Eppendorf BioPhotometer Bedienungsanleitung

Stöbern Sie online oder laden Sie Bedienungsanleitung nach Ausrüstung Eppendorf BioPhotometer herunter. Eppendorf BioPhotometer User Manual Benutzerhandbuch

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BioPhotometer
Bedienungsanleitung
Operating Manual
Mode d'emploi
Istruzioni d'impiego
Manual de Instrucciones
BP_Titel_d_e_f_i_sp.fm Seite 1 Montag, 20. Februar 2006 10:23 Uhr
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Inhaltsverzeichnis

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BioPhotometerBedienungsanleitungOperating ManualMode d'emploiIstruzioni d'impiegoManual de Instrucciones BP_Titel_d_e_f_i_sp.fm Seite 1 Mo

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52 2 Technical data Operation Cuvette material: dsDNA, ssDNA, RNA, Oligo, Protein: Quartz glass or plastic(UVette ® from Eppendorf)OD 600, Bradfor

Seite 3 - B 6131 900.102-08/0206

53 Before using the Biophotometer please familiarize yourself completely with the operating instructions. The following points must be followed exactl

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54 4 Installation Delivery package – BioPhotometer– Mains cable for BioPhotometer– Operating manual, incl. short instructions– Seal for cuvette shaft

Seite 5 - Contents

55 4 Installation 4.2 Printer Printer DPU 414 The Eppendorf Thermal Printer DPU 414 can be connected to the serial interface RS-232 C of the BioPho

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56 4 Installation Other printers In addition to the DPU 414, it is also possible to connect other serial printers to the serial interface of the Bio

Seite 7 - 1 Overview

57 5 Operation 5.1 Keypad – To call up the "Double-stranded DNA" method.– To enter figure 7.– To call up the "Single-stranded DNA&q

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58 5 Operation – To call up the "BCA" and "BCA micro" methods.– To switch between the "BCA" and "BCA micro"

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59 5 Operation 5.2 Measuring nucleic acids This description is valid for the following methods:– dsDNA– ssDNA– RNA– Oligo Call up methodCalculation

Seite 10 - 2 Technical data

60 5 Operation Measure sampleResults display As an indication of the purity of the nucleic acid sample which has been measured, the absorbance at 23

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61 5 Operation 5.3 Direct photometric measurement of protein Display after entry of "140 µ L sample volume" and "300 base pairs&quo

Seite 12 - 4 Installation

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62 5 Operation Measuring procedure The following example shows the measuring procedure for the "Absorbance" calculation mode. For details

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63 5 Operation 5.4 Measuring proteins with reagent (Bradford, BCA, Lowry) Call up method If a valid calibration (which is then stored by the device

Seite 15 - 5 Operation

64 5 Operation Measuring procedure Blank measurements remain stored until the date changes(For further details, see "Measuring nucleic acids&qu

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655 OperationDevice display following all standard measurements:The CV (coefficient of variation) is a measure of the scattering of standard values ar

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665 Operation5.5 Measuring OD 600Select methodMeasuring procedureBlank measurements remain stored until the date changes (for further details, see &

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675 Operation5.6 Measuring diluted samplesSample dilutions may be entered using the key before the measurement begins. When the result is calculat

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685 Operation5.7 Changing the sample numberDuring sample measurements, the serial number of the sample appears in the top right of the display.The s

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69 6 Programming 6.1 Programming procedure For each method, parameters such as the type of calculation or the unit of concentration are stored. The

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70 6 Programming Example: Changing the unit Selection parameters are selected using the cursor keys and confirmed by pressing . The stored setting i

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71 6 Programming 6.2 Overview of parameters (For "Factor" calculation only:)(For "Standard" calculation only:) Point 1: No sel

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Nachdruck und Vervielfältigung – auch auszugsweise – nur mit Genehmigung.No part of this publication may be reproduced without the prior permission of

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72 6 Programming 6.3 Explanation of parameters Parameters are defined as selection parameters or as parameters for entering numbers. In the case of

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73 6 Programming The following parameters are offered only when the "Standard" calculation procedure has been programmed: Parameter Entrie

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74 6 Programming 6.4 Factory-set programmed values Notes: 1) With"Factor" calculation: Input required from user2) With "Standard&quo

Seite 27 - 6 Programming

75 7 Functions Functions listFunction Entries Explanation Display results Call up using . Display of the last 100 results(The most-recent result app

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76 7 Functions Example: Changing the language versionCall up functions listSelect desired functionStore function To exit the function level, either

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77 8 Error messages, result flagging and help texts Result flaggingError texts in the results display Flagging Explanation 1.586 A 260 Flagging of A 2

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78 8 Error messages, result flagging and help texts Error texts in measuring procedureError texts in calibration procedure Error text Explanation /

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79 8 Error messages, result flagging and help texts Error texts in programming procedureOther error textsHelp texts CV greater than 10 % (Following s

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80 Photometer – Disconnect the device from the main power source before carrying out maintenance work or to change the fuses.The inside of the device

Seite 33 - 7 Functions

81 10 Short instructions Preparation The BioPhotometer is ready to measure immediately after being switched on. Methods dsDNA ssDNA RNA

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Inhalt_d_e_f_i_sp_Copy.fm Seite 2 Montag, 20. Februar 2006 10:25 Uhr

Seite 35 - Result flagging

82 10 Short instructions Programming The factory-set method programs may be changed as required. Example: Programming of the unit " µ g/mL"

Seite 36 - Standard

83 10 Short instructions Measuring procedure for dsDNAdsDNAPROGRAMMED FACTOR 1 A260 = 50.0 µ g/mLSampledsDNA BLANKBlankdsDNA SAMPLE 001 20+200

Seite 37 - Other error texts

84 10 Short instructions Bradford measuring procedureBRADFORDCALIBRATION RANGE100 – 2000 µ g/mLStandardBRADFORD BLANKBlank0 . 0 0 0 ABRADFORD SAMP

Seite 38 - 9 Maintenance and cleaning

85 11.1 Ordering information Order no.Photometer 6131 000.012 BioPhotometer(230 V; 50/60 Hz; European plug)(additional power supply variants available

Seite 39 - 10 Short instructions

86 12 Calculation 12.1 Nucleic acids (dsDNA, ssDNA, RNA, oligo) Calculation via factor C= A 260 x FC = Calculated concentrationA 260 = Absorbanc

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87 12 Calculation Conversion key: Calculating the molar concentration Application: Calculating the molar concentration from the mass concentration a

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88 12 Calculation Sample dilution, optical light path of the cuvette and correction A 320 See Section 12.1. 12.3 Protein with addition of reagent

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89 12 Calculation Sample dilution and optical light path of the cuvette See Section 12.1. 12.4 OD 600 The measured values appear as absorbance val

Seite 43 - 11 Ordering information

90 13 Testing the photometer To enable the photometric accuracy and the wavelength accuracy to be tested, a filter set (secondary UV-VIS filter) is ava

Seite 44 - 12 Calculation

91 13 Testing the photometer Test procedure – Carry out the test at approximately 20 ° C.– Remove the filter from the filter box for a brief period o

Seite 45

47 1 Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .

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92 Conformity Declaration for BioPhotometer 6131 in accordance with enclosure 15 of "Eichordnung" (German standardization regulations)Descri

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07.08.200389/336/EWG, EN 55011/B, EN 61000-6-1, EN 61000-3-2, EN 61000-3-373/23/EWG, EN 61010-1PhotometerBioPhotometer 61316131 900.994-01EG-Konformit

Seite 48 - 13 Testing the photometer

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Seite 49

Printed in Germany eppendorf ® is a registered trademark Your local distributor: www.eppendorf.com/worldwide Eppendorf AG22331 Hamburg · GermanyTel.

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48 00_Inhalt_e.fm Seite 48 Montag, 20. Februar 2006 10:46 Uhr

Seite 51 - EC Conformity Declaration

49 1 Overview 1 Device display 5 Dilution key2 9 method keys 6 Conversion key3 Function key (device functions) 7 Measuring keys4 Parameter k

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50 1 Overview Methods There are twelve preprogrammed factory-set methods which can be called up at the push of a button: Nucleic acidsdsDNA Double-s

Seite 53 - is a registered trademark

51 2 Technical data Photometer Optical system: Absorption single-beam photometer with reference beamand several fixed wavelengthsIrradiation source: X

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