Ingenia 1.5T MR system

Ingenia 1.5T

MR system

781341

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Put quality first with Philips Ingenia 1.5T MRI system. Digital clarity and speed¹ help clinicians diagnose with confidence, explore new applications, and work productively. Great patient reviews build your image in the community. All supported by our commitment to helping you grow.

Specifications

Xtend Magnet System
Xtend Magnet System
Open bore diameter
  • 70 cm
Magnet weight
  • 3060 kg
Magnet weight
  • 3060 kg
Bore design
  • 70 cm
Maximum FOV
  • 55 cm
Maximum FOV
  • 55 cm
Typical homogeneity at 45 cm DSV
  • ≤ 0.9 ppm
Typical homogeneity at 55x55x50 cm
  • ≤ 5 ppm
Typical homogeneity at 45 cm DSV -
  • ≤ 1.1 ppm
HeliumSave technology (Zero boil-off)
  • Yes
Cryogen boil-off rate under regular scanning conditions
  • 0 l/hr
HeliumSave technology (Zero boil-off)
  • Yes
Cryogen boil-off rate
  • 0 l/hr**
Xtend Gradient
Xtend Gradient
Max. amplitude for each axis
  • 45 mT/m
Max. slew rate for each axis
  • 200 T/m/s
Omega HP gradients
Omega HP gradients
Max. amplitude for each axis
  • 45 mT/m
Max. slew rate for each axis
  • 200 T/m/s
Resolution parameters
Resolution parameters
Max. scan matrix
  • 1024 (2048 optional)
Max scan matrix
  • 1024 (2048 optional)
Highest in-plane resolution
  • 5 µm
Max. number of slices
  • 1024
Highest in-plane resolution
  • 5 µm
Max. number of slices
  • 1024
RF transmit
RF transmit
Parallel RF transmission
  • Yes
Output power
  • 18 KW
Number of independent RF amplifiers
  • 1
dStream RF Receive
dStream RF Receive
Number of independent receive channels
  • Channel Independent
Signal chain from coil to reconstructor
  • Signal chain from coil electronics to connector Digital<br>Signal chain from connector to magnet Digital<br>Signal chain from magnet to reconstructor Digital
Location of analog-to-digital converter (ADC)
  • Inside the coil
Signal chain from coil electronics to connector
  • Digital
Signal chain from connector to magnet
  • Digital
Signal chain from magnet to reconstructor
  • Digital
Patient environment
Patient environment
Bore design
  • 70 cm
Patient aperture
  • 70 cm
Flare on both ends
  • Yes
Flare on both ends
  • Yes
Tunnel diameter at both ends
  • 95 cm
Tunnel diameter at both ends
  • 95 cm
Maximum weight capacity
  • 250 kg (550 lbs)
Maximum weight capacity
  • 250 kg (550 lbs)
Patient transport system (optional)
  • FlexTrak Mammo
Patient transport system (optional)
  • FlexTrak
Wireless patient physiological synchronization
  • Yes
Wireless patient physiological synchronization
  • Yes
Various acoustic noise reduction solutions
  • Yes
Various acoustic noise reduction solutions
  • Yes
Site Planning
Site Planning
Total gantry installed weight
  • ≤ 4600 kg
Minimum siting requirement
  • 27 m²
dStream Workflow
dStream Workflow
FlexCoverage posterior coil
  • Yes
FlexCoverage Posterior coil
  • Yes
FlexCoverage Anterior coils (optional)
  • Yes
FlexCoverage anterior coil (optional)
  • Yes
FlexConnect connectors
  • Yes
FlexConnect connectors
  • Yes
FlexTrak tabletop
  • Yes
FlexTrak tabletop
  • Yes
FlexCaddy coil storage (optional)
  • Yes
FlexCaddy coil storage (optional)
  • Yes
FlexTrak patient transport system (optional)
  • Yes
FlexTrak patient transport system (optional)
  • Yes
FlexTrak Mammo mammography solution (optional)
  • Yes
FlexTrak Mammo mammography solution (optional)
  • Yes
iPatient efficiency assistance
iPatient efficiency assistance
SmartStart
  • Yes
SmartSelect
  • Yes
SmartExam (optional)
  • Yes
SmartLine (package dependent)
  • Yes
SmartLink (package dependent)
  • Yes
Efficiency Assistance with iPatient
Efficiency Assistance with iPatient
SmartStart
  • Yes
SmartSelect
  • Yes
SmartExam (optional)
  • Yes
SmartLine (package dependent)
  • Yes
SmartLink (package dependent)
  • Yes
  • *Digital Clarity & Speed defined as SNR obtained with Ingenia or SmartPath to dStream compared to Achieva
  • **Premium IQ defined as IQ obtained with dStream compared to Achieva
  • ¹ “2014 Top 20 Best in KLAS Awards: 2014 Best in KLAS Awards: Medical Equipment & Infrastructure,” July, 2014.
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