AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need...
Transcript of AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need...
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AVANCE Wiring
AVANCE 2 Bay ConsoleUser Manual
BRUKER
Version
005![Page 2: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/2.jpg)
The information in this manual may be altered without notice.
BRUKER accepts no responsibility for actions taken as a resultof use of this manual. BRUKER accepts no liability for any mis-takes contained in the manual, leading to coincidental damage,whether during installation or operation of the instrument. Un-authorised reproduction of manual contents, without writtenpermission from the publishers, or translation into another lan-guage, either in full or in part, is forbidden.
This manual was written by
Francis Durrheimer
Desktop Published by
Stephane Kreiss
© September 30, 1997: Bruker Analytik GmbH
Rheinstetten, Germany
P/N: Z31228DWG-Nr: 899005
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Contents
Contents .............................................................. iii
1 Safety Considerations ............................................ 51.1 CE Safety Information ......................................................... 51.2 Power Requirements ........................................................... 51.3 Important Safety Considerations .......................................... 61.4 Switching the Console ON/OFF ........................................... 71.5 Location of the Console Type Shield .................................... 71.6 Bruker Contact .................................................................. 10
2 Declaration of Conformity .....................................11
3 Electrical Power Requirements ............................ 133.1 Introduction ....................................................................... 13
CP MAS .........................................................................143.2 Voltage stabilisers ............................................................. 143.3 UPS .................................................................................. 15
4 Console Configuration ......................................... 17
5 Internal Wiring ...................................................... 21
6 Main Power Wiring................................................ 37
Figures ................................................................ 41
Tables .................................................................. 43
User Manual Version 005 BRUKER iii
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Contents
iv BRUKER User Manual Version 005
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1Safety Considerations 1
CE Safety Information 1.1
The Spectrometers that are referred to in the Declaration’s of Conformity consistof the following components:
Two Bay Console (refer to figure 4.1 for inside components)
HPPR (preamplifier)
BSMS Keyboard
Shim System and Probehead
These Declaration’s of Conformity do not refer to the following components:
Magnet
NMR Station (Silicon Graphics) with their peripherals.
If present: Temperature Unit (when in it’s own case)
GREAT Unit (when in it’s own case)
MAS Unit
Sample Changer
Power Requirements 1.2
The console can be used with a single phase or triple phase mains supply.
Please refer to the Site Planning Manual for further information.
Details of the wiring for the mains supply can be found in figures 4.2 and 6.1 ofthis manual.
Ò THE CONNECTION OF THE TWO BAY CONSOLE TO THE MAINS POWERSUPPLY MUST BE CARRIED OUT BY SPECIALLY TRAINED TECHNI-CIANS!!!
User Manual Version 005 BRUKER 5 (45)
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Safety Considerations
Important Safety Considerations 1.3
Ò ONLY TRAINED PERSONNEL SHOULD POWER AND OPERATE THE IN-STRUMENT!!!
Standard Operation
For standard operation of the console, the console doors and the rear panel mustbe closed to prevent Electromagnetic Interference.
Removing the Rear Panel
To remove the rear panel, loosen the two quick-release screws.
Disconnect the cable to the fan (inside).
Ò Caution: Beware - the fan in the rear panel is still running!!!
Ò Caution: Hold onto the rear panel tightly to prevent it from falling over, or onyour feet!!!
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Switching the Console ON/OFF
Switching the Console ON/OFF 1.4
Figure 1.1. Location of the ON/OFF Switch for the Console
Location of the Console Type Shield 1.5
The shield showing the console type, is located inside the console on the top rightfront corner as you look into the console with the doors open (see the figure be-low).
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User Manual Version 005 BRUKER 7 (45)
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Safety Considerations
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Location of the Console Type Shield
Figure 1.3. Location of the Fuses in the Console
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User Manual Version 005 BRUKER 9 (45)
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Safety Considerations
Bruker Contact 1.6
Ò IF YOU SHOULD EXPERIENCE ANY PROBLEMS WITH THE CONSOLE, YOUMUST CALL YOUR NEAREST BRUKER SERVICE REPRESENTIVE. DO NOTTRY TO FIX THE PROBLEM YOURSELF!!!
10 (45) BRUKER User Manual Version 005
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User Manual Version 005 BRUKER 11 (45)
2Declaration of Conformity 2
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12 (45) BRUKER User Manual Version 005
Declaration of Conformity
DECLARATION OF CONFORMITY
The undermentioned product
conforms to the main requirementsset by the commission for the
Harmonization of Regulations of the EU Member Stateswith regards to electromagnetic compatibility
(EMI 89/336/EWG) and safety (Low Voltage ElectricalEquipment: 72/23/EWG) regulations.
For the assessment the following norms were applied:
EMI: EN 55 011; EN 50 082-1
Safety: EN 61 010-1
Test report UNI KA Documentation: Docu Standard:
Manufacturer’s Name: Bruker Elektronik D-76287 Rheinstetten SADIS F-67166 Wissembourg SAG CH-8117 Fällanden
Declaration approved by:
Dr. Tonio Gianotti Victor Ringeisen Werner Schittenhelm Head of Development Technical Manager Direction
Z350819445 & 9419
AVANCE
NMR Spectrometer AVANCE 2 Bay ConsoleH05130 & H04129
September 1, 1997
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3Electrical Power Requirements 3
Introduction 3.1
The power supply for the 750 MHz system is controlled exclusively by the BMPC(Bruker Magnet Pump Control) unit. This unit is described separately in the manu-al entitled “Introduction to site planning for a 750MHz system“.
Table 3.1 lists the power requirements and power consumption of variousAVANCE systems The power consumption quoted, includes the NMR station andgraphics monitor and was measured using 2 amplifiers operating at maximumoutput in cw mode while using the printer plotter. This represents effectively themaximum power consumption possible for a standard AVANCE system. For sys-tems fitted with additional amplifiers allow 300W for each additional amplifier.
A fuse or circuit breaker, 16A slow-blow must be installed on the mains supply(230V/50/60Hz single phase).
When planning the electrical power requirements of your site make provision forextra equipment which you may install e.g. Personal Computers, work stations airconditioning systems, etc.
.
Table 3.1. Power Requirements of Basic System (2 Channels)
System and Amplifiers
Mains SupplyPower
Consumption (kW)
No. of Spare Electrical Outlets
Length of Mains Cable
Avance 2 baywith SE451BLARH100 + BLAX300
230V 50/60 Hz / 16 A single phase or 230V/400V 50/60 Hz / 10 A triple phase
2.6 2 5,5m
Avance 2 baywith solide acc.BLAX1000 + BLAH1000
230V 50/60 / 16A triple phase 5,0 2 5,5 m
Avance 2 bayBLAXH50/100
230V 50/60 Hz / 16 A single phase
2.2 2 5.5 m
Imaging Cabinet 230 V / 50/60 Hz / 16 A single phase Power from AVANCE supply
2.1
User Manual Version 005 BRUKER 13 (45)
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Electrical Power Requirements
Each AVANCE cabinet comes supplied with four electrical outlets (230V/10A)which can be used to power standard ancillary equipment. Two outlets are de-signed for the work table (i.e NMR Station) and (optional) accessory cabinet. Theother two outlets are then free. Table 3.2 lists the standard equipment and corre-sponding power source.
The NMR Station and accessory cabinet units should be powered directly fromthe AVANCE cabinet as this minimises grounding problems which might other-wise lead to artifacts. “Optional “means that the unit may be powered either fromthe AVANCE cabinet or from a separate supply.Table 3.3 lists the power require-ments of other equipment which, because of their large power consumption, re-quire power sources separate to that of the AVANCE cabinet.
CP MAS 3.1.1
The power requirements of this unit will depend on the amplifiers that areused.The control unit itself will not use more than 100W.
Voltage stabilisers 3.2
If line voltage fluctuations exceed -10% to +5% a voltage stabiliser must be used.Even if the fluctuations are well within these limits, the purchase of a line condi-tioner may prove to be a good investment. The lifetime of the various electricalcomponents in the spectrometer will be lengthened when the supply is stabilised.When deciding on a stabiliser you should take note of the following:
1. Power Requirement: The stabiliser must be capable of delivering the totalpower requirements of the various units you wish to protect. A surplus capacityof at least 10% is recommended.
2. Remember to take consideration of future equipment that you may decide toinstall.
Table 3.2. Console Powered Units
Unit Power Source
NMR Station/Graphics Monitor AVANCE Cabinet
Micro Imaging Cabinet AVANCE Cabinet
Printer Plotter Optional
Automatic Sample Changer Optional
Table 3.3. Units That Require Separate Power Units
Unit Mains SupplyMaximum
Power Consumption
BCU 05 230V / 50/60 Hz / 16 A single phase 0.45 KW
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UPS
3. The stabiliser must of course be compatible with the input voltage, number ofphases and A.C. frequency. Typically the stabilisers can cope with input fluctu-ations of 20%.
4. Output: The NMR units described in this manual normally use 230V/50-60Hz/single phase with the exception of the High Power Cabinet which uses 400V/50-60Hz/triple phase.
5. The regulation accuracy of the output need be no greater than 1% for singlephase and 2% for three phase.
6. Single phase stabilisers use saturated transformers to regulate the voltage andshould have fast response times, typically 10-20 msec. Three phase stabilisershowever use motors and have slower response times.A regulation speed of15V/s is usually sufficient to overcome mains fluctuations in most countries.
7. Other considerations are lifetime, size, noise output and maintenance require-ments.
Ò Contact your local Bruker/Spectrospin office for advice on a voltage stabi-liser suited to your particular system.
If ordering a stabiliser you should specify:
Input voltages.
Number of phases.
Special requirements e.g. output connectors, meters, housing etc.
Details of units and accessories that require protection.
UPS 3.3
Where total interruption of supply occurs frequently, then the customer shouldconsider installing a UPS (Uninterruptable Power Supply) linked to an automaticcut-in generator. This is particularly advisable when long-time experiments are tobe run. While a total loss of power will not damage the spectrometer hardware,NMR data acquired immediately prior to a power cut and which has not beenstored on the computer hard disk may be lost. The difference between UPS sys-tems and a voltage stabiliser is that the UPS system contains a battery back-uppack which will maintain the power supply to the spectrometer for a limited periodafter a total loss of mains supply. Typically the battery back-up will last for up to 10minutes at the rated power. This gives time for a generator to replace the mainspower or for the spectrometer computer to be shut down according to the correctprocedures. Additional battery packs which extend the back-up period to 30 min-utes at the rated power are also available. As well as maintaining supply, the UPSsystem also serves as a line conditioner. Typical output voltages stability are 2%static and dynamic with frequency stability of 1%.
The current requirements of the UPS when recharging batteries (e.g. after a sup-ply failure) is greater the normal. Typically a 7KWA UPS needs 45A during re-charge and the supply must be able to cope with this size of current.
Contact your local Bruker/Spectrospin office for advice on a UPS system suited toyour particular system.
User Manual Version 005 BRUKER 15 (45)
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Electrical Power Requirements
NOTE:
1. The power supply to the spectrometer should be "clean" i.e. it should not sharewith air conditioners etc.
2. All mains earths in the lab should be connected together to avoid differences inearth potential. This will avoid problems when, for example, a P.C. poweredexternally is connected to the spectrometer via a RS232 link.
3. Some customers fit RCCB (residual current circuit breakers) to the spectrome-ter supply.These are designed to switch off the supply if there is an imbalancein the current in the live and neutral lines. If these are fitted to an AVANCE se-ries spectrometer then they should be rated at 100mA. The lower value of30mA commonly used is to sensitive for these spectrometers.
16 (45) BRUKER User Manual Version 005
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4Console Configuration 4
User Manual Version 005 BRUKER 17 (45)
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18 (4
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Console Configuration
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5Internal Wiring 5
User Manual Version 005 BRUKER 21 (45)
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51525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100
RC
U
TC
U T
2
TC
U T
4
TC
U T
5
FC
U1
F2
FC
U2
F2
FC
U3
F2
(Opt
ion)
FC
U4
F2
(Opt
ion)
SA
DC
(S
tand
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HA
DC
(O
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LO
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AS
U1
AS
U2
(Opt
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RO
UT
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AC
B
PS
B
PR
EA
MP
PE
RIP
H H
PP
R
SY
NT
HC
H1
SY
NT
HC
H2
SY
NT
HC
H3
SY
NT
HC
H4
BA
CK
PA
NE
LB
UR
ND
Y1
FDBL +
FDBL -
B1
A1
1 MHz +
1 MHz -
B2
A2
2 MHz +
2 MHz -
B3
A3
4 MHz +
4 MHz -
B4
A4
8 MHz +
8 MHz -
B5
A5
10 MHz +
10 MHz -
B6
A620 MHz +
20 MHz -
B7
A7
40 MHz +
40 MHz -
B8
A8
80 MHz +
80 MHz -
B9
A9100 MHz +
100 MHz -
B10
A10
200 MHz +
200 MHz -
B11
A11
400 MHz +
400 MHz -
B12
A12
800 MHz +
800 MHz -
B13
A13
HZ04042
HZ04042
HZ04042
67491
H436H5570
67491
HZ04042
B1
A1
B2
A2
B3
A3
B4
A4
B5
A5
B6
A6
B7
A7
B8
A8
B9
A9
B10
A10
B11
A11
B12
A12
B13
A13
12C DATA
12C GND
B14
A14
12C CLOCK
12C VCC
B15
A15
B14
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) 5167
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Figure 5.3.
Avance 2 bay R
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iring Diagram
Page 3
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67492O00132 (KEYBD.) + O00304 (Adapter)
67492HZ04161 (KERMIT)
Z2742
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Z12321 + 65562HZ04054
HZ04054 (BVT3300 opt. BVT3000)
HZ04054
HZ04055 (if no solid)HZ04050
HZ04052 BARCODE PRINTER
22887 +67589
HZ04460 + H5167 (Terminotor)
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TRANS.
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PREAMPHPPR
BackPanel
TRANS.
Y
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Figure 5.4.
Avance 2 bay R
X22 H
F W
iring Diagram
Page 1
10 MHz
LOR
TRANSM FH
FC H1
FC H2
RC
U
TC
U T
2
TC
U T
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TC
U T
5
FC
U1
FC
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FC
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(Opt
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FC
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(Opt
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SA
DC
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PE
RIP
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HO
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BU
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1234567891011121314151617181920212223242526272829303132333435363738394041424344454647484950
(Standard) (Option)
T NMR2<0> !LOCK HOLD SMA L. Hold
V NMR2<1> !HOMOSPOIL SMB Homospoil Pulse
SMA 2H LO J3SMA J3
SMA CHA HZ03804SMA CHA
SMA CHB HZ03804SMA CHBSMB DDSCH1 4 F1 IN 1 SMA HZ3395
SMB DDSCH2 8 F3 IN 1 SMA HZ3395
SMA LTI1 SYNCH1 5 F1 OUT 1 SMA HZ04057SMA LTI2 SYNCH2 9 F3 OUT 1 SMA HZ04057
SMA LTI01
SMA LTI02
AI1 I HZ03425
AI2 I HZ03425
Z12256 BNCZ12257 N Type
SMA J2
SMA J4
FSMA J7 TGPF0 (SPF0)
80 MHz SMB 80 MHz 80 MHz SMA HZ3395
X NMR<2> SEL !H/F BNC
Z NMR<2> SEL !X/F BNC
SMA RF RF Signal FT Z12256 BNC
NN NMR2<7> RCP PASWITCH D
N RG214N
TRANSM FX N RG214N
TRANSM F19 N RG214N
BB NMR2<4> !Z0 COMP ENABLE SMB
A BLKTR1 (X) (NMR0<0>) BNC
K BLKTR2 (H high) (NMR0<1>) BNCU BLKTR3 (H low) (NMR0<2>) BNCJJ BLKGDX (NMR0<32>) CLL BLKGDY (NMR0<33>) HNN BLKGDZ (NMR0<34>) M
RI1I HZ03804A01I ASCH1
RI2I HZ03804 A02I ASCH2X INRO1I RO1I/TR1 HZ03805
H HIGHRO2I RO2I/TR2 HZ03805
H LOWRO3I RO3I/TR3 HZ03805
H MEDRO4I RO4I/TR4 HZ03805
LO1/2 HZ03425LO J2
BNCFTUNE SMA Z12256
22 MHz SMA HZ04057IF REF
GRGP
10/4 SMA HZ3805SMA J2 10 MHz
SMB FemaleTRIG1 SMB Scan Trigger
44 F1 IN 2 SMASMB DDSCH3
8 F3 IN 2 SMASMB DDSCH4
5 F1 OUT SMAAI1 II FCH3
5 F1 OUT SMAAI2 II FCH4
1 SMA HZ0380410/5
FTUNE
HZ3395
HZ3395
HZ04057
HZ04057
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TRANS.
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AQX AQR
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Figure 5.5.
Avance 2 bay R
X22 H
F W
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Page 2
SMB
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AS CH3
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PR
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TRIGO SMB TRIGO NN
C SMB !TGPCH1 (SP_F1 In)
A SMB BPCH1 (BLNK_F1)
V !TGPPA1 (!SPPAH) R
FCU5 SMB DDSCH5 V
FCH5AI1 III FCH5
FCH6AI2 III FCH6
FCH7AI1 IV FCH7
FCH8AI2 IV FCH8
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M SMB !TGPCH3 (SP_F3 In)
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BPCH1
!TGPCH2
BPCH2
K SMB BPCH3 (BLNK_F3)
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P SMB BPCH4 (BLNK_F4)
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SMA X IN
R10/3 10MHz
Y BLKTR4 (NMR0<3>) (H Med) BNCCC BLKTR5 (NMR0<4>) BNC
BLKTR6 (NMR0<5>) B
J BLKTR7 (NMR0<6>) F
N BLKTR8 (NMR0<7>) L
X BLKTR9 (NMR4<1>) R
Z BLKTR10 (NMR4<2>) V
BB BLKTR11 (NMR4<3>) Z
DD BLKTR12 (NMR4<4>) DD
FF BLKTR13 (NMR4<5>) JJ
JJ BLKTR14 (NMR4<6>) S
MM BLKTR15 (NMR4<7>) W
ASCH5A01 III RI3 II HZ03804
ASCH6A02 III RI1 III HZ03804
ASCH7A01 IV RI2 III HZ03804
ASCH8A02 IV RI3 III HZ03804
RFTR5R05 I
RFTR6R02 II
RFTR7R01 III
RFTR8R02 III
R05 I / TR5
R01 II / TR6
R01 III / TR7
R02 III / TR8
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R EXT EP
SMA SEL 2H/DECL SEL 2H / ! DEC
R04 I / TR4
HZ03804
HZ03804
HZ03804
HZ03806
HZ04057
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Figure 5.6. Backpanel Burndy1 & Burndy2 (RX22)
Table 5.1. Signal Name Burndy1 & Burndy2 (RX22)
COAX CONNECTIONS DC CONNECTIONS
PIN BURNDY 1 BURNDY 2 PIN BURNDY 1 BURNDY 2
B BLKTR6(NMR0<5>) DDSCH6 D
F BLKTR7(NMR0<6>) DDSCH7 J
L BLKTR8(NMR0<7>) DDSCH8 N
R BLKTR9(NMR4<1>) 10MHz T
V BLKTR10(NMR4<2>) DDSCH5 X
Z BLKTR11(NMR4<3>) BB NMR2<8>(FXA)
DD BLKTR12(NMR4<4>) FF NMR2<9>(FXB)
JJ BLKTR13(NMR4<5>) LL
NN TRIG0 A
C BLKGDX(MNR0<32>) E
H BLKGDY(NMR0<33>) K
M BLKGDZ(NMR0<34>) P
S BLKTR14(NMR4<6>) U
W BLKTR15(NMR4<7>) Y
AA MIXCC(option) CC AGND HPPR
HH DGND HPPR
MM
EE
KK +19V HPPR
X
U
AA
Y
BB
CCEEFF
HHKKLL
MM
V
Z
DD
JJ
NN
B
R
L
F
T
N
J
D
P
K
E
C
H
A
M
S
W X
U
AA
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BB
CC
EEFF
HHKKLL
MM
V
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DD
JJ
NN
B
R
L
F
T
N
J
D
P
K
E
C
H
A
M
S
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Burndy 1 Burndy 2
HF Contact
DC Contact
User Manual Version 005 BRUKER 27 (45)
![Page 28: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/28.jpg)
Internal Wiring
Figure 5.7. Backpanel Periph. HPPR (RX22)
Table 5.2. Signal Name Periph. HPPR (RX22)
PINCOAX
ConnectionsPIN
DCConnections
D NMR2<7> RCP Paswitch A +19V HPPR
E TGPPA2 (SPPAX) B AGND HPPR
F TGPF0 (SPFO) C +19V HPPR
G RGP H AGND HPPR
J TGPPA3(SPPAF19) K
R TGPA1(SPPAH) L -19V HPPR
M DGND HPPR
N +9V HPPR
U +9V X
V GND X
U V
B
R
L
F
T
N
J
D
P
K
E
C
H
AM
S
G
HF Contact
DC Contact
28 (45) BRUKER User Manual Version 005
![Page 29: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/29.jpg)
User M
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Figure 4.3.
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2 bay SE
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Wiring D
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1011121314151617181920212223242526272829303132333435363738394041424344454647484950
AQX
RC
U
TC
U T
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TC
U T
4
TC
U T
5
FC
U1
F2
FC
U2
F2
FC
U3
F2
(Opt
ion)
FC
U4
F2
(Opt
ion)
FC
U5
F2
(Opt
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FA
DC
BC
133
SE
451
SC
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ontr
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RO
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AGND HPPR
-19V HPPR
DGND HPPR
+9V X
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GND X
AGND
+19V RX
-19V RX
NMR2<8> (FXA)
NMR2<9> (FXB)
25,13
24,12
23,11
21,9
8
22,10
20
16,4,18,6
17,5
15,3
A,C
B,H
L
M
U
N
V
KK
CC
HH
BB
FF
CC
AQR
19,7+9V RX
FDBL
1 MHz
2 MHz
4 MHz
8 MHz
10 MHz
20 MHz
40 MHz
80 MHz
REN F1 (GND) REMOTE ENABLE
100 MHz
200 MHz
400 MHz
800 MHz
GND F1
FDBL
1 MHz
2 MHz
4 MHz
8 MHz
10 MHz
20 MHz
40 MHz
80 MHz
REN F3 (GND) REMOTE ENABLE
100 MHz
200 MHz
400 MHz
800 MHz
GND F3
1
23
4
56
7
8
9
10
1112
13
14
15
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
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5
6
30
31
50
34
35
7
8
32
33
49
45
50
13
9
10
16
40
41
42
43
44
19
20
15
39
17
18
H5564
if 2 router Z002814
H436
H5570 with 1 Router
67491
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![Page 30: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/30.jpg)
30 (45)B
RU
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ser Man
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005
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Figure 4.3.
AV
AN
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2 bay SE
451 DC
Wiring D
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age 2
51525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100
AQX
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U
TC
U T
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TC
U T
4
TC
U T
5
FC
U1
F2
FC
U2
F2
FC
U3
F2
(Opt
ion)
FC
U4
F2
(Opt
ion)
FC
U5
F2
(Opt
ion)
BC
133
9 p
ins
cano
nd
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SE
451
SC
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AS
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4
RO
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ER
2
AC
B
PS
B
PR
EA
MP
PE
RIP
HH
PP
R
SY
NT
H1
PT
S 6
20
SY
NT
H2
PT
S 6
20(o
ptio
n)
BA
CK
PA
NE
LB
UR
ND
Y 1
AQR
FDBL
1 MHz
2 MHz
4 MHz
8 MHz
10 MHz
20 MHz
40 MHz
80 MHz
REN F4 (GND) REMOTE ENABLE
100 MHz
200 MHz
400 MHz
800 MHz
GND F4
FDBL
1 MHz
2 MHz
4 MHz
8 MHz
10 MHz
20 MHz
40 MHz
80 MHz
REN F5 (GND) REMOTE ENABLE
100 MHz
200 MHz
400 MHz
800 MHz
GND F5
1
23
4
56
7
8
9
10
1112
13
14
15
42
5
6
30
31
50
34
35
7
8
32
33
49
45
50
13
9
10
16
40
41
42
43
44
19
20
15
39
17
18
H55641
2
3
4
5
6
7
8
9
10
11
12
13
14
151
2
3
4
5
6
7
8
9
2
15
3
16
4
17
1
22
10
5
2
15
3
16
4
17
1
22
10
5
1
2
3
4
5
6
7
8
9
66750
+19 V
-19 V
AGND
AGND
+9 V
AGND
DGND
DRG1
DRG2
DRG3
DRG4
DRG5
DRG6
DGND
HP/!LP1
HP/!LP2
HP/!LP3
GND
AGND
FREQUENCY UNITSE451 3CH
etof
23
451
SE
ec.R
AM
AGR
She
DI
NG
04
IRI
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L:
W
DC
2.02.97
KS
T
.09.95
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T
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U
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24.10
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T
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21.09.94
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H
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U
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![Page 31: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/31.jpg)
User M
anu
al Versio
n 005
BR
UK
ER
31 (45)
POS.
Figure 4.3.
AV
AN
CE
2 bay SE
451 DC
Wiring D
iagram P
age 3
101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150
SC
SI
Ext
ern
Gra
phic
Con
.
Mou
se P
ort
RS
232
RS
485
10-B
ase
T
AU
I
GIO
Key
bd.
Par
alle
l I/O
Mon
itor
19“
Key
boar
d
Mou
se
Lase
r P
rinte
r
TT
Y00
TT
Y0
1-05
/10
TT
Y06
-09/
20
TT
Y0
1-05
/10
TT
Y06
-09/
20
TT
Y0
2
TT
Y03
TT
Y0
4
TT
Y05
TT
Y0
6
TT
Y07
TT
Y0
8
TT
Y09
RS
485-
TT
Y1
0
RS
485-
TT
Y2
0
RX
C
AC
B
CP
U
LCB
BS
MS
Key
bd.
HP
PR
BV
T 3
000
MA
S
B-H
PC
U
4PH
.MO
D
BG
U2
B-A
CS
Opt
ions
BLA
RH
100(
H)
BLA
X30
0(X
)
BLA
X30
0(Y
)
Bac
kpla
neT
erm
inat
or(H
5167
)
BLA
X30
0
BLA
X30
0
Eth
erne
tN
etw
ork
OptionsAmpl.NMR STATION DESK TOP SGI
ET
H
TT
Y01
AQR BSMS
66137
O00741 (Mouse)
HZ03318HZ04112 Plotter or Terminal
H2606 + 65134 + O00594
67492O00132 (KEYBD.) + O00304 (Adapter)
67492HZ04161 (KERMIT)
Z2742
22885 + 65562
Z12321 + 65562HZ04054
HZ04054
HZ04054
HZ04055 (if no solid)
HZ04050HZ04052 BARCODE PRINTER
22887 + 67589
HZ04460 + H5167 (TERMINATOR)
66138 SCSI DRIVE
H2606 + 65134 + O00594
HZ04459HZ04459 + H5167 (Terminator)
AQXAQX RS232/485 Extension UnitCCU
(use with Solid) HZ04053
H5488 (only with solid)
HZ04055 (only if solid)
HZ04459
HZ04458
etof
33
451
SE
ec.R
AM
AGR
She
DI
NG
04
IRI
EC
L:
W
DC
2.02.97
KS
T
.09.95
KS
T
1
3.95U
08
.9428.0FD
fication
24.10
ES
H
Modi
28.09.94
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H
Draw
n
12.03.94
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U
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ing on
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![Page 32: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/32.jpg)
32 (45)B
RU
KE
RU
ser Man
ual V
ersion
005
POS.
Figure 4.3.
AV
AN
CE
2 bay SE
451 HF
Wiring D
iagram P
age 1
Z12256 2H REC
AQX AQR
TC
U T
3
TC
U T
4
TC
U T
5
FC
U1
FC
U2
FC
U3
FC
U4
(Opt
ion)
FC
U5
(op
tion
)
FA
DC
BC
133
SE
451
SC
H C
ontr
ol
4 P
hase
M
OD
. C
ontr
ol.
SM
A’s
BN
C’s
SA
DC
or
HA
DC
FT
LP/4
M
RX
C
AS
U 2
CH
. 1
& 2
2H
LO
C S
WIT
CH
(op
tion
)
SLC
B
SC
B 1
3R
LC
B
LT
X
LR
X
SY
NT
H 1
PT
S 6
20
SY
NT
H 2
PT
S 6
20 (
optio
n)
BLA
RH
100
PE
RIP
HB
UR
ND
Y
HO
US
ING
BU
RN
DY
1
123456789
1011121314151617181920212223242526272829303132333435363738394041424344454647484950
BSMS PREAMPHPPR
T NMR2<0> !LOCK HOLD SMA L. Hold
V NMR2<1> !HOMOSPOIL SMB Homospoil Pulse
SMA 2H LO J3SMA J3
SMA CHA inHZ03805 SMA CHA BB Out
SMA CHB in
SMB
SMB
SMB
SYNCH2 HZ03808F2 (FH) Synth
10 MHz in
F
SPFO F
X NMR2<2> SEL ! H/F
Z BNC
10MHz in
BNC
BB
TRIG0TRIG0
!Z0 COMP ENABLE
NN
SCAN TRIGGER)
SEL 2H/!DECTGPCH1 SMB TGPCH1 (SP_F1 in)
BackPanel
FREQUENCY UNITSE 451
CHA BB
CHB BB
HZ03805 SMA CHB BB Out
SMA CHA inHZ03805 SMA CHA OutSMA CHB in
CHA
CHB HZ03805 SMA CHB Out
RGPa (EPa) SMB EPA_SE 451
HZ04057
HZ04057
SMA CHA in
SMA CHB in
SMA CHA Out BB
SMA CHB Out BB
RGPb (EPb)
L
SMB EPB_SE 451H
SMB EP_HPPR GRGPc (EPc)
F1 IN I (X) BNC
F2 IN I (H) BNC
F3 IN I (Y) BNC
H5628
H5628
H5628
H5628H5628
SMB
SMB
DDSCH1
DDSCH2
DDSCH3
DDSCH4
DDSCH5F1 IN ii BNC
F3 IN ii BNC
HZ03808
HZ03808
HZ03808
F1 OUT I (X) BNC
F2 OUT I (H) BNC
F3 OUT I (Y) BNCSMA J2
10MHz OUT /5 BNC
SYNCH1
SYNCH3
F1 (FX) Synth
F3 (FY) Synth10MHz
10MHz Ext Ref
SMA J2 BNC
Z12257 2H TR N TypeSMA J4
SMA J7
80 out BNC80MHz SMB
NMR2<3> SEL ! X/F
80MHz H5628
10MHz outH5369
SMB
SMBTRIG1
D
NNSMB
SMB female
NMR2<7> !RCP PASWITCH
SMA SEL 2H/DECL
BPCH1
TGPCH2
BPCH2
TGPCH3
BPCH3
TGPCH4
BPCH4TGPCH5
BPCH5
!TGPCH1a (SPF1a CHX)
!OBS CH1 (CHX)
SMB BPCH1 (BLNK_F1)
M
W
S
R
C
A
H
E
M
K
S
P
W
U
D
J
N
B
ZF
VL
!TGPCH2a (SPF2a CHH)
!TGPCH3a (SPF3a CHY)
!OBS CH2 (CHH)
!OBS CH3 (CHY)
SMB TGPCH2 (SP_F2 in)
SMB BPCH2 (BLNK_F2)
SMB BPCH3 (BLNK_F3)
SMB BPCH4 (BLNK_F4)
SMB TGPCH3 (SP_F3 in)
SMB TGPCH4 (SP_F4 in)
SMB BPCH5 (BLNK_F5)
SMB TGPCH5 (SP_F5 in)
HZ03428
HZ03429
HZ03430
}}
}
EE Only with HADC2 & RX22 EP not Connected
RGP ADC1 Only with HADC2C SMB
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04
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EC
L:
WF
DC
2.02.97
KS
T H
.07.96
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T
1
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28.03
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U
Modi
24.10.94
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H
Draw
n
12.04.94
FD
U
r ly1
-No. fo
ing on
/DS
XH
F
Part
Draw
DM
X
![Page 33: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/33.jpg)
User M
anu
al Versio
n 005
BR
UK
ER
33 (45)
POS.
Figure 4.3.
AV
AN
CE
2 bay SE
451 HF
Wiring D
iagram P
age 2AQX AQR
TC
U T
3
TC
U T
4
TC
U T
5
FC
U1
FC
U2
FC
U3
RC
U
FA
DC
BC
133
SE
451
SC
H C
ontr
ol
4 P
hase
M
OD
. C
ontr
ol.
SM
A’s
BN
C’s
FT
LP/4
M
AS
U 2
CH
.1&
2
AS
U 2
CH
.3&
4
RO
UT
ER
1
RO
UT
ER
2
4 P
H. M
OD
. IC
ON
T. I
N
4 P
H. M
OD
. II
CO
NT
. OU
T
SY
NT
H1
PT
S 6
20
SY
NT
H2
PT
S 6
20(O
ptio
n)
BLA
X 3
00
X
BLA
RH
100
1H
BLA
X 3
00
Y
PE
RIP
HB
UR
ND
Y
HO
US
ING
BLA
X Z
51525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100
PREAMPHPPR
V ! TGPPA1 (!SPPAH)
X
F1 OUT
FCH1 (FX)
AMPLFREQUENCY UNITSE 451 3CH
PH1CH1
PH(X) CH2
A
BLKTR1 (X) (NMR0<0>) BNC
73506 + HZ03805 F1 (FX) OUT
HZ03808FCH4
SMA
DD
SMB EXT DWNMR8<5> EXT DW
Z
R
E
J
BNC
BNC
BNC
BNC
BNC
B
H
J
P
R
J
M
H
L
U
W
P
T
J
M
H
L
U
W
P
T
PH2CH1
PH1CH2
PH2CH2
PH1CH3
PH2CH3
! TGPPA2 (!SPPAX)
! TGPPA3 (!SPPAF19)
PH(Y) CH2PH(X) CH1
PH(Y) CH1
PH(X) CH3
PH(Y) CH3
SINCOS
SMB PH1
SMB PH1
SMB PH1
SMB PH2
SMB PH2
SMB PH2
A
K
U
Y
CC
BLKTR2 (H high) (NMR0<1>)
BLKTR3 (H low) (NMR0<2>)
BLKTR4 (H med) (NMR0<3>)
BLKTR5 (Y) (NMR0<4>)RF SIGNAL (FT) Z12256
73506 + HZ03805 F2 (FH) OUT
73506 + HZ03805 F3 (FY) OUT
FCH2 (FH)
FCH3 (FY)
AI1
AI2
AI1
5dB att.
AI2
AO1
AO2
AO1
AO2
HZ03804
HZ03804
HZ03804
HZ03804
HZ03804
RI1
RI2
RI1
RI2
RO1
RO1
RO2
RO3
RO4
RO5
RI3
ASCH2
ASCH1
ASCH3
ASCH4
HZ03805
HZ03805
HZ03806
HZ03805
HZ03805
RO1I/TR1
RO2I/TR2
RO3I/TR3
RO4I/TR4
RO5I/TR5
SMA X in
SMA H high
SMA H low
SMA H med
SMA TUNE OUT
SMB EXT EPNMR8<6> EXT EP
NMR2<0> T!0/F (TUNE !ON/OFF)MM
N
R
Z12256
SMA X in
BNC
HPPR X-BB
HPPR 19F
HPPR 1H
HPPR Y
TUNING
AMPL. X
AMPL. 19F
AMPL. 1H
AMPL. Y
N TYPE X BLAN TYPE X out
N TYPE X QNP
N TYPE 19F
N TYPE 1H
N TYPE Y
T990 (Option)
Z2739
Z2739
Z2739
Z2739
etof
2 3
451
SE
ec.R
AM
AGR
She
DI
NG
04
IRI
EC
L:
W
DC
2.02.97
KS
T
HF
.09.95
KS
T
1
3.95U
19
.9428.0FD
fication
24.10
ES
H
Modi
26.09.94
ES
H
Draw
n
12.04.94
FD
U
r ly2
-No. fo
ing on
/DS
XH
F
Part
Draw
DM
X
![Page 34: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/34.jpg)
34 (45)B
RU
KE
RU
ser Man
ual V
ersion
005
POS.
Figure 4.3.
AV
AN
CE
2 bay SE
451 HF
Wiring D
iagram P
age 3AQX AQR
TC
U T
3
TC
U T
4
TC
U T
5
FC
U1
FC
U2
FC
U’s
RC
U
FA
DC
BC
133
SE
451
SC
H C
ontr
ol
4 P
hase
M
OD
. C
ontr
ol.
RX
CC
ont
rol
BN
C’s
SM
A’s
FT
LP/4
M
AS
U 2
CH
.1&
2
AS
U 2
CH
.3&
4
AS
U’s
(Opt
ion)
RO
UT
ER
1
RO
UT
ER
2
RO
UT
ER
(Opt
ion)
4 P
H. M
OD
. IC
ON
T. I
N
4 P
H. M
OD
. II
CO
NT
. OU
T
SY
NT
H1
PT
S 6
20
SY
NT
H2
PT
S 6
20(O
ptio
n)
PE
RIP
HB
UR
ND
Y
HO
US
ING
BU
RN
DY
1
BU
RN
DY
2
SY
NT
H.
(Opt
ion)
AM
PLI
FIE
R(O
ptio
n)
101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150
PREAMPHPPR
JJ BLKGDX (NMR0<32>)
LL
FREQUENCY UNITSE 451 3CH
10MHz
NN
C
H
M
AI1 III
10/3
RFTR6
ASCH6
BLKGDY (NMR0<33>)
BLKGDZ (NMR0<34>)
MM BLKTR6 (NMR0<5>)
J
N
B
F
L
BLKTR7 (NMR0<6>)
BLKTR8 (NMR0<7>)
X BLKTR9 (NMR4<1>)
Z
BB
R
V
DD
BLKTR10 (NMR4<2>)
BLKTR11 (NMR4<3>)
DD BLKTR12 (NMR4<4>)
FF
JJ
JJ
S
W
BLKTR13 (NMR4<5>)
BLKTR14 (NMR4<6>)
MM BLKTR15 (NMR4<7>)
FCU6 SMB
Z
B
F
DDSCH6
L
FCU7 SMB
FCU8 SMB
R
DDSCH7
DDSCH8
FCH6
FCH7
FCH8
AI2 IIIAI1 IV
AO1 III
AO2 III
AO1 IV
HZ04091
HZ04091
HZ04091
FCU6
FCU7
FCU8
ASCH7
ASCH8
RO2 III
RO1 III
RO2 II
RI3 II
RI1 III
RI2 III
HZ03804
HZ03804
HZ03804
RFTR7RFTR8
H5700
H5700
H5700
RO1 II / TR6
RO1 III / TR7
RO2 III / TR8
BACKPANEL
etof
3 3
451
SE
ec.R
AM
AGR
She
DI
NG
04
IRI
EC
L:
W
DC
2.02.97
KS
T HF
.09.95
KS
T
1
3.95U
19
.9428.0FD
fication
24.10
ES
H
Modi
20.10.94
ES
H
Draw
n
12.04.94
FD
U
r ly3
-No. fo
ing on
/DS
XH
F
Part
Draw
DM
X
![Page 35: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/35.jpg)
User Manual Version 005 BRUKER 35 (45)
Figure 4.3. Backpanel Burndy1 & Burndy2 (SE451)
Table 4.1. Signal Name Burndy1 & Burndy2 (SE451)
COAX CONNECTIONS DC CONNECTIONS
PIN BURNDY 1 BURNDY 2 PIN BURNDY 1 BURNDY 2
B BLKTR6(NMR0<5<) DDSCH6 D
F BLKTR7(NMR0<6>) DDSCH7 J
L BLKTR8(NMR0<7>) DDSCH8 N
R BLKTR9(NMR4<1>) 10MHz T
V BLKTR10(NMR4<2>) X
Z BLKTR11(NMR4<3>) BB NMR2<8> (FXA)
DD BLKTR12(NMR4<4>) FF NMR2<9> (FXB)
JJ BLKTR13(NMR4<5>) LL
NN TRIG0 A
C BLKGDX(MNR0<32>) E
H BLKGDY(NMR0<33>) K
M BLKGDZ(NMR0<34>) P
S BLKTR14(NMR4<6>) U
W BLKTR15(NMR4<7>) Y
AA MIXCC(option) CC AGND HPPR
HH DGND HPPR
MM
EE
KK +19V HPPR
X
U
AA
Y
BB
CCEEFF
HHKKLL
MM
V
Z
DD
JJ
NN
B
R
L
F
T
N
J
D
P
K
E
C
H
A
M
S
W X
U
AA
Y
BB
CC
EEFF
HHKKLL
MM
V
Z
DD
JJ
NN
B
R
L
F
T
N
J
D
P
K
E
C
H
A
M
S
W
Burndy 1 Burndy 2
HF Contact
DC Contact
![Page 36: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/36.jpg)
36 (45) BRUKER User Manual Version 005
Internal Wiring
Figure 4.3. Backpanel Periph. HPPR (SE451)
Table 4.1. Signal Name Periph. HPPR (SE451)
PINCOAX
ConnectionsPIN
DCConnections
D NMR2<7> RCP Paswitch A +19V HPPR
E TGPPA2 (SPPAX) B AGND HPPR
F SPFO C +19V HPPR
G RGPc (EPc) H AGND HPPR
J TGPPA3(SPPAF19) K
R TGPPA1 (SPPAH) L -19V HPPR
M DGND HPPR
N +9V HPPR
U +9V X
V GND X
U V
B
R
L
F
T
N
J
D
P
K
E
C
H
AM
S
G
HF Contact
DC Contact
![Page 37: AVANCE DX TWOBAY WIRING - Chemistry · 1997/9/30 · 5. The regulation accuracy of the output need be no greater than 1% for single phase and 2% for three phase. 6. Single phase](https://reader036.fdocuments.net/reader036/viewer/2022071216/604751f81d4dee64623a38ef/html5/thumbnails/37.jpg)
6Main Power Wiring 6
User Manual Version 005 BRUKER 37 (45)
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User Manual Version 005 BRUKER 39 (45)
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Main Power Wiring
40 (45) BRUKER User Manual Version 005
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Figures
1 Safety Considerations 5Figure 1.1. Location of the ON/OFF Switch for the Console .....................7Figure 1.2. Location of Console Type Shield ............................................8Figure 1.3. Location of the Fuses in the Console .....................................9
2 Declaration of Conformity 11
3 Electrical Power Requirements 13
4 Console Configuration 17Figure 4.1. Avance 2 bay console Front View ........................................18Figure 4.2. Avance 2 bay console Rear View .........................................19
5 Internal Wiring 21Figure 5.1. Avance 2 bay RX22 DC Wiring Diagram Page 1 ..................22Figure 5.2. Avance 2 bay RX22 DC Wiring Diagram Page 2 ..................23Figure 5.3. Avance 2 bay RX22 DC Wiring Diagram Page 3 ..................24Figure 5.4. Avance 2 bay RX22 HF Wiring Diagram Page 1 ...................25Figure 5.5. Avance 2 bay RX22 HF Wiring Diagram Page 2 ...................26Figure 5.6. Backpanel Burndy1 & Burndy2 (RX22) ................................27Figure 5.7. Backpanel Periph. HPPR (RX22) .........................................28Figure 4.3. AVANCE 2 bay SE451 DC Wiring Diagram Page 1 ...............29Figure 4.3. AVANCE 2 bay SE451 DC Wiring Diagram Page 2 ...............30Figure 4.3. AVANCE 2 bay SE451 DC Wiring Diagram Page 3 ...............31Figure 4.3. AVANCE 2 bay SE451 HF Wiring Diagram Page 1 ...............32Figure 4.3. AVANCE 2 bay SE451 HF Wiring Diagram Page 2 ...............33Figure 4.3. AVANCE 2 bay SE451 HF Wiring Diagram Page 3 ...............34Figure 4.3. Backpanel Burndy1 & Burndy2 (SE451) ...............................35Figure 4.3. Backpanel Periph. HPPR (SE451) .......................................36
6 Main Power Wiring 37Figure 6.1. Avance 2 bay console Main Power Wiring ............................38Figure 6.2. Avance 2 bay console Power Distribution 230V ...................39
User Manual Version 005 BRUKER 41 (45)
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Figures
42 (45) BRUKER User Manual Version 005
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Tables
1 Safety Considerations 5
2 Declaration of Conformity 11
3 Electrical Power Requirements 13Table 3.1. Power Requirements of Basic System (2 Channels) ....... 13Table 3.2. Console Powered Units .................................................. 14Table 3.3. Units That Require Separate Power Units ...................... 14
4 Console Configuration 17
5 Internal Wiring 21Table 5.1. Signal Name Burndy1 & Burndy2 (RX22) ...................... 27Table 5.2. Signal Name Periph. HPPR (RX22) ................................ 28Table 4.1. Signal Name Burndy1 & Burndy2 (SE451) .................... 35Table 4.1. Signal Name Periph. HPPR (SE451) .............................. 36
6 Main Power Wiring 37
User Manual Version 005 BRUKER 43 (45)
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Tables
44 (45) BRUKER User Manual Version 005
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User Manual Version 005 BRUKER 45 (45)
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