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Omnidirectional Inductive Powering for Biomedical Implants (Hardcover, 2009 ed.): Bert Lenaerts, Robert Puers Omnidirectional Inductive Powering for Biomedical Implants (Hardcover, 2009 ed.)
Bert Lenaerts, Robert Puers
R4,416 Discovery Miles 44 160 Ships in 12 - 17 working days

Omnidirectional Inductive Powering for Biomedical Implants investigates the feasibility of inductive powering for capsule endoscopy and freely moving systems in general. The main challenge is the random position and orientation of the power receiving system with respect to the emitting magnetic field. Where classic inductive powering assumes a predictable or fixed alignment of the respective coils, the remote system is now free to adopt just any orientation while still maintaining full power capabilities. Before elaborating on different approaches towards omnidirectional powering, the design and optimisation of a general inductive power link is discussed in all its aspects. Special attention is paid to the interaction of the inductive power link with the patient 's body. Putting theory into practice, the implementation of an inductive power link for a capsule endoscope is included in a separate chapter.

Omnidirectional Inductive Powering for Biomedical Implants (Paperback, Softcover reprint of hardcover 1st ed. 2009): Bert... Omnidirectional Inductive Powering for Biomedical Implants (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Bert Lenaerts, Robert Puers
R4,321 Discovery Miles 43 210 Ships in 10 - 15 working days

Omnidirectional Inductive Powering for Biomedical Implants investigates the feasibility of inductive powering for capsule endoscopy and freely moving systems in general. The main challenge is the random position and orientation of the power receiving system with respect to the emitting magnetic field. Where classic inductive powering assumes a predictable or fixed alignment of the respective coils, the remote system is now free to adopt just any orientation while still maintaining full power capabilities. Before elaborating on different approaches towards omnidirectional powering, the design and optimisation of a general inductive power link is discussed in all its aspects. Special attention is paid to the interaction of the inductive power link with the patient 's body. Putting theory into practice, the implementation of an inductive power link for a capsule endoscope is included in a separate chapter.

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