As part of AIQLAB, we offer comprehensive solutions and services in the following areas:

Quantum Laboratory

Quantum Laboratory

EQUIPMENT

Research and educational quantum laboratories

Equipment for a quantum laboratory designed for education and training, based on systems that emulate, simulate, or participate in the construction and operation of a quantum computer.

QUBIT – FPGA based stand for physical simulations of qubit states

QUBIT – FPGA based stand for physical simulations of qubit states – electronic modules for the control and simulation of quantum systems, based on massively parallel real-time FPGA circuits, enabling the emulation of quantum environments. Our proposed system emulates the behavior of a virtual qubit in real time, graphically displaying the Bloch sphere representing its current state. The user can manipulate the qubit’s state vector using specific input digital pulses, while the emulated qubit continuously generates output digital signals proportional to its current state. This allows for continuous observation and real-time monitoring of qubit parameters such as phase and superposition. Additionally, the input and output digital pulses of the emulator can be constantly monitored, for example, using the included oscilloscope.

QLMS – QUBIT laser manipulation system

QLMS – Qubit laser manipulation system is a system for QUBIT state manipulation using AOM – A complete system for training the construction, control and adjustment of optical systems used in an ion trap.

IMS – Impulse Measurement System

The IMS is an FPGA-based device designed to continuously count the number of TTL (3.3 V) digital pulses in one of three available time intervals (1s, 1ms, 1μs). The IMS is capable of counting just over 50 million pulses per second. The device was built specifically to work with a Single Photon Counting Module based on an avalanche photodiode, but it can also be used as a frequency meter of some periodic signals. Once turned on, the device continuously measures the number of pulses per second and updates the measurement displayed on the HDMI monitor screen accordingly. This measurement is also made available to the user via Ethernet (UDP). The user can switch the device to a different time measurement range than one second (1s). Ranges of one millisecond (1ms) and one microsecond (1us) are also available. In addition to the main measurement of the number of pulses per chosen time period, the device additionally displays on the HDMI screen the global number of pulses counted since the device was turned on and the length of the last measured pulse in nanoseconds (with a precision of 4 ns). There is no need to configure the IMS IP address. The IMS uses Broadcast UDP Communication. It is possible to connect the IMS directly to the Ethernet port of your PC. In this case, however, you must manually configure an IP address and a network mask on your computer.

MONIT (Parallel Sensors MONIToring System)

 

MONIT  – MONIT (Parallel Sensors MONIToring System) –

Temperature and humidity parallel monitoring system

Parameters:

  • 24-channel temperature and humidity sensor system, 
  • Operating in a truly parallel mode.
  • Parallel reading of all sensors at once takes place using commands sent via the Ethernet network using UDP packets.
QRNG (Quantum Random Number Generator)

Quantum Random Number Generator (QRNG) utilizes quantum phenomena to generate truly random numbers, ensuring unparalleled security and unpredictability.

Quantum Laboratory

LABORATORY

Turnkey Ion-Trap Quantum Computer Laboratory Solutions

We provide comprehensive services for the design, development, and deployment of fully equipped ion-trap quantum computer laboratories. 

 

QKD Research and Training Environment 

Training programs provide in-depth knowledge of real-time electronic control systems, covering the
design, implementation, and optimization of high-performance control solutions. 

 

Training in Real-Time Electronic Control Systems

Quantum Key Distribution (QKD) training environment is designed for research and hands-on
learning in quantum cryptography.
Quantum Laboratory

AI

Quantum Laboratory

TRAINING

Quantum Laboratory

CRYPTOGRAPHY

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