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SR NSLS prototype magnets

Date post: 18-Mar-2016
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SR NSLS prototype magnets. 90 mm aperture dipole. Dipoles. Pole Ends will be matched to achieve the magnetic field quality (1.5 . 10 -4 ). 35 mm aperture dipole. Dipoles. - PowerPoint PPT Presentation
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SR NSLS prototype magnets
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Page 1: SR NSLS prototype magnets

SR NSLS prototype magnets

Page 2: SR NSLS prototype magnets

Dipoles 90 mm aperture dipole

Pole Ends will be matched to achieve the magnetic field quality (1.5.10-4)

Page 3: SR NSLS prototype magnets

Dipoles

Pole Ends will be matched to achieve the magnetic field quality (1.5.10-4) and equivalent magnetic field integrals (relative to 90 mm aperture dipoles)

35 mm aperture dipole

Page 4: SR NSLS prototype magnets

Dipoles 90 mm aperture dipole

Number of magnets 8

Bending angle, deg 45

Bending radius, mm 1528

Gap, mm 50 ± 0.02

Field range, T up to 1.5

Good field area, mm2 60 x 36

Homogeneity dB/B 2.5x10-4

Stabolit 70

Stabolit 20

Page 5: SR NSLS prototype magnets

Dipoles

597,00

20,00

125,00

90,00

95,15

104,23

421,95

20,00

200,00

294,00

Page 6: SR NSLS prototype magnets

Dipoles 90 mm aperture dipole

Magnetic field in gap

-0.020%

-0.015%

-0.010%

-0.005%

0.000%

0.005%

0.010%

0.015%

0.020%

-0.03 -0.02 -0.01 0 0.01 0.02 0.03X, m

dB/B

Page 7: SR NSLS prototype magnets

Dipoles

..\..\..\NSLS SR tender\out documents\dipole\main info\Attachment 3 (Dipoles_technological equipments).doc

Magnetic measurement

The carriage with the Hall sensors (1 – the temperature sensor, 2 – the

Hall sensors, 3 –the NMR probe)

The carriage with Hall sensors in the guide mounted in the magnet aperture

Parameters B/B I /IGeometry-dependent errors (orientation of the sensors in the carriage plane, alignment of the guide relative to the magnet, errors caused by the carriage transportation mechanism)

1.5.10-5 1.7.10-5

Time instability of *: The feed current of the magnets The feed current of the Hall sensors

2.10-5

10-5

1.8.10-6

0.9.10-6

Temperature instability 2.4.10-5

Accuracy of calibration of the Hall sensors 4.5.10-5

Noise of the electronics 4.4.10-5 4.0.10-6

Resultant errors of the measurements 7.2.10-5 6.2.10-5

The accuracy of the magnetic measurements.

Page 8: SR NSLS prototype magnets

DipolesStamping tool End glue pack

Views of CMM Contura

Page 9: SR NSLS prototype magnets

Dipoles

The stacking fixture during assembly.

The stacking fixture with yoke

Page 10: SR NSLS prototype magnets

Dipoles

Yoke with reference surface plate inside the stacking fixture

Yoke with face plates inside the stacking fixture.

Page 11: SR NSLS prototype magnets

Dipoles

Yoke face

Yoke back

Page 12: SR NSLS prototype magnets

DipolesYoke bottom

Dipole aperture views

Page 13: SR NSLS prototype magnets

Common

Water and electrical connections and terminals- Water tubes from plastic radiation resistance plastic / metallic tubes-

Radiation resistance of materials used for magnets-Tubes & manifolds- Coils (SLAC technology with Alumina insertion)- insulators (supports, electrics,

Documentation


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