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BioSpec 70/30 USR V2
Bruker BioSpec 70/30 USR V2 Manuals
Manuals and User Guides for Bruker BioSpec 70/30 USR V2. We have
1
Bruker BioSpec 70/30 USR V2 manual available for free PDF download: Manual
Bruker BioSpec 70/30 USR V2 Manual (104 pages)
Site Planning Information with Magnet
Brand:
Bruker
| Category:
Industrial Equipment
| Size: 6 MB
Table of Contents
Table of Contents
3
1 Introduction
7
About this Manual
7
Overview
7
Additional Documents
7
Responsibilities
8
Validity
8
2 Safety
9
Safety During the Installation Phase
9
Instructions to Plan a Safe and Compliant MR Site
12
Magnetic Field
12
1A Controlled Access Area
12
1B Exposed Area
12
Figure 2.1: Hazardous Zones
12
Exhaust System
14
Cryogenic Fluids and Gas
14
Oxygen Supervision
15
Emergency Plan
15
Fire Prevention
16
Biological Safety
16
Seismic Safety
16
Safety at Work
16
USER WORK SAFETY DS - Isoflurane - Rev0
17
Infrastructure Supervision and Messaging
19
3 Standards
21
Environmental Conditions
21
National Standards Operating MR Instruments
22
4 Installation Schedule
23
Installation Planning Overview
23
Figure 4.1: Installation Planning Overview
23
Planning Aids
25
Installation Schedule
25
Prerequisites for Delivery
25
Giving Notice of Readiness for Shipment
25
Prerequisites for Operation
26
5 Laboratory Infrastructure and Interactions
27
Operational Workflow
27
Structures
27
Interactions
27
Magnetic Interactions
28
Ferromagnetic Mass
28
Mobile Sources of Magnetic Disturbance
29
Figure 5.1: Mobile Sources of Magnetic Interference
29
Effect of MR System to Other Equipment
30
Remote Magnetic Effects
30
Electromagnetic Interactions
30
Table 5.1: Limit Values of Magnetic Disturbances
30
Table 5.2: Interference Fields of Equipment
30
DC and LF Interference
31
Table 5.3: Disturbance in the Magnet Room
31
Table 5.4: Disturbance in the Technical Room
31
RF Interference
32
Table 5.5: Disturbance in the Vicinity
32
Table 5.6: Frequency Ranges for Commonly Used NMR Nuclei
32
Figure 5.2: Installation in an RF Shielded Cabin (Faraday Cage)
33
Table 5.7: Maximum Disturbance Level
33
Table 5.8: Biospec RF Shielding Measure
33
Mechanical Interactions
34
Ground and Building Vibrations
34
Figure 5.3: Installation with an Autopac™ RF Shield
34
Figure 5.4: Limit Values of the Floor Vibrations
35
Table 5.9: Max. Acceptable Accelerations Within Different Frequency Ranges
35
Impact Noise
36
Acoustic
36
6 Planning Details
37
Measurements and Room Dimensions
37
Overview
37
Figure 6.1: Diagram of the Manufacturer's Room Constraints
37
Operating Area
38
Magnet Area
38
Figure 6.2: Magnet Area and Dimensions. no Fire-Prevention Facilities Requiring Regular Maintenance Work May be Incorporated in the Areas Shaded Red above the Magnet
38
Table 6.1: Minimum Space Required for Magnets 70/30 USR V2
39
Figure 6.3: Stray Field of Biospec® Based on Magnet 70/30 USR V2
40
Technical Area
41
Figure 6.4: Minimum Space Required in the Technical Area
41
RF Shielded Room
42
Table 6.2: Measurements of Objects in the Technical Area
42
Table 6.3: Measurements of the MRI Cryoprobe™ Units in the Technical Area
42
Filter Plates
43
Table 6.4: Use of Filter Plates
44
Figure 6.5: Assembly of Filter Plates with an Installation Frame (Right) and Directly Screwed to the Cage (Left)
45
Figure 6.6: Dimension Diagram of Filter Plates
46
Electronic Filter Plate
47
Magnet Filter Plate
47
Filter Plate for Anesthetic Gas Exhaust
47
Table 6.5: Measurements of the Individual Filter Plates
47
Filter Plate for Magnet Exhaust System
48
MRI Cryoprobe™ Filter Plate
48
In-Vivo Filter Plate
48
Filter Plate for Faraday Cage Ventilation
48
Exhaust System
49
Design Criteria of the Exhaust System
50
Figure 6.7: Example of an Exhaust Vent System
50
Figure 6.8: Drawing of the Magnet Exhaust Outlet (1) and the Exhaust System (2). Note that (1) Is Supplied by Bruker and (2) Is to be Installed by the System Owner
51
Calculating the Exhaust System
52
Table 6.6: Effects of Force
52
Table 6.7: Pressure Drop in USR Magnet Cable Elements: 47/40, 70/30, 94/20, 117/16; and Mag
52
Figure 6.9: Schematic of the Exhaust Vent
53
Floor Construction
54
Footprint and Weights
54
Table 6.8: Footprint and Weights
54
Magnet Foundation
55
Figure 6.10: Construction Example for the Magnet Foundation, if the Original Floor Construction at the Magnet Installation Site Is Based on a Floating Floor
55
Figure 6.11: Schematic Drawing of the Footprint of the Magnet: (1) Position and Size of the Vibra
56
Electrostatic Discharge
57
Seismic Safety Standards
57
Table 6.9: Maximum Underground Acceleration with Seismic Protection
57
Table 6.10: Floor Construction and Anchorage for Seismic Safety
57
Figure 6.12: Seismic Protection System in a RF Shielding Box with "Faraday Cage Connection Kit
58
Electrical Installations
59
Overview
59
Mains Supply
59
Figure 6.13: Seismic Protection System at the Magnet
59
Figure 6.14: TN-S Connection Diagram of the MR Instrument (60Hz)
60
Figure 6.15: TN-S Connection Diagram of the MR Instrument (50 Hz)
61
Table 6.11: Connection Values in the Technical Room
61
Equipotential Bonding
62
Electrical Connections in the Magnet Room
62
Electrical Connections in the Operating Room
62
Table 6.12: Equipotential Bonding Specifications
62
Table 6.13: AC Sockets in the Operating Room
62
Line Power Distributor
63
Figure 6.16: Schematic Diagram of the Line Power Distributor
63
Supervision Signals
64
Cable Lengths and Routing
64
Figure 6.17: Overview of the External Line Set
65
Table 6.14: Available Cable Lengths of the Electrical Connections
65
Figure 6.18: Cable Routing between Technical Room and Magnet Room
66
Figure 6.19: Construction of Cable Carrying System
67
Line Lengths for the MRI Cryoprobe
68
Lighting System
69
Ventilation and Air Conditioning
69
Overview
69
Table 6.15: Overview of the Types of Cooling System
69
Air Conditioning Systems
70
Table 6.16: Cooling Performance of the Air-Conditioning System in the Magnet Room
70
Table 6.17: Performance of the Space Cooling in the Technical Room
70
Anesthetic Gas Extraction
71
Figure 6.20: Anesthetic Gas Extraction
71
Table 6.18: Additional Requirements for the Space Cooling in the Technical Room
71
Cold Water Supply
72
Table 6.19: Requirements for Cold Water Supply Including Safety Margin. Compare Diagram Next Page
72
Figure 6.21: Relation between the Primary Water Circuit Inlet Temperature and the Required Pri- Mary Flow for the Maximum Cooling Requirement of 12 Kw (Standard Configuration Without Cryoprobe Option)
73
Table 6.20: Specifications for the Water Quality
73
Connections and Installation
74
Figure 6.22: Water Supply Installation in the Technical Room (Bypass Potentially Required Not Shown)
74
Cryogenic Fluids
76
Helium Gas and Compressed Air Supply
76
MRI Cryoprobe
76
Table 6.21: Filling Quantity Cryogenic Fluid
76
Laboratory Furnishings
78
Laboratory Furniture
78
7 Delivery and Transport
79
Maximum Transport Time
80
Packaging
80
Figure 7.1: Shock Indicators
80
Magnet Transport
81
Transport Method and Limitations
81
Figure 7.2: Transport Pallets for Air Freight
81
Figure 7.3: Transportation Using Heavy Duty Rollers
82
Table 7.1: Transport Limitations
82
Transporting Electronic Cabinets
83
Moving into the Building
83
Moving under Special Circumstances
86
8 Moving or Dismantling the MR Instrument
87
9 Checklist in Preparation of the Installation
89
Customer Information
89
Magnet Installation
90
Laboratory Rooms Features
91
Declaration
93
Figures Figures
95
Index
99
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