Innovative touch screen control interface offering real-time depth, compression rate, and lung inflation volume tracking. Meets the latest AHA Guidelines.
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Precision-engineered neonate and infant simulator. Designed for pediatric resuscitation courses and expert hospital training centers.
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Direct factory supply models configured for pediatric first-aid education. Realist chest anatomy and resistive lung design.
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Cost-effective, highly durable vocal feedback model. Essential tool for mass public education campaigns and emergency services.
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Premium training apparatus embedded with LED digital control display. Accurately shows compression position error parameters.
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High accuracy customized units. Includes physical tactile chest feedback and digital monitoring matrix for professionals.
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All-in-one electronic indicator board coupled with real-time corrective voice prompts. Durable polymer skin simulation.
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Industry standard digital control platform. Ideal for universities, medical research institutions, and large-scale first-aid courses.
Explore ProductBeijing Guanbang Medical Technology Co., Ltd. represents the cutting-edge of medical simulation training instrumentation. Established in the high-technology hub of Beijing in 2016, our operations encompass advanced research, digital hardware-software integration, mechanical design, global sales, and extensive technical support networks. Serving as a trusted manufacturer, we operate a state-of-the-art 10,000 square meter modern production base engineered for precision fabrication, material compound blending, and electronic QA systems.
Our ongoing mission is to push the envelope of anatomical correctness, mechanical longevity, and real-time electronic calibration. By providing high-fidelity simulation feedback interfaces, Guanbang models empower training schools, defensive forces, emergency services, and hospitals to execute life-saving educational drills with empirical certainty.
Cardiovascular diseases remain the leading cause of mortality worldwide, representing massive healthcare burdens across both developed and developing regions. Consequently, regulatory architectures globally (such as the American Heart Association (AHA) and the European Resuscitation Council (ERC)) have enforced strict mandates for standardizing public and clinical CPR capabilities. This legislative environment has transformed CPR training from a secondary educational course into an essential compliance protocol for schools, enterprises, transport networks, and public utilities.
The industrial landscape for Cardiopulmonary Resuscitation (CPR) simulators is shifting rapidly. Standard, feedback-free rubber manikins are obsolete. Modern procurement demands high-fidelity smart manikins capable of transmitting real-time performance indicators to centralized control centers. The focus is now on data capture: compression depth accuracy, recoil velocity, tidal volume of ventilations, and positioning of hand placements. These parameters directly correlate with actual cardiac output in real-world emergency scenarios.
In response to these industrial demands, Guanbang designs medical simulation networks that do not just exist as individual models, but integrate into broad institutional IT networks. Our one-to-many wireless training complexes allow a single training director to monitor up to 50 active training manikins via software interfaces simultaneously. This capability minimizes labor overhead while increasing instruction quality control exponentially.
Our solutions target three key institutional segments:
At Beijing Guanbang Medical Technology Co., Ltd., R&D is the core driver of our market dominance. Our core engineering team comprises graduates holding advanced degrees from top domestic scientific institutions, including the Chinese Academy of Sciences (CAS), Tsinghua University, and Beijing University of Technology. This level of technical input allows us to develop advanced electronic sensing frameworks and mechanical molds in-house.
The skin texture of Guanbang simulators is crafted using proprietary synthetic thermoplastic elastomer mixtures, providing realistic touch profiles, resilient elasticity, and chemical stability. The underlying skeletal structure is constructed from high-tensile polyacetal plastic joints designed to endure up to 1,000,000 compressions without material creep or mechanical drift. Realism is enhanced by simulated airway modules that open only under correct chin-lift, head-tilt procedures.
Within our high-end models, optical sensors analyze the structural compression depth accurate to ±1mm. Microcontrollers continuously track ventilation flow rates using microfluidic pressure differentials, instantly flagging dangerous gastric distension if ventilation is too high. This data is transferred via Bluetooth or wired serial connections to our interactive dashboards, transforming subjective feedback into scientific assessment.
A major challenge in global first-aid technology procurement is compliance with local regulations and differing CPR guidelines. Guanbang actively resolves these concerns by providing localized software parameters. Our simulators easily switch between AHA Guidelines and ERC Guidelines via control panels or software applications, adapting standard depth requirements from 5cm to 6cm, and modifying rate parameters instantly.
Firmware configurations adapt ventilation-compression ratios (30:2 or 15:2) and compression rates (100-120 bpm) instantly based on user parameters.
Integrated voice microcontrollers come preloaded with clear prompt directions in English, French, Spanish, Russian, Arabic, and custom options.
We maintain complete ISO 9001, ISO 14001, and OHSAS 18001 certifications alongside relevant utility model patents and software copyrights.
Whether deploying equipment in highly regulated European clinical centers or rural school networks in South America, Guanbang provides the direct technical backing, reliable warranty periods, and spare-part logistics required to guarantee continuous training availability.
Our commitment to the emergency medicine ecosystem extends beyond the walls of our factory. Guanbang is a consistent participant in premium defense, medical, and technology exhibitions. We also support municipal projects to cultivate public safety awareness.
Guanbang presented advanced medical skills training platforms at the 11th China (Beijing) Military Intelligent Technology & Equipment Expo, showcasing solutions for tactical field operations.
During the 2026 Zhongguancun Forum event, Guanbang's software-based, one-to-many CPR simulation models showcased how AI technology helps scale public health education.
In partnership with the Zhengzhou Feiniao Emergency Team, we established a public welfare experience center, providing communities with free access to CPR training.
Additionally, Guanbang CPR models have been integrated into school campuses to raise first-aid awareness among younger demographics. During the Shunyi Science Popularization Month and the Jin'erqu community campaigns, our intelligent trainers generated engagement, helping parents and children master basic life support skills.
The future of resuscitation simulation lies at the intersection of material realism, IoT cloud metrics, and artificial intelligence. Beijing Guanbang Medical Technology Co., Ltd. is positioned to lead this technological evolution through key strategic pillars:
Our upcoming generation of simulators will utilize direct Wi-Fi and 5G connections to stream real-time training analytics straight to a regional training cloud. This will allow national safety organizations to manage certifications, standardize curricula, and compile training metrics across remote centers from a unified database.
We are currently developing wearable MR overlays that interface with our CPR simulators. Instructors can simulate chaotic emergency environments (such as highway accidents, fire smoke, or marine vessels) while tracking the student's hands-on mechanical performance on our tactile manikins.
In line with global environmental goals, our R&D team is testing bio-based synthetic polymers. These eco-friendly materials offer the same tactile response and durability as conventional materials, but degrade safely at the end of their lifecycle.
Defibrillator simulators with multiple preset scenarios, voice alerts, and trainer controls to practice correct electrode placement.
Full-body and half-body adult, pediatric, and infant manikins built to conform to international guidelines.
Heimlich maneuver vests, choking models, and pediatric airway obstruction kits designed to simulate choking management.
Featuring lifelike chest resilience and authentic anatomical landmarks. High-durability skin composition perfect for high-frequency testing.
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Provides automated real-time voice prompts that guide the user's hand placement, compression depth, and pace. Ideal for self-guided instruction.
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Specifically engineered to simulate pediatric physiology. Features correct airway resistance structures to practice pediatric airway clearing.
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Comprehensive AED trainer loaded with pre-programmed cardiac emergency scenarios, voice instructions, and remote controls for instructors.
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Anatomically accurate half-body trainer connected to a dynamic LED indicator strip that alerts users to incorrect compression depths or rates.
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Lightweight, travel-friendly design that sets up in minutes. Excellent for mobile training agencies and remote training environments.
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Advanced clinical-grade simulator bundled with monitoring software. Outputs metrics, tracks student progress, and manages test results.
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Factory-direct simulator optimized for public first-aid campaigns. Clear verbal prompts guide users through proper compression rhythms.
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