Standard Split-Pair Magnets


sc-diag.gif - 5.0 K For researchers who require access to the high field region of the magnet through a radial port (for optical or other applications), we offer a line of standard and high field split pair magnets. These magnets provide both axial and transverse field access

Like their standard solenoid counterparts, standard split coils are made using multi-filamentary NbTi superconducting wire impregnated with epoxy. Due to the fact the peak fields in the superconducting windings are higher in split pairs than in solenoids, maximum fields of 8T at 4.2K and 9T at 2.2K are achievable.

High field split pair superconducting magnets will also have Nb3Sn windings. These windings are also epoxy impregnated to insure magnet stability without unintentional quenches. High field designs include superconducting magnets up to 12T at 2.2K.

Custom applications are quoted by request. Contact us with your specifications.



Standard Split-Pair Magnets
Model Field (4.2K/2.2K) Split Access Homogeneity* Current (4.2K/2.2K) Inductance
S30-500-010

3T

5.00" +/- 0.1%

90A

11.9H
S40-400-010

4T

4.00" +/- 0.1%

84A

18.3H
S50-050-050

5T

0.50" +/- 0.5%

80A

1.0H
S50-100-050

5T

1.00" +/- 0.5%

68A

3.2H
S60-150-050

6T

1.50" +/- 0.5%

86A

4.0H
S60-150-010

6T

1.50" +/- 0.1%

83A

7.8H
S60-200-050

6T

2.00" +/- 0.5%

86A

11.3H
S60-200-010

6T

2.00" +/- 0.1%

80A

22.3H
S70-200-001

7T

2.00" +/- 0.01%

52A

52.0H
S70-250-050

7T / 8T

2.50" +/- 0.5%

78A / 89A

35.0H
S70-250-010

7T / 8T

2.50" +/- 0.1%

85A / 97A

42.0H
S80-200-010

8T / 9T

2.00" +/- 0.1%

84A / 95A

51.0H
S80-250-010

8T / 9T

2.50" +/- 0.1%

82A / 92A

60.0H
S80-300-010

8T / 9T

3.00" +/- 0.1%

82A / 92A

100.0H
S90-200-010

9T / 10T

2.00" +/- 0.1%

79A / 87A

102.0H

* Homogeneity is measured over a 10mm diameter spherical volume (DSV).


Send Mail to: sales@cryomagnetics.com
Please contact us for more information!


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1006 Alvin Weinberg Drive
Oak Ridge, Tennessee 37830
USA
Phone: (865) 482-9551
Fax:     (865) 483-1253

All information subject to change due to design improvements.

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