TM

Quantum QT 600 Manual

8.Service and maintenance

Quantum™ amps do not require service of any kind. There are however a few basic rules that, when followed, are sure to extend the service life of your amp considerably:

Make sure that all peripheral devices and cables are in a state of good repair!

Make sure that air circulates freely around your amp’s ventilation ducts at all times.

Absolutely avoid exposure to mechanical shocks, extreme heat, dust and moisture.

Pay particular attention to the specifications of peripheral devices. Never connect devices with high output signal levels (e.g. amps) to your amp’s input.

Prior to plugging in your amp, always check that the AC power source delivers the current the amp is designed to handle. When in doubt about the local rating, ask the venue’s sound technician or a stage hand.

Refrain from ”do it yourself” repairs! Even the replacement of internal fuses should be entrusted to an experienced technician.

Use a soft dry cloth to clean the enclosure’s outer surfaces and metal and acrylic glass surfaces. Never use alcohol or other solvents!

Ensure a correct impedance matching. Never fall below an impedance of 2.7 ohm!

9. Technical specifications

9.1 Security specifications

9.3 Electronic/acoustic specifications

Mains input voltage:

Secondary fuses

 

220 – 230V

Anode voltage:

1x 50mAT

117V

Electronics supply:

2x 630mAT

100V

Output stage:

2x 8AT each IEC 5x20mm, 250V type

Primary fuse

Inputs

 

externally accessible

Active:

6.3mm mono jack

220 – 230V / T3,15A

Passive:

6.3mm mono jack

117V / T6,3A

FX Return:

6.3mm mono jack

100V / T6,3A

Footswitch connection :

6.3mm stereo jack

Power consumption

Outputs

 

Max. power consumption [Watt]: 950W

Tuner Out:

6.3mm mono jack

 

Headphone out:

6.3mm stereo jack

Inrush current

FX Send:

6.3mm mono jack

230V, 90°: A

Line Out:

6.3mm mono jack

117V, 90°: A

DI Out:

XLR male, balanced

100V, 90°: A

Speaker Out:

Speakon

Temperature indications

Frequency response

 

Surrounding temperature when in use [°C]: 0° - 70°C

Input to Line Out:

35Hz – 20kHz (+0/-3dB)

Temperature during storage/transport [°C]: -20° - +85°C

 

 

9.2 Mechanical specifications

Dimensions

Absolute dimensions incl. all projecting parts WxHxD: 550mm x 195mm x 320mm

Weight 14.5kg

ENGLISH

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Quantum QT600 manual Service and maintenance, Technical specifications, Mechanical specifications

QT600 specifications

The Quantum QT600 is an advanced quantum computing system designed to revolutionize the way complex computations and simulations are executed across various industries. This state-of-the-art device leverages cutting-edge quantum technologies to deliver unprecedented processing power, enabling researchers and enterprises to tackle problems that were previously deemed unsolvable.

One of the key features of the QT600 is its architecture based on superconducting qubits. These qubits are engineered from superconducting materials, allowing them to maintain coherence for extended periods. This characteristic is crucial, as it enables the system to perform quantum calculations more efficiently, minimizing the errors that can occur due to environmental disturbances.

The QT600 is equipped with a highly sophisticated control system that facilitates precise manipulation of the qubits. This system utilizes advanced cryogenic technology to cool the qubits to near absolute zero, ensuring optimal performance and stability. The fidelity of the quantum gates implemented in this architecture is notably high, translating to more reliable outcomes for computations.

Additionally, the Quantum QT600 features an intuitive software framework that simplifies the programming of quantum algorithms. This user-friendly interface allows researchers and developers to write, test, and optimize their quantum programs with ease. Built-in libraries support a wide range of applications, from quantum machine learning to optimization problems, broadening its usability for various fields, including finance, pharmaceuticals, and logistics.

Networking capabilities are another significant aspect of the QT600, as it allows seamless integration with existing classical computing infrastructures. This hybrid approach is designed to enhance computational efficiency and is ideal for organizations aiming to leverage quantum computing without completely overhauling their current systems.

Furthermore, the QT600 includes robust error correction protocols, ensuring that computations are resilient to noise and external interference. This is a vital feature for maintaining the integrity of data processed at the quantum level and plays a critical role in the reliability of long-term experimental outcomes.

In summary, the Quantum QT600 represents a significant leap forward in the realm of quantum computing. With its combination of advanced qubit technology, powerful control systems, user-friendly software, networking capabilities, and essential error correction, it stands poised to unlock a new era of scientific discovery and technological innovation, catering to the evolving needs of researchers and industries worldwide.