69
Cooling Water Requirements
•
The line power supply must conform with local safety regulations and be
checked by a qualified electrician before you connect the instrument to line
power.
•
The line power supply should be free of line transients in excess of 50 V peak.
If the electrical supply voltage produces large AC line voltage fluctuations, a
qualified electrician should install a voltage regulator between the electrical
outlet and the instrument.
•
The Avio 500 instrument is supplied with a 2.5 m (8 ft.) line power cord that
supplies both the spectrometer and the RF Generator. The line power supply
point must be within 2.5 meters of the rear of the spectrometer.
•
The line should be rated at 15 amps. The Avio 500 has a maximum
power consumption of 2800 VA.
•
Connect the spectrometer, computer, printer, and any accessories to the same
phase of the line power supply and the same protective earth.
Computer and Printer
Refer to the guides supplied with your computer and printer for electrical
requirements. The computer and printer must share a common earth ground with
the Avio 500.
PolyScience Chiller
The Avio 500 ICP-OES requires a recirculating cooling system (chiller) to
dissipate heat from the oscillator. The requirements for the chiller are:
•
Cooling Capacity at 20 °C: 2850 watts
•
Temperature Stability:
0.5 °C
Note
PerkinElmer instruments will normally operate within ± 10% of the specified voltage
and within
1% of the specified frequency, unless otherwise noted. If the power line is
unstable, fluctuates in frequency or is subject to surges, additional control of the
incoming power by the user may be required.
The Avio 500 must
not
have a Ground Fault Circuit Interruptor (GFCI) protected outlet.
The instrument will trip the interruptor if this type of outlet protection is used.
Содержание AVIO 500
Страница 1: ...AVIO 500 Customer Hardware and Service Guide ICP OPTICAL EMISSION ...
Страница 2: ......
Страница 3: ...Avio 500 Customer Hardware and Service Guide ...
Страница 12: ...Contents 10 ...
Страница 30: ...28 ...
Страница 31: ...C h a p t e r 1 ...
Страница 32: ......
Страница 33: ...Safety Practices 1 ...
Страница 58: ...56 Safety Practices ...
Страница 59: ...C h a p t e r 2 ...
Страница 60: ......
Страница 76: ...74 Preparing Your Laboratory ...
Страница 77: ...C h a p t e r 3 ...
Страница 78: ......
Страница 79: ...System Description 3 ...
Страница 94: ...92 System Description Figure 3 7 GemCone nebulizer and end cap N0680504 also shown in cross sectional view ...
Страница 115: ...C h a p t e r 4 ...
Страница 116: ......
Страница 137: ...135 Installing the Quick Change Adjustable Torch Module 1 2 10 8 9 3 4 7 6 5 ...
Страница 152: ...150 Installation Figure 4 22 Scott Spray Chamber Clip Assembly in Place ...
Страница 195: ...193 Shipping Lists 09290798 USB Cable Table 4 6 Spares Available Continued ...
Страница 196: ...194 Installation ...
Страница 197: ...C h a p t e r 5 ...
Страница 198: ......
Страница 209: ...207 Quick Change Adjustable Torch Module Figure 5 1 Quartz Torch Item Description 1 Plasma Induction Plates 2 Torch 2 1 ...
Страница 217: ...215 Quick Change Adjustable Torch Module 1 2 10 8 9 3 4 7 6 5 ...
Страница 316: ...314 Maintenance ...
Страница 317: ...C h a p t e r 6 ...
Страница 318: ......
Страница 339: ...337 RF Generator Sample Introduction System Troubleshooting Form Figure 6 2 Normal plasma at 3mm position ...
Страница 340: ...338 Troubleshooting Figure 6 3 Rounded Plasma due to sample or air getting around the outside typically subtle air leak ...
Страница 342: ...340 Troubleshooting Figure 6 5 Injector too far forward ...
Страница 343: ...341 RF Generator Sample Introduction System Troubleshooting Form Figure 6 6 No Aux Gas torch may be glowing ...
Страница 344: ...342 Troubleshooting Figure 6 7 Air leak or spray chamber temperature too high ...
Страница 345: ...343 RF Generator Sample Introduction System Troubleshooting Form Figure 6 8 Thin plasma due to leak in plasma gas line ...
Страница 346: ...344 Troubleshooting ...
Страница 354: ......