D2tcd PW

Non-imaging transducer

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Learn more about the Philips D2tcd PW non-imaging transducer in the specification table below.

Features
Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging
Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -
Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -
  • Technology: Non-imaging
  • Number of elements: -
  • Frequency range: -
See all features
Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging

Technology: Non-imaging
Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -

Number of elements: -
Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -

Frequency range: -

Specifications

Specifications
Specifications
Technology
  • Non-imaging
Number of elements
  • -
Frequency range
  • -
Array Type
  • -
Aperture
  • -
Field of view
  • -
Volume of field of view
  • -
Modes
  • Dedicated 2 MHz pulsed wave Doppler
Applications
  • Transcranial Doppler applications
Biopsy capable
  • No
Image Fusion Navigation capable
  • No
Physical dimensions
  • -
Specifications
Specifications
Technology
  • Non-imaging
Number of elements
  • -
See all specifications
Specifications
Specifications
Technology
  • Non-imaging
Number of elements
  • -
Frequency range
  • -
Array Type
  • -
Aperture
  • -
Field of view
  • -
Volume of field of view
  • -
Modes
  • Dedicated 2 MHz pulsed wave Doppler
Applications
  • Transcranial Doppler applications
Biopsy capable
  • No
Image Fusion Navigation capable
  • No
Physical dimensions
  • -

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