Changyi Guangke (Suzhou) Technology Co., Ltd.

Changyi Guangke, headquartered in the Suzhou Industrial Park of the China (Jiangsu) Pilot Free Trade Zone, maintains branch offices in Xi’an and Qingdao. As a high-tech enterprise specializing in micro‑ and nano‑scale optical imaging and the R&D and manufacturing of advanced optical instruments, Changyi Guangke is one of the few domestic manufacturers that independently develops software, hardware, and underlying components across the entire technology stack.

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Micro- and Nano-Imaging Opens Up New Horizons

Providing micro- and nano-scale imaging instruments and solutions for the life sciences field.

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Laser scanning confocal microscope

Micro- and Nano-Imaging Opens Up New Horizons

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Changyi Guangke- To become a proud high-tech company for every customer, employee, and shareholder!

Changyi Guangke is located in the Suzhou Industrial Park, within the China (Suzhou) Pilot Free Trade Zone. It is a high-tech enterprise that provides micro- and nano‑imaging instruments and solutions for universities, research institutes, hospitals, and pharmaceutical companies in the life sciences field. We are committed to continuous innovation to deliver value to our customers, striving to become a high‑tech company that inspires pride among our clients, employees, and shareholders.

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about

Company Profile

A high-tech enterprise that provides micro- and nano-scale imaging instruments and solutions in the life sciences to universities, research institutes, hospitals, and pharmaceutical companies.

about

Corporate culture

Committed to continuous innovation that delivers value to our customers, we strive to be a high-tech company that makes every customer, employee, and shareholder proud!

100 +

Partner Clients

98 .6 %

Customer satisfaction

10 +

Patent Technology Certification

30 +person

Core Professional Technical Team

Products

Empowering scientific research with cost-effective products and services.

Application areas

Choose a solution for your industry.

Cell Biology

It helps to study cellular morphology and structure, the cell cycle, cell division, autophagy, and cell death, as well as inter‑organelle energy and information transfer.

Pathology

The medical process that helps investigate the etiology, pathogenesis, pathological changes, outcomes, and prognosis of diseases.

Pharmacology

To elucidate the principles governing drug–organism interactions and to investigate the mechanisms of drug action.

Neurobiology

It helps investigate the molecular composition and structure of neurons, as well as how neurons form functional circuits via synaptic connections to process information and mediate behavior.

Immunology

To elucidate the composition and functions of the organism’s immune system, as well as the fundamental immunological mechanisms underlying related diseases.

Other Interdisciplinary Fields

Confocal microscopy uses a laser light source to excite fluorescent probes within cells, thereby generating fluorescence images of subcellular fine structures inside cells or tissues. Consequently, high‑resolution imaging can be performed on a wide range of samples labeled with fluorescent markers.

Long-term activities

Pooling Innovation, Crafting the Future | Changyi Guangke Invites You to Attend the 16th China Symposium on Public Platform Management and Technological Development in Life Sciences

2026-07-07


From July 9 to 12, 2026, the 16th China Symposium on the Management and Technological Development of Public Life Science Platforms will be grandly held in Chongqing, the “Mountain City.”

Breaking through “bottleneck” technologies, Changyi Optoelectronics’ self-developed PMT ushers in a new chapter for domestically produced confocal microscopy.

2026-06-15


In the field of life sciences, laser confocal microscopy stands as the undisputed “core tool,” enabling us to peer into the microscopic mysteries of cells and driving cutting-edge advances in neuroscience, cell biology, and other disciplines. Yet for a long time, the bottleneck posed by critical components has continued to hinder the development of domestically produced high-end imaging instruments.