Siemens Magnetom Aera 1.5T
Sale!

Original price was: ₹35,000,000.00.Current price is: ₹30,000,000.00.

The Siemens Magnetom Aera 1.5T is a wide-bore MRI system offering superior comfort, fast workflow, and high-quality imaging—perfect for diagnostic centers seeking reliable and advanced 1.5 Tesla performance.

Description

  • Magnet Strength: 1.5 Tesla

  • Bore Size: 70 cm wide bore

  • Technology: Tim 4G + Dot workflow automation

  • Gradient Strength: Up to 45 mT/m (model dependent)

  • RF Channels: Multi-channel digital RF system

  • Applications: Neuro, Spine, MSK, Cardiac, Abdominal, Vascular, Oncology

  • Noise Reduction: Quiet scanning technology

  • Field of View: Up to 50 cm

  • Patient Table: Motorized, high-capacity floating table

  • Magnet Type: Superconducting, energy-efficient design

  • Workflow Features: Intelligent automation, fast imaging sequences

  • The Siemens Magnetom Aera 1.5T is a premium wide-bore MRI system built to deliver exceptional imaging performance with superior patient comfort. Powered by Siemens’ advanced Tim 4G coil technology and Dot workflow engine, the Aera ensures faster examinations, improved consistency, and outstanding image quality across a wide range of clinical applications. Its 70 cm wide-bore design offers more space and reduces patient anxiety, making it ideal for claustrophobic or pediatric patients.

    The system’s lightweight coils, intelligent automation, and high-gradient performance help radiology departments maximize throughput while maintaining diagnostic accuracy. With reduced acoustic noise and efficient energy usage, the Magnetom Aera 1.5T provides a comfortable and cost-effective scanning environment. It excels in neuro, spine, MSK, cardiac, abdominal, and vascular imaging, making it a versatile choice for high-volume diagnostic centers and hospitals.

    For facilities looking to upgrade to a modern and patient-friendly MRI system, the refurbished Siemens Magnetom Aera 1.5T offers outstanding value. It combines precision imaging, faster workflows, and long-term operational reliability to support accurate diagnoses and improved patient care.