DocumentCode
1036912
Title
Transcutaneous RF-Powered Implantable Minipump Driven by a Class-E Transmitter
Author
Moore, W.H. ; Holschneider, D.P. ; Givrad, T.K. ; Maarek, J.-M.I.
Author_Institution
Mann Inst., Univ. of Southern California, Los Angeles, CA
Volume
53
Issue
8
fYear
2006
Firstpage
1705
Lastpage
1708
Abstract
We describe the design and testing of an inductive coupling system used to power an implantable minipump for applications in ambulating rats. A 2 MHz class-E oscillator driver powered a coil transmitter wound around a 33-cm-diameter rat cage. A receiver coil, a filtered rectifier, and a voltage-sensitive switch powered the implant. The implant DC current at the center of the primary coil (5.1 V) exceeded the level required to activate the solenoid valve in the pump. The variations of the implant current in the volume of the primary coil reflected the variations of the estimated coupling coefficient between the two coils. The pump could be activated in-vivo, while accommodating the vertical and horizontal movements of the animal. Advantages of this design include a weight reduction for the implant, an operation independent from a finite power source, and a remote activation/deactivation
Keywords
coils; oscillators; prosthetics; transmitters; ambulating rats; class-E oscillator driver; class-E transmitter; coil transmitter; filtered rectifier; finite power source; implant DC current current; inductive coupling system; receiver coil; remote activation/deactivation; transcutaneous RF-powered implantable minipump; voltage-sensitive switch; weight reduction; Coils; Implants; Oscillators; Rats; Rectifiers; Switches; System testing; Transmitters; Voltage; Wounds; Infusion pump; implantable device; radio-frequency field; transcutaneous coupling; wireless energy transfer; Animals; Electric Power Supplies; Equipment Design; Equipment Failure Analysis; Infusion Pumps, Implantable; Miniaturization; Radio Waves; Rats; Telemetry;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2006.873698
Filename
1658167
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