Integrated gradiometer array
First Claim
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1. An array of integrated gradiometers, comprising:
- an array of cells, wherein each cell comprises;
a semiconducting substrate;
a first sensor, fabricated on the semiconducting substrate and responsive to the presence of the magnetic field, for producing a first electrical signal proportional to a first magnetic field strength of the magnetic field;
a second sensor, fabricated on the semiconducting substrate and responsive to the presence of the magnetic field, for producing a second electrical signal proportional to a second magnetic field strength of the magnetic field;
said first and second sensors being spaced apart at a distance effective for measuring a magnetic field gradient having a spatial scale of up to about 10 μ
m;
a comparator, for receiving and comparing said first and second electrical signals, and for producing an output representing a magnitude of the magnetic field gradient applied across said sensors;
a first conductor for transmitting current bias to the cell;
a second conductor for transmitting a sensed voltage from the cell to a sense amplifier; and
an isolation element for electrically isolated the cell from the bias and signal wires and from other cells in the array.
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Abstract
Magnetic field sensors, each generating an electrical output signal in proportion to the local magnetic field, are lithographically fabricated on a semiconductor substrate with a small spatial separation. The lateral dimension of the sensors and the separation length are the order of the minimum lithographic feature size. Comparing the electrical signals to the sensors results in a measurement of the local magnetic field gradient. Large field gradients, that vary on a small spatial scale, may be associated small magnetic structures such as microscopic magnetic particles. Detection of a field gradient can be used to infer the presence of a magnetic particle.
14 Citations
5 Claims
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1. An array of integrated gradiometers, comprising:
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an array of cells, wherein each cell comprises; a semiconducting substrate; a first sensor, fabricated on the semiconducting substrate and responsive to the presence of the magnetic field, for producing a first electrical signal proportional to a first magnetic field strength of the magnetic field; a second sensor, fabricated on the semiconducting substrate and responsive to the presence of the magnetic field, for producing a second electrical signal proportional to a second magnetic field strength of the magnetic field; said first and second sensors being spaced apart at a distance effective for measuring a magnetic field gradient having a spatial scale of up to about 10 μ
m;a comparator, for receiving and comparing said first and second electrical signals, and for producing an output representing a magnitude of the magnetic field gradient applied across said sensors; a first conductor for transmitting current bias to the cell; a second conductor for transmitting a sensed voltage from the cell to a sense amplifier; and an isolation element for electrically isolated the cell from the bias and signal wires and from other cells in the array. - View Dependent Claims (2, 3, 4, 5)
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Specification