Advantages

Standardized & Mass-produced

Through standardized QPU design simulation, fabrication, packaging, and testing processes, SPINQ has achieved the capability to produce commercially available high-performance QPUs with decoherence time (T1) of up to 100 μs or more.

Standardized & Mass-produced

Robust Performance & Fully Controllable Qubits

Users can achieve high-precision control over each qubit through independent control lines. When combined with SPINQ's QCM system, this setup enables high-fidelity quantum logic gate operations on SPINQ QPUs. Specifically, the fidelity of single-qubit gates can reach up to 99.9% or higher; two-qubit gate fidelity can reach up to 99% or higher.

Robust Performance & Fully Controllable Qubits

Flexible Options for Diverse Applications

SpinQ’s QPU products are available in various configurations with different numbers of qubits, catering to diverse application scenarios and budgets requirements.

Flexible Options for Diverse Applications

Stable and Reliable, Highly Integrated, Easy to Use

SPINQ’s QPUs are fully packaged for straightforward installation and use in any experimental environment, eliminating the need for additional handling. They offer high flexibility and excellent thermal contact performance, ensuring stability and reliability.

Stable and Reliable, Highly Integrated, Easy to Use

Factory Testing Report Included

Each QPU product comes with a standard factory characterization report that includes measurements such as resonant cavity frequency, qubit frequency, decoherence time, and more, ensuring the product's reliability.

Factory Testing Report Included

Professional 1-on-1 Services

We provide a variety of professional services for our QPU products, including customization, foundry services, design services, system solution tailoring, professional installation and training, as well as technical support.

Professional 1-on-1 Services

We are dedicated to offering you professional pre-sales purchase consultation services, as well as comprehensive post-sale technical support.

Principles of superconducting quantum chips

Superconducting qubits are constructed from superconducting quantum circuits centred on Josephson junctions. They are essentially nonlinear LC resonant circuits. Due to their distinctive macroscopic quantum effects, these qubits are often referred to as "artificial atoms". The two lowest nonlinear energy levels serve as the |0> and |1> states used in quantum computing.

超导量子芯片原理

SPINQ QPU

C2/C5/C10/C20

Qubits
2/5/10/20
Topology
1D chain / 2D chain ladder
Coupling strength
10-20MHz
Coupling type
Capacitive coupling
Qubit frequency (max.)
4.0-6.0 GHz
Readout resonator frequency
6.0-8.0 GHz
Decoherence time(T1)
20-102 μs