AniSurg BAM-5 Pro Turbo Turbine-Driven Human Anesthesia Ventilator – for Hospitals/Clinics/Operating Rooms

The AniSurg BAM-5 Pro Turbo is a hospital-grade turbine-driven human anesthesia ventilator designed for clinical anesthesia, post-operative care, and critical respiratory support. Its core advantage is the turbine-driven system that requires no external gas source, offering unmatched portability and cost savings for healthcare facilities. Equipped with a 9-inch touchscreen, it supports multiple ventilation modes (VCV/PCV/SPONT/SIMV) and auto-calculates optimal parameters via patient weight input. With dual bellows (20-1500ml tidal volume), precise PEEP monitoring, proximal flow sensing, and a 3-level alarm system, it ensures safe, consistent ventilation for pediatric to adult patients. Certified to ISO13485/CE standards and backed by a 36-month warranty, the BAM-5 Pro Turbo  is the ultimate flexible solution for modern hospitals and clinics seeking advanced, reliable ventilation technology.

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Description

The AniSurg BAM-5 Pro Turbo Turbine-Driven Human Anesthesia Ventilator is a cutting-edge clinical ventilation solution engineered exclusively for human medical use—designed to meet the rigorous demands of hospitals, operating rooms, clinics, and critical care units. Developed by AniSurg , this premium ventilator redefines clinical efficiency with its innovative turbine-driven technology, eliminating the need for external gas sources while delivering precise, reliable mechanical ventilation. Tailored for anesthesia procedures, post-operative care, and emergency respiratory support, the BAM-5 Pro Turbo  integrates a 9-inch high-definition touchscreen, comprehensive ventilation modes, and intelligent automation—making it an ideal choice for healthcare facilities seeking advanced, flexible, and cost-effective ventilation solutions. Unlike its pneumatic-driven counterpart (BAM-5 Pro), the BAM-5 Pro Turbo ’s turbine design offers unmatched portability and operational freedom, adapting to both fixed clinical settings and mobile care scenarios.

Core Product Advantages 

Turbine-Driven Innovation – No External Gas Required

The BAM-5 Pro Turbo ’s standout feature is its turbine-driven + electronic control system, which converts ambient air into regulated drive gas on-demand—eliminating the need for bulky external gas cylinders or pipeline connections. This game-changing design not only saves valuable operating room space but also reduces long-term gas supply costs and logistical burdens. Unlike pneumatic-driven ventilators (e.g., BAM-5 Pro), the BAM-5 Pro Turbo  operates independently of external gas infrastructure, ensuring consistent performance in diverse clinical environments—from large hospital ORs to small clinics or mobile medical units. Its zero oxygen consumption during standby further enhances cost-efficiency, making it a sustainable choice for high-volume healthcare facilities.

Comprehensive Multi-Mode Ventilation for Clinical Versatility

Equipped with a full suite of clinical-grade ventilation modes, the BAM-5 Pro Turbo  adapts to diverse patient conditions and procedural needs: Volume-Controlled Ventilation (VCV) for precise tidal volume delivery, Pressure-Controlled Ventilation (PCV) for airway pressure management, Spontaneous (SPONT) mode for patient-initiated breathing support, Synchronized Intermittent Mandatory Ventilation (SIMV) for partial respiratory assistance, and Manual mode for emergency ventilation. The SPONT mode intelligently avoids breathing confrontation, while VCV/PCV modes ensure stable ventilation during anesthesia induction, maintenance, and recovery. This versatility covers everything from routine surgical anesthesia to critical care for patients with respiratory insufficiency.

Intuitive Clinical Operation & Smart Automation

The 9-inch high-definition TFT touchscreen provides clear visualization of key parameters, real-time waveforms (P-T/Flow-T/V-T), and system status—paired with a shuttle knob for precise adjustment and a lock screen function to prevent accidental touches. A core clinical advantage: simply input the patient’s weight, and the ventilator automatically calculates and sets optimal tidal volume, breathing rate, I:E ratio, and alarm thresholds. This reduces reliance on operator experience, streamlines workflow, and ensures consistent, evidence-based ventilation settings—critical for patient safety in fast-paced clinical environments. The USB software upgrade interface allows for convenient function expansion and compliance with evolving clinical standards.

Wide Parameter Range & Precise Monitoring

Designed to accommodate diverse patient populations (from pediatric to adult), the BAM-5 Pro Turbo  features dual-sized bellows (0-300ml for small patients, 300-1500ml for adults) and a wide tidal volume range (20-1500ml) with both coarse and fine adjustments. Key clinical parameters are fully adjustable: breathing rate (1-150 BPM), I:E ratio (9.9:1~1:9.9), inspiratory pressure (2-60 cmH2O), PEEP (0-20 cmH2O), and inspiratory time (0.1-12s). The ventilator also integrates proximal respiratory flow monitoring for enhanced accuracy, providing real-time data on tidal volume (inspiratory/expiratory), minute ventilation, peak/plateau/mean airway pressures, and FiO2 (15-100%)—supporting informed clinical decision-making.

Advanced Safety Features & Hospital-Grade Reliability

Patient safety is prioritized with a 3-level color-coded audible-visual alarm system covering over 20 clinical alarm events, including high/low airway pressure, high/low tidal volume, low ventilation volume, apnea (3-20s adjustable), low drive gas pressure, and low battery. The apnea alarm and automatic pressure relief function protect patients from airway overpressure and respiratory compromise, while a built-in cooling fan system prevents overheating during prolonged clinical use. The integrated lithium battery provides 2-4 hours of backup power in case of power failure, ensuring uninterrupted ventilation during emergencies. Certified to ISO13485 and CE standards, the BAM-5 Pro Turbo  comes with a 36-month super-long warranty, guaranteeing long-term reliable performance in high-demand clinical settings.

Key Differences Between BAM-5 Pro Turbo  (Turbine-Driven) and BAM-5 Pro (Pneumatic-Electric Driven)

Comparison Dimension BAM-5 Pro Turbo  (Turbine-Driven) BAM-5 Pro (Pneumatic-Electric Driven)
Driving Technology Turbine-driven + electronic control; no external gas source required Pneumatic + electronic control; dependent on external gas cylinders/pipelines
Clinical Core Advantage Portable, space-saving, independent operation; ideal for mobile care, ORs with limited gas infrastructure Stable gas supply from external sources; suitable for fixed hospital settings with established gas pipelines
Operational Flexibility High (no gas constraints; adaptable to ORs, clinics, emergency units, mobile medical teams) Limited (tied to gas source; requires setup/maintenance of gas supply systems)
Cost Efficiency Lower long-term costs (no gas consumption, reduced logistical expenses) Higher long-term costs (ongoing gas supply fees, pipeline maintenance)
Clinical Application Anesthesia, post-operative care, emergency respiratory support, mobile medical services Fixed operating rooms, intensive care units (ICUs), clinics with stable gas infrastructure
Portability Lightweight, compact; easy to move between departments or transport for on-site care Less portable; requires connection to fixed gas sources
Core Clinical Features Identical (modes, parameters, monitoring, alarm system, touchscreen operation) Identical (modes, parameters, monitoring, alarm system, touchscreen operation)

 

Specification Category Parameter Details
Product Model AniSurg BAM-5 Pro Turbo Turbine-Driven Human Anesthesia Ventilator
Driving Mode Turbine-driven + electronic control (no external gas source required)
Working Modes Auto-control, Manual
Ventilation Modes VCV (Volume-Controlled Ventilation), PCV (Pressure-Controlled Ventilation), SPONT (Spontaneous), SIMV (Synchronized Intermittent Mandatory Ventilation), Manual, Demo
Applicable Patient Groups Pediatric to adult (accommodates diverse weight ranges with 20-1500ml tidal volume)
Bellows Configuration Dual bellows: 0-300ml (small/pediatric patients), 300-1500ml (adult patients)
Key Clinical Parameters – Tidal Volume (TV): 20-1500ml- Breathing Rate (Freq): 1-150 BPM- I:E Ratio: 9.9:1~1:9.9- Inspiratory Time (T_Insp): 0.1-12s- Inspiratory Pressure (PInsp): 2-60 cmH2O- PEEP: 0-20 cmH2O- SIMV Frequency (F_SIMV): 2-60 BPM- Pressure Support (PS): 0-60 cmH2O- Flow Trigger Sensitivity (F_Trig): 0.5-20 L/min, OFF- Pressure Trigger Sensitivity (P_Trig): -1~-20 cmH2O, OFF
Monitoring Parameters Tidal volume (inspiratory/expiratory), minute ventilation (MV/MV_Spont), peak pressure (Ppeak), platform pressure (Pplat), mean pressure (Pmean), FiO2 (15-100%), breathing rate (spontaneous/set), I:E ratio, P-T/Flow-T/V-T waveforms, P-V/F-V loops
Alarm System 3-level color-coded audible-visual alarm; alarm events: high/low pressure, high/low tidal volume, high/low ventilation volume, high/low FiO2, high/low PEEP, high/low frequency, apnea (3-20s adjustable), low drive gas pressure (<280kPa), low battery (8±0.2V); alarm volume: 2-10
Display & Operation 9-inch HD TFT touchscreen; shuttle knob; lock screen function; mute key (120s mute); weight-based auto-parameter calculation
Power Supply AC power (100-240V, 50-60Hz) + built-in lithium battery (2-4 hours of backup)
Safety & Certification ISO13485/CE certified; cooling fan system; grounding protection; anti-leak gas hoses
Compatibility International standard interface; compatible with all standard human anesthesia machines and breathing circuits
Dimensions & Portability Compact, lightweight design; easy to move between clinical departments