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DRAGER Fabius GS Anesthesia Machine

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Description

Drager Fabius GS Features

The Drager Fabius GS is an inhalation anesthesia machine used in an operating, induction, and recovery rooms. It can be used with O2, N2O, and AIR supplied by a medical gas pipeline system or have externally mounted gas cylinders. The Fabius GS is equipped with a compact breathing system that provides fresh gas decoupling, PEEP, and pressure limitation. This anesthesia machine has 5 main ventilation options that include; Volume Controlled Ventilation, Pressure Controlled Ventilation, Pressure Support, Manual Ventilation, and Spontaneous Breathing. It’s equipped with an electrically driven and electronically controlled ventilator that monitors for airway pressure (P), volume (V), and inspiratory oxygen concentration (FiO2).

The Drager Fabius GS anesthesia machine is a popular choice for practitioners who demand advanced ventilation technology combined with reliable and proven breathing system components. The Fabius GS anesthesia workstation opens new frontiers in ventilation performance while maintaining well-established functionality.

  • High-performance ventilation with versatility that’s more flexible and economical to use than traditional gas-driven bellows ventilators
  • Full-color screen
  • Compact, convenient breathing system that’s ergonomically designed for optimal positioning
  • ClinicalVision – monitoring solution that allows the caregiver to view patient monitoring and clinical data simultaneously
  • Customized design for flexibility and ease of use
  • Ready for IT-integration
  • Low-flow ventilation
  • Electronic vertical flow controls and electronic fresh gas flow indicators
  • Intelligent cable management for reduced clutter and easier patient trans
  • Easy integration into existing hospital information system
  • Central braking
  • Continuous monitoring during transport and automatic reconfiguration of site-specific parameters with Dräger’s innovative Infinity Docking Stations (IDS).

Drager Fabius GS Specifications

Dimensions

  • Height (with COSY): 130.8 cm
  • Width (with COSY): 89 cm
  • Depth (with COSY): 84 cm
  • Weight: 101.6 kg

Power Supply

  • 100 – 240 VAC, 50/60 Hz, 2.3 A max.
  • Battery (supports ventilator and monitor) > 45 min.

Rechargeable Batteries

  • Raing: 24V; 3.5 Ah
  • Type: Sealed, gelled lead-acid
  • Recharge Time: ≤ 16 hours on the mains or full operation time
  • Operating time with fully charged batteries: 45 minutes, minimum

Ventilator Input Ranges

  • PMAX Pressure Limiting: 15 – 70 cmH2O (1 cmH2O resolution)
  • VT Tidal Volume: 20 – 1400 mL (10 mL resolution)
  • VT (SIMV/PS) Tidal Volume: 20 – 1100 mL (10 mL resoltuion)
  • f Breathing Frequency: 4 – 60 bpm (1 bpm resolution)
  • Ti/Te Inspiration/Expiration ration: 4:1 to 1:4
  • Tip/Ti Inspiration pause: 0% – 50% (1% resolution)
  • PEEP End-expiratory Pressure: 0 – 20 cmH2O (1 cmH2O resolution)
  • Pinsp Inspiratory Pressure: 5 – 65 cmH2O (1 cmH2O resolution)
  • Insp Flow Inspiratory Flow: 10 – 75 L/min (1 L/min resolution in Pressure Control Mode; 10 – 85 L/min (1 L/min resoltuion) in PS and SIMV/PS modes
  • Δ PPS (Pressure Support) Support Pressure: 3 – 20 cmH2O (1 cmH2O resolution)
  • Δ PPS (SIMV/PS) Support Pressur : 3 – 20 cmH2O, OFF (1 cmH2O resolution)
  • Freq Min Apnea Ventialtion minimum frequency: 2 – 20 bpm (1 bpm resolution) and “OFF”
  • Trigger: Trigger Level: 2 – 15 L/min (1 L/min resolution)
  • Tinsp SIMV Inspiratory Time: 0.3 – 4.0 sec

Pressure Support Ventilation Mode

  • Endotracheal Tube Size: 4.5 mm – 8 mm
  • Patient Lung Compliance: 10 ml/cmH2O – 100 ml/chH2O
  • Unassisted Patient Tidal Volume: 50 ml – 1000 ml
  • Patient Breath Rate (BPM): 10 – 35

Delivery Accuracy

  • Pmax Pressure Limiting: ±5 cmH2O of setting
  • VT Tidal Volume: ± 5% of setting or 20 mL, whichever is greater
  • f Breathing Frequency: ±1 bpm of setting
  • Ti/Te Inspiration/Expiration Ratio: ±5% of setting
  • Tip/Ti Inspiration Pause: ±25% of setting
  • PEEP End-expiratory Pressure: ±2 cmH2O or ±20% of setting, whichever is greater

Safety Reliefs

  • High Pressure Safety Relief Valve: 75 ±5 cmH2O
  • Negative Pressure Safety Relief Valve (Ambient Air Inlet Valve): -7.5 to -9 cmH2O
  • System Compliance Compenstation Measurement: 0.2 to .0 ml/cmH2O: ±0.2 ml/cmH2O or ±10% of actual complaince, whichever is greater

Anesthesia Gas Supply Module

  • Fresh Gas Flow Indicators: O2, N2O, Air: Range and accuracy: 0.0 to 12.0 L/min ±10% of reading or 0.12 L/min (into an ambient atmosphere of 101.3 kPa at 20°C). Resolution: 0.1 L/min
  • Fresh Gas Flow Stability: O2 and N2O: ±10% of setting with pipeline pressures between 3 – 4.4 atm; Air ±10% of setting with pipeline pressures between 3.4 – 3.7 atm; Air flow rate will vary proportionally with supply pressures outside 3.4 – 3.7 atm.
  • Total Fresh Gas Flowmeter: Range and accuracy: 0 to 10 L/min ±10% of full scale at STP, calibrated with 50% O2 / 50% N2O gas mixture; 0 to 10 L/min ±15% of full scale at STOP for all other gas mixtures; Resoltuion: 0.5 L/min from 0.5 – 2 L/min; 1.0 L/min from 2 – 10 L/min
  • O2 Flush (bypass): at 3.8 bar max. 50 L/min; at 50 3.4 bar min. 35 L/min
  • Common Gas Outlet Pressure Limit: 0.9 bar

Anesthetic Agent Vaporizer Interface

The Drager Vapor quick-change plug-in system for up to two anesthetic agent vaporizers. The connections are automatically closed and sealed when the vaporizer is removed.

  • Drager Halothane Vapor
  • Drager Enflurane Vapor
  • Drager Isoflurane Vapor
  • Drager Sevoflurane Vapor
  • Datex-Ohmeda Devapor/D-Tech for Desflurane
  • Drager D-Vapor

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