1 / 21

Dummy septum impedance measurements

Dummy septum impedance measurements. S. Persichelli, O. Berrig, J. Kuczerowski, J. Herbst Dummy septum meeting 27-01-2014. Remarks from last impedance meeting.

jane
Télécharger la présentation

Dummy septum impedance measurements

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Dummy septum impedance measurements S. Persichelli, O. Berrig, J. Kuczerowski, J. Herbst Dummy septum meeting 27-01-2014

  2. Remarks from last impedance meeting In the unlikely event of unexpected failure or damage of the dummy septum after installation and shielding, repairing action will not be possible. This fact justifies the interest in finding preventive measures, for example reducing the impact of a mode that, from simulation results, is not predicted to be an issue for the stability of the beam. A trapped mode at 118 MHz was localized mainly in the gap between the screen and the support table and in the gap between the screen and the blade

  3. Remarks from last impedance meeting As an outcome of impedance studies, lasted two years and ended now with the bench measurements, the decision has been taken to install the sliding contacts between the RF beam screen and the support table With sliding contacts the mode at 118 MHz in cancelled and the main trapped modes is now at 270 MHz, localized in the 3mm gap between the blade and the screen.

  4. Measurement plan • We did measurements with the wire technique in three days: • 7/11/2013(Serena, Olav, Joseph, Johannes) • Dummy septum with BTV in out position, blade in nominal position, three different positions for the wire/beam tested. • 4/12/2013(Olav, Joseph): • After an oil leakages the septum was open, cleaned and re-assembled. Measurements without BTV, blade in unknown position, only extraction position tested. • 8/1/2014(Serena, Joseph): • After broken fingers substitutions and the insertion of a new support table. BTV in out position, blade in nominal position, two different positions for the wire/beam tested.

  5. Dummy Septum: impedance measurement Sliding contacts: mode cancelling Sliding fingers allow contact between the screen and the support table, avoiding the generation of some low frequency trapped modes

  6. Dummy Septum: impedance measurement Measurement setup . . .

  7. Dummy Septum: impedance measurement Design differences Third measurement 8/1/2014 First measurement 7/11/2013 BTV in OUT position BTV in OUT position 3 mm

  8. Dummy Septum: impedance measurement Measurement setup differences Third measurement 8/1/2014 First measurement 7/11/2013 16 mm 27 mm Sucobox length = 27mm Sucoboxwith cylinder inside Metal film resistance Rs= 261 Ω ± 1% Sucobox length = 16mm Sucoboxwithout cylinder inside Carbon resistances Rs1= 276 Ω Rs2= 281 Ω

  9. Dummy Septum: impedance measurement Differences between the two measurement setup x2 10 dB attenuators have been used for both measurements

  10. Measurement results • 7/11/2013(Serena, Olav, Joseph, Johannes) • Dummy septum with BTV in out position, blade in nominal position, three different positions for the wire/beam tested. • 4/12/2013(Olav, Joseph): • After an oil leakages the septum was open, cleaned and re-assembled. Measurements without BTV, blade in unknown position, only extraction position tested. • 8/1/2014(Serena, Joseph): • After broken fingers substitutions and the insertion of a new support table. BTV in out position, blade in nominal position, two different positions for the wire/beam tested.

  11. Dummy Septum: impedance measurement 7/11/13 Low frequency S21 It seems that the wire cannot excite trapped modes below 100 MHz!

  12. Dummy Septum: impedance measurement Low frequency S21 It seems that the wire cannot excite trapped modes below 100 MHz!

  13. Dummy Septum: impedance measurement 7/11/13 Wire in different positions The 270 MHz mode is generated by resonances due to the space (3mm) between screen and blade. Measurements confirm what observed in simulations, that during extraction increases the amplitude of this mode.

  14. Dummy Septum: impedance measurement 7/11/13 Comparison measurement and simulations Measurements have been compared with simulations in time/frequency domain. Both measurement and simulation agree on the first trapped mode at the frequency of 270 MHz. The fingers are working well on low frequency mode cancelling.

  15. Measurement results • 7/11/2013(Serena, Olav, Joseph, Johannes) • Dummy septum with BTV in out position, blade in nominal position, three different positions for the wire/beam tested. • 4/12/2013(Olav, Joseph): • After an oil leakages the septum was open, cleaned and re-assembled. Measurements without BTV, blade in unknown position, only extraction position tested. • 8/1/2014(Serena, Joseph): • After broken fingers substitutions and the insertion of a new support table. BTV in out position, blade in nominal position, two different positions for the wire/beam tested.

  16. Dummy Septum: impedance measurement 8/01/14 Low frequency S21 This time also, it seems that the wire cannot excite trapped modes below 100 MHz!

  17. Dummy Septum: impedance measurement 8/01/14 Extraction Change in the baseline of 0.5 dB due to the difference in the measurement setup (sucobox length, coupling resistances….) Detuning of the second impedance peak: probably due to the different position of the BTV

  18. Dummy Septum: impedance measurement 8/01/14 Orbiting Same remarks of last time: in orbit position the amplitude of the first peak is lower than at extraction, while the amplitude of the second peak is constant

  19. Measurement results • 7/11/2013(Serena, Olav, Joseph, Johannes) • Dummy septum with BTV in out position, blade in nominal position, three different positions for the wire/beam tested. • 4/12/2013(Olav, Joseph): • After an oil leakages the septum was open, cleaned and re-assembled. Measurements without BTV, blade in unknown position, only extraction position tested. • 8/1/2014(Serena, Joseph): • After broken fingers substitutions and the insertion of a new support table. BTV in out position, blade in nominal position, two different positions for the wire/beam tested.

  20. Dummy Septum: impedance measurement Comparison between the three measurements For measurement nº 2 difference in the baseline of 20 dB: due to the absence of the x2 10 dB attenuators Mode at 360 MHz: normally is damped by the BTV Detuning: due to the absence of the BTV

  21. Conclusions NB. The aim of the measurements was to confirm the results from simulation and exclude the generation of low frequency (<200 MHz) trapped modes • Wire measurements for the dummy septum with sliding contacts confirmed that the first trapped mode in the dummy septum has a frequency of 270 MHz, that is predicted to be too high to be a source of coupled bunch instability in the PS. • Measurements are in agreement with simulation performed with CST both in time and in frequency domain for the first mode, while the broad peak at 300 MHz is not visible in simulations. • Sliding contacts work well on mode cancelling: we believed that the insertion of ferrite is not necessary. • The presence of the BTV seems to have an impact on the high frequency eigenmode arrangement: it provokes damping and coupling effects. • The dummy septum is currently in the PS tunnel and installation is starting in the next weeks.

More Related