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0.5T Open Permanent Magnet MRI System with 4-Channel RF

This 0.5T open permanent magnet MRI system features a dual-column Nd-Fe-B magnet, 274° horizontal accessibility, 40 cm vertical gap, ≤2.5 ppm homogeneity, 25 mT/m gradients, 75 T/m/s slew performance, 4-channel digital RF acquisition and phase-array coils. The system supports DICOM 3.0, advanced MRI sequences and a 200 kg patient table for routine diagnostic imaging workflows.

0.5T Open Permanent Magnet MRI System

This 0.5T MRI system uses a dual-column open permanent magnet architecture with an automatic constant-temperature control system. The platform combines a 0.5 Tesla Nd-Fe-B magnet, 25 mT/m gradient strength, 4-channel fully digital RF acquisition, phase-array receiving coils and a Windows-based MRI workstation.

The open magnet geometry provides a 40 cm vertical gap and wide horizontal accessibility, while the integrated patient positioning system, DICOM 3.0 connectivity and advanced MRI sequences support routine clinical magnetic resonance imaging workflows.

Other MRI Field Strength Options

In addition to this 0.5T open permanent magnet MRI system, UMY Medical also supplies 0.35T open MRI and 1.5T superconducting MRI systems for hospitals, imaging centers and medical projects with different clinical and installation requirements.

0.35T Open Permanent Magnet MRI System

A 0.35 Tesla open permanent magnet MRI system with 4-channel digital RF acquisition for facilities requiring a lower-field open MRI platform.


View 0.35T MRI System →

1.5T Superconducting MRI System

A 1.5 Tesla superconducting MRI system with 16-channel digital acquisition for hospitals and diagnostic imaging centers requiring a higher-field general-purpose MRI platform.


View 1.5T MRI System →

System Highlights

0.5T Permanent Magnet

The system uses a 0.5 Tesla permanent Nd-Fe-B magnet with automatic constant-temperature control to support stable daily MRI operation.

Open Dual-Column Design

The dual-column open architecture provides a 40 cm vertical gap and approximately 274° horizontal accessibility for improved patient access and positioning.

≤2.5 ppm Field Homogeneity

The specified magnetic field homogeneity is ≤2.5 ppm over a 40 cm DSV, supporting consistent field performance for routine imaging.

25 mT/m Gradient System

The gradient subsystem provides 25 mT/m single-axis gradient strength with a specified slew rate of 75 mT/m/ms and 0.3 ms rise time.

4-Channel Digital RF System

The RF subsystem uses fully digital transmit and receive architecture with four RF channels and phase-array receiving coils.

Advanced MRI Sequences

The system supports routine and advanced sequences including SE, GRE, FSE, STIR, FLAIR, DWI, TOF MRA, MRCP, MRU and MRM.

Open 0.5T Permanent Magnet

The magnet subsystem uses a permanent Nd-Fe-B magnetic structure with automatic constant-temperature regulation. The supplied project documentation specifies stable magnet temperature control around 28°C to support magnetic-field stability during operation.

Magnet Type Permanent Nd-Fe-B Magnet
Field Strength 0.5T
Magnet Structure Dual-Column Open Structure
Homogeneity ≤2.5 ppm (40 cm DSV, VRMS)
Shim Method Active / Passive / Dynamic
Vertical Gap 40 cm
Horizontal Accessibility Approx. 274°
5 Gauss Fringe Field 2.5 × 2.5 × 2.5 m

Gradient Performance

The gradient subsystem uses air cooling and is specified for routine and advanced MRI acquisition. Self-shielding eddy-current control and dynamic high-order shimming are included in the system design.

Gradient Strength 25 mT/m, single axis
Gradient Slew Rate 75 mT/m/ms, single axis
Rise Time 0.3 ms
Gradient Cooling Air Cooled

Digital RF System

Fully Digital Spectrometer

The MRI platform uses a fully digital spectrometer with digital transmit and receive architecture.

4 RF Channels

Four RF channels support multi-channel signal acquisition with compatible phase-array receiving coils.

5 kW RF Transmitter

The transmitter amplifier is specified with 5 kW peak output power.

400 kHz Receiver Bandwidth

The receiver subsystem provides a specified bandwidth of 400 kHz with a dynamic range of at least 80 dB.

Spectrometer Fully Digital
RF Architecture Digital Transmit and Receive
RF Channels 4
RF Transmitter Peak Power 5 kW
Receiver Bandwidth 400 kHz
Dynamic Range ≥80 dB
Noise Factor 0.3 dB
Coil Type Phase Array

Phase-Array Coil Configuration

The system supports dedicated phase-array receiving coils for different anatomical regions. The supplied standard configuration includes five main coil sets.

Head Coil Included / Configurable
Neck Coil Included / Configurable
Small Body Coil Included / Configurable
Large Body Coil Included / Configurable
Knee Coil Included / Configurable

Patient Positioning and Communication

The patient table incorporates high-accuracy positioning assistance to support alignment of the examination region with the magnet isocenter.

Maximum Patient Weight 200 kg
Positioning Assist High-Accuracy Positioning System
Localizer Included
Positioning Accuracy ≤1 mm
Positioning Accessories Included
Emergency Call / Stop Included
Communication System Dual-Voice Communication

MRI Workstation and Connectivity

The MRI workstation provides scan setup, examination control, image review and routine post-processing. DICOM 3.0 and Ethernet connectivity are included in the supplied system configuration.

Operating System Windows
CPU ≥2.8 GHz
Memory ≥4 GB
Hard Disk ≥1000 GB
Display 24-inch LCD
DICOM DICOM 3.0
Network Ethernet
Media Drive CRW / DVD

Scanning Parameters

Maximum FOV 400 mm
Minimum FOV 20 mm
Minimum 2D Slice Thickness 1 mm
Minimum 3D Slice Thickness 0.1 mm
Maximum Image Matrix 1024 × 1024

MRI Sequences and Imaging Functions

The supplied software configuration includes both routine MRI sequences and multiple advanced imaging and post-processing functions.

Routine MRI Sequences

SE 2D/3D, GRE 2D/3D, FSE, FDE, FRFSE, SSFSE, MSFSE, IR and IRFSE.

Fluid and Fat-Sensitive Imaging

STIR and FLAIR sequences are supported for routine MRI examination workflows.

Vascular Imaging

TOF 2D MRA, TOF 3D MRA, MIP, MinIP and vascular image fusion functions are included.

Diffusion Imaging

DWI is supported with a maximum specified b-value of 1000 s/mm².

MRCP, MRU and MRM

The system includes MRCP, MRU and MRM imaging functions in the supplied software configuration.

3D and Post-Processing

3D positioning, image fusion, artifact suppression, thin-slice imaging, online filtering and post-processing functions are supported.

Standard System Configuration

The supplied configuration includes the core MRI system, receiving coils, workstation components, communication system and selected site-support equipment.

  • 0.5T permanent Nd-Fe-B magnet.
  • Automatic constant-temperature magnet system.
  • Fully digital spectrometer.
  • Preamplifier and RF amplifier.
  • Flat-panel transmitter coil.
  • Gradient amplifier and gradient coil.
  • Computer and imaging monitor.
  • Patient table and cover.
  • Head, neck, small body, large body and knee coils.
  • Quality-control water phantom.
  • MRI safety signs.
  • Technical, user and maintenance manuals.
  • 3-phase AC voltage stabilizer.
  • Dual-voice communication system.
  • Patient-bed laser positioning system.

RF Shielding and Site Preparation

The supplied project configuration can include an RF shielding room with shielding door, observation window, transmission board, waveguide board, indoor lighting and one air-conditioning unit.

Civil works, concrete foundation, floor construction, external decoration, external electrical connection, independent grounding and other site-preparation items should be confirmed separately before project quotation.

Installation, Training and Service

UMY can provide pre-installation documentation, installation planning, equipment commissioning and on-site training according to the project schedule.

  • Pre-installation site and utility documentation.
  • Installation and commissioning planning.
  • On-site equipment installation and testing.
  • Operator training for medical personnel.
  • Basic maintenance training for technical personnel.
  • Remote maintenance support when network access is available.

Before Ordering

A 0.5T permanent MRI project should be configured according to the intended applications, room conditions and local installation requirements. Please provide the following information when requesting a quotation.

If another magnetic field strength is more suitable for your project, compare our
0.35T Open Permanent Magnet MRI System
or
1.5T Superconducting MRI System
before confirming the final MRI configuration.

  • Destination country and installation location.
  • Required quantity.
  • Expected MRI examination types.
  • Expected daily patient volume.
  • Required receiving coil configuration.
  • Available MRI room and equipment-room dimensions.
  • RF shielding room requirements.
  • Local electrical power conditions.
  • Grounding and HVAC conditions.
  • DICOM / PACS / RIS integration requirements.
  • Required installation and training scope.
  • Local registration, tender or documentation requirements.

Frequently Asked Questions

What type of magnet does the system use?

The system uses a 0.5T permanent Nd-Fe-B magnet with an automatic constant-temperature control system.

How open is the MRI magnet?

The current specification lists a 40 cm vertical gap and approximately 274° horizontal accessibility.

What is the gradient performance?

The system provides 25 mT/m single-axis gradient strength with a specified slew rate of 75 mT/m/ms.

Does the system support DWI and MRA?

Yes. The supplied imaging software includes DWI, TOF 2D MRA, TOF 3D MRA and related vascular post-processing functions.

Does the system support MRCP?

Yes. MRCP, MRU and MRM are included in the listed imaging software package.

What coils are included?

The supplied standard configuration lists head, neck, small body, large body and knee receiving coils.

Is an RF shielding room available?

Yes. The project configuration can include an RF shielding room package. Site construction responsibilities should be confirmed before quotation.

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