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PANAKEIA
MEDTECH PVT. LTD.
Indigenous Critical Care Portfolio • 100% In-House Parts

ICU, Portable & Anaesthesia Ventilators

Panakeia Medtech engineers advanced medical ventilators indigenously in Visakhapatnam to deliver dependable life support across intensive care units, emergency transport, and surgical suites. Our critical care ventilator portfolio features high-performance blower-turbine ICU ventilators capable of generating responsive peak flow up to 240 L/min without requiring external medical air compressors or central pipeline gas dependencies. Designed for adult and paediatric patients, our intensive care platforms provide comprehensive invasive and non-invasive ventilation (NIV), High Flow Nasal Cannula (HFNC) oxygen therapy, and real-time pulmonary diagnostic metrics including P0.1, Auto-PEEP, and RSBI. For surgical suites, our dedicated ANAEVENT anaesthesia ventilator delivers precise ascending bellows tidal volume control with touchscreen waveform loops. In addition, our lightweight portable and transport ventilator architectures ensure continuous, synchronized respiratory support during inter-departmental transport and ambulance care.

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Equipment Catalog

Available Systems & Models (2)

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ICU Ventilator
100% In-House Parts
Panakeia Advanced ICU Critical Care Ventilator — ICU Ventilator

Advanced ICU Critical Care Ventilator

Turbine-Driven Multi-Functional Intensive Care Ventilator for Adult & Paediatric Life Support

15.6-inch High-Resolution Tiltable Capacitive Touchscreen with 360-degree top alarm beacon bar
Ultra-quiet high-performance blower turbine (rated for 40,000 hrs) requiring zero external air compressors
Modes: V-A/C, P-A/C, V-SIMV, P-SIMV, CPAP/PSV, DuoLevel, APRV, PRVC, HFNC (High Flow Nasal Cannula)
ModesAdult & Paediatric
Tidal Range10 mL to 2,000 mL
ICU Ventilator
100% In-House Parts
Panakeia ANAEVENT Anaesthesia Ventilator — ICU Ventilator

ANAEVENT Anaesthesia Ventilator

High-Precision Touchscreen Anaesthesia Ventilator with Calibrated Ascending Bellows & Electronic Telemetry

Ascending graduated silicone bellows cylinder (300 mL to 1200 mL calibrated tidal volume)
High-resolution color touchscreen interface displaying real-time pressure, flow, and volume curves
Comprehensive ventilation modes: VCV, PCV, SIMV-V, SIMV-P, PSV, Manual, and Spontaneous
ModesPneumatically driven, electronically controlled
Tidal Range20 mL to 1,400 mL (Calibrated Bellows 300-1200 mL)
Frequently Asked Questions

Technical & Clinical Insights

Verified information regarding device architecture, clinical safety mechanisms, and manufacturing standards.

Q1.Do Panakeia ICU ventilators require external medical air compressors?

No. Panakeia's advanced ICU critical care ventilators utilize an ultra-quiet, high-performance internal blower turbine rated for up to 40,000 hours, eliminating the requirement for external compressed air infrastructure.

Q2.Can Panakeia ventilators deliver High Flow Oxygen Therapy (HFNC)?

Yes. Our ICU ventilators include integrated High Flow Nasal Cannula (HFNC) therapy with adjustable flow rates from 2 to 80 L/min and precise FiO2 titration from 21% to 100%.

Q3.What is the role of the ANAEVENT anaesthesia ventilator?

The ANAEVENT is a dedicated anaesthesia ventilator indigenously manufactured with all parts produced by Panakeia itself. It features a graduated ascending silicone bellows assembly (calibrated from 300 to 1200 mL), color touchscreen waveforms, and pneumatic flow micro-control for seamless surgical integration.

Q4.What battery backup do Panakeia ventilators offer during patient transport?

Our ICU ventilators feature hot-swappable dual lithium-ion battery architectures providing 4+ hours of uninterrupted clinical operation during power disruptions or inter-departmental transport.

Clinical Engineering Guide

How to Choose an ICU Ventilator: Key Clinical Modes & Procurement Checklist

Procuring ventilators for an Intensive Care Unit requires balancing clinical versatility, gas source autonomy, lung-protective ventilation mechanics, and long-term serviceability. This guide outlines the essential clinical modes, drive mechanics, and evaluation parameters biomedical teams and intensivists must verify before commissioning critical care ventilators.

Read Clinical Guide
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