IP Library Granted Patent US 7,145,456
Granted Patent B2
US 7,145,456 · App. 10/813,309 · Granted Dec 5, 2006

Efficient electronics for a walk-through metal detector

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Quick Facts
Patent No.
US 7,145,456
App. No.
10/813,309
Granted
Dec 5, 2006
Kind
B2
Abstract

A metal detection circuit that includes a power source and a connection to ground. At least one transmitter circuit is electrically coupled to the power source and ground and a transmit coil is electrically coiled to the transmitter circuit. At least one receiver coil has provided along with an amplifier to be electrically coupled to the receiver coil. An integrator is electrically coupled to the amplifier and a track/hold circuit is electrically to the integrator. A filter is electrically coupled to the track/hold circuit and an output. The circuit provides a high amplitude, low duty cycle excitation pulse, which allows for the sensitivity of a high level excitation signal with the power economy of a much lower energy excitation signal. The receiver circuit collects and conditions the signals resulting from the relatively short duration, large amplitude excitation pulse, and goes in to hold mode during the relatively long charge and idle periods.

Claims (47)

1. A metal detection circuit comprising:

a power source;

at least one transmitter circuit electrically coupled to the power source;

a transmit coil electrically coupled to the at least one transmitter circuit;

at least one receiver coil;

an amplifier electrically coupled to the at least one receiver coil;

an integrator electrically coupled to the amplifier;

a track/hold circuit electrically coupled to the integrator, the track/hold circuit comprising a first stage that includes an input resistor, an op-amp, an integrator capacitor, and a CMOS SPDT switch, and a second stage that includes two passive RC filters and an op-amp buffer; and

a filter electrically coupled to the track/hold circuit and an output.

2. A circuit in accordance with claim 1 wherein the filter is a bandpass filter.

3. A circuit in accordance with claim 1 wherein the transmitter circuit comprises a coil charge circuit.

4. A circuit in accordance with claim 1 comprising two receiver coils each electrically coupled to the amplifier.

5. A circuit in accordance with claim 1 wherein the power source comprises a voltage source in the form of one of a battery, a battery of solar cells, a standard A/C source or a generator.

6. A metal detection circuit arrangement for a portable walk-through metal detector comprising a plurality of opposing pairs of sensor panels, each sensor panel pair comprising a circuit portion comprising:

at least one transmitter circuit electrically coupled to the power source;

a transmit coil electrically coupled to the at least one transmitter circuit;

at least one receiver coil;

an amplifier electrically coupled to the at least one receiver coil;

an integrator electrically coupled to the amplifier;

a track/hold circuit electrically coupled to the integrator, the track/hold circuit comprising a first stage that includes an input resistor, an op-amp, an integrator capacitor, and a CMOS SPDT switch, and a second stage that includes two passive RC filters and an op-amp buffer; and

a filter electrically coupled to the track/hold circuit and an output.

7. A circuit arrangement in accordance with claim 6 wherein the filter is a bandpass filter.

8. A circuit arrangement in accordance with claim 6 wherein the transmitter circuit comprises a coil charge circuit.

9. A circuit arrangement in accordance with claim 6 wherein each circuit portion comprises two receiver coils each electrically coupled to the amplifier.

10. A circuit arrangement in accordance with claim 6 further comprising a power source comprising at least one voltage source in the form of one of a battery, a battery of solar cells, a standard A/C source or a generator.

11. A modular walk-through metal detector comprising:

a plurality of separate sensor panels arranged in opposing pairs electrically coupled to each other and arranged one above the other along two separate sides to form two side walls; and

at least one top cross-member that engages each side wall;

wherein each opposing sensor panel pair comprises a circuit portion comprising:

at least one transmitter circuit electrically coupled to the power source;

a transmit coil electrically coupled to the at least one transmitter circuit;

at least one receiver coil;

an amplifier electrically coupled to the at least one receiver coil;

an integrator electrically coupled to the amplifier;

a track/hold circuit electrically coupled to the integrator, the track/hold circuit comprising a first stage that includes an input resistor, an op-amp, an integrator capacitor, and a CMOS SPOT switch, and a second stage that includes two passive RC filters and an op-amp buffer; and

a filter electrically coupled to the track/hold circuit and an output.

12. A metal detector in accordance with claim 11 wherein the filter is a bandpass filter.

13. A metal detector in accordance with claim 11 wherein the transmitter circuit comprises a coil charge circuit.

14. A metal detector in accordance with claim 11 wherein each circuit portion comprises two receiver coils each electrically coupled to the amplifier.

15. A metal detector in accordance with claim 11 further comprising a power source comprising at least one voltage source in the form of one of a battery, a battery of solar cells, a standard A/C source or a generator.

16. A metal detector in accordance with claim 11 wherein each opposing sensor panel pair is interchangeable.

17. A metal detector in accordance with claim 11 further comprising at least one base coupled to each side wall.

18. A metal detector in accordance with claim 11 wherein the base comprises at least two base members.

19. A metal detector in accordance with claim 11 wherein the metal detector comprises six sensor panels, each side wall comprising three sensor panels.

20. A metal detector in accordance with claim 11 wherein each sensor panel comprises windowed areas.

21. A metal detector in accordance with claim 20 wherein each sensor panel comprises a weather-proof construction.

22. A metal detector in accordance with claim 11 wherein the sensor panels may be stored in the top cross-member and the top cross member includes at least one handle and at least two wheels.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Oct 6, 2010
From: CAPITALSOURCE FINANCE LLC
To: FIRST TEXAS HOLDINGS CORPORATION; FIRST TEXAS PRODUCTS, LLC; JNL TRADING COMPANY, LLC; JNL TRADING COMPANY, INC.; FISHER RESEARCH LABS, INC.; FIRST TEXAS PRODUCTS CORPORATION; FTP HOLDINGS I, INC.; FTP HOLDINGS II, INC.
Reel/Frame 025095/0281 →
RELEASE OF SECURITY INTEREST Recorded Oct 6, 2010
From: CAPITALSOURCE FINANCE LLC
To: FIRST TEXAS HOLDING CORPORATION; FIRST TEXAS PRODUCTS, LLC; JNL TRADING COMPANY, LLC; JNL TRADING COMPANY, INC.; FISHER RESEARCH LABS, INC.; FIRST TEXAS PRODUCTS CORPORATION; FTP HOLDINGS I, INC.; FIRST TEXAS HOLDINGS II, INC.
Reel/Frame 025095/0293 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Sep 8, 2009
From: FIRST TEXAS HOLDINGS CORPORATION; FIRST TEXAS PRODUCTS, LLC; JNL TRADING COMPANY, LLC; JNL TRADING COMPANY, INC.; FISHER RESEARCH LABS, INC.; FIRST TEXAS PRODUCTS CORPORATION; FTP HOLDINGS I, INC.; FTP HOLDINGS II, INC.
To: CAPITALSOURCE FINANCE LLC
Reel/Frame 023196/0560 →
FIRST AMENDMENT TO ACKNOWLEDGMENT OF INTELLECTUAL PROPERTY COLLATERAL LIEN Recorded Dec 9, 2008
From: FIRST TEXAS HOLDING CORPORATION; FIRST TEXAS PRODUCTS, LLC; JNL TRADING COMPANY, LLC; JNL TRADING COMPANY, INC.; FISHER RESEARCH LABS, INC.; FIRST TEXAS PRODUCTS CORPORATION; FTP HOLDINGS I, INC.; FIRST TEXAS HOLDINGS II, INC.
To: CAPITALSOURCE FINANCE LLC
Reel/Frame 021936/0817 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2006
From: FRL, INCORPORATED
To: FISHER RESEARCH LABS, INC.
Reel/Frame 017606/0695 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2004
From: CASTLE, JONATHAN
To: FISHER RESEARCH LABORATORY
Reel/Frame 015168/0111 →