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XALOC (BL13): MX beamline in ALBA OH OH EH EH PRE-EH PRE-EH PREP. LAB PREP. LAB MEETING ROOM MEETING ROOM CR DEN DEN RACKS RACKS EXP. HALL EXP. HALL mono mono VFM VFM HFM HFM nstallation utches Nov 2008 ptics Feb 2009 nd-station Jul 2009 n-vacuum und. Dec 2009 irst experiments May 2010

XALOC (BL13): MX beamline in ALBA

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XALOC (BL13): MX beamline in ALBA. MEETING ROOM. OH. PRE-EH. EH. PREP. LAB. HFM. VFM. mono. RACKS. DEN. CR. EXP. HALL. Installation HutchesNov 2008 OpticsFeb 2009 End-station Jul 2009 In-vacuum und.Dec 2009 First experimentsMay 2010. XALOC (BL13): MX beamline in ALBA. - PowerPoint PPT Presentation

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Page 1: XALOC (BL13): MX beamline in ALBA

XALOC (BL13): MX beamline in ALBA

OHOH

EHEHPRE-EHPRE-EH

PREP. LABPREP. LAB

MEETING ROOMMEETING ROOM

CR

DENDEN RACKSRACKS

EXP. HALLEXP. HALL

monomonoVFMVFMHFMHFM

InstallationHutches Nov 2008Optics Feb 2009End-station Jul 2009In-vacuum und. Dec 2009First experiments May 2010

Page 2: XALOC (BL13): MX beamline in ALBA

XALOC (BL13): MX beamline in ALBA

Control• Control of the beamline based in TANGO/Python• Generic client is needed (SPEC or Matlab Middle Layer)• ...but alternative to SPEC is being considered (SPOCK)

• Plans to use MxCuBe for experiment control (from day 1)• Plans to use EDNA to pipeline data processing (from day 1)• Plans to use IsPyB for sample management (from day 1?)

Axes• Single, horizontal axis being considered as a default diffractometer• Plans to insert mini-kappa when required• Colisions are a major concern

End-station• One table support diffractometer

and beam conditioning elements• One table supports only the detector• Condit. elements are stacked in

different vacuum vessels• Sample mounting robot considered