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FluoroMax-3 v. 3.1 (6 Mar 2006)
Glossary
13-9
the same energy as the incident light. The scattered radiation’s inten-
sity is inversely proportional to the 4
th
power of the wavelength of
incident radiation.
Real Time Control
The FluorEssence™ software application that gives the user full con-
trol of the system in real-time, in order to optimize the system setup
for a particular measurement. Use
Real Time Control
to find the op-
timal slit widths for sample measurements, or to check that the exci-
tation beam is striking the sample properly.
Reference detector
The detector used to monitor the output of the xenon lamp. A silicon
photodiode with enhanced-UV response is used for the FluoroMax
®
-
3, and is connected to input channel
R
. Use
S/R
to correct for the
xenon-lamp response during an excitation scan.
Resolution
The ability of a spectrometer or spectrograph to separate two closely
spaced peaks. Resolution can be improved by decreasing the number
of pixels binned together or the slit widths in the instrument.
Right-angle detection
Collection of fluorescence at 90° to the incident radiation. Right-
angle detection is typically selected for dilute and clear solutions in
order to minimize the scatter component in the detected emission.
Sample changer (auto-
mated)
An automated accessory that automatically positions up to four cu-
vette samples held in the sample compartment. Use this accessory to
run up to four samples at one time for a small assay, or to run blanks
with the samples simultaneously. Automated sample changers are
thermostatted and possess magnetic stirrers.
Saturation
The effect of having too much signal incident on a particular detec-
tor. Saturated detectors give an erroneous result and no longer show
any response for small changes in signal. In some cases, saturation
can damage a detector’s performance, so avoid saturation whenever
possible. The R928P photomultiplier tube used on the FluoroMax
®
-3
saturates at 1 × 10
7
cps.
Signal channel
See:
Acquisition modes
.
Signal photomultiplier
Detector used to measure excitation and fluorescence from the sam-
ple, operated in photon-counting mode to provide the highest sensi-
tivity. Different detectors can be used to optimize different wave-
length regions.
Signal-to-noise ratio (
S
/
N
)
The measurement of the signal observed divided by the noise com-
ponent seen in that signal. Generally, the better the
S
/
N
is, the better
the measurement is. This is accomplished by using photon-counting
detection with the proper high-voltage bias for improved sensitivity
during fluorescence measurements. The user then optimizes the sam-
ple signal to the higher area of the linear range for the detector, typi-
cally between 100 000 and 2 000 000 cps. Next, dark offsets or blank
subtraction may be used to improve the
S
/
N
. Finally, increasing the
integration time or repeating the same scan several times can improve
the signal to noise. For specifications, signal-to-noise may be repre-
Содержание FluoroMax-3
Страница 5: ...FluoroMax 3 v 3 1 3 Mar 2006 v 15 Declaration of Conformity 15 1 16 Index 16 1...
Страница 6: ...FluoroMax 3 v 3 1 3 Mar 2006 vi...
Страница 18: ...FluoroMax 3 v 3 1 3 Mar 2006 Introduction 0 12...
Страница 36: ...FluoroMax 3 v 3 22 Feb 2005 System Description 2 8...
Страница 96: ...FluoroMax 3 v 3 1 3 Mar 2006 Maintenance 6 12...
Страница 156: ...FluoroMax 3 v 3 1 6 Mar 2006 Automated Polarizers 10 22...
Страница 208: ...FluoroMax 3 v 3 1 6 Mar 2006 Bibliography 14 4...
Страница 210: ...FluoroMax 3 v 3 1 6 Mar 2006 Declaration of Conformity 15 2...
Страница 220: ...FluoroMax 3 v 3 1 25 Apr 2006 Index 16 10...