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6.9 Turbidity Measurement Programming
6.9.1 Description
This section describes how to configure the Model 1056 analyzer for Turbidity measurements. The following
programming and configuration functions are covered.
A detailed flow diagram for Turbidity programming is provided at the end of Sec. 6 to guide you through all basic
programming and configuration functions.
To configure the Turbidity measurement board:
1. Press MENU
2. Scroll down to Program. Press ENTER.
3. Scroll down to Measurement. Press ENTER.
4. Select Sensor 1 or Sensor 2 corresponding to Turbidity. Press ENTER.
The following screen format will appear (factory defaults are shown).
*TSS: Total Suspended Solids
6.9.2 Measurement
The display screen for selecting the measurement is
shown. The default measurement is displayed in bold
type. Refer to the Turbidity Programming flow diagram
to complete this function.
6.9.3 Units
The display screen for selecting the measurement
units is shown. The default value is displayed in bold
type. Refer to the Turbidity Programming flow diagram
to complete this function.
To program Turbidity, scroll to the desired item and press ENTER.
The following sub-sections provide you with the initial display screen that appears for each programming routine.
Use the flow diagram for Turbidity programming at the end of Sec. 6 and the live screen prompts to complete
programming.
S1: 1.234µS/cm 25.0ºC
S2: 12.34pH 25.0ºC
S
N
Configure
Measure: Turbidity
Units: NTU
Enter TSS Data
Filter: 20sec
Bubble Rejection: On
S1: 1.234µS/cm 25.0ºC
S2: 12.34pH 25.0ºC
S
N
Measurement
Turbidity
Calculated TSS
S1: 1.234µS/cm 25.0ºC
S2: 12.34pH 25.0ºC
S
N
Units
NTU
FTU
FNU
Measure
Sec.
Menu function:
default Description
Turbidity
6.9.2
Measurement type: Turbidity
Select Turbidity or TSS calculation (estimated TSS)
6.9.3
Measurement units: NTU
NTU, FTU, FNU
6.9.4
Enter TSS* Data:
Enter TSS and NTU data to calculate TSS based on Turbidity
6.9.5
Filter: 20 sec Override the default input filter, enter 0-999 seconds
6.9.6
Bubble Rejection: On
Intelligent software algorithm to eliminate erroneous readings
caused by bubble accumulation in the sample
TABLE 6-11 Turbidity Measurement Programming
Instruction Manual
LIQ-MAN-1056
Section 6.0: Programming the Measurements
April 2017
Содержание Rosemount 1056
Страница 1: ...Instruction Manual LIQ MAN 1056 Rev K April 2017 Rosemount 1056 Dual Input Intelligent Analyzer ...
Страница 4: ...Quick Start Guide Figure A Quick Start Guide ...
Страница 5: ...Quick Reference Guide Figure B Model 1056 Menu Tree ...
Страница 28: ...20 Instruction Manual LIQ MAN 1056 Section 2 0 Installation April 2017 ...
Страница 50: ...42 Instruction Manual LIQ MAN 1056 Section 6 0 Programming the Measurements April 2017 ...
Страница 84: ...76 Instruction Manual LIQ MAN 1056 Section 6 0 Programming the Measurements April 2017 ...
Страница 113: ...105 FIGURE 7 1 Calibrate pH Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 114: ...106 FIGURE 7 2 Calibrate ORP Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 117: ...109 FIGURE 7 5 Calibrate Oxygen Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 118: ...110 FIGURE 7 6 Calibrate Ozone Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 119: ...111 FIGURE 7 7 Calibrate Temperature Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 120: ...112 FIGURE 7 8 Calibrate Turbidity Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 121: ...113 FIGURE 7 9 Calibrate Flow Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 122: ...114 Instruction Manual LIQ MAN 1056 Section 7 0 Calibration April 2017 ...
Страница 124: ...116 Instruction Manual LIQ MAN 1056 Section 8 0 Return of Material April 2017 ...