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計測機器 Cole Parmer 1200 SeriesのPDF ユーザーマニュアルをオンラインで閲覧またはダウンロードできます。Cole Parmer 1200 Series 18 ページ。
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concentration. If dilution is impossible or causes other problems, you may divide the
factor value by "10" or "100" and follow step 1 to 4 to enter the "new" factor value. You
need to calculate the sample concentration by multiplying readout with the multiple "10"
or "100".
5.
Read the concentration value of the sample direct from the display.
6.
Insert a cuvette containing the next sample and read the result. Repeat until all
samples have been measured.
Operational Note: if the MODE is changed to read A or T and the Concentration C
reading is "frozen", re-start at step 1.
Output and Data Processing
Printer
Model 1200/1201 Model has a RS232C Interface connector that can be connected to
any RS232 printers (Cole Parmer provides RS232 printer, item number: S-1100-206,
as an optional accessory). It requires a 9-pin, null modem connection cable. The RS232
Printer Setting should be as follows:
•
Baud Rate: 9600 bps
•
Parity: None
•
Data Bits: 8
•
Stop Bit: 1
®
UNICO
Application Software
®
The UNICO
Application Software--VIS1200 is Windows-based software designed to
operate with Cole Parmer Spectrophotometer Model 1200/1201. 1200/1201 uses its
RS232C Interface connector to connect with a PC. The software runs on a PC with
95/98/Me/NT/2000/XP operating system installed. The Software offers two additional
analytical methods: Standard Curve and Absorbance vs. Time Kinetics. It performs
the following methods for analysis:
• Absorbance/%Transmittance/Concentration: measure the Absorbance,
%Transmittance, Concentration/Standard, or Concentration/Factor at a single
wavelength within the range of 325~1000 nm
• Standard Curve: create a calibration curve (choice of 4 curve fits) with up to 8
standard solutions at a single wavelength to determine concentrations of
unknown samples
• Absorbance vs. Time Kinetics: measure a sample's absorbance change over a
selected period of time, store the test results in data table, display the results
graphically, and calculate the reaction rate within a given time interval
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