Auto-tuned RFID reader antenna
First Claim
Patent Images
1. A reader for an RFID system comprising:
- an antenna assembly including an antenna tuning circuit and an antenna, said antenna tuning circuit coupled to said antenna and said antenna having an antenna impedance, wherein said antenna is operated by an AC signal;
a variable capacitance circuit included in said antenna tuning circuit, said variable capacitance circuit having at least one variable capacitance element that is reversed biased and comprises a DC bias voltage that is smaller in magnitude than said AC signal;
a signal driver coupled to said antenna assembly to apply a drive signal to said antenna, said signal driver having a signal driver impedance; and
a controller coupled to said antenna assembly to determine a difference between said antenna impedance and said signal driver impedance and to set said at least one variable capacitance element to a set capacitance value to reduce said difference.
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Accused Products
Abstract
A reader for an RFID system includes an antenna assembly, a signal driver and a controller. The antenna assembly has an antenna coupled to an antenna tuning circuit which includes a variable capacitance circuit. The signal driver is coupled to the antenna assembly to apply a drive signal to the antenna assembly. The controller is coupled to the antenna assembly to determine a difference between an antenna impedance and a signal driver impedance and to set the variable capacitance at a set capacitance value which reduces the impedance difference.
40 Citations
22 Claims
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1. A reader for an RFID system comprising:
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an antenna assembly including an antenna tuning circuit and an antenna, said antenna tuning circuit coupled to said antenna and said antenna having an antenna impedance, wherein said antenna is operated by an AC signal; a variable capacitance circuit included in said antenna tuning circuit, said variable capacitance circuit having at least one variable capacitance element that is reversed biased and comprises a DC bias voltage that is smaller in magnitude than said AC signal; a signal driver coupled to said antenna assembly to apply a drive signal to said antenna, said signal driver having a signal driver impedance; and a controller coupled to said antenna assembly to determine a difference between said antenna impedance and said signal driver impedance and to set said at least one variable capacitance element to a set capacitance value to reduce said difference. - View Dependent Claims (3, 4, 5, 6, 7, 8, 9)
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2. A reader for an RFID system comprising:
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an antenna assembly including an antenna tuning circuit and an antenna, said antenna tuning circuit coupled to said antenna and said antenna having an antenna impedance; a variable capacitance circuit included in said antenna tuning circuit, said variable capacitance circuit having a variable capacitance; a signal driver coupled to said antenna assembly to apply a drive signal to said antenna, said signal driver having a signal driver impedance; a controller coupled to said antenna assembly to determine a difference between said antenna impedance and said signal driver impedance and to set said variable capacitance to a set capacitance value to reduce said difference; and a variable voltage source coupled between said controller and said variable capacitance circuit to apply a tuning bias signal to said variable capacitance circuit, said tuning bias signal having a biasing voltage value selected to reduce said difference.
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10. A method comprising:
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conveying an AC drive signal from a signal driver to an antenna assembly, wherein said antenna assembly includes an antenna tuning circuit coupled to an antenna, said antenna having an antenna impedance, said signal driver having a signal driver impedance, and said antenna tuning circuit having a variable capacitance element that comprises a DC bias voltage that is substantially smaller than a voltage of said AC drive signal; determining a difference between said antenna impedance and said signal driver impedance; and setting said variable capacitance element at a set capacitance value to reduce said difference.
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11. A method comprising:
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conveying a drive signal from a signal driver to an antenna assembly, wherein said antenna assembly includes an antenna tuning circuit coupled to an antenna, said antenna having an antenna impedance, said signal driver having a signal driver impedance, and said antenna tuning circuit having a variable capacitance; determining a difference between said antenna impedance and said signal driver impedance; setting said variable capacitance at a set capacitance value to reduce said difference; generating a tuning bias signal having a biasing voltage value; and applying said tuning bias signal to said antenna tuning circuit to set said variable capacitance at said set capacitance value.
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12. The method of 10 further comprising at least partially enclosing said antenna assembly in a radio frequency transmissive housing and coupling a radio frequency reflective baseplate to said housing to reduce susceptibility of said antenna to variations caused by objects in an operating environment of said antenna.
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13. A method comprising:
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selecting a set capacitance value of an antenna tuning circuit having variable capacitance, wherein said set capacitance value is selected by ranging an antenna operating parameter correlated to said variable capacitance through a progression of antenna operating parameter values; and setting said set capacitance value of said antenna tuning circuit to reduce an imbalance between an impedance of an antenna coupled to said antenna tuning circuit and an impedance of a signal driver applying a drive signal to said antenna. - View Dependent Claims (14, 15, 16, 17, 18, 19, 20, 21, 22)
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Specification