTENSION

To adjust the SFR length:

LEG REST

ADJUSTMENT

1.

Remove the two adjustment screws from the side of each

SCREWS

 

 

footrestextension.Seefigure24.

 

2.

Slide the footrest up or down to the desired length.

 

3.

Reinstallthetwoadjustmentscrews.

 

Elevating Leg Rests (Optional)

Figure 25. Elevating Leg Rests

Elevating Leg Rests (ELRs) offer an infinite range of ad- justment for the leg angle and a footrest adjustment range of 12–19 in.

To rotate the ELRs:

1.Push in release lever A. See figure 25.

2.Rotate the ELRs.

To adjust the ELR length:

1.Removethetwoadjustmentscrewsfromthesideof eachleg rest extension. See figure 25.

2.Slide the leg rest up or down to the desired length.

3.Reinstallthetwoadjustmentscrews.

To adjust the ELR angle:

1.Push down release lever B. See figure 25.

2.Move the leg rest to the desired angle.

Multi-Axis Foot Plate

The multi-axis foot plate assembly can be installed on either a swing-away footrest or an elevating leg rest. The multi-axis foot plate has four adjustments: leg rest length (A), position (B), tilt (C), and angle (D). See figure 26.

To change leg rest length (A):

1.Remove the hardware.

2.Move the leg rest to the desired position.

3.Reinstall the hardware.

A

B

C

D

A

B

C

D

SETSCREW

Figure 26. Multi-Axis Foot Plate (ELR Shown)

Quantum 1107

www.quantumrehab.com

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Quantum 1107 owner manual Swing-away Footrests, Elevating Leg Rests Optional, Multi-Axis Foot Plate

1107 specifications

Quantum 1107 represents a significant advancement in the realm of quantum computing, designed to address the growing complexities of computational tasks across various industries. This cutting-edge system leverages quantum bits, or qubits, which form the foundation of its unique processing abilities, allowing for operations that significantly outpace traditional binary computing.

One of the standout features of the Quantum 1107 is its impressive qubit count. With over 100 qubits, it is engineered to handle intricate calculations and simulations that would take classical computers an impractical amount of time. Each qubit is constructed using superconducting materials, allowing for high coherence times that enhance reliability and performance. This stability is critical for executing precise operations, ultimately expanding the potential applications of quantum algorithms.

The Quantum 1107 employs a novel quantum error correction technology, which is essential for maintaining the integrity of quantum calculations. By continuously monitoring and correcting errors that may arise during computations, this system ensures that users can trust the results produced, facilitating more complex problem-solving without the usual risk of errors that plague many quantum computing systems.

Furthermore, the system implements advanced quantum entanglement protocols, enabling qubits to work together in ways that amplify processing power. This phenomenon allows for simultaneous computations that drastically reduce the time required to solve specific algorithms, such as those in optimization, cryptography, and complex simulations.

Quantum 1107 also features a user-friendly interface that simplifies the programming of quantum applications. With built-in support for high-level programming languages designed for quantum computing, researchers and developers can easily implement quantum algorithms without needing to delve into the underlying hardware intricacies.

Another aspect of the Quantum 1107 is its robust scalability. This system is designed to grow alongside technological advancements, allowing for seamless upgrades in qubit count and processing capabilities. As the field of quantum computing continues to evolve, the Quantum 1107 remains positioned to adapt, ensuring that users can leverage the latest innovations.

In summary, Quantum 1107 stands out in the quantum computing landscape due to its high qubit count, advanced error correction, and entanglement capabilities, combined with a user-friendly interface and scalability. These features make it an invaluable tool for researchers and industries seeking to unlock the transformative potential of quantum technology.