Reservoir volume sensors
First Claim
1. A solid-state variable capacitor for use in an implantable medical device comprising a closed environment which contains a liquid-vapor phase material, the solid-state variable capacitor measuring the amount of liquid existing in the medical device, the solid-state variable capacitor comprising:
- a first capacitor plate located within the closed environment;
a second capacitor plate fixed with respect to the first capacitor plate and located within the closed environment; and
a dielectric material located within the closed environment and being formed of a material suitable for absorbing the liquid phase of the liquid-vapor phase material, the dielectric properties of the dielectric material varying with the absorption of the liquid phase to vary a capacitance according to the phase status of the liquid-vapor phase material.
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Accused Products
Abstract
Reservoir volume in a drug delivery device is sensed by providing a capacitor, the capacitance of which varies with bellows position or, alternatively, with the amount of propellant liquid absorbed in a dielectric material. In one embodiment, a capacitance is provided between a surface of the bellows, which acts as a first capacitor plate, and a conductive surface disposed proximate the bellows, which acts as a second capacitor plate. As the bellows moves from its extended full position to its collapsed empty position, the area of overlap, and therefore the capacitance between the first and second plates varies from a maximum value to a minimum value. In another embodiment, a variable capacitor is provided with an absorbent material. The absorbent material absorbs the liquid phase of the propellant in the pump housing and acts as a dielectric between two stationary conductive plates provided in the housing. The amount of liquid propellant absorbed in the absorbent material varies with the reservoir volume. When the reservoir is in its full, expanded position, more liquid propellant is absorbed in the absorbent material. When the reservoir is in its compressed empty position, more of the propellant exists as vapor within the pump housing and therefore less liquid propellant is absorbed in the absorbent material. The dielectric properties of the capacitor are therefore higher and the capacitance is therefore maximized when the reservoir is in its full, extended position. Conversely, the dielectric properties are lower and the capacitance minimized when the reservoir is in its compact, empty position.
138 Citations
8 Claims
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1. A solid-state variable capacitor for use in an implantable medical device comprising a closed environment which contains a liquid-vapor phase material, the solid-state variable capacitor measuring the amount of liquid existing in the medical device, the solid-state variable capacitor comprising:
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a first capacitor plate located within the closed environment;
a second capacitor plate fixed with respect to the first capacitor plate and located within the closed environment; and
a dielectric material located within the closed environment and being formed of a material suitable for absorbing the liquid phase of the liquid-vapor phase material, the dielectric properties of the dielectric material varying with the absorption of the liquid phase to vary a capacitance according to the phase status of the liquid-vapor phase material. - View Dependent Claims (2, 3, 4, 5)
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6. In an implantable medical device comprising a closed environment, the medical device containing a liquid-vapor phase material therein, a method of detecting the amount of liquid existing in the medical device, the method comprising:
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providing a solid-state variable capacitor within the closed environment and having an absorbent dielectric material, the dielectric material suitable to absorb the liquid phase of the liquid-vapor phase material, the dielectric properties of the dielectric material varying with the absorption of the liquid phase to vary a capacitance according to the phase status of the liquid-vapor phase material;
measuring the capacitance of the capacitor; and
determining the amount of liquid from the measured capacitance. - View Dependent Claims (7, 8)
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Specification