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An inductive component for use in an integrated circuit, a transformer and an inductor formed as part of an integrated circuit

A technology of integrated circuits and inductance components, which is applied to transformer/inductor components, inductors, fixed inductors, etc., and can solve problems such as non-linear performance

Active Publication Date: 2016-01-13
ANALOG DEVICES INT UNLTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, such an arrangement is nonlinear in its performance

Method used

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  • An inductive component for use in an integrated circuit, a transformer and an inductor formed as part of an integrated circuit
  • An inductive component for use in an integrated circuit, a transformer and an inductor formed as part of an integrated circuit
  • An inductive component for use in an integrated circuit, a transformer and an inductor formed as part of an integrated circuit

Examples

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Embodiment Construction

[0026] figure 1 An example of a transformer 1 having a magnetic core formed on a part of a substrate 4 is schematically shown, generally indicated by reference numeral 2 . Advantageously, the substrate 4 is a semiconductor substrate so that other components such as driver circuitry and receiver circuitry associated with the primary and secondary windings of the transformer 1 can also be formed on the substrate 4 within the same integrated circuit package or be physically separated on the base. However, in some applications, non-semiconductor base materials may be used for their electrical properties, such as higher impedance.

[0027] For illustrative purposes, the structure around the magnetic core 2, such as, for example, a layer of insulating material of polyimide, has been omitted. therefore, figure 1 The structure shown is only the substrate 4, the magnetic core 2 and the conductive tracks provided in the first and second layers formed on either side of the magnetic co...

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PUM

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Abstract

Inductive components, such as transformers, can be improved by the inclusion of a magnetic core. However the benefit of having a core is lost if the core enters magnetic saturation. One way to avoid saturation is to provide a bigger core, but this is costly in the context of integrated electronic circuits. The inventor realized that the flux magnetic flux density varies with position in a magnetic core within an integrated circuit, causing parts of the magnetic core to saturate earlier than other parts. This reduces the ultimate performance of the magnetic core. This disclosure provides structures that delay the onset of early saturation, enabling a transformer to handle more power.

Description

technical field [0001] The present invention relates to an improved inductor or an improved transformer manufactured using microelectronic technology, and an integrated circuit comprising such an inductive element. Background technique [0002] Magnetic components such as inductors and transformers are known to have many uses. For example, inductors can be used to make filters and resonant circuits, or they can be used in switching power converters to step up or step down an input voltage for producing different output voltages. Transformers can be used to transfer power or signals from one circuit to another while providing a high level of galvanic isolation. [0003] Inductors and transformers can be fabricated in an integrated circuit environment. For example, it is known that approximately spaced-apart conductors, usually forming a helix or helix, may be formed on or within a semiconductor substrate to form a coil as part of an inductor or transformer. Spiral inductor...

Claims

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Application Information

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IPC IPC(8): H01L23/64H01L21/02
CPCH01F17/0033H01F27/2804H01F2027/2809H01F27/303H01F27/34
Inventor J·库比克
Owner ANALOG DEVICES INT UNLTD
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