Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement

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Customization: Available
After-sales Service: 1 Year
Warranty: 1 Year
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Number of Employees
16
Year of Establishment
2020-06-16
  • Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement
  • Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement
  • Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement
  • Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement
  • Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement
  • Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement
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Basic Info.

Model NO.
RC-TDS-100H
Accuracy
±0.6-1%
Main Application
Water, Wastewater
Size
DN10~DN1600
Sensor
Clamp-on/External
Application
Industrial Production
Type
Ultrasonic Flow Meter
Measuring Media
Liquid
Measuring Principle
Acoustics
Measurement Object
Closed Pipeline
Certification
CE, ISO
Velocity
±32 M/S
Security
Setup Values Modification Lockout.
Communication Interface
RS-232 User Protocols Can Be Customizable
Power Supply
3 AAA Batteries. 12 Hours of Operation. 100V-240va
Response Time
0-999 Seconds, User-Configurable
Display
4X16 English Letters
Transducer Cord Length
Standard 5m X 2, Optional 10m X 2
Data Logger
Built-in Data Logger Can Store Over 2000 Lines of
Transport Package
Cartons
Specification
50*39*20 7kg
Trademark
Aice Tech
Origin
China
HS Code
9026100000
Production Capacity
5000000/Pieces

Packaging & Delivery

Package Size
50.00cm * 39.00cm * 20.00cm
Package Gross Weight
7.000kg

Product Description

Portable Ultrasonic Flow Meter composes of an instrument and 2 transducers.
Features are built-in rechargeable Ni-H battery that full battery works for 12 hours.
2 transducers are receiving and transmitting flow signals and just clamp on outside of pipeline with designated distance.
Transducers upper limit temperature is 110°C(230°F)
5 meters long transducer cords with RS-232C interface.
Measuring range from 0.5 to 20 inches.
Suitable for kinds of fluids such as water, sewage, seawater, chemical water river water and fuel oil etc.
Clamp-on type, non-contacting measurement and easy install without any system pressure or bad environmental effects.

 
Menu Window Details
 
 
Menu 
window 
No.
Function
M00 Display three positive negative net totalizers, signal strength, signal quality and working status
M01 Display POS totalizer, flow rate, velocity, signal strength, signal quality and working status
M02 Display NEG totalizer, flow rate, velocity, signal strength, signal quality and working status
M03 Display NET totalizer, flow rate, velocity, signal strength, signal quality and working status
M04 Display date and time, flow rate, signal strength, signal quality and working status
M05 Display date and time, velocity, signal strength, signal quality and working status
M06 Display the wave shape of the receiving signal
M07 Display the battery terminal voltage and its estimated lasting time
M08 Display the all the detailed working status, signal strength, signal quality
M09 Display today's total flow, velocity, signal strength, signal quality and working status
M10 Window for entering the outer perimeter of the pipe
M11 Window for entering the outer diameter of the pipe
0 to 6000mm is the allowed range of the value.
M12 Window for entering pipe wall thickness
M13 Window for entering the inner diameter of the pipe

M14
Window for selecting pipe material
Standard pipe materials (that the user need not know the speed ) include:
(0) carbon steel (1) stainless steel (2) cast iron (3) ductile iron (4) copper
(5) PVc (6) aluminum (7) asbestos (8) fiberglass
M15 Window for entering the pipe material speed only for non-standard pipe materials

M16
Window for selecting the liner material, select none for pipes without any liner Standard liner materials that the user need not know the speed include:
(1) Tar Epoxy (2) Rubber (3) Mortar (4) Polypropylene (5) Polystryol
(6)Polystyrene (7) Polyester   (8) Polyethylene  (9) Ebonite (10) TFN
M17 Window for entering the liner material speed only for non-standard liner materials
M18 Window for entering the liner thickness, if there is a liner
M19 Window for entering the ABS thickness of the inside wall of the pipe


M20
Window for selecting fluid type
For standard liquids that the user need not know the liquid speed include:
(0) Water (1) Sea Water  (2) Kerosene  (3) Gasoline (4) Fuel oil (5) crude Oil
(6) Propane at -45c (7) Butane at 0c (8)Other liquids (9) Diesel Oil (10)caster Oil (11)Peanut Oil  (12) #90 Gasoline  (13) #93 Gasoline (14) Alcohol (15) Hot water at 125c
M21 Window for entering the fluid sonic velocity only for non-standard liquids
M22 Window for entering the viscosity of the non-standard liquids


M23
Window for selecting the proper transducers
There are 14 different types of transducers for selection.
If the user-type-transducers are used, 4 user type wedge parameters, which will be
prompted by the software, should be entered following.
If the π type transducers are used, 3 π type transducers and pipe parameters should be entered following.

M24
Window for selecting the transducer mounting methods Four methods can be selected:
(0) V-method (1) Z-method  (2) N-method (3) W-method
M25 Display the transducer mounting spacing
M26 Entry to store the parameter configuration into the internal NVRAM
M27 Entry to load one set of saved parameters

M28
Select YES or NO for the instrument to determine whether or not to hold (or to keep)
the last correct value when poor signal condition occurs. YES is the default setup
M29 Enter a value ranging from 000 to 999. 0 is the default value
M30 Window for selecting unit system. Default value is 'Metric'. The change from English
to Metric or vice versa will not affect the unit for totalizers.






M31
Window for selecting flow rate that will be used by the instrument afterward. Flow rate can be in
  1. cubic meter short for  (m3)
  2. Liter (l)
  3. USA gallon (gal)
  4. Imperial Gallon (igl)
  5. Million USA gallon (mgl)
  6. cubic feet (cf)
  7. USA liquid barrel (bal)
  8. Imperial liquid barrel (ib)
  9. Oil barrel (ob)
The flow unit in terms of time can be per day, per hour, per minute or per second. So there are 36 different flow rate units in total for selection.
M32 Window for selecting the totaliziers' working unit
M33 Select totalizer multiplier
The multiplier ranges from 0.001 to 10000
M34 Turn on or turn off the NET totalizer
M35 Turn on or turn off the POS totalizer
M36 Turn on or turn off the NEG totalizer
M37
  1. Totalizer reset
  2. Restore the instrument to the default parameters as the manufacturer did
  by pressing the dot key followed by the backspace key. Take care or make note on the parameters before doing the restoration
M38 Press-a-key-to-run or to stop totalizer for easier calibration
M39 Operational interface language selection in chinese and English. This selection makes it possible that more than 2 billions of people on the world can read the menu.
M40 Flow rate damper for a stable value. The input range is 0 to 999 seconds.
0 means there is no damping. Default value is 10 seconds
M41 Lower flow rate cut-off to avoid invalid accumulation.
M42 Zero point setup under the condition when there is no liquid running inside the pipe.
M43 clear the zero point set by the user, and restore the zero point set by the manufacturer
M44 Set up a manual flow bias. Generally this value should be 0.
M45 Scale factor for the instrument. The default value is '1'.   Keep this value as '1', when no user calibration has been made.

M46
Network environment Identification Number. Any integer can be entered except 13(0DH, carriage return), 10 (0AH, line feeding), 42 (2AH), 38, 65535.
Every set of the instrument ina network environment should havea unique IDN. Please
refer to the chapter for communication.
M47 System locker to avoid modification of the parameters
M48 Not used
M49 communication tester
M50 "Option" selection for the built-in logger. It also functions as the switch of logger
M51 Time setup for the data logger

M52
  1. Data logging direction control. If 'To RS-232' is selected, all the data produced by the data logger will be transmitted out through the RS-232 interface
  2. If 'To buffer' is selected, the data will be stored into the built-in logger memory
  3. Buffer transferring and buffer clearing

M53
Logger buffer viewer. It functions as a file editor. Use Dot, backspace UP and DN keys to browse the buffer.
If the logger is ON, the viewer will automatically refresh once new data are stored
M54 Not used
M55 Nod used
M56 Not used
M57 Not used
M58 Not used
M59 Not used

M60
99-year calendar. Press ENT for modification. Use the dot key to skip the digits that
need no adjusting.

M61
Display Version information and Electronic Serial Number (ESN) that are unique for each TDS-100 series flow meter.
The users can employ the ESN for instrumentation management
M62 RS-232 setup. Baud rate can be 75 to 115200 bps
M63 Not used
M64 Not used
M65 Not used
M66 Not used
M67 Input the frequency range for the frequency output. The biggest range is 0Hz-9999Hz. Default value is 1-1001 Hz
M68 Enter a flow rate value that corresponds to lower frequency
M69 Enter a flow Rate value that corresponds to higher frequency
M70 LcD display backlight control. The entered value indicates how many seconds the backlight will be on with every key pressing.
M71 LcD contrast control. The LcD will become darker when a small value is entered.
M72 Working timer. It can be cleared by pressing ENT key, and then select YES.

M73
Enter Lower Flow Rate value that will trigger the #1 Alarm. There are two virtual alarms in the system. By "virtual" we mean that the user must redirect the output of the alarms by setuping the output hardware in M78 and M77
M74 Enter the higher flow rate value that will trigger the #1 Alarm.
M75 Enter the lower flow rate value that will trigger the #2 Alarm.
M76 Enter the higher flow rate value that will trigger the #2 Alarm.

M77
Buzzer setup.
If a proper input source is selected, the buzzer will beep when the trigger event occurs
M78 OcT (Open collect Transistor Output) setup
By selecting a proper input source, the OcT hardware will close when the trigger event
occurs
M79 Not used
M80 Work as a keypad and display for another handhold set by RS-232 connected with the handset
M81 Not used
M82 Date totalizer
M83 Not used
M84 Not used
M85 Not used
M86 Not used
M87 Not used
M88 Not used
M89 Not used
M90 Display signal strength, signal quality, time ratio on the upper right corner.

M91
Displays the Time Ratio between the Measured Total Transit Time and the calculated time. If the pipe parameters are entered correctly and the transducers are properly installed, the ratio value should be in the range of 100 ±3%. Otherwise the entered parameters and the transducer installation should be checked.

M92
Displays the estimated fluid sound velocity. If this value has an obvious difference with the actual fluid sound speed, pipe parameters entered and the transducer installation should be checked again.
M93 Displays total transit time and delta time(transit time difference)
M94 Displays the Reynolds number and the pipe factor used by the flow rate program.
M95 Not used
M96 Not used
M97 command to record the pipe parameters entered by the user either to the built-in data
logger or to RS-232c serial interface
M98 command to record the diagnostic information either to the built-in data logger or to
RS-232c serial interface
M99 command to copy the current display either to the built-in data logger or to RS-232c
serial interface
M+0 Browse the 64 recorded instrument power-on and power-off date and time with the flow
rate at the time of power on and off
M+1 Displays the total working time of the instrument
M+2 Displays the last power-off date and time
M+3 Displays the last power-off flow rate
M+4 Displays the times of instrument powered on(the instrument has been powered on)

M+5
A scientific calculator for the convenience of field working. All the values are in single accuracy.
The drawback is that the user can't operate it by direct key-pressing
M+6 Not used
M+7 Not used
M+8 Not used
M+9 Not used
M-0 Entry to hardware adjusting windows only for the manufacturer



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Aice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid MeasurementAice Tech High-Precision Clamp-on Tuf 2000h Portable Ultrasonic Flow Meter for Efficient Accurate Liquid Measurement





 

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