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Beamline 8.3.1. PRT organization Funding Hardware Safety management Control system Scientific productivity. Beamline 8.3.1. PRT organization Funding Hardware Safety management Control system Scientific productivity. Beam Time Allocation. 25%. 25%. UC Berkeley. 2%. Plexxikon. 8%.
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Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Beam Time Allocation 25% 25% UC Berkeley 2% Plexxikon 8% General User Program 5% 25% 10%
Staff PRT Member Labs PRT Contractees Tom Alber Principal Investigator James Holton Beamline Director George Meigs Senior Research Associate Jane Tanamachi Administrator
Staff Group photo?
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
X-ray optics Superbend Scatter guard pinhole Plane Parabolic mirror Torroidal mirror ADSC Quantum 210 divergence slits Si(111) monochromator Protein Crystal • 2:1 demagnification cancels spherical aberrations • comparable flux to a wiggler with < 1% of the heat
ADSC Quantum 210 X-ray optics Superbend Scatter guard pinhole Plane Parabolic mirror Torroidal mirror divergence slits Si(111) monochromator Protein Crystal • 2:1 demagnification cancels spherical aberrations • comparable flux to a wiggler with < 1% of the heat
Zero-parallax optics Styrofoam™ backlight backstop prism pinhole microscope
Zero-parallax optics Styrofoam™ backlight backstop prism pinhole microscope
Background scattering at 8.3.1 Se edge with detector at 100 mm Photons/s/pixel 7.5 3.8 2.5 1.9 1.5 1.2 1.1 Resolution (Ǻ)
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Safety Management • Hardware safety systems • Training • Safety through simplicity • Failsafe envelope • Examples: • Liquid nitrogen – better tools • Automatic retraction – eliminate confusion • Automatic backup – eliminate distraction
Safety Envelope Radiation Safety System (RSS) Personnel Protection System (PSS) Equipment Protection System (EPS) GERT Training 8.3.1 Training experiment
Safety Envelope Radiation Safety System (RSS) Personnel Protection System (PSS) Equipment Protection System (EPS) GERT Training 8.3.1 Training experiment
Safety Envelope “There is no safety system that can stop a determined user with a hacksaw” -Anonymous Solution: Create tools that enhance productivity within the safety envelope
ADSC Quantum 210 Example 2: Automatic detector retraction
ADSC Quantum 210 Detector retraction
ADSC Quantum 210 Detector retraction
Automatic detector retraction • Detector motors are disabled with hutch door open (pinch hazard) • Sample is difficult to access with detector in data collection position • Common mistake: • forget to retract detector before opening door • Result: confusion • Solution: • Door will not open with detector forward • Detector automatically retracts on door open attempt
1.8 1.8 1.6 1.6 Distraction Distraction Condition Condition 1.4 1.4 Median time to lift foot Median time to lift foot off accelerator (secs.) off accelerator (secs.) 1.2 1.2 No No - - Distraction Distraction Condition Condition 1.0 1.0 0.8 0.8 2 2 4 4 6 6 8 8 Distance from the Distance from the lead vehicle (secs.) lead vehicle (secs.) Distraction is unsafe! Drivers following a car that suddenly brakes take longer to respond to that event when they are distracted by trying to solve a logic problem. This is especially true if the two vehicles start out close together--when it is critical that the driver in the following vehicle make a rapid response to avoid a rear-end collision.
Safety Summary • Encourage safe practices by making them the best way to get results • Measures are in addition to existing ALS safety envelope • Better science and better safety go hand in hand
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity
Software BLU-ICE 3.0 control system Elves integrated with BLU-ICE ALS-wide beamline health monitor
SSRL DCS 3.0 DCS server DHS DHS
SSRL DCS 3.0 at the ALS beamline 8.3.1 DCS server LabView DHS Wago DHS PMAC1 DHS PMAC2 DHS detector DHS Energy Divergence steering Foils plungers lights Detector Collimator beamstop Spindle Goniometer shutter ADSC Q210
SSRL DCS 3.0 at the ALS beamline 8.3.1 DCS server LabView DHS Wago DHS PMAC1 DHS PMAC2 DHS detector DHS Energy Divergence steering Foils plungers lights Detector Collimator beamstop Spindle Goniometer shutter ADSC Q210
SSRL DCS 3.0 at the ALS beamline 8.3.1 DCS server LabView DHS Wago DHS PMAC1 DHS PMAC2 DHS detector DHS Energy Divergence steering Foils plungers lights Detector Collimator beamstop Spindle Goniometer shutter ADSC Q210
Elves structure solution data collection Integration of Elves with BLU-ICE index most recent image Wedger Elves run information mosflm autoindex strategy
Elves structure solution data collection Integration of Elves with BLU-ICE process run information pick un-busy cluster node mosflm scala solve ARP/wARP
Beamline 8.3.1 PRT organization Funding Hardware Safety management Control system Scientific productivity