Customized Solutions for Each Medical Device, Connecting the Entire Fluid Supply Chain of Five Major Medical Equipment


There are no universal standards for fluid delivery in medical equipment. Different diagnostic and testing devices have extremely specific requirements for delivery accuracy, biosafety, shear force, pulsation value, and sterility level, which ordinary fluid equipment cannot meet the stringent clinical conditions.

PURE Fluid focuses on specific medical application scenarios, creating customized fluid solutions based on real equipment conditions and clinical needs. These solutions comprehensively cover core process links such as extracorporeal circulation delivery in hemodialysis, sterile rinsing during endoscopy, dental treatment media supply, constant temperature cooling of radiofrequency ablation electrodes, and micro-dispensing of IVD diagnostic reagents.

All products use medical-grade virgin materials and rely on the peristaltic, media-free delivery principle to achieve low-shear hemolysis prevention, low-pulsation stable flow, and zero residue to prevent cross-contamination, fully adapting to the long-term, continuous, precise, controllable, safe, and sterile operation requirements of medical equipment.

Specific Technical Optimization for Operating Conditions, Strictly Upholding the Bottom Line of Clinical Diagnosis and Treatment Safety


Medical fluid applications are directly related to diagnosis and treatment safety and testing accuracy, with an extremely low tolerance for error.

Based on extensive experience in deploying medical equipment, PURE Fluid has completed specific technical iterations and optimizations targeting the core pain points of five major sectors: In hemodialysis scenarios, strict control of low shear parameters avoids hemolysis risks from the source, coupled with real-time pressure monitoring and abnormal self-locking protection; in minimally invasive endoscopic scenarios, adaptation to high-frequency start-stop during surgery, constant-flow sterile flushing, and continuous maintenance of a clean and clear surgical field; in dental equipment, achieving quiet, low-vibration, and precise quantitative fluid delivery, adapting to the refined treatment environment of clinics; in radiofrequency ablation scenarios, stable circulating cooling medium delivery and precise temperature control avoid burns to normal tissues; in IVD diagnostic scenarios, achieving micro-upgrades and high-precision delivery, eliminating reagent residues and cross-contamination, and ensuring the authenticity and reliability of test data.

From raw material selection, dust-free precision processing, multi-condition simulation testing to full-item factory testing, the entire product line adheres to medical industry standards throughout the entire process, building a solid technical barrier for stable equipment operation and clinical safety.

Self-Developed and Self-Produced Core Technologies, Ensuring the Reliability of Medical Equipment Support


As a domestic precision fluid intelligent manufacturing enterprise deeply rooted in the medical sub-sector, PURE Fluid has fully mastered core technologies such as medical peristaltic pump drive control, high-precision flow control, pressure warning, and fault self-locking. The core mechanism, pump body structure, and control program are all self-developed and self-produced, ensuring full-chain control over product quality and supply chain stability.

The entire range of medical products has undergone tens of thousands of operational condition simulation tests across five major sectors, precisely adapting to the core needs of different scenarios: hemodialysis equipment achieves low temperature rise, low loss, and 24-hour continuous stable operation; IVD equipment achieves micro-upgrade repeatable precise flow control; and therapeutic equipment achieves ultra-low pulsation and millisecond-level start-stop response.

The equipment supports precise parameter calibration, full recording of operational data, and traceable process information, fully meeting medical equipment audit, quality inspection compliance, and mass production standards.

Simultaneously, a dedicated medical technical service team provides customized solutions, prototype adaptation, debugging and optimization, mass production integration, and lifetime maintenance services, helping medical equipment companies reduce costs, improve quality, and quickly reach the market.

Flexible Customization and Adaptation to Meet the Integration Needs of Multiple Medical Device Categories


The structures, control logics, installation conditions, and compliance standards of equipment in five major medical device sectors—hemodialysis, endoscopy, dentistry, ablation, and IVD—differ significantly, making it difficult for standardized fluid modules to adapt to personalized R&D needs.

PURE Fluid, relying on a comprehensive medical component library and a mature custom R&D system, can provide both standardized finished products and personalized customization solutions, flexibly adapting to the embedded integration of portable diagnostic and treatment equipment, desktop testing instruments, and large-scale therapeutic systems.

It supports customized functions such as multi-channel independent flow control, device signal linkage, pressure warning protection, automatic fault locking, and special size adaptation, perfectly matching the customer's overall system R&D design logic.

All solutions can be accompanied by complete biocompatibility test reports, compliance qualification documents, and technical data, compatible with mainstream medical device control systems, significantly shortening the customer's equipment R&D, debugging, certification, and mass production cycle.

Scenario-Based Specialized Solutions to Precisely Overcome Equipment and Process Pain Points


Targeting the core process challenges of five major medical equipment sub-sectors, PURE Fluid has created a customized precision fluid delivery system to accurately solve the industry's essential pain points.

Hemodialysis scenario: Achieves low-shear circulation delivery of blood and dialysate, effectively preventing hemolysis and tubing blockage. Combined with pressure abnormality alarms and self-locking functions, it ensures stable and safe dialysis treatment throughout the entire process. Endoscopic minimally invasive scenario: Adapts to precise constant-flow sterile saline flushing during surgery, with rapid high-frequency start/stop response, efficiently removing impurities and blood clots from the surgical field, meeting the sterile, clear, and efficient treatment standards of minimally invasive surgery. Dental treatment scenario: Precisely delivers sterilizing media and flushing solutions, operates quietly with low vibration, and allows for quick and convenient fluid changes, adapting to the refined treatment needs of the clinic. Radiofrequency ablation scenario: Circulates cooling media at a constant flow rate, quickly removing high electrode temperatures, precisely controlling temperature to protect surrounding normal human tissue, and reducing the risk of postoperative complications. IVD (In Vitro Diagnostics) scenario: Achieves precise dispensing of micro-reagents and stable sample delivery. Independent media contact in tubing completely eliminates cross-contamination, ensuring the repeatability and accuracy of biochemical and immunological test data.

Medical-Specific OEM Fluid Modules: Easy Integration, High Stability, and Mass Production Capability


Addressing the mass production needs of medical device manufacturers for integrated systems, PURE Fluid has abandoned generic OEM designs, creating customized embedded fluid modules based on the specific operating conditions of five major medical device sectors.

For hemodialysis equipment, an optimized low-hemolysis, high-durability circulation pump module is available to adapt to long-term continuous treatment conditions. For endoscopes and small dental devices, lightweight, compact, and ultra-low-noise pump sets are offered to adapt to the trend of miniaturization and refinement in equipment design. For radiofrequency ablation therapy equipment, a high-response, constant-pressure, and stable-flow delivery module is developed to ensure the continuous and stable operation of the intraoperative cooling system. For IVD diagnostic equipment, a micro-volume, high-precision, and ultra-low-residue dedicated delivery module is developed to adapt to high-precision detection processes.

All OEM modules are equipped with closed-loop precision flow control technology, supporting multiple protocols such as 485 communication, analog signals, and digital signals. They can seamlessly integrate with the main control system of medical devices, featuring a compact structure, minimal maintenance, and high mass production consistency, significantly reducing the difficulty of system integration and subsequent maintenance costs for customers.

Medical-Grade High-Precision Peristaltic Pump | Core Fluid Support for Five Major Medical Devices


PURE Medical's dedicated peristaltic pump is a core fluid device specifically optimized for five sub-segments: hemodialysis, minimally invasive endoscopy, dental treatment, radiofrequency ablation, and IVD (In Vitro Diagnostics).

The device integrates five core performance advantages: low shear, micro-pulsation, high precision, low noise, and high response. Its flow rate range extends from micro-scale to large-scale, wide-range, simultaneously meeting the needs of precise micro-volume mixing in IVD and high-flow circulation in hemodialysis.

The media contact parts are made of medical-grade polymer material, which is non-toxic, sterile, resistant to high and low temperatures, and can be repeatedly sterilized under high temperature and high pressure, fully meeting biocompatibility standards.

The device incorporates intelligent flow calibration, pressure self-checking, fault self-locking, and batch statistics functions, supporting 24-hour uninterrupted stable operation.

Utilizing a pump-body-free contact delivery structure, it eliminates media contamination and cross-contamination at the source, fully adapting to the stringent clinical and mass production standards of various medical treatment and testing equipment.

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