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MicroAlgo Inc. Develops a Reconfigurable Simulation Technology of High-Precision, High-Throughput Scalable Quantum Algorithms

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MicroAlgo (NASDAQ: MLGO) announced a high-precision, high-throughput, reconfigurable simulation technology to support research and application of quantum algorithms. The solution combines an arithmetic operation simplification model and a nuclear operation iteration model with reconfigurable hardware, single-precision floating-point support, and fully pipelined, parallel processing.

Tested on Quantum Fourier Transform and quantum wavelet transform, it reportedly improves resource utilization and simulation time, targeting use in scientific computing, cryptography, and materials science.

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News Market Reaction – MLGO

+1.17%
1 alert
+1.17% News Effect

On the day this news was published, MLGO gained 1.17%, reflecting a mild positive market reaction.

Data tracked by StockTitan Argus on the day of publication.

Market Reality Check

Price: $5.11 Vol: Volume 294,720 is 0.24x t...
low vol
$5.11 Last Close
Volume Volume 294,720 is 0.24x the 20-day average of 1,242,099, indicating relatively muted trading activity. low
Technical Shares trade below the 200-day MA, with price at 5.11 versus the MA at 6.25.

Peers on Argus

MLGO fell 14.98% while momentum-screened peers like XBP and AISP showed upside m...
2 Up

MLGO fell 14.98% while momentum-screened peers like XBP and AISP showed upside moves, suggesting today’s weakness was more stock-specific than sector-driven.

Historical Context

5 past events · Latest: May 28 (Positive)
Pattern 5 events
Date Event Sentiment Move Catalyst
May 28 Quantum encryption update Positive +5.0% Announced lattice-based quantum encryption integrated into LSQb image algorithm.
May 20 Quantum imaging algorithm Positive +33.7% Unveiled quantum image edge extraction algorithm for noisy images.
May 14 Circuit design algorithm Positive +13.2% Introduced multi-objective evolutionary algorithm for quantum circuit design.
May 8 QAS technology launch Positive +1.0% Announced Quantum Architecture Search to optimize VQA circuit architectures.
May 5 Quantum blockchain design Positive +1.5% Proposed quantum blockchain architecture using QSC and QKD for security.
Pattern Detected

Recent quantum-computing themed announcements have generally seen positive next-day price reactions, with several double-digit gains following similar technical news.

Recent Company History

Over the last month, MicroAlgo has issued a series of quantum-focused R&D updates, including blockchain security, Quantum Architecture Search, circuit evolution, image edge extraction, and lattice-based quantum encryption. Each of these releases, all tagged as news, produced positive 24-hour price moves ranging from 0.97% to 33.68%. Today’s announcement of a reconfigurable high-precision, high-throughput quantum algorithm simulation technology extends this pattern of frequent technical innovation updates within quantum computing and cryptography.

Market Pulse Summary

This announcement highlights an advanced, reconfigurable simulation platform for quantum algorithms,...
Analysis

This announcement highlights an advanced, reconfigurable simulation platform for quantum algorithms, combining arithmetic simplification and nuclear operation iteration models with pipelined, floating-point hardware. Recent months featured multiple quantum-related releases with generally positive price reactions, indicating sustained focus on this theme. Investors may watch how consistently the company validates performance claims, its pace of practical adoption, and any future financing structures disclosed in regulatory filings as the technology portfolio expands.

Key Terms

quantum bits, qubits, superposition, Quantum Fourier Transform (QFT), +1 more
5 terms
quantum bits medical
"The core of quantum computing lies in quantum bits (qubits), which can represent..."
A quantum bit, or qubit, is the basic unit of information in a quantum computer that can hold more than just a 0 or 1 at the same time — imagine a spinning coin that isn’t fixed as heads or tails until you look. Qubits also link together in ways that let certain complex problems be explored far faster than with ordinary computers, so investors watch them as a potential source of breakthrough value or disruption in fields like encryption, materials, and drug discovery.
qubits technical
"The core of quantum computing lies in quantum bits (qubits), which can represent..."
Qubits are the basic units of information in quantum computing, similar to how traditional computers use bits. Unlike regular bits that are either 0 or 1, qubits can represent both at the same time, allowing quantum computers to process complex problems much faster. This potential for unprecedented speed and power could transform industries, making qubits a key focus for investors interested in cutting-edge technology.
superposition technical
"...achieving parallel computing capabilities through quantum phenomena such as superposition and entanglement."
Superposition describes a situation where multiple influences or states overlap at the same time and their effects add together, like several ripples on a pond combining into a new wave pattern. For investors, recognizing superposition means understanding that price moves, risk factors or signals can be the result of several simultaneous forces—so isolating a single cause without separating those layers can lead to misreading market signals or misjudging risk.
Quantum Fourier Transform (QFT) technical
"MicroAlgo conducted simulation experiments on several classic quantum algorithms, including the Quantum Fourier Transform (QFT)..."
A quantum Fourier transform (QFT) is a mathematical operation performed by a quantum computer that rearranges and combines quantum information to reveal periodic patterns, much like how a music equalizer separates a song into bass and treble. It is a core ingredient in many quantum algorithms that could solve certain problems far faster than today's computers, so its development matters to investors because advances could change computing power, data security and industries that rely on heavy computation.
quantum key distribution technical
"QKD secures key generation/distribution, quantum encryption protects transaction data..."
Quantum key distribution is a way of creating and sharing secret encryption keys using the laws of quantum physics, typically by sending tiny particles of light so that any eavesdropping automatically changes them and can be detected. Investors care because it promises much stronger, tamper-evident protection for sensitive data and communications—like a lock that signals if it’s been picked—affecting the value of cybersecurity, telecom and defense technologies as quantum computing advances.

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SHENZHEN, China, June 4, 2026 /PRNewswire/ -- MicroAlgo Inc. (the "Company" or "MicroAlgo") (NASDAQ: MLGO), today announced the development of an innovative high-precision, high-throughput reconfigurable simulation technology, aimed at providing effective solutions for the research and application of quantum algorithms.

The core of quantum computing lies in quantum bits (qubits), which can represent multiple states simultaneously, achieving parallel computing capabilities through quantum phenomena such as superposition and entanglement. However, the practical implementation of quantum computers is still in its early stages, facing numerous technical challenges. Currently, mainstream quantum computers, such as those based on superconducting qubits and ion traps, remain imperfect in terms of the number of qubits and error correction capabilities, making large-scale quantum computing difficult. Therefore, simulating quantum algorithms on classical computing platforms has become an important research approach. Through classical simulation, researchers can gain a deep understanding of the characteristics and performance of quantum algorithms, providing strong support for the development and application of actual quantum computers.

Traditional quantum algorithm simulation methods are typically based on the quantum circuit model, simulating the operation of each quantum gate step by step. While this approach is intuitively easy to understand, its computational complexity and resource demands grow exponentially when handling a large number of qubits, resulting in low simulation efficiency, significant hardware resource consumption, and excessively long simulation times. Therefore, developing efficient quantum algorithm simulation technology has become an urgent need.

MicroAlgo has proposed a reconfigurable simulation technology for quantum algorithms with high precision and high throughput. This technology is primarily based on two innovative simulation models: the arithmetic operation simplification model and the nuclear operation iteration model. The arithmetic operation simplification model reduces the complexity of quantum state operations by transforming the functionality of quantum circuits into basic arithmetic operations (such as multiplication and accumulation). MicroAlgo represents common quantum gate operations as equivalent arithmetic operations and uses precomputation and lookup table methods to quickly obtain the results of these operations. For complex operations, a dynamic generation approach is adopted, producing intermediate results as needed. This method not only reduces computational complexity but also enhances the computational speed and throughput of the simulation through parallel processing.

The nuclear operation iteration model, on the other hand, extracts the key operations of a quantum circuit and focuses on processing changes in quantum states, thereby avoiding the complex process of step-by-step simulation of the entire circuit. MicroAlgo first analyzes the quantum circuit to identify the key operations that have the greatest impact on quantum state evolution, then performs nuclear operation iterations on all input quantum states. This approach not only simplifies the computational process but also significantly improves simulation efficiency. By optimizing the design of the extracted nuclear operations and employing parallel processing methods, the simulation speed and throughput are further enhanced.

To fully leverage the advantages of these two simulation models, MicroAlgo has adopted a reconfigurable hardware architecture for the implementation of the simulator. The reconfigurable technology enables flexible allocation and utilization of hardware resources through dynamic hardware configuration adjustments, allowing the simulator to dynamically adjust the allocation of computing units and storage resources based on the requirements of different quantum algorithms, thereby improving the efficiency of hardware resource utilization. Additionally, to ensure the numerical precision of simulation results, MicroAlgo's (NASDAQ: MLGO) simulator supports single-precision floating-point operations. Floating-point operations offer higher numerical precision and computational flexibility, making them suitable for handling complex quantum states and operations. Through a fully pipelined design, the simulator's various computing units can continuously process data without interruption, further enhancing simulation efficiency and throughput.

To validate the performance of the simulation models and hardware architecture, MicroAlgo conducted simulation experiments on several classic quantum algorithms, including the Quantum Fourier Transform (QFT) and quantum wavelet transform. The experimental results demonstrate that MicroAlgo's proposed simulation models significantly outperform traditional methods in terms of resource utilization and simulation time. For example, in the simulation experiments of the Quantum Fourier Transform, the arithmetic operation simplification model and the nuclear operation iteration model achieved a more efficient simulation process by reducing computational complexity and focusing on processing key operations, respectively. In the simulation of the quantum wavelet transform, MicroAlgo's simulator, through its fully pipelined design and parallel processing, significantly reduced resource consumption and simulation time, proving its superiority in handling complex quantum algorithms.

As quantum computing research continues to advance, quantum algorithms are showing broad application prospects in fields such as scientific computing, cryptography, and materials science. This simulation technology provides strong support for the research and application of quantum algorithms, not only accelerating the development and testing of quantum algorithms but also laying the foundation for the practical application of quantum computers. In the field of scientific computing, quantum algorithms can significantly improve the efficiency of solving complex problems. MicroAlgo's simulation technology enables researchers to efficiently simulate quantum algorithms on classical platforms, accelerating the development and validation of new algorithms and providing more possibilities for scientific computing.

MicroAlgo's high-precision, high-throughput reconfigurable simulation technology for quantum algorithms has significant applications in the field of quantum computing cryptography, particularly in breaking traditional encryption algorithms. Through efficient simulation technology, researchers can test and optimize quantum cryptographic algorithms on classical platforms, enhancing the security and practicality of cryptography. Additionally, quantum algorithms hold broad application prospects in materials science, enabling the simulation and optimization of the quantum properties of materials. MicroAlgo's simulation technology can assist researchers in efficiently simulating the quantum behavior of materials on classical platforms, promoting the discovery and application of new materials.

MicroAlgo's high-precision, high-throughput reconfigurable simulation technology for quantum algorithms provides innovative solutions for the research and application of quantum computing. By integrating the arithmetic operation simplification and nuclear operation iteration simulation models, combined with reconfigurable technology, single-precision floating-point operations, and a fully pipelined design, the simulator achieves significant optimizations in resource utilization and simulation time. Experimental results demonstrate the feasibility and superiority of the simulator in running and testing various quantum algorithms. In the future, as quantum computing technology continues to advance, MicroAlgo's simulation technology will continue to play a crucial role, providing robust support for the research and practical application of quantum algorithms, and driving the arrival of the quantum computing era.

About MicroAlgo Inc.

MicroAlgo Inc. (the "MicroAlgo"), a Cayman Islands exempted company, is dedicated to the development and application of bespoke central processing algorithms. MicroAlgo provides comprehensive solutions to customers by integrating central processing algorithms with software or hardware, or both, thereby helping them to increase the number of customers, improve end-user satisfaction, achieve direct cost savings, reduce power consumption, and achieve technical goals. The range of MicroAlgo's services includes algorithm optimization, accelerating computing power without the need for hardware upgrades, lightweight data processing, and data intelligence services. MicroAlgo's ability to efficiently deliver software and hardware optimization to customers through bespoke central processing algorithms serves as a driving force for MicroAlgo's long-term development.

Forward-Looking Statements

This press release contains statements that may constitute "forward-looking statements." Forward-looking statements are subject to numerous conditions, many of which are beyond the control of MicroAlgo, including those set forth in the Risk Factors section of MicroAlgo's periodic reports on Forms 10-K and 8-K filed with the SEC. Copies are available on the SEC's website, www.sec.gov. Words such as "expect," "estimate," "project," "budget," "forecast," "anticipate," "intend," "plan," "may," "will," "could," "should," "believes," "predicts," "potential," "continue," and similar expressions are intended to identify such forward-looking statements. These forward-looking statements include, without limitation, MicroAlgo's expectations with respect to future performance and anticipated financial impacts of the business transaction.

MicroAlgo undertakes no obligation to update these statements for revisions or changes after the date of this release, except as may be required by law.

Cision View original content:https://www.prnewswire.com/news-releases/microalgo-inc-develops-a-reconfigurable-simulation-technology-of-high-precision-high-throughput-scalable-quantum-algorithms-302791813.html

SOURCE MicroAlgo Inc.

FAQ

What quantum simulation technology did MicroAlgo (NASDAQ: MLGO) announce on June 4, 2026?

MicroAlgo announced a high-precision, high-throughput reconfigurable simulation technology for scalable quantum algorithms. According to MicroAlgo, it integrates arithmetic operation simplification and nuclear operation iteration models with reconfigurable hardware to enhance efficiency when simulating complex quantum algorithms on classical computing platforms.

How does MicroAlgo's new MLGO quantum algorithm simulator improve performance over traditional methods?

MicroAlgo reports improved simulation efficiency by reducing complexity and focusing on key quantum operations. According to MicroAlgo, arithmetic operation simplification and nuclear operation iteration models, combined with parallel and fully pipelined hardware, enhance resource utilization and reduce simulation time versus step-by-step quantum circuit simulations.

What are the core models used in MicroAlgo's (MLGO) reconfigurable quantum simulation technology?

MicroAlgo uses an arithmetic operation simplification model and a nuclear operation iteration model as core elements. According to MicroAlgo, these models transform quantum gates into arithmetic operations and iterate on key circuit operations, aiming to simplify computation and raise throughput on classical platforms.

Which quantum algorithms were used to test MicroAlgo's new MLGO simulation technology?

MicroAlgo tested its simulator on the Quantum Fourier Transform and quantum wavelet transform algorithms. According to MicroAlgo, experiments showed better resource utilization and shorter simulation times, demonstrating feasibility and advantages versus traditional quantum circuit-based simulation approaches for these classic quantum algorithms.

What potential applications does MicroAlgo (NASDAQ: MLGO) see for its quantum simulation technology?

MicroAlgo highlights applications in scientific computing, cryptography, and materials science for its simulation technology. According to MicroAlgo, efficient classical-platform simulations can support developing new quantum algorithms, testing quantum cryptographic schemes, and modeling material quantum properties to aid discovery and optimization.

How does hardware design enhance MicroAlgo's MLGO quantum algorithm simulator?

MicroAlgo employs a reconfigurable hardware architecture with single-precision floating-point and full pipelining. According to MicroAlgo, dynamic allocation of computing and storage resources plus continuous parallel processing help raise numerical precision, throughput, and hardware utilization when simulating various quantum algorithms.