IP Library Granted Patent US 7,714,579
Granted Patent B2
US 7,714,579 · App. 12/129,060 · Granted May 11, 2010

NMR probe

Assignee: Jeol Ltd.
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Quick Facts
Patent No.
US 7,714,579
App. No.
12/129,060
Granted
May 11, 2010
Kind
B2
Abstract

An NMR probe permits measurements to be made with its inner coil without replacing the probe. The NMR probe has three coils disposed to surround a sample tube. An inner coil can resonate with the HF and LF. An intermediate coil can resonate with the HF and LF, and produces an RF magnetic field perpendicular to the RF field produced by the inner coil. An outermost coil can resonate at least at a lock frequency. The outermost coil produces an RF magnetic field which is perpendicular to the RF field produced by the intermediate coil but which is coincident in direction with the RF field produced by the inner coil.

Claims (24)

1. An NMR probe comprising:

three coils forming layers radially spaced from each other, the layers being disposed to surround a sample tube, the three coils including an inner coil, an intermediate coil, and an outermost coil;

said inner coil being capable of multiply resonating with RF waves (HF) of a frequency corresponding to a resonant frequency of from 3 H nuclei to 19 F nuclei and with RF waves (LF) of a frequency lower than the resonant frequency of 205 Tl;

said intermediate coil being capable of multiply resonating with the HF and LF and producing an RF magnetic field perpendicular in direction to an RF magnetic field produced by the inner coil;

said outermost coil being capable of resonating with at least RF waves for NMR lock and producing an RF magnetic field which is perpendicular in direction to the RF magnetic field produced by the intermediate coil but which is coincident in direction with the RF magnetic field produced by the inner coil;

a first tuning-and-matching circuit connected with the inner coil and being capable of multiply resonating with at least two different frequencies selected from a range from the LF to the HF;

a second tuning-and-matching circuit connected with the intermediate coil and being capable of multiply resonating with at least two different frequencies selected from the range from the LF to the HF; and

a third tuning-and-matching circuit connected with the outermost coil and being capable of being tuned to at least the RF waves for NMR lock.

2. An NMR probe as set forth in claim 1 , wherein the HF, the LF, and the RF waves for NMR lock are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

3. An NMR probe as set forth in claim 2 , wherein another LF is supplied to the inner coil during use of the NMR probe.

4. An NMR probe as set forth in claim 1 , wherein the LF, the HF, and the RF waves for NMR lock are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

5. An NMR probe as set forth in claim 1 , wherein the HF, two kinds of LFs, and the RF waves for NMR lock are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

6. An NMR probe as set forth in claim 5 , wherein further LF is supplied to the inner coil during use of the NMR probe.

7. An NMR probe as set forth in claim 1 , wherein the LF, two kinds of HFs, and the RF waves for NMR lock are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

8. An NMR probe as set forth in claim 7 , wherein another LF is supplied to the inner coil during use of the NMR probe.

9. An NMR probe as set forth in claim 1 , wherein two kinds of HFs, the LF, and the RF waves for NMR lock are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

10. An NMR probe as set forth in claim 9 , wherein another LF is supplied to the inner coil during use of the NMR probe.

11. An NMR probe as set forth in claim 1 , wherein the HF and the LF (i), the HF and the LF (ii), and the RF waves for NMR lock (iii) are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

12. An NMR probe as set forth in claim 1 , wherein the HF and the LF (i), two kinds of LFs (ii), and the RF waves for NMR lock and HF for irradiation (iii) are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

13. An NMR probe as set forth in claim 1 , wherein the HF and two kinds of LFs (i), the LF (ii), and the RF waves for NMR lock (iii) are supplied to the inner coil, the intermediate coil, and the outermost coil, respectively, during use of the NMR probe.

14. An NMR probe as set forth in claim 1 ,

wherein one desired frequency selected from the range from the LF to the HF is supplied to the inner coil from a broadband frequency variable oscillator that covers the frequency range from the LF to the HF,

wherein one desired frequency selected from the range from the LF to the HF is supplied to the intermediate coil from the variable oscillator, and

wherein the RF waves for NMR lock are supplied to the outermost coil during use of the NMR probe.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2011
From: JEOL LTD.
To: JEOL RESONANCE INC.
Reel/Frame 027017/0252 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2008
From: SUEMATSU, HIROTO; KIDA, YOSHIKI; YAMAKOSHI, YOSHIAKI; IKEDA, HIROSHI; MIYAMOTO, TETSUO; TANAKA, RYOJI
To: JEOL LTD.
Reel/Frame 021383/0389 →
Priority Claims (1)
JP 2007-141190 · May 29, 2007 · national
Continuity (1)
Related Publication 20080297156A1 · Dec 4, 2008