Explore our primary array of high-fidelity CPR simulators, Heimlich choking vests, and advanced training models engineered to comply with AHA (American Heart Association) standards.
Analyzing global procurement shifts, systemic health training frameworks, and the integration of smart technologies in public safety initiatives.
In the modern medical education landscape, simulation has transitioned from a supporting learning resource to a primary metric of clinical competency. As international healthcare bodies, military medical units, and academic universities tighten validation protocols, the demand for high-fidelity cardiopulmonary resuscitation (CPR) mannequins has reached unprecedented heights. Advanced modeling requires anatomically correct feedback, physiological chest-rise simulation, and algorithmic accuracy in measuring compression depth and ventilation volume.
The global transition towards digital-twin interfaces and real-time electronic monitoring has reshaped procurement criteria for institutional buyers. Procurement officers no longer seek static models; they require intelligent systems with integrated software platforms, voice-guided training prompts, and comprehensive data visualization dashboards capable of tracking performance trends across cohorts.
By leveraging advanced material science, such as high-tensile elastomers that simulate human skin texture and physiological chest resistance, modern simulation manufacturers bridging the gap between clinical theory and hands-on lifesaver preparation.
A trusted beacon of medical education engineering, integrating innovative research, design, global distribution, and end-to-end customization services.
Founded in Beijing in 2016, Beijing Guanbang Medical Technology Co., Ltd. is an innovative enterprise dedicated to developing, manufacturing, and distributing professional medical simulation training models. With our state-of-the-art production base spanning approximately 10,000 square meters, we have built a complete industrial ecosystem that includes advanced mechanical CAD/CAE design, rapid mold prototyping, clean injection molding, software engineering, and rigorous QC testing protocols.
Our core research team includes distinguished scientists and specialists holding Master's and Ph.D. degrees from prestigious institutions such as the Chinese Academy of Sciences (CAS), Tsinghua University, and the Beijing University of Technology. Through this strong academic foundation and close collaboration, we have secured numerous design patents, utility models, and software copyrights.
Our global supply chain has shipped products to various hospitals, universities, military facilities, safety training schools, and public emergency response departments, building a reputation for reliable durability and scientific precision.
How we implement AI-guided training, advanced sensory feedback, and modular material science to create the next generation of simulators.
Integrating real-time electronic sensory analysis monitoring depth, frequency, chest recoil, and volume. Supported by smart multi-functional software interfaces displayed at leading forums.
Formulated with custom thermoplastic elastomers (TPE) and silicone molding technologies, providing realistic skin elasticity, anatomical landmarks, and highly durable cycles.
Comprehensive ODM/OEM pipelines. Adjusting digital systems, multilingual voice guides, and physical dimensions (Adult, Child, Infant) for about 30 distinctive technical setups.
Structured classifications designed to align with international First Aid, BLS (Basic Life Support), and ACLS guidelines.
Simulate emergency shock delivery configurations, electrodes placement, and rhythm analytics securely without high voltage.
Robust manikins featuring electronic feedback controllers, built-in screen prompts, and advanced respiratory ventilation simulation.
Real-world wearability vests and child choking simulators for mastering abdominal thrusts and airway clearance mechanics.
Our engineering conforms strictly to safety standards, environmental guidelines, and medical training requirements globally.
Beijing Guanbang maintains rigorous management systems certified under international standards for environmental management, quality management, and occupational health and safety. Every simulator undergo strict stress-testing to withstand high-repetition usage commonly encountered in first responder courses and academic campuses.
Our systems conform to standard CPR protocols. This means compression metrics (5-6cm depth for adults) and ventilation feedback indicators correspond precisely to real emergency parameters, ensuring clinical authenticity.









Guanbang's active presence in scientific forums, municipal emergency training, and school health campaigns.
Showcasing state-of-the-art emergency battlefield medicine models and smart tactical resuscitation devices, winning acclaim from tech delegations.
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Demonstrating our unique "One-to-Many" software architecture allowing a single workstation to monitor 10+ simulators concurrently.
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Providing free interactive cardiopulmonary resuscitation clinics to the community, helping to train thousands of citizens.
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Installing infant and pediatric resuscitation systems across campuses to teach life-saving skills from childhood.
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Igniting community passion for scientific first aid using touch-screen systems with automatic scoring systems.
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Empowering families in the Shijingshan community to manage choking emergencies and cardiac arrest scenarios.
Read Article →Explore detailed explanations regarding our manufacturing techniques, bulk supply chains, and regulatory compliances.
Yes, our digital models, voice prompt systems, and digital control panels can be customized through software updates to meet European Resuscitation Council (ERC) or American Heart Association (AHA) guidelines. This includes adjusting parameters for compression depths and rates, as well as altering ventilation feedback metrics to match local regulatory standards.
Our simulators are manufactured using a high-grade imported thermoplastic elastomer (TPE) combined with specialized silicone compound polymers. This ensures a realistic human touch, life-like skin elasticity, and exceptional resilience to withstand thousands of repeated compressions and sanitizations without deformation.
Our advanced system allows a single monitor (PC or Tablet) to connect wirelessly to up to 10+ adult or infant CPR manikins. Evaluators can view performance metrics (compression speed, depth, and ventilation timing) for all trainees simultaneously on one dashboard, which simplifies group certifications.
For standard bulk orders, our production capacity of up to 1,000,000 units annually enables us to fulfill orders within 15–30 days. For custom ODM orders involving mold modifications or custom software integration, the process typically takes 45–60 days, which includes prototype approval and testing phases.
Yes, our Heimlich vests feature heavy-duty adjustable velcro straps designed to fit a wide range of body types, from children to larger adults. This allows trainers to adjust the fit during training exercises, simulating real-life choking rescue situations.
Yes, we work directly with educational systems, municipal governments, military units, and non-profits like the Feiniao Emergency Team. We offer volume-based institutional pricing, long-term warranties, and comprehensive after-sales technical support for all our client partners.
Choose from our secondary range of voice-assisted systems, digital trainers, and infant choking relief models.